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Ophthalmic Artery Pseudoaneurysm: Difference between revisions

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|Additional contributors=James.Davis, Yanhan.Ren
|Additional contributors=James.Davis, Yanhan.Ren
|Category=Ocular Trauma,Oculoplastics/Orbit
|Category=Ocular Trauma,Oculoplastics/Orbit
|Assigned editor=Amanda.Henderson, Michael.Yen
|Assigned editor=Amanda.Henderson, Kian.Eftekhari
|Reviewer=Amanda.Henderson
|Reviewer=Amanda.Henderson
|Date reviewed=July 15, 2023
|Date reviewed=January 4, 2025
|Article status=Up to Date
|Article status=Up to Date
|Meta description=This article aims to establish the etiologies, epidemiology, presentations, diagnosis, and management of ophthalmic artery pseudoaneurysm
|Meta description=This article aims to establish the etiologies, epidemiology, presentations, diagnosis, and management of ophthalmic artery pseudoaneurysm
}}
}}
Ophthalmic Artery Pseudoaneurysm (OAPA) is a rapid onset and vision and life-threatening conditions in the setting of trauma or post-surgical complications. Proper identification of signs and symptoms of OAPA is crucial in determining management approaches to achieve optimal visual outcomes.  
Ophthalmic Artery Pseudoaneurysm (OAPA) is a rapid-onset, vision and life-threatening condition that may occur in the context of trauma or post-surgical complications. Proper identification of the signs and symptoms of OAPA may help achieve optimal visual outcomes.


= Disease Entity  =
= Disease Entity  =


Ophthalmic artery pseudoaneurysm is a rare condition characterized by the formation of a false aneurysm in the ophthalmic artery.  This can result from trauma, injury, infection, or certain surgical procedures.  
OAPA is a rare condition characterized by the formation of a false aneurysm in the ophthalmic artery. The process of OAPA formation shares similarities with other large vessel pseudoaneurysms, wherein the shearing force resulting from trauma leads to the creation of a false lumen.<ref>Peick AL, Nichols WK, Curtis JJ, Silver D. Aneurysms and pseudoaneurysms of the superficial temporal artery caused by trauma. J Vasc Surg. 1988;8(5):606-610.</ref> OAPA is uncommon due to protection from the orbital walls and surrounding orbital adipose tissue. The risk of OAPA formation is significantly heightened only in the presence of direct trauma to the orbits.  Additional risk factors identified in previous literature and clinical practice include the use of anticoagulation, high-energy impact, or penetration into the orbits.<ref name=":5" /> <ref name=":4" /> OAPA can also result from infection or surgical procedures. <ref name=":1">Selcuk H, Soylu N, Albayram S, et al. Endovascular treatment of persistent epistaxis due to pseudoaneurysm formation of the ophthalmic artery secondary to nasogastric tube. ''Cardiovasc Intervent Radiol''. 2005;28(2):242-5. doi:10.1007/pl00021048</ref>


== Etiology  ==
== Etiology  ==


In contrast to a true aneurysm, a pseudoaneurysm is not contained by the vessel wall; instead, blood leaking through a defect in the arterial wall is contained by an out-pouching of adventitia or perivascular soft tissue.<ref>Patil NS, Kumar AH, Pamecha V, et al. Cystic artery pseudoaneurysm-a rare complication of acute cholecystitis: review of literature. ''Surg Endosc''. Feb 2022;36(2):871-880. doi:10.1007/s00464-021-08796-1</ref> The most common cause of ophthalmic artery pseudoaneurysm (OAPA) is high energy trauma, such as blunt or penetrating trauma to the eye or head, but it can also be caused by inflammation, infection, or previous surgerical procedures.
In contrast to a true aneurysm, a pseudoaneurysm is not contained by the vessel wall; instead, blood leaking through a defect in the arterial wall is contained by an out-pouching of adventitia or perivascular soft tissue.<ref>Patil NS, Kumar AH, Pamecha V, et al. Cystic artery pseudoaneurysm-a rare complication of acute cholecystitis: review of literature. ''Surg Endosc''. Feb 2022;36(2):871-880. doi:10.1007/s00464-021-08796-1</ref> The primary cause of OAPA is typically high-energy trauma, including blunt or penetrating injuries to the eye or head. However, it can also arise from inflammation, infection, or prior surgical procedures. Typically, the presentation is unilateral due to the nature of traumatic impact, but bilateral occurrence can occur if both orbits experience high-energy injuries. <ref name=":6" />


= Diagnosis  =
= Diagnosis  =


The diagnosis of ophthalmic artery pseudoaneurysm (OAPA) typically involves a combination of clinical evaluation, detailed eye exams, radiological imaging studies, and additional interventional studies useful in characterizing the pseudoaneurysm. Patients with OAPA typically presents to the emergency room as trauma activation after fall or motor vehicle accident. In the setting of acute trauma, patients may unable to give accurate history of the event onset. Imaging modalities such as became crucial as it helps to support physical exams findings.
Patients with OAPA commonly arrive at the emergency room as trauma activations following a fall or motor vehicle accident. In the context of acute trauma, patients may be unable to provide an accurate history. Diagnosing OAPA typically necessitates a comprehensive approach, including clinical evaluation, detailed eye examinations, radiological imaging studies, and additional interventional procedures.  


== History  ==
== History  ==


Typically, patient who presented with ophthalmic artery pseudoaneurysm already suffered high energy impact injury to the head and will most likely present with mental status change and memory loss. If available the history-taking portion should focus on the mechanism of facial and ocular injuries. High energy blunt and penetrating injury can both contribute to these pseudoaneurysms formations. Some of the common types of blunt trauma injuries identified in past literatures include fist fight, motor vehicle accidents (whiplash injuries, etc.), fall. There have also been recordings of penetrating orbital projectile induced OAPA formation, such as bullets and knives <ref name=":4" />.      
The history should focus on the mechanism of facial and ocular injuries. High-energy blunt and penetrating injury can both contribute to these pseudoaneurysm formations. Common types of blunt trauma injuries identified in past literature include fist fights, motor vehicle accidents (head strike, airbag deployment, whiplash injuries, etc.), and falls. <ref name=":3" /> <ref name=":7" /> There have also been recordings of penetrating orbital projectile-induced OAPA formation (e.g., secondary to bullets or knives). <ref name=":4" />       


Other risk factors, such as prior history of ocular infection, cellulitis, arterial-venous fistulas, and any other significant orbital histories are also useful. Comorbidities such as diabetes and cardiovascular disease are also important as patients might be taking anti-platelets or antithrombotic medications which could greatly increase the risk of pseudoaneurysm malformation.     
Other risk factors, such as prior ocular infection, cellulitis, arteriovenous fistulas, and other significant orbital histories , may also be relevant. <ref name=":8" /> Comorbidities such as diabetes and cardiovascular disease are important, as patients may be taking anti-platelets or antithrombotic medications, which increase the risk of pseudoaneurysm formation.     


