Plexiform vascular structures in the human digital dermal layer: a SEM--corrosion casting morphological study.

A Manelli, S Sangiorgi, M Ronga, M Reguzzoni, A Bini, M Raspanti
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引用次数: 21

Abstract

This study aimed to describe the impressive diversity of vascular plexiform structures of the hypodermal layer of human skin. We chose the human body site with the highest concentration of dermal corpuscles, the human digit, and processed it with the corrosion casting technique and scanning electron microscopy analysis (SEM). This approach proved to be the best tool to study these microvascular architectures, free from any interference by surrounding tissues. We took high-definition pictures of the vascular network of sweat glands, thermoreceptorial and tactile corpuscles, the vessels constituting the glomic bodies and those feeding the hair follicles. We observed that the three-dimensional disposition of these vessels strictly depends on the shape of the corpuscles supplied. We could see the tubular vascularization of the excretory duct of sweat glands and the ovoid one feeding their bodies, sometimes made up of two lobes. In some cases, knowledge of these morphological data regarding the normal disposition in space and intrinsic vascularization structure of the dermal corpuscles can help to explain many of the physiopathological changes occurring during chronic microangiopathic diseases.

人体数字真皮层的网状血管结构:扫描电镜-腐蚀铸造形态学研究。
本研究旨在描述人类皮肤下皮层血管丛状结构的多样性。我们选择真皮微粒浓度最高的人体部位——人体手指,采用腐蚀铸造技术和扫描电镜分析(SEM)对其进行处理。这种方法被证明是研究这些微血管结构的最佳工具,不受周围组织的任何干扰。我们拍摄了汗腺、热感受器和触觉小体的血管网络、构成囊体的血管和为毛囊提供营养的血管的高清照片。我们观察到这些血管的三维分布严格依赖于供体的形状。我们可以看到汗腺排泄管的管状血管化和供养它们身体的卵形血管化,有时由两个叶组成。在某些情况下,了解这些关于真皮小体在空间中的正常配置和内在血管化结构的形态学数据可以帮助解释慢性微血管病变期间发生的许多生理病理变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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