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Complex synaptic activation of bipolar, amacrine and ganglion cells is elicited with biphasic electrical stimulation

机译:双相电刺激引起双极,无长突神经节和神经节细胞的复杂突触激活

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摘要

Summary form only given. Correlation of excitatory and inhibitory input currents with ganglion cell spiking responses suggest that excitatory and inhibitory presynaptic neurons (likely bipolar and amacrine cells respectively) are activated by biphasic stimulus pulses. Inhibitory input, likely arising from direct or indirect (via bipolar) activation of amacrine cells, suppresses the ganglion cell spiking response and therefore increases the stimulus current threshold for ganglion cell activation. This suggests that electrical stimulation drives a complex interactive range of presynaptic activity. Stimulus parameters that minimize direct or indirect activation of amacrine cells may result in generating higher response/stimulus efficiency.
机译:仅提供摘要表格。兴奋性和抑制性输入电流与神经节细胞突触反应的相关性表明,兴奋性和抑制性突触前神经元(分别为双极和无长突细胞)被双相刺激脉冲激活。抑制性输入可能是由无长突细胞的直接或间接(通过双极)激活引起的,抑制了神经节细胞的尖峰应答,因此增加了神经节细胞激活的刺激电流阈值。这表明电刺激驱动突触前活动的复杂交互范围。最小化无长突细胞直接或间接激活的刺激参数可能会导致产生更高的响应/刺激效率。

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