Pseudoaneurysm formation can be iatrogenic as well. Recent past surgical histories such as plastic, ENT, or skull based neurosurgeries are also helpful in identifying the source of lesion.   
Pseudoaneurysm formation can be iatrogenic as well. Recent past surgical and procedural histories such as nasogastric tube placement or oculoplastic, ENT, or skull base surgeries are also helpful in identifying the source of the lesion.<ref name=":1" />    


== Physical Examination ==
== Physical Examination ==


A thorough physical examination of the eye and surrounding structures should be conducted to assess visual acuity, ocular motility, and clinical signs of inflammation, swelling, proptosis, or pulsatile mass around the orbit. Increased intraocular pressure can spike suddenly due to increase in pseudoaneurysms sizes or concomitant retrobulbar hemorrhage. Prompt reduction in IOP should be considered immediately based on available IOP readings and physical examination findings.  
A comprehensive physical examination of the eye and its surrounding structures is essential. The examiner should focus on visual acuity and ocular motility. Some of the common bedside findings include chemosis, subconjunctival hemorrhage, proptosis, and pulsatile mass around the orbit. Drawing from clinical experience at UMass Memorial Medical Center, the appearance of a pulsatile mass around the orbit emerges as the most indicative sign of OAPA formation.  
 
Intraocular pressure (IOP) can spike suddenly due to an increase in OAPA volume or concomitant retrobulbar hemorrhage. Prompt reduction in IOP (with glaucoma eye drops, canthotomy/cantholysis) should be considered based on available IOP readings and physical examination findings. Communication with the neurosurgery or neuro-critical care team to determine dilation status, then obtaining a dilated funduscopic exam at the earliest convenience, will to identify potential retinal hemorrhages and ischemic injuries.  


== Diagnostic Procedures ==
== Diagnostic Procedures ==
[[File:Final initial.png|thumb|520x520px|This is the Initial CT Head Angiogram that captured OAPA (yellow arrow): Patient on eliquis initially presented to the ED after tripping and falling with positive head strike against cement pavement. Trauma team noted pulsatile hematoma and proptosis of the right orbit. OAPA started to appear 24 hours after initial resuscitation at the trauma bay. Radiology noted 2 small foci of contrast in the right superomedial orbit with possible active extravasation; a subdural hematoma with midline shift. ]]Studies in the literature have reported using various imaging techniques such as CT, MRI, or digital subtraction angiography to aid in the diagnosis of pseduoanyerysm<ref name=":4">Czyz CN, Piehota PG, Strand AT, Stein M. Post-traumatic ophthalmic artery pseudoaneurysm from orbital projectile. ''Can J Ophthalmol''. Aug 2017;52(4):e130-e132. doi:10.1016/j.jcjo.2016.12.007</ref><ref name=":0">Hopkins JK, Shaibani A, Ali S, et al. Coil embolization of posttraumatic pseudoaneurysm of the ophthalmic artery causing subarachnoid hemorrhage. Case report. ''J Neurosurg''. Nov 2007;107(5):1043-6. doi:10.3171/JNS-07/11/1043</ref>.  CT and CT-Angiogram would be the ideal screening modalities, while digital subtraction angiography would be most specific in diagnosing these lesions.<ref name=":1">Selcuk H, Soylu N, Albayram S, et al. Endovascular treatment of persistent epistaxis due to pseudoaneurysm formation of the ophthalmic artery secondary to nasogastric tube. ''Cardiovasc Intervent Radiol''. 2005;28(2):242-5. doi:10.1007/pl00021048</ref>
[[File:Final initial.png|thumb|520x520px|Initial CT angiogram that captured OAPA (yellow arrow) in a patient on apixaban, who initially presented to the ED after tripping and falling with head strike against cement pavement. Trauma team noted pulsatile hematoma and proptosis of the right orbit. OAPA started to appear 24 hours after initial resuscitation. ]]Previous studies have reported using various imaging techniques such as CT, CTA, MRI, MRV, MRA, or digital subtraction angiography to aid in the diagnosis of pseudoaneurysm<ref name=":4">Czyz CN, Piehota PG, Strand AT, Stein M. Post-traumatic ophthalmic artery pseudoaneurysm from orbital projectile. ''Can J Ophthalmol''. Aug 2017;52(4):e130-e132. doi:10.1016/j.jcjo.2016.12.007</ref><ref name=":0">Hopkins JK, Shaibani A, Ali S, et al. Coil embolization of posttraumatic pseudoaneurysm of the ophthalmic artery causing subarachnoid hemorrhage. Case report. ''J Neurosurg''. Nov 2007;107(5):1043-6. doi:10.3171/JNS-07/11/1043</ref>.   
 
=== '''CT Head, CT Angiogram''' ===
When patient first presents to the emergency room, CT head without contrast and CT angiogram are helpful in identifying intracranial bleeding and vascular lesions. CTA of the head and the neck are also helpful in identifying vascular injuries.  


'''CT Head, CT angiogram'''
Based on past literature and ED triaging experience, pseudoaneurysm may expand quickly in its early phase of development, which may mimic an expanding hematoma. <ref name=":2" /> However, the precise timing of OAPA progression may not manifest until up to 24 hours after the initial injury. Follow-up imaging will be helpful in monitoring the size of progression and determining next step management. Unlike hematomas, pseudoaneurysms will stabilize in size without active contrast extravasation. <ref name=":2" />


When patient first presented to the emergency room, CT head without contrast and CT angiogram are extremely helpful in identifying intracranial bleeding and vasular lesions. CT angiograms of the head and the neck are also helpful in identifying vascular injuries. Based on past literature information and ED triaging experience, pseudoaneurysm may expand quickly in the size in its early phase of development, which may mimic an expanding hematoma. However, the exact timing of OAPA progression may not occur until up to 24 hours after the initial injury. Follow up imaging will be helpful in monitoring the size of progression and determining next step management. Unlike hematoma, pseudoaneurysms will stabilize in size without active contrast extravasation.
=== '''MRI, MRA, MRV, and Angiography''' ===
 


'''MRI, MRA, MRV, and Angiography''' 
Patients with suspected OAPA typically require neuro-ICU level of care. Follow-up advanced imaging such as MRI, MRA, and/or MRV are helpful in confirming the diagnosis and identifying the source of the lesion. Based on past literature research, MRI, MRA, and MRV are all reasonable diagnostic imaging studies for these types of scenarios.  Digital subtraction angiography is the most confirmatory imaging yet most invasive. It will help to visualize the lesion in real-time with detailed information on size and hemodynamics. Angiography can be both diagnostic and curative to OAPA. However, it is imperative to engage in thorough discussions about prognosis and complications with patients, as the location of these pseudoaneurysms is in proximity to the central retinal artery, and embolization procedures may carry the risk of permanent vision loss.   


