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股内收肌筋膜的形态学研究及其关系

Morphological study and relations of the fascia vasto-adductoria.

作者信息

Elazab Eman Elazab Beheiry

机构信息

Anatomy & Embryology Department, Faculty of Medicine, Mowasat Branch, Alexandria University, Elgamaa station, Alexandria, 21524, Egypt.

出版信息

Surg Radiol Anat. 2017 Oct;39(10):1085-1095. doi: 10.1007/s00276-017-1846-7. Epub 2017 Mar 29.

Abstract

The precise description of the fascia vasto-adductoria (FVA) has become an issue of great surgical and clinical importance. Neurovascular entrapment within the adductor canal (AC) may simulate many clinical conditions for cases presented with medial knee or leg pain and ischemic manifestations of the leg. The aim of the present work is to describe the morphological features of the FVA and to elucidate its neurovascular relations. Forty thigh specimens, pertaining to 15 embalmed and five fresh adult human cadavers, were dissected in pursuit of this aim. The FVA was a continuous subsartorial fascia, roofing the whole length of AC and extended between two points lying at a mean distance of 25.6 and 7 cm proximal to the base of patella. It was subdivided into two parts; proximal thin quadrangular (proximal part of FVA) and distal thick pentagonal (vastoadductor membrane; VAM) and the subsartorial space was observed superficial to it. The mean length of its proximal and distal parts was 7.8 and 7.9 cm, respectively. The proximal part of FVA, while stretched across the vastus medialis (VM) and the adductor longus (AL) muscles, became attached to the wall of the femoral artery and overlaid the femoral vessels, the saphenous nerve (SN), and an arterial pedicle for VM muscle. It was constantly pierced by two arterial pedicles arising from the femoral artery to the sartorius muscle and occasionally (50%) by a communicating nerve branch arising from the SN to join the medial femoral cutaneous nerve. The VAM stretched across the VM muscle and both the AL and adductor magnus (AM) muscles and overlaid the SN, its subsartorial and lower medial femoral cutaneous branches, femoral vessels, 1-3 arterial pedicles for the sartorius and descending genicular vessels. The VAM originated from the tendinous fibres of the AM tendon and constantly spread anterolaterally. It was constantly pierced by 1-3 arterial pedicles to sartorius muscle and both the lower medial femoral cutaneous branch and the subsartorial branches of the SN. An arterial pedicle to the VM muscle and perforating veins between the superficial veins and the femoral vein proved to pierce it in 8/40 specimens. Entrapment of the SN at the distal narrow aperture of the AC, or one of its cutaneous branches at the piercing sites of the FVA, should be remembered when diagnosing cases presented with medial knee or leg pain. The attachment of the proximal part of the FVA to the wall of the femoral artery could add to the mechanism of its potential compression. True AC block should be done deep to the FVA to ensure effective SN analgesia. Its site is recommended to be at the distal one cm of the proximal part of the AC which is at a distance of 16-17 cm proximal to the base of patella. The VAM, being an anatomical connection between the VM and AM muscles, is theorized to increase the mechanical efficiency of the VM oblique muscle to maintain the knee extensor mechanism.

摘要

股内收肌筋膜(FVA)的精确描述已成为具有重大外科和临床意义的问题。内收肌管(AC)内的神经血管受压可能会模拟许多以膝关节内侧或腿部疼痛以及腿部缺血表现就诊的临床病症。本研究的目的是描述FVA的形态特征并阐明其神经血管关系。为实现这一目的,对来自15具防腐处理和5具新鲜成人尸体的40条大腿标本进行了解剖。FVA是一层连续的缝匠肌下筋膜,覆盖AC的全长,并在髌骨底部近端平均距离25.6厘米和7厘米的两点之间延伸。它分为两部分;近端薄四边形(FVA近端部分)和远端厚五边形(股内收肌膜;VAM),并观察到缝匠肌下间隙位于其浅面。其近端和远端部分的平均长度分别为7.8厘米和7.9厘米。FVA近端部分在横跨股内侧肌(VM)和长收肌(AL)时,附着于股动脉壁并覆盖股血管、隐神经(SN)和VM肌的动脉蒂。它经常被两条从股动脉发出至缝匠肌的动脉蒂穿过,偶尔(50%)被一条从SN发出的交通神经分支穿过并与股内侧皮神经相连。VAM横跨VM肌以及AL和大收肌(AM),并覆盖SN、其缝匠肌下和股内侧下皮支、股血管、1 - 3条至缝匠肌和膝降血管的动脉蒂。VAM起源于AM肌腱的腱纤维并不断向前外侧扩展。它经常被1 - 3条至缝匠肌以及SN的股内侧下皮支和缝匠肌下支的动脉蒂穿过。在40个标本中有8个标本显示,一条至VM肌的动脉蒂以及浅静脉和股静脉之间穿过的穿静脉会穿过它。在诊断以膝关节内侧或腿部疼痛就诊的病例时,应记住SN在AC远端狭窄孔处受压,或其皮支之一在FVA的穿通部位受压的情况。FVA近端部分附着于股动脉壁可能会增加其潜在压迫机制。真正的AC阻滞应在FVA深层进行,以确保有效的SN镇痛。建议其部位在AC近端部分的远端1厘米处,该部位在髌骨底部近端16 - 17厘米处。VAM作为VM和AM之间的解剖连接,从理论上讲可提高VM斜肌维持膝关节伸展机制的机械效率。

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