Treatment of broad-based intracranial aneurysms with low profile braided stents: a single center analysis of 101 patients

2019 ◽  
Vol 11 (6) ◽  
pp. 591-597 ◽  
Author(s):  
Tanja Djurdjevic ◽  
Victoria Young ◽  
Rufus Corkill ◽  
Dennis Briley ◽  
Wilhelm Küker

Background and purposeLow profile braided stents have facilitated the endovascular treatment of broad-based intracranial aneurysms.MethodsBetween 2013 and June 2018, we attempted 104 Leo baby stent placements in 101 patients. Locations were the anterior communicating artery (AcomA) (37 aneurysms, 35.6%), middle cerebral artery (MCA) bifurcation (29 aneurysms, 27.9%) and basilar artery (23aneurysms, 22.1%). Mean neck size was 4.9 mm (2.2–8.2). 60 aneurysms were incidental, 31 of 37 recurrent aneurysms had ruptured before.ResultsStent deployment was successful in 89.4% of cases. Common reasons for failure were inability to access the parent artery (n=5) or to deploy the stent across the aneurysm neck (n=4). Two patients had poor outcomes within 24 hours. One patient developed a brain hemorrhage caused by guide wire perforation (MRS 5), the other an early thrombotic stent occlusion (MRS 4). No patient died. Nine (8.7%) patients experienced transient neurological deficits with ischemic lesions on diffusion weighted imaging (DWI). Initially Raymond-Roy class 1 occlusion was achieved in 23 aneurysms (24.7%), class 2 occlusion in 40 (43%), class 3a occlusion in 14 (15.0%), and 3b occlusion in 16 aneurysms (17.2%). Follow-up imaging in 87 patients showed stable or improved occlusion grades in 76%. Six patients required retreatment while the rest were managed conservatively. Four delayed stent occlusions occurred in three patients, with severe morbidity in one patient (MRS 5). There were no aneurysm ruptures or deaths.ConclusionStent assisted treatment of broad-based aneurysms with the Leo baby stent is safe and effective. The frequency of delayed thrombotic complications is low and similar to other stents.

2009 ◽  
Vol 110 (1) ◽  
pp. 7-13 ◽  
Author(s):  
Eric S. Nussbaum ◽  
Michael T. Madison ◽  
James K. Goddard ◽  
Jeffrey P. Lassig ◽  
Leslie A. Nussbaum

Object The authors report the management and outcomes of 55 patients with 60 intracranial aneurysms arising distal to the major branch points of the circle of Willis and vertebrobasilar system. Methods Between July 1997 and December 2006, the authors' neurovascular service treated 2021 intracranial aneurysms in 1850 patients. The database was reviewed retrospectively to identify peripherally located intracranial aneurysms. Aneurysms that were mycotic and aneurysms that were associated with either an arteriovenous malformation or an atrial myxoma were excluded from review. Results The authors encountered 60 peripheral intracranial aneurysms in 55 patients. There were 42 small, 7 large, and 11 giant lesions. Forty-one (68%) were unruptured, and 19 (32%) had bled. Fifty-three aneurysms were treated surgically by using direct clip reconstruction in 26, trapping or proximal occlusion with distal revascularization in 21, excision with end-to-end anastomosis in 3, and circumferential wrap/clip reconstruction in 3. Coils were used to treat 6 aneurysms, and 1 was treated by endovascular parent artery occlusion. Overall, 49 patients had good outcomes, 4 were left with new neurological deficits, and 2 died. Conclusions Peripherally situated intracranial aneurysms are rare lesions that present unique management challenges. Despite the fact that in the authors' experience these lesions were rarely treatable with simple clipping of the aneurysm neck or endovascular coil occlusion, preservation of the parent artery was possible in most cases, and the majority of patients had a good outcome.


