Literature DB >> 19164085

Treatment of rabbit elastase-induced aneurysm models by flow diverters: development of quantifiable indexes of device performance using digital subtraction angiography.

Chander Sadasivan1, Liliana Cesar, Jaehoon Seong, Ajay K Wakhloo, Baruch B Lieber.   

Abstract

It has been known for more than a decade that intracranial aneurysms can be successfully treated by deploying a porous meshed tube in the parent vessel of the aneurysm. Such devices are currently called flow diverters because they promote intraneurysmal flow stasis and thrombosis by diverting blood flow away from the aneurysm sac. The objective of this study was to use angiographic data to quantify and compare the performance of flow diverters of original design in successfully occluding an experimental aneurysm model. Three different configurations of a novel flow diverter with varying porosities and pore densities were implanted in 30 rabbit elastase-induced aneurysms. Temporal variations in angiographic contrast intensity within the aneurysms were fit to a mathematical model. Optimized model parameters were supplemented by the angiographic percentage aneurysm occlusion and an angiographic measure of device flexibility to derive composite scores of performance. Angiographic quantification further suggested a parameter, which could be employed to estimate long-term aneurysm occlusion probabilities immediately after treatment. Performance scores showed that the device with a porosity of 70% and pore density of 18 pores/mm (2) performed better than devices with 65% porosity, 14 pores/mm (2), and 70% porosity, 12 pores/mm (2) with relative efficacies of 100%, 84%, and 76%, respectively. The pore density of flow diverters, rather than porosity, may thus be a critical factor modulating device efficacy. A value of the prognostic parameter of less than 30 predicted greater than 97% angiographic aneurysm occlusion over six months with a sensitivity of 73% and specificity of 82%.

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Year:  2009        PMID: 19164085      PMCID: PMC2702458          DOI: 10.1109/TMI.2008.2012162

Source DB:  PubMed          Journal:  IEEE Trans Med Imaging        ISSN: 0278-0062            Impact factor:   10.048


  24 in total

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2.  Measurement and classification of retinal vascular tortuosity.

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3.  Angiographic analysis of blood flow modification in cerebral aneurysm models with a new asymmetric stent.

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4.  Analyzing attributes of vessel populations.

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5.  Sole stenting bypass for the treatment of vertebral artery aneurysms: technical case report.

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7.  Evaluation of intra-aneurysmal blood flow by digital subtraction angiography: blood flow change after coil embolization.

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8.  Angiographic assessment of the performance of flow divertors to treat cerebral aneurysms.

Authors:  Chander Sadasivan; Baruch B Lieber; Liliana Cesar; Laszlo Miskolczi; Jaehoon Seong; Ajay K Wakhloo
Journal:  Conf Proc IEEE Eng Med Biol Soc       Date:  2006

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10.  An original flow diversion device for the treatment of intracranial aneurysms: evaluation in the rabbit elastase-induced model.

Authors:  Chander Sadasivan; Liliana Cesar; Jaehoon Seong; Audrey Rakian; Qing Hao; Fermin O Tio; Ajay K Wakhloo; Baruch B Lieber
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  27 in total

1.  Differential expression of genes in elastase-induced saccular aneurysms with high and low aspect ratios.

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2.  Evaluation of a second-generation self-expanding variable-porosity flow diverter in a rabbit elastase aneurysm model.

Authors:  C N Ionita; S K Natarajan; W Wang; L N Hopkins; E I Levy; A H Siddiqui; D R Bednarek; S Rudin
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Review 3.  Endoluminal scaffolds for vascular reconstruction and exclusion of aneurysms from the cerebral circulation.

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4.  Flow-diverter stenting of post-traumatic bilateral anterior cerebral artery pseudoaneurysm: A case report.

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5.  Angiographic assessment of the efficacy of flow diverter treatment for cerebral aneurysms.

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6.  Angiographic imaging evaluation of patient-specific bifurcation-aneurysm phantom treatment with pre-shaped, self-expanding, flow-diverting stents: feasibility study.

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7.  In vitro angiographic comparison of the flow-diversion performance of five neurovascular stents.

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8.  Hemodynamic analysis of fast and slow aneurysm occlusions by flow diversion in rabbits.

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9.  Comparison of the in vitro hemodynamic performance of new flow diverters for bypass of brain aneurysms.

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Journal:  J Biomech Eng       Date:  2012-08       Impact factor: 2.097

10.  In vitro investigation of contrast flow jet timing in patient-specific intracranial aneurysms.

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