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Excitatory and inhibitory local circuit input to the rat dorsal motor nucleus of the vagus originating from the nucleus tractus solitarius

机译:兴奋性和抑制性局部回路输入到源自孤束核的迷走神经的大鼠背运动核

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摘要

The nucleus tractus solitarius (NTS) and dorsal motor nucleus of the vagus nerve (DMV) constitute sensory and motor nuclei of the dorsal vagal complex, respectively. We used whole-cell patch-clamp recordings from DMV neurons in rat brain slices and three methods of stimulation (electrical, glutamate microdrop, glutamate photostimulation) to test the hypothesis that convergent excitatory and inhibitory inputs to DMV neurons originate from intact neurons in multiple NTS areas. Electrical stimulation of the NTS resulted in evoked excitatory and inhibitory postsynaptic currents (eEPSCs and eIPSCs) in DMV neurons. Stimulation of the dorsal NTS with glutamate microdrops, which selectively stimulates the soma and dendrites of intact neurons, resulted in 31% of DMV neurons receiving eEPSCs, 44% receiving eIPSCs, and 6% receiving convergent excitatory and inhibitory inputs. Glutamate photostimulation allowed selective activation of intact neurons in multiple, discrete areas of the NTS and resulted in 36% of DMV neurons receiving eEPSCs, 65% receiving eIPSCs and 20% receiving both inputs. Data obtained by stimulation of multiple NTS areas support the hypothesis that there are anatomically convergent inputs to DMV neurons originating from intact neurons within the NTS. These data support the hypothesis that there is transfer of convergent information from the NTS to the DMV, implying that significant sensory–motor processing occurs within the brainstem.
机译:迷走神经孤束核(NTS)和迷走神经背运动核(DMV)分别构成迷走神经背复合体的感觉和运动核。我们使用大鼠脑切片中DMV神经元的全细胞膜片钳记录和三种刺激方法(电,谷氨酸微滴,谷氨酸光刺激)来检验DMV神经元的收敛性兴奋性和抑制性输入源自多个NTS中完整神经元的假设。地区。 NTS的电刺激在DMV神经元中引起了兴奋性和抑制性突触后电流(eEPSC和eIPSC)。谷氨酸微滴刺激背侧NTS选择性刺激完整神经元的躯体和树突,导致31%的DMV神经元接受eEPSC,44%接受eIPSC和6%接受收敛的兴奋性和抑制性输入。谷氨酸的光刺激可以选择性激活NTS多个离散区域中的完整神经元,并导致36%的DMV神经元接受eEPSC,65%接受eIPSC和20%接受这两种输入。通过刺激多个NTS区域获得的数据支持以下假设:从NTS内完整神经元到DMV神经元的解剖学收敛输入。这些数据支持以下假设:聚合信息已从NTS转移到DMV,这意味着脑干内发生了明显的感觉运动处理。

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