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Effects of spatial and temporal parameters of primary afferent microstimulation on neural responses evoked in primary somatosensory cortex of an anesthetized cat

机译:初级传入微刺痛的空间和时间参数对麻醉猫的原发性躯体感染皮层诱捕的神经反应的影响

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Patterned microstimulation of muscle and cutaneous afferent neurons may provide tactile and proprioceptive feedback to users of advanced prosthetic limbs. However, it is unclear what types of stimulation patterns will be effective, and the parameter space for creating these patterns is prohibitively large to explore systematically using only psychophysics paradigms. In this study, we used an array of microelectrodes in primary somatosensory cortex (S1) of an isoflurane anesthetized cat to measure responses in a population of neurons evoked by various patterns of primary afferent microstimulation delivered to the L6 and L7 dorsal root ganglia (DRG). Each pattern consisted of a 300 ms train of microstimulation pulses having a fixed amplitude, pulse rate, and location in the array of DRG electrodes. Evoked responses were detectable on many S1 channels at the lowest amplitude tested (5 μA) and pulse rate (10 pulses per second). Increasing the pulse rate lowered the threshold amplitude for evoking a response on some S1 channels. Location effects were also observed. Adjacent stimulation sites evoked discriminable responses at low but not high (20 μA) amplitudes. In summary, we observed interactions between stimulation pulse rate, pulse amplitude, and location. Such interactions must be considered when designing stimulation patterns for transmitting sensory feedback by primary afferent microstimulation.
机译:图案化肌肉和皮肤传入神经元的微刺激可以为先进假肢的用户提供触觉和丙虫的反馈。然而,尚不清楚什么类型的刺激模式是有效的,并且用于创建这些模式的参数空间是非常大的,以便仅使用心理物理范式来探索。在该研究中,我们在异氟醚麻醉猫的原代体瘤皮质(S1)中使用了一系列微电极,以测量通过递送至L6和L7背根神经节(DRG)的初级传入微刺激的各种模式引起的神经元群中的反应。每个模式由300 ms的微氧脉冲脉冲具有固定幅度,脉冲率和DRG电极阵列中的位置。在最低幅度(5μA)和脉搏率(每秒10个脉冲)处的许多S1通道上可检测到诱发的响应。增加脉冲速率降低了用于在一些S1通道上唤起响应的阈值幅度。也观察到位置效果。相邻的刺激位点在低但不高(20μA)幅度下诱发可辨别的响应。总之,我们观察了刺激脉冲率,脉冲幅度和位置之间的相互作用。当设计用于通过初级传入微氧化刺激传输感觉反馈的刺激模式时,必须考虑这种相互作用。

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