Neurosurgery ◽  
2006 ◽  
Vol 58 (3) ◽  
pp. 443-450 ◽  
Author(s):  
Bernhard Kis ◽  
Werner Weber ◽  
Peter Berlit ◽  
Dietmar Kühne

Abstract OBJECTIVE: Endovascular coil embolization of saccular intracranial aneurysms is safe and effective, but long-term results are dissatisfying. Reconstructive treatments using stents improve occlusion rate and protect parent vessels. We present data on our experience with a new self-expanding stent manufactured with braided nitinol wires. METHODS: Twenty-five saccular, complex, and broad-necked intracranial aneurysms in 21 patients were treated electively. They were located at the internal carotid artery (10), basilar trunk (5), cavernous carotid artery (4), basilar tip (2), anterior cerebral artery (2), anterior communicating artery (1), and middle cerebral artery (1). Eleven aneurysms exhibited recanalization after primary endovascular treatment without stent. RESULTS: Stent deployment was successful in 24 lesions, and additional coil embolization was performed in 23. No permanent neurological deficits were encountered consequent to endovascular procedure. Complete or partial occlusion immediately after stent deployment was achieved in 19 aneurysms, whereas no immediate coil embolization was chosen in 6 cases. There were two thromboembolic events related to the deployment of the Leo stent, one failure of stent deployment, difficulties in stent positioning in three cases, and one asymptomatic parent artery occlusion after 7 months. Follow-up (available in 18 patients and 21 aneurysms and obtained at 3–12 mo; average, 5 mo) revealed patent stents in the remaining cases. Angiographic recurrences arose in three lesions, which were retreated without complications. CONCLUSION: Primary and recurrence treatment of saccular and broad-necked intracranial aneurysms using the Leo stent is feasible and effective. No permanent neurological deficits were associated with stent placement. Short-term follow-up identified intact parent arteries and stable occlusion rates in the majority of cases.


2021 ◽  
pp. 197140092110269
Author(s):  
Kenji Yatomi ◽  
Yumiko Mitome-Mishima ◽  
Takashi Fujii ◽  
Kohsuke Teranishi ◽  
Hidenori Oishi ◽  
...  

Purpose Among all stents available for neuroendovascular therapy, the low-profile visible intraluminal support stent bears the highest metal coverage ratio. We deployed a low-profile visible intraluminal support stent with a delivery wire or/and microcatheter system push action to shorten the low-profile visible intraluminal support stent and thus achieve a flow diversion effect. We report our single-institution experience with the use of low-profile visible intraluminal support stents for intentionally shortened deployment (shortening group) and non-shortened deployment (non-shortening group) for unruptured intracranial aneurysms. Methods We retrospectively reviewed the medical records of 130 patients with 131 intracranial aneurysms who were treated with low-profile visible intraluminal support stent-assisted coil embolization from February 2016–January 2019. All perioperative complications were noted. Every 6 months, we re-examined the patients with cerebral angiography or magnetic resonance angiography. The outcomes of aneurysm occlusion were evaluated by the modified Raymond–Roy occlusion classification. We used the finite element method and computational fluid dynamics to investigate the hemodynamics after shortened low-profile visible intraluminal support stent deployment. Results Immediately after treatment, the modified Raymond-Roy occlusion classification was significantly better in the shortening group than in the non-shortening group ( p<0.05). The latest angiographic outcomes showed the same tendency. Hemodynamic analysis by computational fluid dynamics suggested an adequate flow diversion effect with the use of our intentional shortening method. Conclusions Stent-assisted coil embolization using this technique showed good results of a high complete occlusion rate and low complication rate. These findings suggest that shortened low-profile visible intraluminal support stent deployment yields a flow diversion effect and may lead to early intra-aneurysmal thrombus formation.


Stroke ◽  
2014 ◽  
Vol 45 (suppl_1) ◽  
Author(s):  
Ajay K Wakhloo ◽  
Pedro Lylyk ◽  
Joost de Vries ◽  
Matthew J Gounis ◽  
Alexandra Biondi ◽  
...  

