Chinese Journal of Stroke ›› 2018, Vol. 13 ›› Issue (10): 1051-1056.DOI: 10.3969/j.issn.1673-5765.2018.10.010
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Received:
2018-08-28
Online:
2018-10-20
Published:
2018-10-20
陈俊凡,杨新健,刘健
通讯作者:
刘健 jianliu_ns@163.com
基金资助:
国家重点研发计划(2016YFC1300800)
国家自然科学基金(81220108007,81371315,81471167,81671139)
首都卫生发展科研专项(2018-4-1077)
CHEN Jun-Fan, YANG Xin-Jian, LIU Jian. Influence of Flow Diverter Implantation on Hemodynamics in Intracranial Aneurysms Treatment[J]. Chinese Journal of Stroke, 2018, 13(10): 1051-1056.
陈俊凡, 杨新健, 刘健. 血流导向装置在颅内动脉瘤治疗中应用的血流动力学研究进展[J]. 中国卒中杂志, 2018, 13(10): 1051-1056.
[1] 杨鹏飞,刘建民,黄清海,等. 新型血流导向装置Tubridge治疗颅内动脉瘤的初步经验[J]. 介入放射学杂志,2011,20(5):357-362.[2] LUBICZ B,COLLIGNON L,LEFRANC F,et al.Circumferential and fusiform intracranial aneurysms:reconstructive endovascular treatment with selfexpandablestents[J]. Neuroradiology,2008,50(6):499-507.[3] GONZALEZ N R,DUCKWILER G,JAHAN R,etal. Challenges in the endovascular treatment of giantintracranial aneurysms[J]. Neurosurgery,2008,62(6 Suppl 3):1324-1335.[4] BECSKE T,POTTS M B,SHAPIRO M,et al.Pipeline for uncoilable or failed aneurysms:3-yearfollow-up results[J]. J Neurosurg,2017,127(1):81-88.[5] KALLMES D F,HANEL R,LOPES D,et al.International retrospective study of the pipelineembolization device:a multicenter aneurysmtreatment study[J]. AJNR Am J Neuroradiol,2015,36(1):108-115.[6] KALLMES D F,BRINJIKJI W,BOCCARDI E,etal. Aneurysm Study of Pipeline in an Observational Registry(ASPIRe)[J]. Interv Neurol,2016,5(1-2):89-99.[7] PIANO M,VALVASSORI L,QUILICI L,etal. Midterm and long-term follow-up of cerebralaneurysms treated with flow diverter devices:asingle-center experience[J]. J Neurosurg,2013,118(2):408-416.[8] BERGE J,BIONDI A,MACHI P,et al. Flowdivertersilk stent for the treatment of intracranialaneurysms:1-year follow-up in a multicenterstudy[J]. AJNR Am J Neuroradiol,2012,33(6):1150-1155.[9] ARRESE I,SARABIA R,PINTADO R,etal. Flow-diverter devices for intracranialaneurysms:systematic review and meta-analysis[J].Neurosurgery,2013,73(2):193-200.[10] BRINJIKJI W,MURAD M H,LANZINO G,et al.Endovascular treatment of intracranial aneurysmswith flow diverters:a meta-analysis[J]. Stroke,2013,44(2):442-447.[11] PHILLIPS T J,WENDEROTH J D,PHATOUROSC C,et al. Safety of the pipeline embolization devicein treatment of posterior circulation aneurysms[J].AJNR Am J Neuroradiol,2012,33(7):1225-1231.[12] RINGELSTEIN A,SCHLAMANN M,GOERICKES L,et al. 3-year follow-up after endovascularaneurysm treatment with Silk® flow diverter[J].Rofo,2013,185(4):328-332.[13] SAATCI I,YAVUZ K,OZER C,et al. Treatmentof intracranial aneurysms using the pipeline flowdiverterembolization device:a single-centerexperience with long-term follow-up results[J].AJNR Am J Neuroradiol,2012,33(8):1436-1446.[14] LIU J,ZHOU Y,LI Y,et al. Parent arteryreconstruction for large or giant cerebral aneurysmsusing the Tubridge flow diverter:a multicenter,randomized,controlled clinical trial(PARAT)[J].AJNR Am J Neuroradiol,2018,39(5):807-816.[15] HUANG Q,XU J,CHENG J,et al. Hemodynamicchanges by flow diverters in rabbit aneurysm models:a computational fluid dynamic study based on microcomputedtomography reconstruction[J]. Stroke,2013,44(7):1936-1941.[16] LARRABIDE I,GEERS A J,MORALES HG,et al. Effect of aneurysm and ICA morphologyon hemodynamics before and after flow divertertreatment[J]. J Neurointerv Surg,2015,7(4):272-280.[17] WANG C,TIAN Z,LIU J,et al. Flow diverter effectof LVIS stent on cerebral aneurysm hemodynamics:a comparison with Enterprise stents and the Pipelinedevice[J]. J Transl Med,2016,14(1):199.[18] MA D,XIANG J,CHOI H,et al. Enhancedaneurysmal flow diversion using a dynamic pushpulltechnique:an experimental and modelingstudy[J]. AJNR Am J Neuroradiol,2014,35(9):1779-1785.[19] DAMIANO R,TUTINO V,PALIWAL N,etal. Compacting a single flow diverter versusoverlapping flow diverters for intracranial aneurysms:a computational study[J]. AJNR Am J Neuroradiol,2017,38(3):603-610.