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Induced current constraints and capacitance effects in inductive nerve stimulation

机译:感应电流刺激中的感应电流限制和电容效应

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摘要

It is found tha purely inductive stimulation of the frog sciatic nerve and gastrocnemius muscle using unshielded or shielded whole toroids cannot be achieved with techniques and electromotive force (EMF) intensities and durations consistent with previously published reports. In the instances where stimulation is achieved, the findings suggest that it results from capacitive coupling between unshielded toroids and a nerve/grounding electrode. Maximum primary voltages range up to 80 V. Corresponding secondary EMFs and pulse durations are as much as 5 V and 100 mu s, respectively, in different experiments. Stimulating capacitive current densities near the nerve are estimated to be in the range of 100 to 400 mA/cm/sup 2/, while maximum induced current densities are estimated to be in the range of 10 to 30 mA/cm/sup 2/ for the same pulse duration.
机译:发现使用非屏蔽或屏蔽的整个环形线圈纯粹地感应刺激蛙坐骨神经和腓肠肌的方法和技术与电动势(EMF)的强度和持续时间与以前发表的报告一致。在获得刺激的情况下,研究结果表明,刺激是由未屏蔽的环形线圈与神经/接地电极之间的电容耦合引起的。最大初级电压范围高达80V。在不同的实验中,相应的次级EMF和脉冲持续时间分别高达5 V和100μs。对于神经,刺激性电容电流密度估计在100到400 mA / cm / sup 2 /的范围内,而最大感应电流密度在10到30 mA / cm / sup 2 /的范围内。相同的脉冲持续时间。

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