Patient with suspected OAPA typically requires Neuro-ICU level of care. Follow up advanced imaging such as MRI, MRA, MRV are helpful in confirming the diagnosis and identifying the source of lesion. Based on past literature research, MRI, MRA, and MRV are all reasonable diagnostic imaging studies for these types of scenarios. Angiogram through Neuro-Intervention is the most confirmatory imaging yet most invasive. It will help to visualize the lesion in real time with detailed information on size and hemodynamics. Angiogram can be both diagnostic and curative to OAPA. However, detailed discussions on embolization prognosis should discuss in details with patients as the location of these pseudoaneurysms are in proximity to the central retinal artery and embolization procedure may potentially lead to permanent vision loss.  [[File:Angiogram OAPA.png|thumb|Subsequent cerebral angiogram demonstrating the one of the two OAPA located at the middle right ophthalmic artery measuring about 7.17*5.28mm without active extravasation or arterial-venous fistula, confirming the diagnosis of OAPA. Due to proximity to the right central retinal artery, endovascular embolization was deferred. |398x398px]]
  [[File:Angiogram OAPA.png|thumb|Cerebral angiogram demonstrating the one of the two OAPA located at the middle right ophthalmic artery measuring about 7.17 x 5.28 mm without active extravasation or arterial-venous fistula, confirming the diagnosis of OAPA. Due to proximity to the right central retinal artery, endovascular embolization was deferred. |398x398px]]
= Management =
= Management =
== Neuro-Intervention (Endovascular Occlusion) ==
Prompt endovascular occlusion can prevent complications such as enlargement, hemorrhage, and hematoma formation.<ref name=":2">Chun HJ, Yi HJ. Traumatic extracranial pseudoaneurysm on the peripheral ophthalmic artery presenting as delayed intraparenchymal hematoma: case report. Surg Neurol. 2009 Jun;71(6):701-704. doi:10.1016/j.surneu.2007.11.018.</ref> This can be achieved by microcatheterization and coil embolization.<ref name=":3">Kelly ME, Fiorella D. Traumatic ophthalmic artery pseudoaneurysm coiled with a steerable microcatheter. ''Can J Neurol Sci''. Jul 2009;36(4):496-9. doi:10.1017/s0317167100007861</ref> The process involves navigating an endovascular wire close to the OAPA, followed by the use of a microcatheter to deliver the coil or glue for embolization. Subsequent angiography confirms the completion of coil embolization. These procedures have demonstrated considerable success in occluding OAPA and preventing vision loss, as outlined in the final literature summary table. 


 
If the lesion site is near the origin site of the internal carotid artery, endovascular balloon embolization can be attempted, though this was mostly performed before the availability of coiling. <ref>Tantana S, Pilla TJ, Awwad EE, Smith KR. Balloon embolization of a traumatic carotid-ophthalmic pseudoaneurysm with control of the epistaxis and preservation of the internal carotid artery. AJNR Am J Neuroradiol. 1987 Sep-Oct;8(5):923-924. PMID: 3118688; PMCID: PMC8334483.</ref> If the proximal ophthalmic artery becomes occluded, branches of the external carotid artery can potentially provide collateral blood flow to the visual system through anastomoses with the extra-orbital branches of the ophthalmic artery.<ref name=":0" /> However, there is a risk of permanent vision loss. <ref name=":9" /> Additionally, innovative materials have been explored in the occlusion process. One study reported a case of OAPA presenting with persistent epistaxis after removal of a nasogastric tube.<ref name=":1" /> This patient was treated with 25% glue (NBCA) injection to embolize the lesion.
== Neuro-Intervention (endovascular coiling) ==
Prompt endovascular occlusion can prevent complications such as enlargement, hemorrhage, and hematoma formation.<ref name=":2">Chun HJ, Yi HJ. Traumatic extracranial pseudoaneurysm on the peripheral ophthalmic artery presenting as delayed intraparenchymal hematoma: case report. ''Surg Neurol''. Jun 2009;71(6):701-4. doi:10.1016/j.surneu.2007.11.018</ref> This can be achieved by microcatheterization and coil embolization.<ref name=":3">Kelly ME, Fiorella D. Traumatic ophthalmic artery pseudoaneurysm coiled with a steerable microcatheter. ''Can J Neurol Sci''. Jul 2009;36(4):496-9. doi:10.1017/s0317167100007861</ref> In this procedure an endovascular wire is navigated close to the pseudoaneurysm, followed by a microcatheter which is then used to deliver the coil for embolization. Angiography is then used to confirm a complete coil embolization. If the proximal ophthalmic artery becomes occluded, branches of the external carotid artery provide collateral blood flow to the visual system through anastomoses with the extra-orbital branches of the ophthalmic artery.<ref name=":0" /> However, the central retinal artery is also at risk of been injured and occluded if the pseudoaneurysm is in close proximity.
 
One study reported a case of OAPA presenting with persistent epistaxis after removal of a nasogastric tube.<ref name=":1" /> This patient was treated with 25% NBCA injection to embolize the lesion.


== Surgery, External Approach ==
== Surgery, External Approach ==
Other than endovascular approach, there have also been recorded cases of external surgical approach to surgically remove the pseudoaneurysms. It is a much more invasive technique and the final outcomes are worse compared to endovascular embolization. There have been only 2 recorded cases of external surgical approach completed in China and Japan. The surgery in China was performed on a patient who suffered blunt trauma (punch) to the orbits. The surgeons were able to successfully remove the pseudoaneurysm by entering through right cranio-orbital approach with orbital decompression. However, due to the degree of injury to the globe and optic nerve, visual acuity remained at NLP with total ophthalmoplegia. The case in Japan was also performed on on a patient who sustained closed head injury from motor vehicle accident. The surgeons were successfully able to resect the psuedoanuerysm through extradural approach. However visual acuity remained at NLP.       
Other than endovascular approach, there have also been limited reported cases of external surgical approaches to surgically remove the pseudoaneurysms. There have been only two reported cases of external surgical approach completed in China and Japan <ref name=":5">Li Y, Song WX, Zhang TM, Fu JD, Sun S, Zhao JZ. Intraorbital traumatic ophthalmic artery aneurysm: case report. Neurol India. 2012 Nov-Dec;60(6):657-60. doi: 10.4103/0028-3886.105213. PMID: 23287341.</ref>. The surgery in China was performed on a patient who suffered blunt trauma (punch) to the orbit. The surgeons were able to successfully remove the pseudoaneurysm by entering through right cranio-orbital approach with orbital decompression. However, due to the degree of injury to the globe and optic nerve, visual acuity remained at NLP with total ophthalmoplegia <ref name=":5" />. The case in Japan was also performed on a patient who sustained closed head injury from motor vehicle accident. The surgeons were successfully able to resect the pseudoaneurysm through extradural approach. However, visual acuity remained at NLP after surgery.       


