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一种用于评估脑室-静脉窦分流术的非脑积水山羊实验模型。

A non-hydrocephalic goat experimental model to evaluate a ventriculosinus shunt.

作者信息

Vandersteene Jelle, Baert Edward, Schauvliege Stijn, Vandevelde Kimberley, Dewaele Frank, De Somer Filip, Van Roost Dirk

机构信息

1 Department of Neurosurgery, Ghent University Hospital, Belgium.

2 Faculty of Veterinary Medicine, Ghent University, Belgium.

出版信息

Lab Anim. 2018 Oct;52(5):504-514. doi: 10.1177/0023677217753976. Epub 2018 Feb 19.

Abstract

The ventriculosinus shunt is a promising treatment for hydrocephalus. Currently, different shunt techniques exist, and it is not clear whether one is preferable. This pilot study reports on a non-hydrocephalic goat model (Saanen breed) that provides opportunities to evaluate and optimize several aspects of the ventriculosinus shunt technique. Analysis of the coagulation properties of 14 goats by a viscoelastic coagulation monitor showed that goats have a hypercoagulable state compared to humans. This property can be partially counteracted by antiplatelet drugs. During implantation of a ventriculosinus shunt, a pulsatile reflux of blood was observed. After implantation, the animals recovered to their preoperative state, and none of them developed a superior sagittal sinus thrombosis. Evaluation of the shunts after 16 days showed an obstructing luminal clot. Several model-related factors may have promoted this obstruction: the absence of hydrocephalus, the hypercoagulability of caprine blood and the smaller dimensions of the caprine superior sagittal sinus. However, the pulsatile reflux of blood, which is caused by the compliance of the shunt system distal to the valve, may have been an important factor as well. In conclusion, the non-hydrocephalic goat model limits animal suffering and simplifies the study protocol. This model allows researchers to evaluate their implantation technique and shunt hardware but not the efficacy of the treatment or shunt survival.

摘要

脑室-静脉窦分流术是一种很有前景的脑积水治疗方法。目前,存在不同的分流技术,尚不清楚哪种技术更优。这项前瞻性研究报告了一种非脑积水山羊模型(萨能品种),该模型为评估和优化脑室-静脉窦分流术的多个方面提供了机会。通过黏弹性凝血监测仪对14只山羊的凝血特性进行分析,结果显示与人类相比,山羊处于高凝状态。这种特性可通过抗血小板药物部分抵消。在植入脑室-静脉窦分流管期间,观察到血液呈搏动性反流。植入后,动物恢复到术前状态,且均未发生上矢状窦血栓形成。16天后对分流管进行评估,发现管腔内有阻塞性血栓。一些与模型相关的因素可能促成了这种阻塞:不存在脑积水、山羊血液的高凝性以及山羊上矢状窦尺寸较小。然而,由分流系统瓣膜远端的顺应性引起的血液搏动性反流可能也是一个重要因素。总之,非脑积水山羊模型减少了动物痛苦并简化了研究方案。该模型使研究人员能够评估其植入技术和分流硬件,但无法评估治疗效果或分流管的存活情况。

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