Hoshino Osamu, Zheng Meihong, Fukuoka Yasuhiro
Independent Researcher, 505-9 Namiyanagi, Hanno, Saitama, 357-0021, Japan.
Department of Psychology, Tsinghua University, Beijing, 100084, People's Republic of China.
J Comput Neurosci. 2022 Aug;50(3):375-393. doi: 10.1007/s10827-022-00821-z. Epub 2022 Jun 13.
To elucidate how the flattening of sensory tuning due to a deficit in tonic inhibition slows motor responses, we simulated a neural network model in which a sensory cortical network ([Formula: see text]) and a motor cortical network ([Formula: see text]) are reciprocally connected, and the [Formula: see text] projects to spinal motoneurons (Mns). The [Formula: see text] was presented with a feature stimulus and the reaction time of Mns was measured. The flattening of sensory tuning in [Formula: see text] caused by decreasing the concentration of gamma-aminobutyric acid (GABA) in extracellular space resulted in a decrease in the stimulus-sensitive [Formula: see text] pyramidal cell activity while increasing the stimulus-insensitive [Formula: see text] pyramidal cell activity, thereby prolonging the reaction time of Mns to the applied feature stimulus. We suggest that a reduction in extracellular GABA concentration in sensory cortex may interfere with selective activation in motor cortex, leading to slowing the activation of spinal motoneurons and therefore to slowing motor responses.
为了阐明由于紧张性抑制不足导致的感觉调谐扁平化如何减慢运动反应,我们模拟了一个神经网络模型,其中感觉皮层网络([公式:见文本])和运动皮层网络([公式:见文本])相互连接,并且[公式:见文本]投射到脊髓运动神经元(Mns)。向[公式:见文本]呈现特征刺激并测量Mns的反应时间。细胞外空间中γ-氨基丁酸(GABA)浓度降低导致[公式:见文本]中感觉调谐的扁平化,这导致刺激敏感的[公式:见文本]锥体细胞活动减少,同时增加刺激不敏感的[公式:见文本]锥体细胞活动,从而延长Mns对施加的特征刺激的反应时间。我们认为,感觉皮层中细胞外GABA浓度的降低可能会干扰运动皮层中的选择性激活,导致脊髓运动神经元的激活减慢,进而导致运动反应减慢。