== Conservative Management ==
== Conservative Management ==
[[File:Final cta.png|thumb|314x314px|Final CT-Angiogram demonstrating the OAPA at the right mid-ophthalmic artery noted in in the initial CT-A and angiography, indicating the pseudoaneurysm has most likely self-embolized and no longer taking up any contrast.]]
[[File:Final cta.png|thumb|314x314px|Final CT-Angiogram demonstrating the OAPA at the right mid-ophthalmic artery noted in in the initial CT-A and angiography, indicating the pseudoaneurysm has most likely self-embolized and is no longer taking up any contrast.]]
At this time there have been one recorded conservative management case in approaching OAPA, which was done at Umass Memorial Medical Center. Through multi-disciplinary care approach involving ophthalmology, neruo-intervention, neruo-critical care, the patient's pseudoaneurysm self-embolized as demonstrated by serial CT-Angiogram scans.     
At this time there has been one recorded conservative management case in approaching OAPA, which was done at UMass Memorial Medical Center. Through a multi-disciplinary care approach involving ophthalmology, neuro-intervention, and neuro-critical care, the patient's pseudoaneurysm self-embolized 72 hours later as demonstrated by serial CT angiogram scans.     
 
= Prognosis =
 
== Prognosis ==
 
OAPAs are dangerous because they can enlarge over time and eventually rupture, resulting in intracranial hemorrhage or hematoma formation.<ref name=":2" /> Pseudoaneurysm of the dural portion of the ophthalmic artery can result in subarachnoid hemorrhage with a high risk of re-hemorrhage if left untreated.<ref name=":3" />
OAPAs are dangerous because they can enlarge over time and eventually rupture, resulting in intracranial hemorrhage or hematoma formation.<ref name=":2" /> Pseudoaneurysm of the dural portion of the ophthalmic artery can result in subarachnoid hemorrhage with a high risk of re-hemorrhage if left untreated.<ref name=":3" />


'''Outcomes:'''
== '''Outcomes''' ==
 
Endovascular occlusion cases may have visual improvement with a low rate of central retinal artery occlusion. Timely management of these pseudoaneurysms may successfully reduce the rate of intracranial bleeding and mortalities. Current literature shows a 0% mortality rate among patients with OAPA managed surgically. However, should the initial trauma injury cause significant globe or optic nerve injury, visual outcome may be poor, and patients may eventually require evisceration or enucleation (''please refer to the final literature summary table'').
Visual recovery in endovascular occlusions cases have been most likely been successful with low rate of central retinal artery occlusion. Timely management of these pseudoaneurysms successfully reduced the rate of intracranial bleeding and mortalities. Current literature showed 0% of mortality rate among patients with OAPA that were managed surgically. However, should the initial trauma injury caused significant globe optic nerve injury, visual outcome may be limited and may eventually require evisceration or enucleation.
 
'''Complications:'''
 
For patient who underwent successful endovascular embolization, some of the common complications recorded include ptosis, vasospasms. For patients who underwent interventions, but were unsuccessful in recovering beyond no light perceptions in the traumatic eyes, corneal edema, pain, and proptosis are the most common symptoms and these patients eventually required eviscerations or enucleations for comfort measures.


Cranial nerves are also susceptible to injuries even after pseudoaneurysm embolization or self-embolization, though this affect may be transient. For the one patient who underwent serial CT-Angiogram monitoring without monitoring at University of Massachusetts Memorial Hospital, complete cranial nerve 3 palsy with persistent traumatic pupil of the injured eye was discovered on follow up 1 month later. The exact etiologies for the palsy were unclear but may be related to transient compression after the traumatic injury. The CN3 palsy self-resolved about 2 months follow up; however, the traumatic pupil persisted the visual acuity failed to correct to 20/70 or better (the unaffected eye been 20/30). Given patient’s age and cardiovascular risk factors, the decision was made to closely monitor without any more procedural intervention.  
== '''Complications''' ==
For patients who have undergone successful endovascular embolization, common complications  include ptosis and vasospasm. For patients who undergo interventions, but do not recover vision, corneal edema, pain, and proptosis are the most common symptoms. <ref name=":4" />


== Literature Summary ==
Cranial nerves are also susceptible to injuries even after pseudoaneurysm embolization or self-embolization, though this effect may be transient. For the one patient who underwent serial CT angiogram monitoring at the University of Massachusetts Memorial Hospital, complete cranial nerve 3 palsy with persistent traumatic pupil of the injured eye was discovered on follow-up 1 month later. The exact etiology of the palsy was unclear but may have been related to transient compression after the traumatic injury. The CN3 palsy spontaneously resolved over about three months; however, the traumatic pupil persisted, and visual acuity only recovered to 20/70  (the unaffected eye was 20/30). Given the patient’s age and cardiovascular risk factors, the decision was made to closely monitor without any more procedural intervention. 


OAPAs are dangerous because they can enlarge over time and eventually rupture, resulting in intracranial hemorrhage or hematoma formati
= Literature Summary =


