首页> 美国卫生研究院文献>The Journal of Neuroscience >Rhythmic Whisking Area (RW) in Rat Primary Motor Cortex: An Internal Monitor of Movement-Related Signals?
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Rhythmic Whisking Area (RW) in Rat Primary Motor Cortex: An Internal Monitor of Movement-Related Signals?

机译:大鼠原发性运动皮层的节律性扫动区(RW):与运动有关的信号的内部监控器?

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摘要

Vibrissae-related sensorimotor cortex controls whisking movements indirectly via modulation of lower-level sensorimotor loops and a brainstem central pattern generator (CPG). Two different whisker representations in primary motor cortex (vM1) affect whisker movements in different ways. Prolonged microstimulation in RF, a larger anterior subregion of vM1, gives rise to complex face movements and whisker retraction while the same stimulation evokes large-amplitude rhythmic whisker movement in a small caudo-medial area (RW). To characterize the motor cortex representation of explorative whisking movements, here we recorded RW units in head-fixed rats trained to contact a moving object with one whisker. RW single units were found to encode two aspects of whisker movement independently, albeit on slow time scales (hundreds of milliseconds). The first is whisker position. The second consists of speed (absolute velocity), intensity (instantaneous power), and frequency (spectral centroid). The coding for the latter three parameters was tightly correlated and realized by a continuum of RW responses—ranging from a preference of movement to a preference of rest. Information theory analysis indicated that RW spikes carry most information about position and frequency, while intensity and speed are less well represented. Further, investigating multiple and single RW units, we found a lack of phase locking, movement anticipation, and contact-related tactile responses. These findings suggest that RW neither programs detailed whisker trajectories nor initiates them. Nor does it play a role in processing object touch. Its relationship to whisking is thus indirect and may be related to movement monitoring, perhaps using feedback from the CPG.
机译:触须相关的感觉运动皮层通过调制低级感觉运动环和脑干中央模式发生器(CPG)间接控制搅拌运动。主运动皮层(vM1)中的两种不同的晶须表示以不同的方式影响晶须运动。在vM1的较大前子区域RF中,长时间的微刺激会引起复杂的面部运动和晶须缩回,而相同的刺激会在较小的伪内侧区域(RW)引起大幅度的有节奏的晶须运动。为了表征探索性搅拌运动的运动皮层表示,在这里,我们记录了头固定大鼠的RW单位,这些大鼠受过训练,可以用一根晶须接触运动的物体。发现RW单个单位独立编码了晶须运动的两个方面,尽管时间尺度很慢(数百毫秒)。首先是晶须位置。第二个由速度(绝对速度),强度(瞬时功率)和频率(频谱质心)组成。后三个参数的编码紧密相关,并通过连续的RW响应实现-从运动的偏好到静止的偏好。信息理论分析表明,RW尖峰携带有关位置和频率的大多数信息,而强度和速度的表示却不太好。此外,在研究多个和单个RW单元时,我们发现缺少锁相,运动预期以及与接触有关的触觉响应。这些发现表明,RW既不编写详细的晶须轨迹也不进行初始化。它也不在处理对象触摸中发挥作用。因此,它与打蛋器的关系是间接的,并且可能与运动监控有关,也许使用CPG的反馈。

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