Origin and antimeric distribution of brachial plexus nerves in Macaca mulatta (Zimmermann, 1780) (Primates: Cercopithecidae)

C. A. Santos-Sousa, M. Gomes, N. C. Carvalho, P. Souza-Junior, C. M. Santos, M. Abidu-Figueiredo
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引用次数: 12

Abstract

Abstract Morphology studies provide knowledge that allows us to understand how animals interact with their natural environment or in captivity. In this context, comparative anatomy on the formation of the brachial plexus has been a matter of interest since the 19th century, and remains one of the most intriguing topics of contemporary anatomy. The aim of this study was to describe the origin and the antimeric distribution of the brachial plexus nerves in Macaca mulatta, as well as the muscles innervated by it. Ten male rhesus monkeys (Macaca mulatta) were used. Animals came from the Laboratory Animals Breeding Centre (Cecal/Fiocruz), and were donated to the Animal Anatomy Department of the Universidade Federal Rural do Rio de Janeiro. Specimens were fixed in formaldehyde by infusion of a 10% solution. They were subsequently kept in low-density polythene containers with 500 L of 30% formaldehyde over a period of 12 months. In 11 plexus (55%) the resulting nerves were constituted by the connections between the ventral spinal branches C5, C6, C7, C8 and T1. In five plexus (25%), the participant roots were C4, C5, C6, C7, C8, T1 and T2. In two (10%) plexus, they were C5, C6, C7, C8, T1 and T2. In the other two (10%) plexus it was observed to be formed from C6, C7, C8, T1 and T2. The ventral branches formed three nerve trunks: cranial, middle and caudal. The suprascapular, subscapular, axillary, musculocutaneous, radial, median and ulnar nerves innervated the intrinsic muscles. The subclavian, thoracodorsal, medial cutaneous nerve of the arm and forearm, long thoracic, cranial pectoral and caudal pectoral innervated extrinsic muscles. Results obtained in this study contribute to the field of comparative anatomy of primates, and provide information for applied research, serving as a basis for clinical and surgical procedures that use this species as a model animal.
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猕猴臂丛神经的起源和反eric分布(Zimmermann, 1780)(灵长类:猴尾科)
形态学研究提供了知识,使我们能够了解动物如何与自然环境或圈养环境相互作用。在这种背景下,自19世纪以来,对臂丛形成的比较解剖学一直是一个有趣的问题,并且仍然是当代解剖学中最有趣的话题之一。本研究的目的是描述猕猴臂丛神经的起源和反异质分布,以及由臂丛神经支配的肌肉。10只雄性恒河猴(Macaca mulatta)被使用。动物来自实验动物繁育中心(Cecal/Fiocruz),并捐赠给里约热内卢联邦农村大学动物解剖系。通过注入10%溶液将标本固定在甲醛中。随后将它们保存在含有500升30%甲醛的低密度聚乙烯容器中,为期12个月。11个臂丛(55%)形成的神经由C5、C6、C7、C8和T1之间的腹侧脊髓分支连接构成。在5个神经丛中(25%),参与根为C4、C5、C6、C7、C8、T1和T2。在两个(10%)神经丛,它们是C5, C6, C7, C8, T1和T2。在另外两个(10%)神经丛中,观察到它由C6, C7, C8, T1和T2形成。腹侧分支形成三个神经干:颅、中、尾。肩胛上神经、肩胛下神经、腋窝神经、皮肌神经、桡神经、正中神经和尺神经支配着内在肌。锁骨下,胸背,手臂和前臂的内侧皮神经,胸长肌,胸颅骨和胸尾神经支配的外在肌肉。本研究为灵长类动物的比较解剖学领域做出了贡献,并为应用研究提供了信息,为以该物种为模型动物的临床和外科手术提供了依据。
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Italian Journal of Zoology
Italian Journal of Zoology 生物-动物学
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6-12 weeks
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