Below is the table listing all past literatures discussing OAPA, the team’s treatment approaches, surgical outcomes, and complications.
Below is the table listing past literature discussing OAPA, including treatment approaches, surgical outcomes, and complications.
{| class="wikitable"
{| class="wikitable"
|'''Studies/Cases'''   
|'''Studies/Cases'''   
Line 87: Line 84:
|'''Location  of OAPA'''
|'''Location  of OAPA'''
|'''Management'''   
|'''Management'''   
|'''Complications'''
|'''Ophthalmic''' '''Complications'''
|'''Outcome'''  
|'''Ophthalmic Outcome'''
|-
|-
|'''Czyz C, et al.'''
|'''Czyz C, et al.'''<ref name=":4" />
|1
|1
|2017
|2017
|Penetrating  bullet intra-orbital
|Penetrating  bullet intra-orbital
|
|Right  ophthalmic artery
|Endovascular occlusion  coiling
|Endovascular occlusion  coiling
|Corneal  edema, hyphemia, hemorrhagic chemosis
|Corneal  edema, hyphema, hemorrhagic chemosis
|NLP,  evisceration
|NLP,  evisceration
|-
|-
|'''Chun H, et  al.'''
|'''Chun H, et  al.'''<ref name=":2" />
|1
|1
|2007
|2007
Line 108: Line 105:
|Intervention induced  vasospasm, self-sealed
|Intervention induced  vasospasm, self-sealed
|-
|-
|'''Balushi AA, et  al.'''
|'''Balushi AA, et  al.'''<ref name=":6">Al Balushi A, Kitchener J, Edgell RC. Bilateral ophthalmic artery dissecting aneurysms presenting with recurrent epistaxis. J Vasc Interv Neurol. 2017 Jan;9(3):14-16. PMID: 28243345; PMCID: PMC5317286.</ref>
|1
|1
|2017
|2017
|Penetrating  bullet intra-orbital
|Penetrating  bullet intra-orbital
|bilateral ophthalmic artery
|Bilateral ophthalmic artery
|Endovascular occlusion  coiling
|Endovascular occlusion  coiling
|None
|None
|Clinically  stable
|Clinically  stable
|-
|-
|'''Kelly EK, et  al.'''
|'''Kelly ME, et  al.'''<ref name=":7">Kelly ME, Fiorella D. Traumatic ophthalmic artery pseudoaneurysm coiled with a steerable microcatheter. Can J Neurol Sci. 2009 Jul;36(4):496-9. doi: 10.1017/s0317167100007861. PMID: 19650364.</ref>
|1
|1
|2009
|2009
Line 126: Line 123:
|Clinically  stable
|Clinically  stable
|-
|-
|'''Rosssitti  S, et al.'''
|'''Rosssitti  S, et al.''' <ref>Rossitti S, Radzinska R, Vigren P, Hillman J. Postoperative ophthalmic artery pseudoaneurysm presenting as monocular blindness: successful endovascular treatment. Klin Neuroradiol. 2009 Aug;19(3):230-234. doi: 10.1007/s00062-009-9003-2. Epub 2009 Jun 19. PMID: 19727584.</ref>
|1
|1
|2009
|2009
Line 135: Line 132:
|Clinically  stable
|Clinically  stable
|-
|-
|'''Li Y, et al.'''
|'''Li Y, et al.'''<ref name=":5" />
|1
|1
|2017
|2017
Line 144: Line 141:
|NLP, ophthalmoplegia
|NLP, ophthalmoplegia
|-
|-
|'''Dolati-Ardejani  P, et al.'''
|'''Dolati-Ardejani  P, et al.'''<ref name=":9">Dolati-Ardejani, P., Morrish, W. F., & Wong, J. H. (2012). Posttraumatic Ophthalmic Artery Pseudoaneurysm Presenting Epistaxis: Case Report and Review of the Literature. ''Journal of Neurological Surgery Part B: Skull Base'', ''73''(S 01), A286.</ref>
|1
|1
|2012
|2012
Line 153: Line 150:
|NLP
|NLP
|-
|-
|'''Liao Zb, et  al'''
|'''Liao Zb, et  al.'''<ref name=":8">Liao, Z., Long, X., & Li, J. (2023). Endovascular treatment of pseudoaneurysm of ophthalmic artery with carotid-cavernous fistula: A case report. ''Interdisciplinary Neurosurgery'', 101889.</ref>
|1
|1
|2023
|2023
Line 160: Line 157:
|Endovascular occlusion  coiling
|Endovascular occlusion  coiling
|None
|None
|None
|Clinically  stable
|-
|-
|'''Seluck H, et  al'''
|'''Selcuk H, et  al.''' <ref name=":1" />
|1
|1
|2005
|2005
Line 169: Line 166:
|Endovascular  occlusion (NBCA-histoacryl (25%) injection)
|Endovascular  occlusion (NBCA-histoacryl (25%) injection)
|None
|None
|None
|Clinically  stable
|-
|-
|'''Kikkawa Y, et  al.'''
|'''Kikkawa Y, et  al.''' <ref>Kikkawa Y, Natori Y, Sasaki T. Delayed post-traumatic pseudoaneurysmal formation of the intracranial ophthalmic artery after closed head injury. Case report. Neurol Med Chir (Tokyo). 2012;52(1):41-43. doi: 10.2176/nmc.52.41. PMID: 22278026.</ref>
|1
|1
|2012
|2012
Line 180: Line 177:
|NLP
|NLP
|-
|-
|'''Kanazawa R, et  al.'''
|'''Kanazawa R, et  al.''' <ref>Kanazawa R, Ishihara S, Neki H, Okawara M, Ishihara H, Kohyama S, et al. Embolization Using Endovascular Technique in Acute and Chronic Stages of Traumatic Ophthalmic Artery Aneurysm—Case Report—. Neurol Med Chir (Tokyo). 2011;51(4):289-292.</ref>
|1
|1
|2011
|2011
Line 187: Line 184:
|Endovascular occlusion  coiling
|Endovascular occlusion  coiling
|Redo in 5  months
|Redo in 5  months
|Clinically  stable
|-
|'''Hopkins JK, et al.''' <ref>Hopkins JK, Shaibani A, Ali S, Khawar S, Parkinson R, Futterer S, Russell EJ, Getch C. Coil embolization of posttraumatic pseudoaneurysm of the ophthalmic artery causing subarachnoid hemorrhage. Case report. J Neurosurg. 2007 Nov;107(5):1043-1046. doi: 10.3171/JNS-07/11/1043. PMID: 17977280.</ref>
|1
|2007
|Unclear
|Ophthalmic artery
|Endovascular occlusion  coiling
|Unclear
|Unclear
|-
|'''Shim YS''' <ref>Shim YS. Coil Embolization of Traumatic Ophthalmic Artery Aneurysm: Case Report. Korean J Neurotrauma. 2021 Nov 12;18(1):98-102. doi: 10.13004/kjnt.2022.18.e2. PMID: 35557629; PMCID: PMC9064747.</ref>
|1
|2021
|Fall, blunt  head injury
|Right ophthalmic artery origin site
|Endovascular occlusion  coiling
|None
|None
|Clinically  stable
|-
|'''Deshmukh YR, et al.''' <ref>Deshmukh VR, Klopfenstein JM, Albuquerque FC, Kim LJ, Spetzler RF. Surgical Management of Distal Coil Migration and Arterial Perforation after Attempted Coil Embolization of a Ruptured Ophthalmic Artery Aneurysm: Technical Case Report. Oper Neurosurg. 2006 Apr;58(4):ONS-E379. doi: 10.1227/01.NEU.0000205317.27820.35.</ref>
|1
|2005
|Iatrogenic, endovascular coil migration
|Left ophthalmic artery near aneurysm rupture site
|Surgical ligation
|Vasospasm, cerebral edema
|Neurologically intact without focal neuro deficit
|-
|-
|'''Ren Y, et al.  UMass Memorial Case'''
|'''Colewell L, Ren Y, et al.  UMass Memorial Case (case not yet  published)'''
|1
|1
|2023
|2023
|Fall, blunt  trauma
|Fall, blunt  trauma
|Right mid-ophthalmic  artery
|Right mid-ophthalmic  artery
|Conservative  watch
|Conservative  observation
|Ptosis,  traumatic pupil
|Ptosis,  traumatic pupil, transient CN3 palsy
|Clinically  stable, visual acuity 20/70 in OD
|Clinically  stable, visual acuity 20/70 in OD
|}
|}

