Peters M, Altrup U
J Neurophysiol. 1984 Sep;52(3):389-409. doi: 10.1152/jn.1984.52.3.389.
Identified motor neurons in the buccal ganglia of Helix pomatia and pharynx muscles innervated by them were studied with intracellular recording and cobalt staining. Retrograde cobalt staining via the buccal nerves indicated that neurons occupy relatively constant positions within the ganglia. With intracellular cobalt staining it was shown that the shape of a representative motor neuron (B4) is similar in different preparations. In some cases, however, deviations from the normal pattern of axon distribution were found. Presumed motor endings of neuron B4 in the muscle were also visualized with intracellular staining. Recordings from individual motor neurons show typical phase relationships of spontaneous spike activity. Most motor neurons are active in the retraction phase of the radula. Only excitatory motor neurons were found. Most neurons directly supply more than one muscle. Amplitude of excitatory junction potentials (EJP) and plasticity at neuromuscular junctions from one neuron are similar in different muscles. Single muscle fibers receive polyneuronal innervation. Activity of single motor neurons already leads to muscle contraction even without spiking of the muscle cells. Muscle tension depends on integrated EJP size. Most motor neurons supply typical combinations of a set of muscles. Thus, several muscles can be activated synchronously by activity of a single motor neuron. In this way muscle combinations are predetermined morphologically by the peripheral branching patterns of the respective neurons.
利用细胞内记录和钴染色技术,对苹果螺颊神经节中已鉴定的运动神经元及其支配的咽部肌肉进行了研究。通过颊神经逆行钴染色表明,神经元在神经节内占据相对恒定的位置。通过细胞内钴染色显示,在不同标本中,代表性运动神经元(B4)的形态相似。然而,在某些情况下,发现轴突分布模式偏离正常。通过细胞内染色也观察到了神经元B4在肌肉中的假定运动终末。对单个运动神经元的记录显示出自发动作电位活动的典型相位关系。大多数运动神经元在齿舌回缩阶段活跃。仅发现兴奋性运动神经元。大多数神经元直接支配不止一块肌肉。来自一个神经元的兴奋性接头电位(EJP)的幅度和神经肌肉接头处的可塑性在不同肌肉中相似。单根肌纤维接受多神经元支配。即使在肌肉细胞不产生动作电位的情况下,单个运动神经元的活动也已能导致肌肉收缩。肌肉张力取决于整合的EJP大小。大多数运动神经元支配一组肌肉的典型组合。因此,单个运动神经元的活动可同步激活几块肌肉。通过这种方式,肌肉组合在形态学上由各个神经元的外周分支模式预先确定。