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首页> 外文期刊>BMC Neuroscience >A reliable method for intracranial electrode implantation and chronic electrical stimulation in the mouse brain
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A reliable method for intracranial electrode implantation and chronic electrical stimulation in the mouse brain

机译:小鼠脑内颅内电极植入和慢性电刺激的可靠方法

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Background Electrical stimulation of brain structures has been widely used in rodent models for kindling or modeling deep brain stimulation used clinically. This requires surgical implantation of intracranial electrodes and subsequent chronic stimulation in individual animals for several weeks. Anchoring screws and dental acrylic have long been used to secure implanted intracranial electrodes in rats. However, such an approach is limited when carried out in mouse models as the thin mouse skull may not be strong enough to accommodate the anchoring screws. We describe here a screw-free, glue-based method for implanting bipolar stimulating electrodes in the mouse brain and validate this method in a mouse model of hippocampal electrical kindling. Methods Male C57 black mice (initial ages of 6–8 months) were used in the present experiments. Bipolar electrodes were implanted bilaterally in the hippocampal CA3 area for electrical stimulation and electroencephalographic recordings. The electrodes were secured onto the skull via glue and dental acrylic but without anchoring screws. A daily stimulation protocol was used to induce electrographic discharges and motor seizures. The locations of implanted electrodes were verified by hippocampal electrographic activities and later histological assessments. Results Using the glue-based implantation method, we implanted bilateral bipolar electrodes in 25 mice. Electrographic discharges and motor seizures were successfully induced via hippocampal electrical kindling. Importantly, no animal encountered infection in the implanted area or a loss of implanted electrodes after 4–6 months of repetitive stimulation/recording. Conclusion We suggest that the glue-based, screw-free method is reliable for chronic brain stimulation and high-quality electroencephalographic recordings in mice. The technical aspects described this study may help future studies in mouse models.
机译:背景技术脑结构的电刺激已广泛用于啮齿动物模型中以点燃或建模临床上使用的深部脑刺激。这需要外科手术植入颅内电极,并随后在个别动物中进行数周的慢性刺激。长期以来,锚定螺钉和牙科用丙烯酸树脂已被用于固定大鼠植入的颅内电极。但是,这种方法在鼠标模型中执行时会受到限制,因为薄的鼠标颅骨可能不够坚固,无法容纳固定螺钉。我们在这里描述了一种无螺钉的,基于胶水的方法,用于在小鼠大脑中植入双极刺激电极,并在海马电点燃的小鼠模型中验证了该方法。方法在本实验中使用雄性C57黑色小鼠(初始年龄为6-8个月)。双极电极被双边植入海马CA3区,以进行电刺激和脑电图记录。电极通过胶水和牙科丙烯酸树脂固定在颅骨上,但没有固定螺钉。每天使用刺激方案诱发电图放电和运动性癫痫发作。植入电极的位置通过海马电图活动和随后的组织学评估得到证实。结果使用基于胶的植入方法,我们在25只小鼠中植入了双侧双极电极。通过海马电点燃成功诱发了电子放电和运动性癫痫发作。重要的是,在重复刺激/记录4-6个月后,没有动物在植入区域受到感染或电极丢失。结论我们建议,基于胶的,免螺丝的方法对于小鼠的慢性脑刺激和高质量的脑电图记录是可靠的。这项研究描述的技术方面可能有助于将来在小鼠模型中的研究。

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