首页> 外文期刊>Journal of Neuroscience Methods >A glue-based, screw-free method for implantation of intra-cranial electrodes in young mice.
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A glue-based, screw-free method for implantation of intra-cranial electrodes in young mice.

机译:一种基于胶水的免螺丝方法,用于在年幼小鼠中植入颅内电极。

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摘要

Intra-cranial electroencephalographic recordings are increasingly employed in mice because of the availability of genetically manipulated mouse models. Currently, dental acrylic and anchoring screws are used to cement implanted electrodes. This technique works well for adult animals but often encounters difficulty when employed in young mice because their skulls are not strong enough to bear the anchoring screws. Here we describe a novel method favorable for implantation of intra-cranial electrodes in mice as young as postnatal 18 days and suitable for long-term intra-cranial electroencephalographic recordings. Our approach is to construct a multi-electrode assembly according to the desired stereotaxic coordinates of intra-cranial recordings and to secure the implanted electrode assembly to the skull via glue rather than dental acrylic/anchoring screws. The surgical operation for such electrode implantation is relatively quick and rarely associated with complications such as infection, bleeding, neurological deficits, spontaneous seizures or behavioral disturbances. The implanted electrodes are stable, allowing repeated monitoring for several months. Data obtained by simultaneous intra-hippocampal and intra-cortical recordings indicate that our method is suitable for the examination of behaviorally related electroencephalographic activities and experimentally induced seizures. Technical aspects of our methods are discussed, and the procedures for constructing the electrode assembly are presented in detail.
机译:由于基因操纵的小鼠模型的可用性,颅内脑电图记录越来越多地用于小鼠中。当前,牙科丙烯酸和锚固螺钉被用于粘合植入的电极。该技术对成年动物有效,但在幼鼠中使用时常常会遇到困难,因为它们的头骨强度不足以承受锚定螺钉。在这里,我们描述了一种新颖的方法,该方法有利于在出生后18天的小老鼠体内植入颅内电极,并且适合于长期颅内脑电图记录。我们的方法是根据颅内记录的所需立体定向坐标构建多电极组件,并通过胶水而非牙科丙烯酸/锚固螺钉将植入的电极组件固定到颅骨。这种电极植入的手术操作相对较快,并且很少与并发症如感染,出血,神经功能缺损,自发性癫痫发作或行为障碍相关。植入的电极很稳定,可以重复监测几个月。通过海马内和皮层内同时记录获得的数据表明,我们的方法适用于检查行为相关的脑电图活动和实验诱发的癫痫发作。讨论了我们方法的技术方面,并详细介绍了构建电极组件的过程。

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