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In Vivo Evaluation of a Fully-Passive Wireless Neurosensing System

机译:完全被动无线神经传感系统的体内评估

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Neural implants are used to continuously record essential signals in studies of neurological disorders. Existing systems involve the use of invasive procedures and revision surgeries to maintain adequate system performance. Our previous work demonstrated a fully-passive wireless system, tested in vitro, and was demonstrated capable of sensing even minute neural signals. This recorder has a minimum detectable signal (MDS) below 15 μV in amplitude and a RF sensitivity down to about - 135 dBm. While results have been promising, this system is yet to be used to study neurological disorders, the final intended application of the system. In this paper, for the first time, we evaluate the wireless neurosensing system's ability to capture the characteristic components of epilepsy, namely interictal epileptiform discharges. The present validation of this technology has great future clinical implications in neuroscience, especially epilepsy studies.
机译:神经植入物被用于连续记录神经系统疾病研究中的基本信号。现有系统涉及使用侵入性程序和翻修手术以维持足够的系统性能。我们之前的工作展示了一种完全被动的无线系统,并在体外进行了测试,并被证明能够感知甚至微小的神经信号。该记录仪的最小可检测信号(MDS)幅度低于15μV,RF灵敏度低至-135 dBm。尽管结果令人鼓舞,但该系统尚未用于研究神经系统疾病,这是该系统的最终预期应用。在本文中,我们首次评估了无线神经传感系统捕获癫痫特征成分的能力,即发作期癫痫样放电。该技术的当前验证在神经科学特别是癫痫研究中具有巨大的未来临床意义。

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