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Mechano-neuromodulation of autonomic pelvic nerve for underactive bladder: A triboelectric neurostimulator integrated with flexible neural clip interface

机译:机床神经骨盆神经的机械神经调节:一种与柔性神经夹界面一体化的摩擦神经刺激器

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摘要

Mechano-neuromodulation of autonomic pelvic nerves was demonstrated for the first time using a triboelectric neurostimulator integrated with flexible neural clip interface. The detailed stimulation parameters such as current, pulse width, and charges generated by the proposed TENG were investigated for the stimulation of autonomic pelvic nerve. In in vivo experiments, different beats per minute (BPM) were delivered to the nerves to investigate the effect of stimulation frequency on mechano-neurostimulation while monitoring changes in bladder pressure and the occurrence of micturition. Furthermore, different numbers of pulses were applied to stimulate the pelvic nerve. The bladder contractions with micturition were observed when applying more than 50 BPM as well as one pulse. Comparison of stimulation was performed using a commercial stimulator with the similar long-pulse widths as generated by TENGs. In addition, chronic implantation of flexible clip interface was demonstrated with functionality test of the interface. The results demonstrate that this technology may potentially be used for self-powered mechano-neuromodulation for bladder function in the future.
机译:使用与柔性神经剪辑界面一体化的摩擦神经刺激器首次证明了自主神经骨盆神经的机械神经调节。研究了所提出的滕峰产生的电流,脉冲宽度和电荷等详细刺激参数,用于刺激自主骨盆神经。在体内实验中,每分钟的不同节拍(BPM)被递送至神经,以研究刺激频率对机械神经刺激的影响,同时监测膀胱压力的变化和喷射的发生。此外,施加不同数量的脉冲以刺激骨盆神经。当施加超过50bpm以及一个脉冲时,观察到与尿尿的膀胱收缩。使用具有由Tengs产生的具有类似的长脉冲宽度的商业刺激器进行刺激的比较。此外,通过界面的功能试验证明了柔性夹界面的慢性植入。结果表明,该技术可能用于未来膀胱功能的自动机械神经调节。

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