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用于脑部局部灌注的玻璃-塑料推拉套管系统。

Glass-plastic push-pull cannula system for regional perfusion of sites in the brain.

作者信息

Myers R D, Hepler J R

出版信息

J Neurosci Methods. 1983 Oct;9(2):163-71. doi: 10.1016/0165-0270(83)90129-2.

Abstract

A new non-metallic push-pull cannula device is described for the localized perfusion of brain sites in the rat or other animal. Comprised entirely of glass and plastic materials, the cannula is intended for usage in an experiment in which the presence in tissue of metal tubing for delivery of perfusate is methodologically inappropriate. The main features of the cannula include its light weight, a Delrin pedestal base, a micro-glass guide tube, a polyethylene stylet, plastic spacers for adjustment of depth of perfusion, a protective cap for the chronic maintenance of the preparation, low cost and re-usability. The push-pull cannula is of concentric design and is fashioned from glass capillary and polyethylene tubing which are bonded at their common junctions by an epoxy cement. During a push-pull perfusion a special perfusion cap is used not only to hold the cannula firmly in place but also to protect the glass components from external damage. To further coincide with the metal-free requirements of the preparation, bone screws of nylon are used during the surgical implantation of the pedestal base. A prototype experiment illustrating its use in an unrestrained animal also is presented. The special applications for this cannula system are discussed which include its usage in experiments in either the anesthetized or unanesthetized rat exposed to microwave radiation where the presence of metal in the field would result in unwanted 'hot spots' in the cerebral tissue.

摘要

本文描述了一种新型非金属推拉式套管装置,用于对大鼠或其他动物的脑区进行局部灌注。该套管完全由玻璃和塑料材料制成,适用于在组织中使用金属灌注管在方法上不合适的实验。套管的主要特点包括重量轻、有一个聚甲醛基座、一个微玻璃导管、一个聚乙烯探针、用于调节灌注深度的塑料垫片、用于长期维持实验准备的保护帽、成本低和可重复使用。推拉式套管采用同心设计,由玻璃毛细管和聚乙烯管制成,它们在共同连接处通过环氧树脂粘结在一起。在推拉灌注过程中,使用一种特殊的灌注帽,不仅可以将套管牢固地固定在适当位置,还可以保护玻璃部件免受外部损坏。为了进一步符合实验准备中无金属的要求,在基座的手术植入过程中使用尼龙骨螺钉。还展示了一个原型实验,说明其在无束缚动物中的使用。讨论了该套管系统的特殊应用,包括其在暴露于微波辐射的麻醉或未麻醉大鼠实验中的使用,在这种情况下,场中的金属会在脑组织中产生不需要的“热点”。

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