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Neurophysiologic and Chronic Safety Testing of a Miniaturized Active Implanted Device with Integrated Electrodes for Bioelectronic Medicine Applications

机译:具有用于生物电解应用的集成电极的小型化活性植入装置的神经生理学和慢性安全性

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New dosing paradigms in bioelectronic medicine applications, such as low duty cycle stimulation of the vagus nerve to treat inflammatory disorders, enable architectural shifts in active implantable devices that benefit patients. Herein, we describe various features of the MicroRegulator (MR), an innovative neurostimulation system that includes a unique electrode-integrated implantable nerve stimulator. To verify efficient activation of neuronal targets within the vagus nerve, a geometric emulator of the MR (identical form and electrical contact properties as the clinical MR device) was tested in situ and neurophysiologic outcomes were compared to a control electrode in wide clinical use. The data demonstrated comparable patterns of compound potentials evoked from the MR emulator and the control electrode, with the MR emulator requiring a lower threshold current to depolarize the nerve. To verify chronic mechanical safety, the MR emulator was implanted for 2 months on the vagus nerves of canines. Blood flow through the major cervical vessels was unaffected, and pathologic and histologic findings included normal foreign body encapsulation and an absence of demyelination and nerve damage. Together these finding support the feasibility of the MR system for clinical translation.
机译:生物电子药物应用中的新剂量范式,如低占空神刺激迷走神经以治疗炎症障碍,使患者有效的植入装置中的建筑变速。在此,我们描述了微型刺激器(MR)的各种特征,这是一种创新的神经刺激系统,包括独特的电极整合可植入神经刺激器。为了验证迷走神经内的神经元靶标的神经元靶的有效激活,原位测试MR(相同形式和电接触性能和临床MR器件的电接触性能),并将神经生理结果与控制电极进行较宽的临床用途。数据显示了从MR仿真器和控制电极唤起的复合电位的类似模式,其中MR仿真器需要较低的阈值电流以去极化神经。为了验证慢性力学安全,MR仿真器在犬腔内植入2个月。通过主要宫颈血管的血液流动不受影响,病理和组织学结果包括正常的异物包封,并且没有脱髓鞘和神经损伤。这些发现支持临床翻译MR系统的可行性。

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