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动态张力和减小移植物尺寸对兔游离肌肉移植物中肌肉再生的影响。

The effects of dynamic tension and reduced graft size on muscle regeneration in rabbit free muscle grafts.

作者信息

Turk A E, Ishida K, Kobayashi M, Narloch J, Kinney B M, Verity M A, Roy R R, Edgerton V R, Miller T A

机构信息

Research Service, Veterans Administration Medical Center, West Los Angeles, Calif.

出版信息

Plast Reconstr Surg. 1991 Aug;88(2):299-309; discussion 310.

PMID:1852824
Abstract

In a study of 28 adult New Zealand White rabbits, the influence of tension and size on muscle regeneration in tibialis anterior free muscle grafts (without vascular anastomoses) was examined 6 months after transplantation. Three laboratory models were studied: (1) whole dynamic (WD) graft (allowing ankle excursion and, therefore, variable dynamic physiologic tension), (2) whole static (WS) graft (constant, fixed length and, thus, only isometric tension), and (3) longitudinally sliced (reduced radius) dynamic (SD) model. Bilateral orthotopic grafts of the tibialis anterior muscle were performed in 24 rabbits (eight animals in each of the three different model groups). Controls consisted of normal tibialis anterior muscle from four age-matched rabbits. All tibialis anterior muscle grafts were examined histologically (fiber counts) and functionally (determined by in situ contractile properties under maximal stimulation conditions). The WD grafts demonstrated a significantly higher number of regenerated fibers per muscle cross section (4819 +/- 589) than the WS (2221 +/- 603) or SD (1919 +/- 732) grafts. The amount of tetanic tension in the WD grafts was 35 percent of the control and twice as much as that of the WS grafts (WD 1.0 +/- 0.2 kg versus WS 0.5 +/- 0.4 kg; p less than 0.05). The SD grafts produced approximately one-third as much maximum tetanic tension as the WD grafts (0.3 +/- 0.1 kg versus 1.0 +/- 0.2 kg), demonstrating that the amount of recovery was similar in these two dynamic models, since only the longitudinal middle third of the muscle was grafted in the SD model. Free muscle grafts under dynamic tension, which allows excursion, have shown a greater amount of muscle-fiber regeneration and restoration of function compared with a graft with fixed length. The positive effect of dynamic mechanical tension on small autogenous free muscle grafts (without vascular anastomoses) is clinically significant in the reconstruction of facial and hand neuromuscular deficits when blood vessels are not available for reanastomosis. Future studies using the tibialis anterior WD and SD transplant models will strengthen our understanding of the events of spontaneous revascularization and skeletal muscle regeneration.

摘要

在一项对28只成年新西兰白兔的研究中,研究了移植6个月后,张力和大小对胫前游离肌肉移植(无血管吻合)中肌肉再生的影响。研究了三种实验模型:(1)全动态(WD)移植(允许踝关节活动,因此有可变的动态生理张力),(2)全静态(WS)移植(恒定、固定长度,因此只有等长张力),以及(3)纵向切片(减小半径)动态(SD)模型。对24只兔子进行了双侧原位胫前肌移植(三个不同模型组各8只动物)。对照组由4只年龄匹配兔子的正常胫前肌组成。所有胫前肌移植均进行了组织学检查(纤维计数)和功能检查(通过最大刺激条件下的原位收缩特性确定)。WD移植每肌肉横截面积再生纤维数量(4819±589)显著高于WS(2221±603)或SD(1919±732)移植。WD移植的强直张力为对照组的35%,是WS移植的两倍(WD 1.0±0.2 kg对WS 0.5±0.4 kg;p<0.05)。SD移植产生的最大强直张力约为WD移植的三分之一(0.3±0.1 kg对1.0±0.2 kg),表明这两种动态模型的恢复量相似,因为在SD模型中仅移植了肌肉纵向中间三分之一。与固定长度的移植相比,处于允许活动的动态张力下的游离肌肉移植显示出更多的肌纤维再生和功能恢复。当血管无法进行重新吻合时,动态机械张力对小型自体游离肌肉移植(无血管吻合)的积极作用在面部和手部神经肌肉缺损的重建中具有临床意义。未来使用胫前WD和SD移植模型的研究将加强我们对自发血管再生和骨骼肌再生过程的理解。

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