Objective: Validated through experimental studies a new generation of flow diverters (Surpass™ FD) was evaluated for treatment of intracranial aneurysms (IA). We present our multicenter preliminary clinical and angiographic experience. METHODS: To achieve the calculated flow disruption between the parent artery and aneurysm for thrombosis, single FDs were placed endovascularly in parent arteries. Implants measured 2.5-5.3mm in diameter with a length of 10-80mm. Patients were enrolled harboring a wide range large and giant wide-neck, fusiform and multiple small and blister-type aneurysm. Clinical and angiographic follow-up were performed at 1-3, 6, and 12 months. RESULTS: A total of 186 consecutive IA in 161 patients (mean age 57.1 years) were treated at 33 centers. Fifty-three aneurysms were smaller than 5 mm, 64 were 5-9.9mm in diameter, 47 were 10-20mm in diameter, and 22 were larger than 20mm (10.4±0.7mm, neck size 6.0±0.5mm [mean±SEM]) . The aneurysms originated in 63.4% from the internal carotid artery; 22% and 14.5% of the lesions were located in the anterior circulation distal to Circle of Willis and posterior circulation respectively. Technical success was achieved in 182 aneurysms (98%); average number of devices used per aneurysm was 1.05. Permanent morbidity and mortality during the follow-up period of mean 8.4months (range 1-24 months) including periprocedural complications for patients with aneurysms of the anterior circulation were encountered in 5 (3.7%) and 2 (1.5 %) patients respectively and 1 (3.7%) and 4 (14.8%) respectively for patients with aneurysms of the posterior circulation location. One-hundred-ten patients (70.5%) harboring 127 (70.2%) were available for clinical and angiographic follow-up and showed a complete or near complete aneurysm occlusion in 63 (81.8%) of the ICA. Aneurysms of the ICA≥10mm that were completely covered by FD and not previously stent-treated with a minimum of 6 months follow-up available in 16 patients showed a complete obliteration in 81.3% (n=13) and >90% occlusion in remaining 3 patients. CONCLUSION: Preliminary data demonstrate high safety and efficacy of a new generation of FD for a wide range of IA of the anterior and posterior circulation with a single implant.


2018 ◽  
Vol 10 (7) ◽  
pp. 682-686 ◽  
Author(s):  
Matthew J Koch ◽  
Christopher J Stapleton ◽  
Scott B Raymond ◽  
Susan Williams ◽  
Thabele M Leslie-Mazwi ◽  
...  

IntroductionThe LVIS Blue is an FDA-approved stent with 28% metallic coverage that is indicated for use in conjunction with coil embolization for the treatment of intracranial aneurysms. Given a porosity similar to approved flow diverters and higher than currently available intracranial stents, we sought to evaluate the effectiveness of this device for the treatment of intracranial aneurysms.MethodsWe performed an observational single-center study to evaluate initial occlusion and occlusion at 6-month follow-up for patients treated with the LVIS Blue in conjunction with coil embolization at our institution using the modified Raymond–Roy classification (mRRC), where mRRC 1 indicates complete embolization, mRRC 2 persistent opacification of the aneurysm neck, mRRC 3a filling of the aneurysm dome within coil interstices, and mRRC 3b filling of the aneurysm dome.ResultsSixteen aneurysms were treated with the LVIS Blue device in conjunction with coil embolization with 6-month angiographic follow-up. Aneurysms were treated throughout the intracranial circulation: five proximal internal carotid artery (ICA) (ophthalmic or communicating segments), two superior cerebellar artery, two ICA terminus, two anterior communicating artery, two distal middle cerebral artery, one posterior inferior cerebellar artery, and two basilar tip aneurysms. Post-procedurally, there was one mRRC 1 closure, five mRRC 2 closures, and 10 mRRC 3a or 3b occlusion. At follow-up, all the mRRC 1 and mRRC 3a closures, 85% of the mRRC 3b closures and 75% of the mRRC 2 closures were stable or improved to an mRRC 1 or 2 at follow-up.ConclusionsThe LVIS Blue represents a safe option as a coil adjunct for endovascular embolization within both the proximal and distal anterior and posterior circulation.


2017 ◽  
Vol 127 (6) ◽  
pp. 1326-1332 ◽  
Author(s):  
Nancy J. Edwards ◽  
Wesley H. Jones ◽  
Aditya Sanzgiri ◽  
Juan Corona ◽  
Mark Dannenbaum ◽  
...  

