无线
天线(收音机)
生物医学工程
脑植入物
波形
植入
计算机科学
材料科学
电气工程
电压
医学
电信
工程类
外科
作者
Tyler Perryman L,P.J. Larson,Johann Glaser
出处
期刊:International journal of nano studies & technology
[SciDoc Publishers LLC]
日期:2016-06-24
卷期号:: 1-6
被引量:8
标识
DOI:10.19070/2167-8685-si02001
摘要
Miniature, remotely powered and programmable neural stimulators were implanted on the sciatic nerve in nine pig hind limbs.An external dipole antenna was used to transmit power and waveforms to the implant at 915 MHz.For each placement location, external power was swept until motor threshold was achieved.Thresholds were determined via visual observation of muscle twitches in the lower leg.The external antenna was placed at several different distances from the implant and the threshold power was recorded as a function of the tissue thickness overlying the implant.Verification of the current was measured by: 1) optical recording electrodes and 2) Random validation using wired recording electrodes.Both methods recorded the current required to reach motor threshold.Results from these tests confirmed that wireless neural stimulation could effectively excite motor nerves remotely in up to 12 cm of soft tissue of a mixed medium.Propagation losses for this verification also agreed with simulation models.These measurements verified that ample current densities could be achieved at significant tissue depths and therefore, a wireless neural stimulator can be potentially be utilized in existing neural stimulation therapeutic treatments.
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