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Intraspinal stimulation for bladder voiding in cats before and after chronic spinal cord injury.慢性脊髓损伤前后猫脊髓内刺激促进膀胱排尿的研究
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A wireless implantable multichannel microstimulating system-on-a-chip with modular architecture.一种具有模块化架构的无线可植入多通道微刺激片上系统。
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Performance of multisite silicon microprobes implanted chronically in the ventral cochlear nucleus of the cat.长期植入猫耳蜗腹侧核的多部位硅微探针的性能
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Assistive technology and robotic control using motor cortex ensemble-based neural interface systems in humans with tetraplegia.使用基于运动皮层集群的神经接口系统对四肢瘫痪患者进行辅助技术和机器人控制。
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神经假体设备的双向遥测控制器。

Bidirectional telemetry controller for neuroprosthetic devices.

机构信息

Neural Engineering Program, Huntington Medical Research Institutes, Pasadena, CA 91105, USA. vishnu_vds@yahoo

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2010 Feb;18(1):67-74. doi: 10.1109/TNSRE.2009.2036849. Epub 2009 Nov 20.

DOI:10.1109/TNSRE.2009.2036849
PMID:19933010
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2870992/
Abstract

We present versatile multifunctional programmable controller with bidirectional data telemetry, implemented using existing commercial microchips and standard Bluetooth protocol, which adds convenience, reliability, and ease-of-use to neuroprosthetic devices. Controller, weighing 190 g, is placed on animal's back and provides bidirectional sustained telemetry rate of 500 kb/s , allowing real-time control of stimulation parameters and viewing of acquired data. In continuously-active state, controller consumes approximately 420 mW and operates without recharge for 8 h . It features independent 16-channel current-controlled stimulation, allowing current steering; customizable stimulus current waveforms; recording of stimulus voltage waveforms and evoked neuronal responses with stimulus artifact blanking circuitry. Flexibility, scalability, cost-efficiency, and a user-friendly computer interface of this device allow use in animal testing for variety of neuroprosthetic applications. Initial testing of the controller has been done in a feline model of brainstem auditory prosthesis. In this model, the electrical stimulation is applied to the array of microelectrodes implanted in the ventral cochlear nucleus, while the evoked neuronal activity was recorded with the electrode implanted in the contralateral inferior colliculus. Stimulus voltage waveforms to monitor the access impedance of the electrodes were acquired at the rate of 312 kilosamples/s. Evoked neuronal activity in the inferior colliculus was recorded after the blanking (transient silencing) of the recording amplifier during the stimulus pulse, allowing the detection of neuronal responses within 100 mus after the end of the stimulus pulse applied in the cochlear nucleus.

摘要

我们提出了一种多功能可编程控制器,具有双向数据遥测功能,使用现有的商业微芯片和标准蓝牙协议实现,为神经假肢设备增加了便利性、可靠性和易用性。该控制器重 190 克,放在动物的背部,提供双向持续遥测速率为 500 kb/s ,允许实时控制刺激参数和查看获取的数据。在连续活动状态下,控制器消耗约 420 mW 的功率,无需充电即可运行 8 小时。它具有独立的 16 通道电流控制刺激功能,允许电流转向;可定制的刺激电流波形;记录刺激电压波形和具有刺激伪影空白电路的诱发神经元反应。该设备的灵活性、可扩展性、成本效益和用户友好的计算机界面允许在各种神经假肢应用的动物测试中使用。该控制器已经在脑干听觉假体的猫模型中进行了初步测试。在该模型中,电刺激施加到植入腹侧耳蜗核的微电极阵列上,而诱发的神经元活动则通过植入对侧下丘的电极记录。以 312 千样本/s 的速率采集刺激电压波形以监测电极的接入阻抗。在刺激脉冲期间通过记录放大器的暂态沉默(blanking)来记录下丘中的诱发神经元活动,允许在耳蜗核中施加的刺激脉冲结束后 100 μs 内检测到神经元反应。