Neuroplasticity and Regeneration Group, Institute of Neurosciences, Department of Cell Biology, Physiology and Immunology, Universitat Autònoma de Barcelona, Bellaterra E-08193, Spain.
Muscle Nerve. 2010 Aug;42(2):192-201. doi: 10.1002/mus.21652.
Knowledge of the intraneural topography of peripheral nerves may help to improve nerve repair after injuries and the selectivity of neural interfaces. We studied the fascicular pattern of motor fibers of the rat sciatic-tibial nerve. We carried out an anatomical dissection of the muscular tributaries of the tibial nerve in the leg. Immunohistochemistry against choline acetyltransferase was used to identify motor axons. Retrograde tracing allowed localization of the muscular fascicles at proximal levels of the sciatic trunk. The distribution of motor fibers in transverse section of the tibial nerve is not homogeneous; two clusters were identified, each one containing fibers of functionally related muscles. Retrograde tracing allowed for the identification of motor fascicles, each one well localized along the sciatic nerve. In the rat there is a somatotopic organization of the sciatic nerve, with muscular fascicles maintaining the same relative position along the entire nerve.
神经内的周围神经的拓扑结构的知识可能有助于提高神经修复后的损伤和神经接口的选择性。我们研究了大鼠坐骨-胫神经运动纤维的束状模式。我们对小腿胫神经的肌支进行了解剖学分离。用抗胆碱乙酰转移酶的免疫组织化学来识别运动轴突。逆行追踪使在坐骨干的近端水平定位肌束成为可能。胫神经的横切面上运动纤维的分布不均匀; 确定了两个簇,每个簇包含功能相关的肌肉纤维。逆行追踪允许识别运动束,每个束都很好地定位于坐骨神经上。在大鼠中,坐骨神经存在一种躯体定位组织,肌束沿整个神经保持相同的相对位置。