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Quantitative anatomical study of male pelvic autonomic plexus and its clinical potential in rectal resection

机译:男性盆腔自主神经丛的定量解剖学研究及其在直肠切除术中的临床潜力

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The pelvic autonomic nerves innervate the pelvic viscera, and carry a high risk of damage during surgery. This high risk has been ascribed to the complex interrelationship of pelvic paravisceral structures and the difficulty in identifying particular structures, despite the fact that the anatomic characteristics of the pelvic autonomic plexus have been well documented. We dissected ten male embalmed adult cadavers with particular attention to the quantitative parameters of the pelvic plexus and its subsidiary plexus. The right inferior hypogastric plexus and its rectal branch were found to be significantly longer and wider than the left one, while the transverse diameter of the vesical and prostatic branches of the left side was significantly larger the right. The inferior mesenteric plexus gave off fibers directly to form the pelvic plexus in four of 20 hemipelves (20%). In the side-by-side comparison, the distance to midpoint of the sacral promontory of the left rectal plexus was significantly longer than that of the right, whereas the maximum length (the length of the longest nerve fiber from origin to corresponding organ) of the left vesical plexus was significantly shorter than that of the right. Additionally, the craniocaudal and dorsoventral diameters of the right pelvic autonomic plexus were significantly shorter those of the left. The quantitative parameters relating to the pelvic autonomic plexuses not only can enhance our understanding of its anatomy and function, but can also be used as references for surgical procedures and robot-assisted surgery.
机译:盆腔自主神经支配盆腔内脏,在手术过程中极易造成损伤。尽管已充分记录了盆腔自主神经丛的解剖学特征,但这种高风险归因于盆腔内脏结构的复杂相互关系以及难以识别特定结构。我们解剖了十只男性防腐​​成年尸体,并特别注意了骨盆丛及其下丛的定量参数。发现右下腹神经丛及其直肠分支明显长于左分支,而左侧的膀胱和前列腺分支的横向直径明显大于右。肠系膜下神经丛直接释放纤维,形成20个半骨膜中的四个半球(20%)。在并排比较中,左直肠神经丛到to海角中点的距离明显长于右眼神经丛,而最大长度(从原点到相应器官的最长神经纤维的长度)为左侧膀胱丛明显短于右侧。此外,右盆腔自主神经丛的颅尾和背腹直径明显短于左侧。与盆腔自主神经丛有关的定量参数不仅可以增进我们对其解剖结构和功能的理解,而且还可以用作外科手术和机器人辅助手术的参考。

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