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Ophthalmic Artery Pseudoaneurysm (OAPA) is a rapid-onset, vision and life-threatening condition that may occur in the context of trauma or post-surgical complications. Proper identification of the signs and symptoms of OAPA may help achieve optimal visual outcomes.

Disease Entity

OAPA is a rare condition characterized by the formation of a false aneurysm in the ophthalmic artery. The process of OAPA formation shares similarities with other large vessel pseudoaneurysms, wherein the shearing force resulting from trauma leads to the creation of a false lumen.[1] OAPA is uncommon due to protection from the orbital walls and surrounding orbital adipose tissue. The risk of OAPA formation is significantly heightened only in the presence of direct trauma to the orbits. Additional risk factors identified in previous literature and clinical practice include the use of anticoagulation, high-energy impact, or penetration into the orbits.[2] [3] OAPA can also result from infection or surgical procedures. [4]

Etiology

In contrast to a true aneurysm, a pseudoaneurysm is not contained by the vessel wall; instead, blood leaking through a defect in the arterial wall is contained by an out-pouching of adventitia or perivascular soft tissue.[5] The primary cause of OAPA is typically high-energy trauma, including blunt or penetrating injuries to the eye or head. However, it can also arise from inflammation, infection, or prior surgical procedures. Typically, the presentation is unilateral due to the nature of traumatic impact, but bilateral occurrence can occur if both orbits experience high-energy injuries. [6]

Diagnosis

Patients with OAPA commonly arrive at the emergency room as trauma activations following a fall or motor vehicle accident. In the context of acute trauma, patients may be unable to provide an accurate history. Diagnosing OAPA typically necessitates a comprehensive approach, including clinical evaluation, detailed eye examinations, radiological imaging studies, and additional interventional procedures.

History

The history should focus on the mechanism of facial and ocular injuries. High-energy blunt and penetrating injury can both contribute to these pseudoaneurysm formations. Common types of blunt trauma injuries identified in past literature include fist fights, motor vehicle accidents (head strike, airbag deployment, whiplash injuries, etc.), and falls. [7] [8] There have also been recordings of penetrating orbital projectile-induced OAPA formation (e.g., secondary to bullets or knives). [3]

Other risk factors, such as prior ocular infection, cellulitis, arteriovenous fistulas, and other significant orbital histories , may also be relevant. [9] Comorbidities such as diabetes and cardiovascular disease are important, as patients may be taking anti-platelets or antithrombotic medications, which increase the risk of pseudoaneurysm formation.

Pseudoaneurysm formation can be iatrogenic as well. Recent past surgical and procedural histories such as nasogastric tube placement or oculoplastic, ENT, or skull base surgeries are also helpful in identifying the source of the lesion.[4]

Physical Examination

A comprehensive physical examination of the eye and its surrounding structures is essential. The examiner should focus on visual acuity and ocular motility. Some of the common bedside findings include chemosis, subconjunctival hemorrhage, proptosis, and pulsatile mass around the orbit. Drawing from clinical experience at UMass Memorial Medical Center, the appearance of a pulsatile mass around the orbit emerges as the most indicative sign of OAPA formation.

Intraocular pressure (IOP) can spike suddenly due to an increase in OAPA volume or concomitant retrobulbar hemorrhage. Prompt reduction in IOP (with glaucoma eye drops, canthotomy/cantholysis) should be considered based on available IOP readings and physical examination findings. Communication with the neurosurgery or neuro-critical care team to determine dilation status, then obtaining a dilated funduscopic exam at the earliest convenience, will to identify potential retinal hemorrhages and ischemic injuries.

Diagnostic Procedures

Initial CT angiogram that captured OAPA (yellow arrow) in a patient on apixaban, who initially presented to the ED after tripping and falling with head strike against cement pavement. Trauma team noted pulsatile hematoma and proptosis of the right orbit. OAPA started to appear 24 hours after initial resuscitation.

Previous studies have reported using various imaging techniques such as CT, CTA, MRI, MRV, MRA, or digital subtraction angiography to aid in the diagnosis of pseudoaneurysm[3][10].

CT Head, CT Angiogram

When patient first presents to the emergency room, CT head without contrast and CT angiogram are helpful in identifying intracranial bleeding and vascular lesions. CTA of the head and the neck are also helpful in identifying vascular injuries.

Based on past literature and ED triaging experience, pseudoaneurysm may expand quickly in its early phase of development, which may mimic an expanding hematoma. [11] However, the precise timing of OAPA progression may not manifest until up to 24 hours after the initial injury. Follow-up imaging will be helpful in monitoring the size of progression and determining next step management. Unlike hematomas, pseudoaneurysms will stabilize in size without active contrast extravasation. [11]

MRI, MRA, MRV, and Angiography

Patients with suspected OAPA typically require neuro-ICU level of care. Follow-up advanced imaging such as MRI, MRA, and/or MRV are helpful in confirming the diagnosis and identifying the source of the lesion. Based on past literature research, MRI, MRA, and MRV are all reasonable diagnostic imaging studies for these types of scenarios. Digital subtraction angiography is the most confirmatory imaging yet most invasive. It will help to visualize the lesion in real-time with detailed information on size and hemodynamics. Angiography can be both diagnostic and curative to OAPA. However, it is imperative to engage in thorough discussions about prognosis and complications with patients, as the location of these pseudoaneurysms is in proximity to the central retinal artery, and embolization procedures may carry the risk of permanent vision loss.

Cerebral angiogram demonstrating the one of the two OAPA located at the middle right ophthalmic artery measuring about 7.17 x 5.28 mm without active extravasation or arterial-venous fistula, confirming the diagnosis of OAPA. Due to proximity to the right central retinal artery, endovascular embolization was deferred.

