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首页> 外文期刊>Journal of endovascular therapy: an official journal of the International Society of Endovascular Specialists >Obstruction of pores in distal protection filters and angiographically-documented flow impairment during carotid artery stenting.
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Obstruction of pores in distal protection filters and angiographically-documented flow impairment during carotid artery stenting.

机译:远端保护滤器中的孔阻塞和颈动脉支架置入过程中血管造影记录的血流障碍。

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摘要

PURPOSE: To determine any relationship between angiographically documented flow impairment associated with the Angioguard XP cerebral protection filter during carotid artery stenting (CAS) and the condition of the pores in the retrieved filter. METHODS: To obtain baseline characteristics of the Angioguard XP, an unused filter was fully expanded and examined photographically from the cephalad end of the device to determine the structure of the pores in the filter basket. Ten pores assembled in a hexagonal pattern made up a pore group, several of which were arranged in 4 concentric rings surround a central hub that did not have any pores. For each ring of pore groups, the ring diameter, number of pore groups, and the mean minimum pore diameter were measured on a plane perpendicular to the long axis of the device. From these, the area of the ring membrane, the area of the pores, and the ratio of pore area to membrane area were calculated for each ring. Filters retrieved from 56 CAS procedures were retrospectively analyzed along with the operative records and intraprocedural angiograms performed after filter placement, predilation, stent placement, postdilation, aspiration of blood, and filter retrieval. The operators classified blood flow immediately before filter retrieval as normal, slow, or stopped. After retrieval, the filter was cut, rinsed with saline, fixed in 10% neutral buffer formalin, and macroscopically and microscopically inspected. The number of the open pores without any obstruction was counted for each ring. RESULTS: Retrieved filters from flow-impaired cases showed a significantly lower percentage of open pores in comparison to normal-flow cases (p<0.05). In some normal-flow cases, however, the obstruction rates were higher than mean obstruction rates of the slow-flow cases. In normal-flow cases, <5% of pores from the center to the second ring of the filter were open; this constituted more than two thirds of the entire filter diameter. CONCLUSION: The flow state on DSA was related to, but did not completely depend on, filter patency. The low patency rate of the filter in normal-flow cases suggested that flow impairment was occurring but could not be detected by the qualitative evaluation of flow on angiography.
机译:目的:确定在颈动脉支架置入术(CAS)期间血管造影记录的与Angioguard XP脑保护过滤器相关的血流损害与取回的过滤器中毛孔状况之间的关系。方法:为了获得Angioguard XP的基线特征,将未使用的过滤器完全展开,并从设备的头端进行照相检查,以确定滤篮中孔的结构。十个以六边形模式组装的孔组成一个孔组,其中几个孔排列在4个同心环中,围绕一个没有任何孔的中心毂。对于孔环的每个环,在垂直于装置长轴的平面上测量环直径,孔族数和平均最小孔径。由此计算出每个环的环膜面积,孔面积以及孔面积与膜面积之比。回顾性分析了从56种CAS程序中检索到的滤器,以及滤器放置,预扩张,支架放置,后扩张,血液抽吸和滤器取出后的手术记录和术中血管造影照片。操作员将滤网取回之前的血流分类为正常,缓慢或停止。取回后,切下滤膜,用盐水冲洗,固定在10%中性福尔马林缓冲液中,并进行肉眼和显微镜检查。对每个环计数无任何阻塞的开放孔的数量。结果:与正常流量病例相比,从流量受损病例中检索到的过滤器的开孔百分比显着降低(p <0.05)。但是,在某些正常流量情况下,阻塞率高于慢流量情况下的平均阻塞率。在正常流量情况下,从过滤器中心到第二个环的孔小于5%;这占整个过滤器直径的三分之二以上。结论:DSA上的流动状态与过滤器的通畅性有关,但并不完全取决于其通畅性。在正常流量情况下,过滤器的通畅率低,表明发生了流量障碍,但无法通过血管造影的流量定性评估检测到。

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