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Localization of masticatory motoneurons in the trigeminal motor nucleus of shrew and pig, with emphasis on the innervation ratio in the shrew

机译:咀嚼运动神经元在of和猪的三叉神经运动核中的定位,重点是the的神经支配率

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Objectives: We investigated the topographical representation of the masticatory muscles, primarily in the trigeminal motor nucleus (TMN) of the house musk shrew (Suncus murinus) and miniature pig, in a series of mammalian comparative anatomical studies. Additionally, correlations between motoneurons and muscles were investigated in order to examine the functionality of each muscle in the trigeminal motor system. Methods: Motoneurons were labeled using horseradish peroxidase (HRP) injection into each muscle innervated by the trigeminal nerve. In the shrew, the sizes and numbers of HRP-labeled neurons, muscle weight, and numbers of muscle fibers were measured in the innervated muscles, and correlation coefficients for the relationships among these parameters were calculated. Results: The motoneuron cluster of each muscle was arranged in the TMN in a manner similar to that observed in other previously reported animals, but the distribution of the lateral pterygoid motoneurons varied between species. In addition, considerably higher overlap was observed in each pig jaw-closer motoneuron cluster compared with other animals. The approximate innervation ratios were as follows: masseter, 337; temporal, 322; anterior digastric, 137; medial pterygoid, 110; lateral pterygoid, 79; mylohyoid, 42; tensor veli palatini, 42; transverse mandibular, 16; and tensor tympani muscles, 5. Conclusions The distribution pattern of the masticatory motoneurons was clearly observed in the shrew and pig TMN, and various correlations between the motoneuron and innervated muscles were determined.
机译:目的:在一系列哺乳动物的比较解剖学研究中,我们调查了咀嚼肌的地形学表现,主要在室内麝香sh(Suncus murinus)和微型猪的三叉神经运动核(TMN)中。另外,研究了运动神经元和肌肉之间的相关性,以检查三叉神经运动系统中每条肌肉的功能。方法:用辣根过氧化物酶(HRP)注射到三叉神经支配的每块肌肉中,标记动子素。在the中,测量了受神经支配的肌肉中HRP标记的神经元的大小和数量,肌肉重量以及肌肉纤维的数量,并计算了这些参数之间的关系的相关系数。结果:每只肌肉的运动神经元簇在TMN中的排列方式与先前报道的其他动物中观察到的相似,但是侧翼翼龙运动神经元的分布因物种而异。此外,与其他动物相比,每个猪下颌近距离运动神经元簇中观察到的重叠度更高。大致的神经支配率如下:咬肌337;时间的322;腹前肌137;翼状ery肉内侧,110;外侧翼状,肉,79;乳突舌,42;张量veli palatini,42;下颌骨16 5,结论在the和猪的TMN中清楚地观察到咀嚼运动神经元的分布模式,并确定了运动神经元与神经支配的肌肉之间的各种相关性。

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