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Fine structure of identified muscle fibers and their neuromuscular synapses in the limb closer muscle of the crabEriphia spinifrons

机译:已识别的肌肉纤维及其神经肌肉突触的精细结构 在螃蟹的肢体近距离肌肉中Eriphia spinifrons

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The fine structure of single identified muscle fibers and their nerve terminals in the limb closer muscle of the shore crabEriphia spinifronswas examined, using a previous classification based on histochemical evidence which recognizes a slow (Type-I) fiber and three fast (Type-II, Type-III, Type-IV) fibers. All four fiber types have a fine structure characteristic of crustacean slow muscle, with 10–12 thin filaments surrounding each thick filament and sarcomere lengths of 6–13 μm. Type-IV fibers have sarcomere lengths of 6 μm while the other three types have substantially longer sarcomeres (10–13 μm). Structural features of nerve terminals revealed excitatory innervation in all four fiber types but inhibitory innervation in Type-I, Type-II, and Type-III fibers only. Thus fibers with longer sarcomeres receive the inhibitor axon but those with shorter sarcomeres do not. Amongst the former, synaptic contact from an inhibitory nerve terminal onto an excitatory one, denoting presynaptic inhibition, was seen in Type-I and Type-II fibers but not in Type-III and Type-IV fibers. Inhibitory innervation of the walking leg closer muscle is therefore highly differentiated: some fibers lack inhibitory nerve terminals, some possess postsynaptic inhibition, and some possess both postsynaptic and presynaptic in
机译:使用先前基于组织化学证据的分类检查了滨蟹 Eriphia spinifrons(Eriphia spinifrons)肢体近距离肌肉中单个已识别的肌肉纤维及其神经末梢的精细结构,该分类可识别慢(I 型)纤维和三根快速(II型、III 型、IV 型)纤维。所有四种纤维类型都具有甲壳类慢肌的精细结构特征,每根粗丝周围有 10-12 根细丝,肌节长度为 6-13 μm。IV 型纤维的肌节长度为 6 μm,而其他三种类型的肌节长度要长得多 (10-13 μm)。神经末梢的结构特征显示所有四种纤维类型均有兴奋性神经支配,但仅在 I.、II 型和 III 型纤维中具有抑制性神经支配。因此,具有较长肌节的纤维接受抑制剂轴突,而具有较短肌节的纤维则不接受。在前者中,从抑制性神经末梢到兴奋性神经末梢的突触接触,表示突触前抑制,见于 I 型和 II 型纤维,但在 III 型和 IV 型纤维中未见。因此,步行腿近距离肌肉的抑制性神经支配是高度分化的:一些纤维缺乏抑制性神经末梢,一些纤维具有突触后抑制,一些纤维同时具有突触后和突触前神经末梢

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