OBJECTIVEThe most frequent procedural complication of the endovascular treatment of intracranial aneurysms is a thromboembolic event (TEE); in a subset of patients, such events will cause permanent neurological disability. In patients with unruptured aneurysms, increasing evidence supports the use of periprocedural antiplatelet therapy to prevent TEEs. The object of this study was to evaluate whether patients with ruptured aneurysms and subarachnoid hemorrhage would also benefit from periprocedural antiplatelet therapy.METHODSThe authors reviewed a prospective registry of 169 patients with endovascularly treated intracranial aneurysms to delineate angiographic features associated with periprocedural TEEs. They then performed a controlled before-and-after study in 79 patients with ruptured aneurysms who were deemed to be at high risk for TEEs (for example, patients with at least 1 angiographic feature associated with TEEs) to evaluate whether selective aspirin administration would reduce the rate of periprocedural thromboembolism without increasing major hemorrhagic complications.RESULTSSix angiographic features were associated with periprocedural TEEs in the study cohort: wide aneurysm neck, coil or loop protrusion, small parent artery diameter, an incorporated branch, intraprocedural thrombus formation, and intracranial parent vessel atherosclerosis. Aspirin administration to high-risk patients significantly decreased the rate of periprocedural TEEs, from 53.8% in the control group to 10.6% in the aspirin-treated group (p = 0.001). The reduction in TEEs in the aspirin-treated group continued to be statistically significant even when adjusted for age, sex, cardiovascular risk factors (smoking, diabetes, hypertension, dyslipidemia, coronary artery disease), and factors associated with TEEs in other large studies (wide aneurysm neck, aneurysm size ≥ 10 mm), with an adjusted OR of 0.16 (95% CI 0.03–0.8). There were no major systemic hemorrhagic complications, and aspirin did not increase the risk of aneurysm rebleeding, symptomatic intracranial hemorrhage, or major external ventricular drain (EVD)–associated hemorrhage (p = 0.3), though there was an increase in asymptomatic, minor (< 1 cm) EVD-associated hemorrhage in the aspirin-treated group (p = 0.02).CONCLUSIONSThe study findings suggest that for ruptured aneurysm patients with high-risk features, antiplatelet therapy can significantly reduce the rate of periprocedural TEE without increasing major systemic or intracranial hemorrhages.


2019 ◽  
Vol 18 (1) ◽  
pp. E5-E6
Author(s):  
Benjamin K Hendricks ◽  
Robert F Spetzler

Abstract Giant intracranial aneurysms pose a significant surgical challenge because of the associated difficulty in achieving adequate visualization of the parent artery and aneurysm neck. This patient had an incidentally identified giant anterior communicating artery aneurysm. An orbitozygomatic craniotomy was performed for aneurysm exposure and aneurysmal neck dissection. Aneurysm dome opening and thrombectomy was performed to debulk the aneurysmal mass, which facilitated subsequent aneurysmal neck visualization. Sequential utilization of temporary clips of the bilateral A1 and bilateral A2 vessels reduced hemorrhage during thrombectomy. Multiple permanent clips were applied along the dissected aneurysm neck to permit occlusion. A small fracture of the aneurysm neck was identified, and cotton was applied with subsequent tamponade utilizing a fenestrated clip to maintain hemostasis. Indocyanine green fluoroscopy was used to verify parent and distant vessel patency. The patient gave informed consent for surgery and video recording. Institutional review board approval was deemed unnecessary. Used with permission from Barrow Neurological Institute, Phoenix, Arizona.


2017 ◽  
Vol 10 (3) ◽  
pp. 290-296 ◽  
Author(s):  
P Berg ◽  
S Saalfeld ◽  
S Voß ◽  
T Redel ◽  
B Preim ◽  
...  