Management

Neuro-Intervention (Endovascular Occlusion)

Prompt endovascular occlusion can prevent complications such as enlargement, hemorrhage, and hematoma formation.[11] This can be achieved by microcatheterization and coil embolization.[7] The process involves navigating an endovascular wire close to the OAPA, followed by the use of a microcatheter to deliver the coil or glue for embolization. Subsequent angiography confirms the completion of coil embolization. These procedures have demonstrated considerable success in occluding OAPA and preventing vision loss, as outlined in the final literature summary table.

If the lesion site is near the origin site of the internal carotid artery, endovascular balloon embolization can be attempted, though this was mostly performed before the availability of coiling. [12] If the proximal ophthalmic artery becomes occluded, branches of the external carotid artery can potentially provide collateral blood flow to the visual system through anastomoses with the extra-orbital branches of the ophthalmic artery.[10] However, there is a risk of permanent vision loss. [13] Additionally, innovative materials have been explored in the occlusion process. One study reported a case of OAPA presenting with persistent epistaxis after removal of a nasogastric tube.[4] This patient was treated with 25% glue (NBCA) injection to embolize the lesion.

Surgery, External Approach

Other than endovascular approach, there have also been limited reported cases of external surgical approaches to surgically remove the pseudoaneurysms. There have been only two reported cases of external surgical approach completed in China and Japan [2]. The surgery in China was performed on a patient who suffered blunt trauma (punch) to the orbit. The surgeons were able to successfully remove the pseudoaneurysm by entering through right cranio-orbital approach with orbital decompression. However, due to the degree of injury to the globe and optic nerve, visual acuity remained at NLP with total ophthalmoplegia [2]. The case in Japan was also performed on a patient who sustained closed head injury from motor vehicle accident. The surgeons were successfully able to resect the pseudoaneurysm through extradural approach. However, visual acuity remained at NLP after surgery.

Conservative Management

Final CT-Angiogram demonstrating the OAPA at the right mid-ophthalmic artery noted in in the initial CT-A and angiography, indicating the pseudoaneurysm has most likely self-embolized and is no longer taking up any contrast.

At this time there has been one recorded conservative management case in approaching OAPA, which was done at UMass Memorial Medical Center. Through a multi-disciplinary care approach involving ophthalmology, neuro-intervention, and neuro-critical care, the patient's pseudoaneurysm self-embolized 72 hours later as demonstrated by serial CT angiogram scans.

Prognosis

OAPAs are dangerous because they can enlarge over time and eventually rupture, resulting in intracranial hemorrhage or hematoma formation.[11] Pseudoaneurysm of the dural portion of the ophthalmic artery can result in subarachnoid hemorrhage with a high risk of re-hemorrhage if left untreated.[7]

Outcomes

Endovascular occlusion cases may have visual improvement with a low rate of central retinal artery occlusion. Timely management of these pseudoaneurysms may successfully reduce the rate of intracranial bleeding and mortalities. Current literature shows a 0% mortality rate among patients with OAPA managed surgically. However, should the initial trauma injury cause significant globe or optic nerve injury, visual outcome may be poor, and patients may eventually require evisceration or enucleation (please refer to the final literature summary table).

Complications

For patients who have undergone successful endovascular embolization, common complications include ptosis and vasospasm. For patients who undergo interventions, but do not recover vision, corneal edema, pain, and proptosis are the most common symptoms. [3]

Cranial nerves are also susceptible to injuries even after pseudoaneurysm embolization or self-embolization, though this effect may be transient. For the one patient who underwent serial CT angiogram monitoring at the University of Massachusetts Memorial Hospital, complete cranial nerve 3 palsy with persistent traumatic pupil of the injured eye was discovered on follow-up 1 month later. The exact etiology of the palsy was unclear but may have been related to transient compression after the traumatic injury. The CN3 palsy spontaneously resolved over about three months; however, the traumatic pupil persisted, and visual acuity only recovered to 20/70 (the unaffected eye was 20/30). Given the patient’s age and cardiovascular risk factors, the decision was made to closely monitor without any more procedural intervention.

Literature Summary

Below is the table listing past literature discussing OAPA, including treatment approaches, surgical outcomes, and complications.

Studies/Cases Case size Year Types of injury Location of OAPA Management Ophthalmic Complications Ophthalmic Outcome
Czyz C, et al.[3] 1 2017 Penetrating bullet intra-orbital Right ophthalmic artery Endovascular occlusion coiling Corneal edema, hyphema, hemorrhagic chemosis NLP, evisceration
Chun H, et al.[11] 1 2007 Motor vehicle accident, blunt head trauma Extra-cranial, left ethmoid branch Endovascular occlusion coiling None Intervention induced vasospasm, self-sealed
Balushi AA, et al.[6] 1 2017 Penetrating bullet intra-orbital Bilateral ophthalmic artery Endovascular occlusion coiling None Clinically stable
Kelly ME, et al.[8] 1 2009 Bicycle accident, blunt head trauma Right ophthalmic artery Endovascular occlusion coiling Failed first attempt Clinically stable
Rosssitti  S, et al. [14] 1 2009 Non-trauma, progressive vision loss Right ophthalmic artery Endovascular occlusion coiling None Clinically stable
Li Y, et al.[2] 1 2017 Fist fight, blunt head trauma Right ophthalmic artery External surgical resection None NLP, ophthalmoplegia
Dolati-Ardejani P, et al.[13] 1 2012 Fall, blunt head trauma Right ophthalmic artery Endovascular embolization coiling Failed procedure, occlusion of the proximal OphA NLP
Liao Zb, et al.[9] 1 2023 Motor vehicle accident, blunt head trauma Right ophthalmic artery Endovascular occlusion coiling None Clinically stable
Selcuk H, et al. [4] 1 2005 Nasogastric tube placement Left ophthalmic artery Endovascular occlusion (NBCA-histoacryl (25%) injection) None Clinically stable
Kikkawa Y, et al. [15] 1 2012 Closed head injury Left ophthalmic artery External surgical resection None NLP
Kanazawa R, et al. [16] 1 2011 Fall, blunt head injury Left ophthalmic artery Endovascular occlusion coiling Redo in 5 months Clinically stable
Hopkins JK, et al. [17] 1 2007 Unclear Ophthalmic artery Endovascular occlusion coiling Unclear Unclear
Shim YS [18] 1 2021 Fall, blunt head injury Right ophthalmic artery origin site Endovascular occlusion coiling None Clinically stable
Deshmukh YR, et al. [19] 1 2005 Iatrogenic, endovascular coil migration Left ophthalmic artery near aneurysm rupture site Surgical ligation Vasospasm, cerebral edema Neurologically intact without focal neuro deficit
Colewell L, Ren Y, et al. UMass Memorial Case (case not yet published) 1 2023 Fall, blunt trauma Right mid-ophthalmic artery Conservative observation Ptosis, traumatic pupil, transient CN3 palsy Clinically stable, visual acuity 20/70 in OD

