首页> 外文会议>IEEE MTT-S International Microwave Workshop Series on RF and Wireless Technologies for Biomedical and Healthcare Applications >Wirelessly powered and controlled, implantable, multi-channel, multi-wavelength optogenetic stimulator
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Wirelessly powered and controlled, implantable, multi-channel, multi-wavelength optogenetic stimulator

机译:无线供电和控制,可植入,多通道,多波长光遗传刺激器

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In recent years, major developments in RF based power transmission systems have made a great impact in the progress of wirelessly powered implantable biomedical devices. In this paper, we present a multichannel and multi-wavelength optogenetic stimulator, suitable for chronic and acute implantation in freely moving rodents. Optogenetic stimulators provide a pathway for complex spatiotemporal control of photosensitized neurons in the brain. The design consists of an 8×8 micro light emitting diode array of equally spaced amber and blue LED pairs at alternate positions. The closely packed illumination structure facilitates light delivery at a high spatial (0.5mm) and temporal (0.1 ms) resolution. Low Frequency RFID (Radio Frequency Identification) technique was used for both power delivery and communication with the onboard low power microcontroller via custom built Reader circuitry.
机译:近年来,基于RF的功率传输系统的重大发展对无线可植入生物医学设备的发展产生了重大影响。在本文中,我们提出了一种多通道,多波长的光遗传学刺激物,适用于自由活动啮齿动物的慢性和急性植入。光遗传刺激器为大脑中光敏神经元的复杂时空控制提供了一条途径。该设计由一个8×8微型发光二极管阵列组成,在交替的位置上等距排列的琥珀色和蓝色LED对。紧密排列的照明结构有助于以高空间(0.5mm)和时间(0.1 ms)分辨率进行光传输。低频RFID(射频识别)技术用于功率传输以及通过定制的读取器电路与板载低功率微控制器的通信。

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