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导致快速和慢速大鼠骨骼肌神经肌肉接头处出现不同特性的因素。

Factors causing different properties at neuromuscular junctions in fast and slow rat skeletal muscles.

作者信息

Waerhaug O, Lømo T

机构信息

Department of Anatomy, University of Oslo, Blindern, Norway.

出版信息

Anat Embryol (Berl). 1994 Aug;190(2):113-25. doi: 10.1007/BF00193409.

Abstract

Neuromuscular junctions on fast and slow skeletal muscle fibers have different properties. Possible reasons for these differences were examined in adult rat soleus (SOL) muscle fibers reinnervated at new ectopic or old denervated sites by fast fibular (FIB) or slow SOL motoneurons. FIB motoneurons formed large ectopic junctions with a high density of nerve terminal varicosities (fast appearance), whereas SOL motoneurons formed small ectopic junctions with a low density of varicosities (slow appearance). Both FIB and SOL motoneurons formed small junctions with a slow appearance when reinnervating old SOL endplates. FIB nerves innervating ectopic sites and SOL nerves reinnervating old sites had the same appearance whether they contacted the SOL fibers alone (single innervation) or together (dual innervation). Continuous stimulation of the FIB nerve at 10 Hz for 3-4 months reduced the size of ectopic FIB and intact extensor digitorum longus (EDL) junctions and caused a modest reduction in density of terminal varicosities in EDL. Junction size and muscle fiber diameter were positively correlated, but the slope describing this relation was steeper for FIB junctions than for SOL junctions. It is concluded that in the present system (1) motoneuron type and not muscle fiber type determines the fast or slow character of the neuromuscular junction. (2) denervated endplates of one type place stable and severe constraints on the termination pattern of reinnervating axons of another type, (3) the appearance of fast EDL junctions undergoes a modest fast to slow transformation when exposed to long-term slow pattern stimulation, and (4) not only the size of the muscle fibers, but also the type and firing pattern of the motoneurons and the spatial constraints at preformed endplates influence the relation between junction size and muscle fiber diameter.

摘要

快、慢骨骼肌纤维上的神经肌肉接头具有不同特性。在成年大鼠比目鱼肌(SOL)纤维中,研究了这些差异的可能原因。这些纤维在新的异位或旧的去神经部位由快肌腓骨(FIB)或慢肌SOL运动神经元重新支配。FIB运动神经元形成大的异位接头,神经末梢膨体密度高(快速外观),而SOL运动神经元形成小的异位接头,膨体密度低(缓慢外观)。当重新支配旧的SOL终板时,FIB和SOL运动神经元都形成外观缓慢的小结头。支配异位部位的FIB神经和重新支配旧部位的SOL神经,无论它们单独(单一支配)还是一起(双重支配)接触SOL纤维,外观都相同。以10Hz持续刺激FIB神经3 - 4个月,可减小异位FIB和完整的趾长伸肌(EDL)接头的大小,并使EDL终末膨体密度适度降低。接头大小与肌纤维直径呈正相关,但描述这种关系的斜率,FIB接头比SOL接头更陡。得出的结论是,在本系统中:(1)运动神经元类型而非肌纤维类型决定神经肌肉接头的快或慢特性。(2)一种类型的去神经终板对另一种类型的重新支配轴突的终末模式施加稳定且严格的限制。(3)当暴露于长期慢模式刺激时,快速的EDL接头外观会经历适度的从快到慢转变。(4)不仅肌纤维大小,而且运动神经元的类型和放电模式以及预先形成的终板处的空间限制,都会影响接头大小与肌纤维直径之间的关系。

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