Chinese Journal of Stroke ›› 2021, Vol. 16 ›› Issue (06): 538-543.DOI: 10.3969/j.issn.1673-5765.2021.06.002
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Received:
2021-02-08
Online:
2021-06-20
Published:
2021-06-20
胡航, 曹毅, 鲍娟
作者简介:
曹毅yicao64@126.com
HU Hang, CAO Yi, BAO Juan. Progress of Flow Diverter Devices in Treatment of Large or Giant Intracranial Aneurysms[J]. Chinese Journal of Stroke, 2021, 16(06): 538-543.
胡航, 曹毅, 鲍娟. 血流导向装置治疗颅内大型或巨大型动脉瘤的研究进展[J]. 中国卒中杂志, 2021, 16(06): 538-543.
[1] ONO H,INOUE T,TANISHIMA T,et al. Highflow bypass with radial artery graft followed by internal carotid artery ligation for large or giant aneurysms of cavernous or cervical portion:clinical results and cognitive performance[J]. Neurosurg Rev, 2018,41(2):655-665. [2] ADEEB N,GRIESSENAUER C J,SHALLWANI H, et al. Pipeline embolization device in treatment of 50 unruptured large and giant aneurysms[J/OL]. World Neurosurg,2017,105:232-237[2021-02-08]. https:// doi.org/10.1016/j.wneu.2017.05.128. [3] YE G F,ZHANG M,DENG L,et al. Meta-analysis of the efficiency and prognosis of intracranial aneurysm treated with flow diverter devices[J]. J Mol Neurosci,2016,59(1):158-167. [4] WANG X,BENSON J,JAGADEESAN B,et al. Giant cerebral aneurysms:comparing CTA,MRA, and digital subtraction angiography assessments[J]. J Neuroimaging,2020,30(3):335-341. [5] OH S Y,KIM M J,KIM B S,et al. Treatment for giant fusiform aneurysm located in the cavernous segment of the internal carotid artery using the Pipeline embolization device[J]. J Korean Neurosurg Soc,2014,55(1):32-35. [6] GANDHI S,MASCITELLI J R,ZHAO X C,et al. Two-stage revascularization and clip reconstruction of a giant ophthalmic artery aneurysm: 3-dimensional operative video[J/OL]. Oper Neurosurg,2019,17(3):E110-E111[2021-02-08]. https://doi.org/10.1093/ons/opy383. [7] KUPERSMITH M J,STIEBEL-KALISH H,HUNA-BARON R,et al. Cavernous carotid aneurysms rarely cause subarachnoid hemorrhage or major neurologic morbidity[J]. J Stroke Cerebrovasc Dis,2002,11(1):9-14. [8] KIM Y J,JEUN S S,PARK J H,et al. Thrombosed large middle cerebral artery aneurysm mimicking an intra-axial brain tumor:case report and review of literature[J]. Brain Tumor Res Treat,2015,3(1): 39-43. [9] 贺迎坤,姜卫剑,李天晓,等. 基底动脉干大动脉瘤 及巨大动脉瘤的诊疗研究进展[J]. 中华放射学杂志, 2018,52(1):75-78. [10] KALLMES D F,BRINJIKJI W,CEKIRGE S,et al. Safety and efficacy of the Pipeline embolization device for treatment of intracranial aneurysms:a pooled analysis of 3 large studies[J]. J Neurosurg, 2017,127(4):775-780. [11] NURMINEN V,RAJ R,NUMMINEN J,et al. Flow diversion for internal carotid artery aneurysms: impact of complex aneurysm features and overview of outcome[J/OL]. Clin Neurol Neurosurg,2020, 193:105782[2021-02-08]. https://doi.org/10.1016/ j.clineuro.2020.105782. [12] LOZUPONE E,PIANO M,VALVASSORI L,et al. Flow diverter devices in ruptured intracranial aneurysms:a single-center experience[J]. J Neurosurg,2018,128(4):1037-1043. [13] LIU J M,ZHOU X Y,LI X Y,et al. Parent artery reconstruction for large or giant cerebral aneurysms using the Tubridge flow diverter:a multicenter, randomized,controlled clinical trial(PARAT)[J]. AJNR Am J Neuroradiol,2018,39(5):807-816. [14] YAN P,ZHANG Y P,LIANG F,et al. Comparison of safety and effectiveness of endovascular treatments for unruptured intracranial large or giant aneurysms in internal carotid artery[J/OL]. World Neurosurg,2019,125:e385-e391[2021-02-08]. https://doi.org/10.1016/j.wneu.2019.01.082. [15] KIM B M,SHIN Y S,BAIK M W,et al. Pipeline embolization device for large /giant or fusiform aneurysms:an initial multi-center experience in Korea[J]. Neurointervention,2016,11(1):10-17. [16] PESCHILLO S,CAPORLINGUA A,RESTA M C,et al. Endovascular treatment of large and giant carotid aneurysms with flow-diverter stents alone or in combination with coils:a multicenter experience and long-term follow-up[J]. Oper Neurosurg (Hagerstown),2017,13(4):492-502. [17] OISHI H,TERANISHI K,YATOMI K,et al. Flow diverter therapy using a Pipeline embolization device for 100 unruptured large and giant internal carotid artery aneurysms in a single center in a Japanese population[J]. Neurol Med Chir(Tokyo), 2018,58(11):461-467. [18] WANG Z X,TIAN Z B,LI W Q,et al. Variation of mass effect after using a flow diverter with adjunctive coil embolization for symptomatic unruptured large and giant intracranial aneurysms[J/ OL]. Front Neurol,2019,10:1191[2021-02-08]. https://doi.org/10.3389/fneur.2019.01191. [19] ZHOU Y,YANG P F,FANG Y B,et al. A novel flow-diverting device(Tubridge)for the treatment of 28 large or giant intracranial aneurysms:a singlecenter experience[J]. AJNR Am J Neuroradiol,2014, 35(12):2326-2333. [20] 李志清,梁国标,高旭,等. Tubridge支架治疗颅内大 型和巨大型动脉瘤的初步探讨[J]. 