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本文引用的文献

1
Digital function following flexor tendon repair in Zone II: A comparison of immobilization and controlled passive motion techniques.II区屈指肌腱修复术后的数字功能:固定与控制性被动活动技术的比较
J Hand Surg Am. 1980 Nov;5(6):537-43. doi: 10.1016/s0363-5023(80)80101-8.
2
The importance of controlled passive mobilization on flexor tendon healing. A biomechanical study.控制性被动活动对屈肌腱愈合的重要性:一项生物力学研究
Acta Orthop Scand. 1981 Dec;52(6):615-22. doi: 10.3109/17453678108992156.
3
Flexor tendon excursions in "no-man's land".“无人区”屈肌腱的活动度
Hand. 1981 Jun;13(2):129-41. doi: 10.1016/s0072-968x(81)80052-6.
4
The influence of protected passive mobilization on the healing of flexor tendons: a biochemical and microangiographic study.保护性被动活动对屈指肌腱愈合的影响:一项生化与微血管造影研究。
Hand. 1981 Jun;13(2):120-8. doi: 10.1016/s0072-968x(81)80051-4.
5
Effects of early intermittent passive mobilization on healing canine flexor tendons.早期间歇性被动活动对犬屈肌腱愈合的影响。
J Hand Surg Am. 1982 Mar;7(2):170-5. doi: 10.1016/s0363-5023(82)80083-x.
6
Tendon excursion and moment arm of index finger muscles.食指肌肉的肌腱移动度和力臂
J Biomech. 1983;16(6):419-25. doi: 10.1016/0021-9290(83)90074-x.
7
Flexor tendon repair in vitro: a comparative histologic study of the rabbit, chicken, dog, and monkey.体外屈肌腱修复:兔、鸡、狗和猴的比较组织学研究
J Orthop Res. 1984;2(1):39-48. doi: 10.1002/jor.1100020107.
8
Histologic evidence of intrinsic flexor tendon repair in various experimental animals. An in vitro study.不同实验动物体内屈指肌腱修复的组织学证据。一项体外研究。
Clin Orthop Relat Res. 1984 Jan-Feb(182):297-304.
9
Flexor tendon repair.屈肌腱修复术
J Orthop Res. 1986;4(1):119-28. doi: 10.1002/jor.1100040116.
10
Flexor tendon repair.屈肌腱修复术。
Hand Clin. 1985 Feb;1(1):55-68.

指深屈肌腱的移动:人和犬类手指的运动学研究

Excursion of the flexor digitorum profundus tendon: a kinematic study of the human and canine digits.

作者信息

Horibe S, Woo S L, Spiegelman J J, Marcin J P, Gelberman R H

机构信息

Orthopaedic Bioengineering Laboratory, University of California, San Diego 92093.

出版信息

J Orthop Res. 1990 Mar;8(2):167-74. doi: 10.1002/jor.1100080203.

DOI:10.1002/jor.1100080203
PMID:2303949
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9730741/
Abstract

The most common problem following primary flexor tendon repair is the failure of the tendon apparatus to glide, secondary to the formation of adhesions. Early motion following tendon repair has been shown to be effective in reducing adhesions between the tendon and the surrounding sheath. Therefore, it is important to determine the amount of flexor tendon excursion along the digit during joint motion. In this study, the excursion between the flexor digitorum profundus (FDP) tendon and the sheath was examined in both human and canine digits. Based on roentgenographic measurements and joint kinematic analysis, the motion of the bones, the FDP tendon, and the sheath were measured with respect to joint rotations. It was found that the canine flexor tendon apparatus behaved similarly to that of the human for the motions studied. The amount of tendon excursion was very small in regions distal to the joint in motion (approximately 0.1 mm/10 degrees of joint rotation). There was little displacement of the sheath (0.2-0.3 mm), except at the metacarpal joint region during metacarpophalangeal (MCP) joint motion and at the proximal interphalangeal (PIP) joint region during PIP joint motion. Tendon excursion relative to the tendon sheath was the largest in zone II during PIP joint rotation (1.7 mm/10 degrees of joint rotation). These results suggest that PIP joint motion may be most effective in reducing adhesions following tendon repair in zone II.

摘要

一期屈指肌腱修复术后最常见的问题是由于粘连形成导致肌腱装置滑动失败。肌腱修复后早期活动已被证明可有效减少肌腱与周围腱鞘之间的粘连。因此,确定关节活动时沿手指的屈指肌腱移动量很重要。在本研究中,对人类和犬类手指的指深屈肌腱(FDP)与腱鞘之间的移动情况进行了检查。基于X线测量和关节运动学分析,针对关节旋转测量了骨骼、FDP肌腱和腱鞘的运动。结果发现,在所研究的运动方面,犬类屈肌腱装置的表现与人类相似。在运动关节远端区域,肌腱移动量非常小(约0.1 mm/关节旋转10度)。除了掌指(MCP)关节运动时的掌骨关节区域以及近端指间(PIP)关节运动时的PIP关节区域外,腱鞘几乎没有位移(0.2 - 0.3 mm)。在PIP关节旋转时,相对于腱鞘的肌腱移动在II区最大(1.7 mm/关节旋转10度)。这些结果表明,PIP关节运动可能对减少II区肌腱修复后的粘连最为有效。