Tomas J, Santafé M, Fenoll R, Mayayo E, Batlle J, Lanuza A, Piera V
Unitat d'Histología i Embriología General, Facultat de Medicina (Reus), Universitat de Barcelona, (Tarragona), Spain.
Biol Cell. 1992;74(3):299-305. doi: 10.1016/0248-4900(92)90041-x.
A silver impregnation method and a morphometric approach were used to define differences existing in the motor nerve terminal branching pattern between a fast-twitch muscle (extensor digitorum longus) and a slow-twitch one (soleus) of the normal adult rat. Because no single measure can describe precisely all geometrical properties (ie both topology and metrics) of the nerve terminals, we evaluated morphologic parameters defining length and angular characteristics in the different terminal segments classified according to their centrifugal order. The main results indicate that the distal free-end segments in the extensor digitorum longus muscle are shorter and less divergent than in the soleus nerve terminals. The endings in the two muscles have different fractal dimensions. Findings are discussed in the context of the hypothetical mechanisms governing motor nerve terminal size and complexity.
采用银浸染法和形态测量学方法,确定正常成年大鼠快肌(趾长伸肌)和慢肌(比目鱼肌)运动神经终末分支模式的差异。由于没有单一指标能精确描述神经终末的所有几何特性(即拓扑结构和度量),因此我们评估了形态学参数,这些参数定义了根据离心顺序分类的不同终末节段的长度和角度特征。主要结果表明,趾长伸肌中的远端自由端节段比目鱼肌神经终末中的更短且发散程度更小。两块肌肉中的终末具有不同的分形维数。在控制运动神经终末大小和复杂性的假设机制背景下对研究结果进行了讨论。