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Wireless implantable micro-stimulation device for high frequency bilateral deep brain stimulation in freely moving mice

机译:无线植入式微刺激装置,用于自由移动小鼠的高频双侧深部脑刺激

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摘要

Although deep brain stimulation (DBS) has been proven to be an effective treatment for several neuropsychiatric disorders, such as Parkinson's disease, the underlying working mechanisms are still largely unknown. Behavioral animal models are essential in examining the working mechanisms of DBS and especially mouse models are necessary to investigate the genetic component underlying specific behaviors related to psychiatric diseases. Unfortunately, currently available stimulation devices are unsuitable to test behavior in freely-moving mice. As such, no DBS studies in behaving mice have been reported thus far. In order to overcome this limitation we have developed a new light-weight wireless implantable micro stimulator device for mice that delivers biphasic pulse patterns to two individual electrode pairs, mimicking partly the clinical situation. This paper describes in detail the bench-top validation and in vivo implementation of this device. The results in this study indicate that the wireless implantable stimulator in mice reliably delivers continuous bilateral stimulation, importantly, does not restrict the animals mobility and hygiene (grooming behavior). In vivo testing furthermore showed that stimulation of the mice ventral striatum yields similar results as previously shown by others in rats where conventional deep brain stimulation techniques were used. This newly designed device can now be used in the highly needed DBS behavioral studies in mice, to further investigate the underlying mechanisms of DBS in behavioral animal models for psychiatric disorders.
机译:尽管深部脑刺激(DBS)已被证明是对多种神经精神疾病(例如帕金森氏病)的有效治疗方法,但其潜在的工作机制仍然未知。行为动物模型对于检查DBS的工作机制至关重要,尤其是老鼠模型对于研究与精神疾病相关的特定行为的遗传成分非常必要。不幸的是,当前可用的刺激装置不适合测试自由运动的小鼠的行为。因此,到目前为止,尚无关于行为小鼠的DBS研究的报道。为了克服这一局限性,我们开发了一种用于小鼠的新型轻型无线植入式微刺激器设备,该设备将双相脉冲模式传送到两个单独的电极对,部分模拟了临床情况。本文详细介绍了该设备的台式验证和体内实施。这项研究的结果表明,小鼠中的无线植入式刺激器能够可靠地持续进行双边刺激,重要的是,不会限制动物的活动性和卫生(修饰行为)。进一步的体内测试表明,对小鼠腹侧纹状体的刺激产生的结果与先前在使用常规深部脑刺激技术的大鼠中所显示的结果相似。现在,这种新设计的设备可用于急需的小鼠DBS行为研究中,以进一步研究DBS在精神疾病行为动物模型中的潜在机制。

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