Petersen Carl C H
Laboratory of Sensory Processing, Brain Mind Institute, SV-BMI-LSENS, Station 15, Ecole Polytechnique Federale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.
Neuron. 2007 Oct 25;56(2):339-55. doi: 10.1016/j.neuron.2007.09.017.
The tactile somatosensory pathway from whisker to cortex in rodents provides a well-defined system for exploring the link between molecular mechanisms, synaptic circuits, and behavior. The primary somatosensory cortex has an exquisite somatotopic map where each individual whisker is represented in a discrete anatomical unit, the "barrel," allowing precise delineation of functional organization, development, and plasticity. Sensory information is actively acquired in awake behaving rodents and processed differently within the barrel map depending upon whisker-related behavior. The prominence of state-dependent cortical sensory processing is likely to be crucial in our understanding of active sensory perception, experience-dependent plasticity and learning.
啮齿动物从触须到皮层的触觉体感通路为探索分子机制、突触回路和行为之间的联系提供了一个明确的系统。初级体感皮层有一个精确的躯体感觉图谱,其中每根单独的触须都在一个离散的解剖单元“桶状结构”中得到体现,这使得能够精确描绘功能组织、发育和可塑性。在清醒行为的啮齿动物中,感觉信息是主动获取的,并且根据与触须相关的行为在桶状图谱内进行不同的处理。状态依赖的皮层感觉处理的突出性可能对我们理解主动感觉感知、经验依赖的可塑性和学习至关重要。