Prut Yifat, Perlmutter Steve I
The Hebrew University, Hadassah Medical School, Jerusalem 91120, Israel.
J Neurosci. 2003 Oct 22;23(29):9611-9. doi: 10.1523/JNEUROSCI.23-29-09611.2003.
The relationship between the activity of pairs of simultaneously recorded spinal interneurons (INs) in the cervical enlargement was studied in five monkeys performing voluntary wrist movements. The tendency for INs to exhibit similar response properties and synchronized firing was tested as a function of physical distance between the cells and their correlational linkages with forearm muscles. Nearby INs tended to have more similar torque and direction turning (signal correlation) and more similar response profiles (e.g., tonic vs phasic firing) than INs that were far apart. This suggests that nearby cells receive common synaptic input. In contrast, the trial-to-trial covariation of rate around the mean rate for all trials (noise correlation) was independent of the distance between the neurons. Furthermore, signal and noise correlation were independent, suggesting different underlying mechanisms. Surprisingly, spike-to-spike correlation between INs was relatively infrequent and weak, as measured by cross-correlation histograms. In contrast, single motor units (SMUs) in forearm muscles fired more synchronously, particularly for SMUs in single extensor muscles. Either common drive to INs is too weak to induce synchronized firing, or there is an active decorrelation mechanism within IN networks.
在五只进行自愿性腕部运动的猴子身上,研究了颈膨大处同时记录的成对脊髓中间神经元(INs)的活动之间的关系。测试了INs表现出相似反应特性和同步放电的倾向,作为细胞间物理距离及其与前臂肌肉相关性联系的函数。与相距较远的INs相比,相邻的INs往往具有更相似的扭矩和方向转动(信号相关性)以及更相似的反应模式(例如,紧张性放电与相位性放电)。这表明相邻细胞接受共同的突触输入。相比之下,所有试验平均速率周围的速率逐次协变(噪声相关性)与神经元之间的距离无关。此外,信号和噪声相关性是独立的,表明存在不同的潜在机制。令人惊讶的是,通过互相关直方图测量,INs之间的峰峰相关性相对较少且较弱。相比之下,前臂肌肉中的单个运动单位(SMUs)放电更同步,特别是单块伸肌中的SMUs。要么对INs的共同驱动太弱而无法诱导同步放电,要么IN网络内存在主动去相关机制。