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用于获取股薄肌-半腱肌肌腱的手术显露优化。

Optimization of surgical exposure for harvesting gracilis-semitendinosus tendons.

作者信息

Luo Jialong, Li Shuzhen, Wang Chenyu, Li Qibo, Lin Jianghua, Shen Yuan, Wang Yuchen, Xu Dazheng, Song Bin, Jiang Chuan

机构信息

Department of Orthopedics, Sun Yat-Sen Memorial Hospital, Sun Yat-Sen University, 107 West Yanjiang Road, Guangzhou, 510120, People's Republic of China.

Zhongshan School of Medicine, Sun Yat-Sen University, 74 Zhongshan Er Road, Guangzhou, 510062, People's Republic of China.

出版信息

Int Orthop. 2023 Jan;47(1):131-140. doi: 10.1007/s00264-022-05598-5. Epub 2022 Oct 14.

Abstract

PURPOSE

This study was conducted to provide anatomical data and surface markers for the safe and efficient exposure of surgical incisions for harvesting gracilis tendons (GT) and semitendinosus tendons (STT) while avoiding technical pitfalls and nerve injury during harvest for ligament reconstruction.

METHODS

Seventy-four Chinese cadaveric lower limbs were dissected to expose the infrapatellar branch of the saphenous nerve (IPBSN) and pes anserinus (PA). Measurements of the borders and accessory bands of the PA tendons were taken. The arrangement of PA tendons and distribution of the IPBSN were assessed.

RESULTS

The PA was roughly shaped like a quadrangle, with its superior border at the horizontal plane of the tibial tuberosity (TT). The GT and STT bifurcation point was located on the medial border of the PA. From medial side to lateral side, the sartorius tendons (ST), GT, and STT fused gradually and formed the lateral border of the PA at the distal end. The tendon arrangement of the PA was primarily affected by ST, which commonly covered GT and STT completely. Variant tendons were found in 41.9% of specimens. The insertion of the accessory bands was distal but close to the inferior border of the PA. Accessory bands were observed only in STT and ST, and STT accounted for the most. The width of the first accessory band of STT was similar to the width of the STT. Additionally, most of the IPBSNs were proximal to the horizontal plane of the TT.

CONCLUSION

For clearly exposing the GT and STT, it is crucial to expose the GT and STT bifurcation point on the medial border of the PA, whether directly or indirectly through the incision.The influence of ST insertion and the variability of tendons within the PA must be paid attention to during the operation. To protect IPBSNs highly, the incision should not be higher than the TT level.

摘要

目的

本研究旨在提供解剖学数据和表面标志物,以便在安全有效地暴露用于采集股薄肌腱(GT)和半腱肌腱(STT)的手术切口时,避免在采集韧带重建材料过程中出现技术失误和神经损伤。

方法

解剖74例中国尸体下肢,以暴露隐神经髌下支(IPBSN)和鹅足(PA)。测量PA肌腱的边界和副带。评估PA肌腱的排列和IPBSN的分布。

结果

PA大致呈四边形,其上边界位于胫骨结节(TT)的水平面。GT和STT分叉点位于PA的内侧边界。从内侧到外侧,缝匠肌腱(ST)、GT和STT逐渐融合,并在远端形成PA的外侧边界。PA的肌腱排列主要受ST影响,ST通常完全覆盖GT和STT。在41.9%的标本中发现了变异肌腱。副带的插入位置较远,但靠近PA的下边界。仅在STT和ST中观察到副带,其中STT最多。STT第一副带的宽度与STT的宽度相似。此外,大多数IPBSN位于TT水平面的近端。

结论

为了清晰暴露GT和STT,无论是直接还是通过切口间接暴露PA内侧边界上的GT和STT分叉点至关重要。手术过程中必须注意ST插入的影响以及PA内肌腱的变异性。为了高度保护IPBSN,切口不应高于TT水平。

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