[20] KULCSAR Z,AUGSBURGER L,REYMOND P,etal. Flow diversion treatment:intra-aneurismal bloodflow velocity and WSS reduction are parametersto predict aneurysm thrombosis[J]. Acta Neurochir(Wien),2012,154(10):1827-1834.[21] KARMONIK C,CHINTALAPANI G,REDELT,et al. Hemodynamics at the ostium of cerebralaneurysms with relation to post-treatment changesby a virtual flow diverter:a computational fluiddynamics study[J/OL]. Conf Proc IEEE Eng MedBiol Soc,2013,2013:1895-1898. https://doi.org/10.1109/EMBC.2013.6609895.[22] CEBRAL J R,MUT F,RASCHI M,et al. Analysisof hemodynamics and aneurysm occlusion afterflow-diverting treatment in rabbit models[J]. AJNRAm J Neuroradiol,2014,35(8):1567-1573.[23] CHUNG B,MUT F,KADIRVEL R,et al.Hemodynamic analysis of fast and slow aneurysmocclusions by flow diversion in rabbits[J]. JNeurointerv Surg,2015,7(12):931-935.[24] MUT F,RASCHI M,SCRIVANO E,et al.Association between hemodynamic conditions andocclusion times after flow diversion in cerebralaneurysms[J]. J Neurointerv Surg,2015,7(4):286-290.[25] ZHANG Y,CHONG W,QIAN Y. Investigation ofintracranial aneurysm hemodynamics following flowdiverter stent treatment[J]. Med Eng Phys,2013,35(5):608-615.[26] XIANG J,DAMIANO R J,LIN N,et al. Highfidelityvirtual stenting:modeling of flow diverterdeployment for hemodynamic characterization ofcomplex intracranial aneurysms[J]. J Neurosurg,2015,123(4):832-840.[27] TRIVELATO F,SALLES REZENDE M,ULHÔA A,et al. Occlusion rates of intracranialaneurysms treated with the Pipeline embolizationdevice:the role of branches arising from the sac[J/OL]. J Neurosurg,2018,6:1-7. http://thejns.org/doi/10.3171/2017.10.JNS172175. [28] LIN N,BROUILLARD A M,KRISHNA C,etal. Use of coils in conjunction with the pipelineembolization device for treatment of intracranialaneurysms[J]. Neurosurgery,2015,76(2):142-149.[29] CEBRAL J R,MUT F,RASCHI M,et al. Aneurysmrupture following treatment with flow-divertingstents:computational hemodynamics analysis oftreatment[J]. AJNR Am J Neuroradiol,2011,32(1):27-33.[30] TULAMO R,FRÖSEN J,HERNESNIEMI J,etal. Inflammatory changes in the aneurysm wall:areview[J]. J Neurointerv Surg,2010,2(2):120-130.[31] FRÖSEN J,PIIPPO A,PAETAU A,et al.Remodeling of saccular cerebral artery aneurysmwall is associated with rupture:histological analysisof 24 unruptured and 42 ruptured cases[J]. Stroke,2004,35(10):2287-2293.[32] KULCSÁR Z,HOUDART E,BONAFÉ A,et al.Intra-aneurysmal thrombosis as a possible causeof delayed aneurysm rupture after flow-diversiontreatment[J]. AJNR Am J Neuroradiol,2011,32(1):20-25.[33] TOMAS C,BENAISSA A,HERBRETEAU D,etal. Delayed ipsilateral parenchymal hemorrhagefollowing treatment of intracranial aneurysms withflow diverter[J]. Neuroradiology,2014,56(2):155-161.[34] CRUZ J,CHOW M,O'KELLY C,et al. Delayedipsilateral parenchymal hemorrhage following flowdiversion for the treatment of anterior circulationaneurysms[J]. AJNR Am J Neuroradiol,2012,33(4):603-608.[35] SHAKUR S,ALETICH V,AMIN-HANJANI S,et al. Quantitative assessment of parent vessel anddistal intracranial hemodynamics following pipelineflow diversion[J]. Interv Neuroradiol,2017,23(1):34-40.[36] BRUNOZZI D,SHAKUR S,CHARBEL F,et al.Middle cerebral artery pressure changes followingPipeline flow diversion[J]. Interv Neuroradiol,2018,24(3):297-302.[37] BRUNOZZI D,SHAKUR S,HUSSEIN A,etal. Middle cerebral artery flow velocity increasesmore in patients with delayed intraparenchymalhemorrhage after Pipeline[J]. J Neurointerv Surg,2018,10(3):249-251.[38] JING L,ZHONG J,LIU J,et al. Hemodynamiceffect of flow diverter and coils in treatment oflarge and giant intracranial aneurysms[J/OL].World Neurosurg,2016,89:199-207. https://doi.org/10.1016/j.wneu.2016.01.079.[39] DAMIANO R J,MA D,XIANG J,et al. Finiteelement modeling of endovascular coiling andflow diversion enables hemodynamic predictionof complex treatment strategies for intracranialaneurysm[J]. J Biomech,2015,48(12):3332-3340. |
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