Department of Physiology, Feinberg School of Medicine, Northwestern University, Chicago, IL 60611, USA.
Cereb Cortex. 2013 Aug;23(8):1965-77. doi: 10.1093/cercor/bhs184. Epub 2012 Jul 3.
Corticospinal pyramidal neurons mediate diverse aspects of motor behavior. We measured spike-related electrophysiological properties of identified corticospinal neurons in primary motor cortex slices from young adult mice. Several consistent features were observed in the suprathreshold responses to current steps: 1) Corticospinal neurons fired relatively fast action potentials (APs; width at half-maximum 0.65 ± 0.13 ms, mean ± standard deviation [SD]) compared with neighboring callosally projecting corticostriatal neurons. Corticospinal AP width was intermediate between 2 classes of inhibitory interneuron in layer 5B. Spike-to-spike variability in AP width and other spike waveform parameters was low, even during repetitive firing up to 20 Hz, that is, the relative narrowness of corticospinal APs was essentially frequency independent. 2) Frequency-current (f-I) relationships were nearly linear. 3) Trains of APs displayed regular firing, with rates typically staying constant or accelerating over time. Corticospinal neurons recorded from older mice (up to 4 months) or from a separate lateral cortical area (Region B; corresponding to secondary somatosensory cortex) showed generally similar intrinsic properties. Our findings have implications for interpreting spike waveforms of in vivo recorded neurons in the motor cortex. This analysis provides a framework for further biophysical and computational investigations of corticospinal neurons and their roles in motor cortical function.
皮质脊髓锥体神经元介导运动行为的多个方面。我们测量了来自年轻成年小鼠初级运动皮层切片中已鉴定的皮质脊髓神经元的与尖峰相关的电生理特性。在超过阈值的电流步响应中观察到几个一致的特征:1)与相邻的胼胝体投射的皮质纹状体神经元相比,皮质脊髓神经元发射相对较快的动作电位(AP;半最大值宽度为 0.65 ± 0.13 ms,平均值±标准偏差 [SD])。皮质脊髓 AP 宽度介于 5B 层的 2 类抑制性中间神经元之间。即使在高达 20 Hz 的重复放电期间,AP 宽度和其他尖峰波形参数的尖峰到尖峰变异性也很低,即皮质脊髓 AP 的相对狭窄本质上是频率无关的。2)频率-电流(f-I)关系几乎是线性的。3)AP 串显示出规则的发射,其速率通常随时间保持恒定或加速。从年龄较大的小鼠(最多 4 个月)或从另一个皮质外侧区域(区域 B;对应于次级体感皮层)记录的皮质脊髓神经元通常显示出相似的内在特性。我们的发现对解释运动皮层中体内记录的神经元的尖峰波形具有重要意义。该分析为皮质脊髓神经元及其在运动皮层功能中的作用的进一步生物物理和计算研究提供了框架。