中华神经外科杂 志,2015,31(11):1156-1158. [21] SHIN D S,CARROLL C P,ELGHAREEB M,et al. The evolution of flow-diverting stents for cerebral aneurysms; historical review,modern application, complications,and future direction[J]. J Korean Neurosurg Soc,2020,63(2):137-152. [22] 周宇,杨鹏飞,李强,等. 血流导向装置在颅内动脉瘤治疗中有效性和安全性的Meta分析[J]. 中华神经 外科杂志,2017,33(9):951-958. [23] BHATIA K D,KORTMAN H,ORRU E,et al. Periprocedural complications of second-generation flow diverter treatment using Pipeline Flex for unruptured intracranial aneurysms:a systematic review and meta-analysis[J]. J Neurointerv Surg, 2019,11(8):817-824. [24] 尤为,刘鹏,李佑祥. Pipeline血流导向装置治疗颅内 动脉瘤出血性并发症的研究进展[J]. 中华神经外科 杂志,2019,35(12):1277-1281. [25] KALLMES D F,HANEL R,LOPPES D,et al. International retrospective study of the Pipeline embolization device:a multicenter aneurysm treatment study[J]. AJNR Am J Neuroradiol,2015, 36(1):108-115. [26] CHONG W,ZHANG Y,QIAN Y,et al. Computational hemodynamics analysis of intracranial aneurysms treated with flow diverters: correlation with clinical outcomes[J]. AJNR Am J Neuroradiol,2014,35(1):136-142. [27] TATESHIMA S,JONES J G,BASTO F M,et al. Aneurysm pressure measurement before and after placement of a Pipeline stent:feasibility study using a 0. 014 inch pressure wire for coronary intervention[J]. J Neurointerv Surg,2016,8(6): 603-607. [28] BRUNOZZI D,SHAKUR S F,HUSSEIN A E,et al. Middle cerebral artery flow velocity increases more in patients with delayed intraparenchymal hemorrhage after Pipeline[J]. J Neurointerv Surg, 2018,10(3):249-251. [29] 李航,白卫星,贺迎坤,等. PipelineTM栓塞装置治疗 颅内动脉瘤术后并发症研究进展[J]. 介入放射学杂 志,2017,26(8):760-764. [30] BRINJIKJI W,LANZINO G,CLOFT H J,et al. Risk factors for ischemic complications following Pipeline embolization device treatment of intracranial aneurysms:results from the IntrePED Study[J]. AJNR Am J Neuroradiol,2016,37(9): 1673-1678. [31] 贺迎坤,李天晓,李航,等. Pipeline血流导向装置治 疗国人大型脑动脉瘤围手术期并发症分析[J]. 介入 放射学杂志,2018,27(8):713-716. [32] HU P,QIAN Y,ZHANG Y,et al. Blood flow reduction of covered small side branches after flow diverter treatment:a computational fluid hemodynamic quantitative analysis[J]. J Biomech, 2015,48(6):895-898. [33] 方亦斌,吕楠,周宇,等. Tubridge血流导向装置在治 疗颅内动脉瘤中覆盖分支血管的安全性分析[J]. 中 华神经外科杂志,2019,35(10):1017-1021. [34] MEYERS P M,COON A L,KAN P T,et al. SCENT Trial[J]. Stroke,2019,50(6):1473-1479. [35] BRIGANTI F,LEONE G,MARSEGLIA M,et al. Endovascular treatment of cerebral aneurysms using flow-diverter devices:a systematic review[J]. Neuroradiol J,2015,28(4):365-375. [36] SILVA M A,SEE A P,KHANDELWAL P,et al. Comparison of flow diversion with clipping and coiling for the treatment of paraclinoid aneurysms in 115 patients[J/OL]. J Neurosurg,2018,1:1-8[2021- 02-08]. https://doi.org/10.3171/2018.1.jns171774. [37] 胡航,曹毅,鲍娟. 血流导向装置治疗大型或巨大 型颅内动脉瘤的meta分析[J]. 国际脑血管病杂志, 2020,28(12):916-921. [38] JING L K,ZHONG J R,LIU J,et al. Hemodynamic effect of flow diverter and coils in treatment of large and giant intracranial aneurysms[J/OL]. World Neurosurg,2016,89:199-207[2021-02-08]. https://doi.org/10.1016/j.wneu.2016.01.079. [39] CHEN C J,PATIBANDLA M R,PARK M S,et al. Regrowth of a large intracranial aneurysm after onlabel use of the Pipeline embolization device[J]. J Neurosci Rural Pract,2019,10(1):142-144. [40] DAMIANO R J,TUTINO V M,PALIWAL N, et al. Compacting a single flow diverter versus overlapping flow diverters for intracranial aneurysms: a computational study[J]. AJNR Am J Neuroradiol, 2017,38(3):603-610. |
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