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Soft, stretchable, fully implantable miniaturized optoelectronic systems for wireless optogenetics

机译:用于无线光遗传学的柔软,可拉伸,完全可植入的微型光电系统

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Optogenetics allows rapid, temporally specific control of neuronal activity by targeted expression and activation of light-sensitive proteins. Implementation typically requires remote light sources and fiber-optic delivery schemes that impose considerable physical constraints on natural behaviors. In this report we bypass these limitations using technologies that combine thin, mechanically soft neural interfaces with fully implantable, stretchable wireless radio power and control systems. The resulting devices achieve optogenetic modulation of the spinal cord and peripheral nervous system. This is demonstrated with two form factors; stretchable film appliques that interface directly with peripheral nerves, and flexible filaments that insert into the narrow confines of the spinal epidural space. These soft, thin devices are minimally invasive, and histological tests suggest they can be used in chronic studies. We demonstrate the power of this technology by modulating peripheral and spinal pain circuitry, providing evidence for the potential widespread use of these devices in research and future clinical applications of optogenetics outside the brain.
机译:光遗传学允许通过对光敏感蛋白的靶向表达和激活来快速,暂时地控制神经元活动。实施通常需要远程光源和光纤传输方案,这些方案会对自然行为施加相当大的物理约束。在本报告中,我们使用将薄的机械上柔软的神经接口与完全可植入,可伸展的无线电力和控制系统相结合的技术来绕开这些限制。由此产生的设备实现了脊髓和周围神经系统的光遗传学调制。有两个形状因素可以证明这一点:可拉伸的膜贴花直接与周围神经交界,而柔性细丝则插入到硬膜外硬膜间隙的狭窄范围内。这些柔软的薄型设备具有微创性,组织学测试表明它们可用于慢性研究。我们通过调节周围和脊柱疼痛电路来证明这项技术的力量,为这些装置在脑外光遗传学的研究和未来临床应用中的潜在广泛应用提供了证据。

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