人类三指指骨适当数字动脉穿孔动脉的解剖模式。

Injury Pub Date : 2023-12-01 Epub Date: 2024-01-13 DOI:10.1016/j.injury.2023.111062
Fernando Navío-Fernández, Fernando Corella, Montserrat Ocampos, Esther Pastor-Fernández, Teresa Vázquez
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摘要

介绍:在进行数字动脉穿孔器(DAP)皮瓣手术时,穿孔动脉的定位是一项挑战。本研究旨在描述新鲜尸体三指指腹中源自适当数字动脉的穿孔动脉的解剖模式,并将该模式作为实施这些皮瓣的参考点:用乳胶注射动脉系统后,我们对 28 只新鲜尸体手(14 男,14 女;10 右手,18 左手)进行了描述性解剖研究。每个标本在解剖后都拍摄了数码照片,并通过 Adobe Photoshop CS6 进行分析,获得了每个手指(第二至第五指)、指骨(近端、中间和远端)和指侧(桡侧或尺侧)的穿孔动脉数量:比较不同手指、指骨、指侧、性别和侧位之间穿孔动脉数量的平均值,结果具有统计学意义。在分析每个手指每个指骨三分之一处的穿孔动脉数量时,我们发现超过 75% 的标本在近节指骨的远端三分之二处和中节指骨的三分之二处至少有一条穿孔动脉,超过 50% 的标本在远节指骨的近端三分之一处至少有一条穿孔动脉:根据手指、指骨、指侧、性别和侧位的不同,我们发现了一种同质的穿孔动脉解剖模式,即在近节指骨远端区域、整个中节指骨和远节指骨近端区域存在高密度的穿孔动脉。
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Anatomic pattern of perforator arteries from proper digital arteries in human triphalangeal digits.

Introduction: The localization of the perforator artery for the performance of digital artery perforator (DAP) flaps poses a challenge. This study aims to describe the anatomical pattern of the perforator arteries originating from the proper digital artery in fresh cadaveric triphalangeal digits and to use this pattern as a point of reference for performing these flaps.

Material and method: We performed a descriptive anatomical study on 28 fresh cadaveric hands (14 male, 14 female; 10 right hands, 18 left hands) after injecting the arterial system with latex. Digital photographs were taken of each specimen after dissection and the number of perforator arteries in each finger (second to fifth), phalanx (proximal, middle and distal) and finger side (radial or ulnar) were obtained by analysis in Adobe Photoshop CS6.

Results: We obtained statistically significant results when comparing the means of the number of perforator arteries between fingers, phalanx, finger side, gender and laterality. When analyzing the number of perforator arteries in each phalanx third in each finger, we found that more than 75% of specimens had at least one perforator artery in the two distal thirds of the proximal phalanx and the three-thirds of the middle phalanx and more than 50% had at least one in the proximal third of the distal phalanx.

Conclusions: We present a homogeneous perforator artery anatomic pattern, by finger, phalanx, finger side, gender and laterality, consisting of a high density of perforator arteries in the distal proximal phalanx region, throughout the middle phalanx and in the proximal distal phalanx region, which would be the areas of greatest certainty to help predict the favorable evolution of a digital artery perforator flap in the fingers.

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