References

  1. Peick AL, Nichols WK, Curtis JJ, Silver D. Aneurysms and pseudoaneurysms of the superficial temporal artery caused by trauma. J Vasc Surg. 1988;8(5):606-610.
  2. Jump up to: 2.0 2.1 2.2 2.3 Li Y, Song WX, Zhang TM, Fu JD, Sun S, Zhao JZ. Intraorbital traumatic ophthalmic artery aneurysm: case report. Neurol India. 2012 Nov-Dec;60(6):657-60. doi: 10.4103/0028-3886.105213. PMID: 23287341.
  3. Jump up to: 3.0 3.1 3.2 3.3 3.4 Czyz CN, Piehota PG, Strand AT, Stein M. Post-traumatic ophthalmic artery pseudoaneurysm from orbital projectile. Can J Ophthalmol. Aug 2017;52(4):e130-e132. doi:10.1016/j.jcjo.2016.12.007
  4. Jump up to: 4.0 4.1 4.2 4.3 Selcuk H, Soylu N, Albayram S, et al. Endovascular treatment of persistent epistaxis due to pseudoaneurysm formation of the ophthalmic artery secondary to nasogastric tube. Cardiovasc Intervent Radiol. 2005;28(2):242-5. doi:10.1007/pl00021048
  5. Patil NS, Kumar AH, Pamecha V, et al. Cystic artery pseudoaneurysm-a rare complication of acute cholecystitis: review of literature. Surg Endosc. Feb 2022;36(2):871-880. doi:10.1007/s00464-021-08796-1
  6. Jump up to: 6.0 6.1 Al Balushi A, Kitchener J, Edgell RC. Bilateral ophthalmic artery dissecting aneurysms presenting with recurrent epistaxis. J Vasc Interv Neurol. 2017 Jan;9(3):14-16. PMID: 28243345; PMCID: PMC5317286.
  7. Jump up to: 7.0 7.1 7.2 Kelly ME, Fiorella D. Traumatic ophthalmic artery pseudoaneurysm coiled with a steerable microcatheter. Can J Neurol Sci. Jul 2009;36(4):496-9. doi:10.1017/s0317167100007861
  8. Jump up to: 8.0 8.1 Kelly ME, Fiorella D. Traumatic ophthalmic artery pseudoaneurysm coiled with a steerable microcatheter. Can J Neurol Sci. 2009 Jul;36(4):496-9. doi: 10.1017/s0317167100007861. PMID: 19650364.
  9. Jump up to: 9.0 9.1 Liao, Z., Long, X., & Li, J. (2023). Endovascular treatment of pseudoaneurysm of ophthalmic artery with carotid-cavernous fistula: A case report. Interdisciplinary Neurosurgery, 101889.
  10. Jump up to: 10.0 10.1 Hopkins JK, Shaibani A, Ali S, et al. Coil embolization of posttraumatic pseudoaneurysm of the ophthalmic artery causing subarachnoid hemorrhage. Case report. J Neurosurg. Nov 2007;107(5):1043-6. doi:10.3171/JNS-07/11/1043
  11. Jump up to: 11.0 11.1 11.2 11.3 11.4 Chun HJ, Yi HJ. Traumatic extracranial pseudoaneurysm on the peripheral ophthalmic artery presenting as delayed intraparenchymal hematoma: case report. Surg Neurol. 2009 Jun;71(6):701-704. doi:10.1016/j.surneu.2007.11.018.
  12. Tantana S, Pilla TJ, Awwad EE, Smith KR. Balloon embolization of a traumatic carotid-ophthalmic pseudoaneurysm with control of the epistaxis and preservation of the internal carotid artery. AJNR Am J Neuroradiol. 1987 Sep-Oct;8(5):923-924. PMID: 3118688; PMCID: PMC8334483.
  13. Jump up to: 13.0 13.1 Dolati-Ardejani, P., Morrish, W. F., & Wong, J. H. (2012). Posttraumatic Ophthalmic Artery Pseudoaneurysm Presenting Epistaxis: Case Report and Review of the Literature. Journal of Neurological Surgery Part B: Skull Base, 73(S 01), A286.
  14. Rossitti S, Radzinska R, Vigren P, Hillman J. Postoperative ophthalmic artery pseudoaneurysm presenting as monocular blindness: successful endovascular treatment. Klin Neuroradiol. 2009 Aug;19(3):230-234. doi: 10.1007/s00062-009-9003-2. Epub 2009 Jun 19. PMID: 19727584.
  15. Kikkawa Y, Natori Y, Sasaki T. Delayed post-traumatic pseudoaneurysmal formation of the intracranial ophthalmic artery after closed head injury. Case report. Neurol Med Chir (Tokyo). 2012;52(1):41-43. doi: 10.2176/nmc.52.41. PMID: 22278026.
  16. Kanazawa R, Ishihara S, Neki H, Okawara M, Ishihara H, Kohyama S, et al. Embolization Using Endovascular Technique in Acute and Chronic Stages of Traumatic Ophthalmic Artery Aneurysm—Case Report—. Neurol Med Chir (Tokyo). 2011;51(4):289-292.
  17. Hopkins JK, Shaibani A, Ali S, Khawar S, Parkinson R, Futterer S, Russell EJ, Getch C. Coil embolization of posttraumatic pseudoaneurysm of the ophthalmic artery causing subarachnoid hemorrhage. Case report. J Neurosurg. 2007 Nov;107(5):1043-1046. doi: 10.3171/JNS-07/11/1043. PMID: 17977280.
  18. Shim YS. Coil Embolization of Traumatic Ophthalmic Artery Aneurysm: Case Report. Korean J Neurotrauma. 2021 Nov 12;18(1):98-102. doi: 10.13004/kjnt.2022.18.e2. PMID: 35557629; PMCID: PMC9064747.
  19. Deshmukh VR, Klopfenstein JM, Albuquerque FC, Kim LJ, Spetzler RF. Surgical Management of Distal Coil Migration and Arterial Perforation after Attempted Coil Embolization of a Ruptured Ophthalmic Artery Aneurysm: Technical Case Report. Oper Neurosurg. 2006 Apr;58(4):ONS-E379. doi: 10.1227/01.NEU.0000205317.27820.35.
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