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首页> 外文期刊>St. Petersburg Polytechnic University Journal: Physics and Mathematics >Implanable devices for optogenetic studies and stimulation of excitable tissue
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Implanable devices for optogenetic studies and stimulation of excitable tissue

机译:用于光学研究的可造型装置和兴奋组织的刺激

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The article deals with currently available implants used in optogenetic experiments on laboratory animals in vivo. We present a brief description of the optogenetic investigation stages. Various types of the implantable devices generating and recording signals in excitable tissues have been considered. The features of the control signal transduction inside living tissues were analyzed. We discussed the possibility of medical and biological use of optical fibers to excitable tissues stimulation. Then we proposed a device of an implantable optical electrode system for scanning and controlling the bioelectric parameters. The device can be used in medical diagnostics, prosthetics, myostimulation, neurostimulation and cardioacceleration, for instance, at the neurological and rehabilitation medical institutions. With this in mind an attempt will be made to make special combined microelectrode arrays to implant them into living tissue. The arrays should be able to change their profile according to the implantation-area contour and biophysical features of the substrate surface. It is necessary to provide a point generation and layer-by-layer scanning of excitation pulse through integration of individual microelectrode arrays into a single test-system.
机译:本文涉及目前可用的植入物,用于在体内实验室动物的实验室实验中使用。我们介绍了对视致调查阶段的简要说明。已经考虑了各种类型的可植入装置,并在激发组织中产生和记录信号。分析了活组织内的控制信号转导的特征。我们讨论了光纤医疗和生物学用途的可能性,以激发易激发的组织刺激。然后,我们提出了一种用于扫描和控制生物电参数的可植入光电极系统的装置。例如,该装置可用于医疗诊断,假肢,肌肉刺激,神经刺激和心脏癌,在神经系统和康复医疗机构。考虑到这一点,将尝试制作特殊的微电极阵列以将它们植入活组织。阵列应该能够根据基板表面的植入区域轮廓和生物物理特征来改变其轮廓。需要通过将各个微电极阵列集成到单个测试系统中,提供激发脉冲的点生成和逐层扫描。

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