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Imaging fascicular organization of rat sciatic nerves with fast neural electrical impedance tomography

机译:用快速神经电阻抗断层扫描成像对大鼠坐骨神经的坐骨神经分层

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Imaging compound action potentials (CAPs) in peripheral nerves could help avoid side effects in neuromodulation by selective stimulation of identified fascicles. Existing methods have low resolution, limited imaging depth, or are invasive. Fast neural electrical impedance tomography (EIT) allows fascicular CAP imaging with a resolution of 200?μm, 1?ms using a non-penetrating flexible nerve cuff electrode array. Here, we validate EIT imaging in rat sciatic nerve by comparison to micro-computed tomography (microCT) and histology with fluorescent dextran tracers. With EIT, there are reproducible localized changes in tissue impedance in response to stimulation of individual fascicles (tibial, peroneal and sural). The reconstructed EIT images correspond to microCT scans and histology, with significant separation between the fascicles (p??0.01). The mean fascicle position is identified with an accuracy of 6% of nerve diameter. This suggests fast neural EIT can reliably image the functional fascicular anatomy of the nerves and so aid selective neuromodulation.
机译:通过选择性刺激鉴定的束刺激,对外周神经中的成像化合物作用电位(盖子)可以帮助避免副作用。现有方法具有低分辨率,有限的成像深度,或侵入性。快速神经电阻抗断层扫描(EIT)允许使用非穿透柔性神经袖带电极阵列的坐毛帽成像<200Ωμm,<1Ωms。在这里,我们通过与微计算机断层扫描(MicroCT)和与荧光葡聚糖示踪剂的组织学相比验证大鼠坐骨神经中的EIT成像。对于EIT,响应于刺激单个束(胫骨,腓骨和血管),有组织阻抗的可再现局部变化。重建的EIT图像对应于MicroCT扫描和组织学,在束束之间具有显着的分离(P?<?0.01)。鉴定平均束缚位置,精度为6%的神经直径。这表明快速神经EIT可以可靠地形象神经的功能性束性解剖,因此辅助选择性神经调节。

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