BackgroundComputational fluid dynamics (CFD) blood flow predictions in intracranial aneurysms promise great potential to reveal patient-specific flow structures. Since the workflow from image acquisition to the final result includes various processing steps, quantifications of the individual introduced potential error sources are required.MethodsThree-dimensional (3D) reconstruction of the acquired imaging data as input to 3D model generation was evaluated. Six different reconstruction modes for 3D digital subtraction angiography (DSA) acquisitions were applied to eight patient-specific aneurysms. Segmentations were extracted to compare the 3D luminal surfaces. Time-dependent CFD simulations were carried out in all 48 configurations to assess the velocity and wall shear stress (WSS) variability due to the choice of reconstruction kernel.ResultsAll kernels yielded good segmentation agreement in the parent artery; deviations of the luminal surface were present at the aneurysm neck (up to 34.18%) and in distal or perforating arteries. Observations included pseudostenoses as well as noisy surfaces, depending on the selected reconstruction kernel. Consequently, the hemodynamic predictions show a mean SD of 11.09% for the aneurysm neck inflow rate, 5.07% for the centerline-based velocity magnitude, and 17.83%/9.53% for the mean/max aneurysmal WSS, respectively. In particular, vessel sections distal to the aneurysms yielded stronger variations of the CFD values.ConclusionsThe choice of reconstruction kernel for DSA data influences the segmentation result, especially for small arteries. Therefore, if precise morphology measurements or blood flow descriptions are desired, a specific reconstruction setting is required. Furthermore, research groups should be encouraged to denominate the kernel types used in future hemodynamic studies.


1989 ◽  
Vol 71 (4) ◽  
pp. 512-519 ◽  
Author(s):  
Randall T. Higashida ◽  
Van V. Halbach ◽  
Leslie D. Cahan ◽  
Grant B. Hieshima ◽  
Yoshifumi Konishi

✓ Treatment of complex and surgically difficult intracranial aneurysms of the posterior circulation is now being performed with intravascular detachable balloon embolization techniques. The procedure is carried out under local anesthesia from a transfemoral arterial approach, which allows continuous neurological monitoring. Under fluoroscopic guidance, the balloon is propelled by blood flow through the intracranial circulation and, in most cases, can be guided directly into the aneurysm, thus preserving the parent vessel. If an aneurysm neck is not present, test occlusion of the parent vessel is performed and, if tolerated, the balloon is detached. Twenty-six aneurysms in 25 patients have been treated by this technique. The aneurysms have involved the distal vertebral artery (five cases), the mid-basilar artery (six cases), the distal basilar artery (11 cases), and the posterior cerebral artery (four cases). The aneurysms varied in size and included three small (< 12 mm), 15 large (12 to 25 mm), and eight giant (> 25 mm). Fifteen patients (60%) presented with hemorrhage and 10 patients (40%) with mass effect. In 17 cases (65%) direct balloon embolization of the aneurysm was achieved with preservation of the parent artery. In nine cases (35%), because of aneurysm location and size, occlusion of the parent vessel was performed. Complications from therapy included three cases of transient cerebral ischemia which resolved, three cases of stroke, and five deaths due to immediate or delayed aneurysm rupture. The follow-up period has ranged from 2 months to 43 months (mean 22.5 months). In cases where posterior circulation aneurysms have been difficult to treat by conventional neurosurgical techniques, intravascular detachable balloon embolization may offer an alternative therapeutic option.


Author(s):  
Robert M. King ◽  
Juyu Chueh ◽  
Imramsjah M. J. van der Bom ◽  
Christine F. Silva ◽  
Ajay K. Wakhloo ◽  
...  

Stent implantation has expanded the endovascular treatment of intracranial aneurysms to those with widenecks, that were previously unfavorable to coil embolization. Past studies have found that several mechanisms including stent-induced endothelization and hemodynamic changes due to alteration in vessel geometry may contribute to stable clot formation within the aneurysmal sac and aid in aneurismal healing [1,2]. Change in the angle of the parent arteries after stent-assisted coil embolization of anterior communicating artery (Acom) aneurysms has been measured on projection angiograms; however, use of 2D angiographic datasets to describe changes of vessel angle in 3D may result in significant error. The goal of this study was to quantitatively characterize the change in the radius of curvature (RC) of the parent artery induced by the implantation of an intracranial stent in 3D.


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