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局部软组织压迫可增强兔腓骨骨折愈合。

Local soft tissue compression enhances fracture healing in a rabbit fibula.

出版信息

HSS J. 2010 Feb;6(1):43-8. doi: 10.1007/s11420-009-9142-7. Epub 2009 Nov 13.

Abstract

Local soft tissue compression of fractures enhances fracture healing. The mechanism remains uncertain. Past studies have focused on intermittent soft tissue compression. We report a preliminary study assessing the relationship between constant soft tissue compression and enhanced fracture healing in an osteotomy model designed to minimize confounding variables. Fibulae of nine New Zealand white rabbits were bilaterally osteotomized, openly stabilized, and fitted with spandex stockinets. Soft tissue at the osteotomy site was unilaterally compressed using a deforming element (load = 26 mmHg). The contralateral side was saved as the control and was not compressed. Osteotomies were monitored with weekly radiographs. All fibulae in both groups were healed 6 weeks postoperatively. Micro-CT analysis of bone mineral density (BMD) and bone volume (BV) was then performed on both the experimental and control sides. Radiographic measurement of transverse callus-to-shaft ratios (TCSR) was compared. BMD of the experimental callus was greater than the noncompressed controls. BV and TCSR were not different between controls and experimental osteotomies. Constant local soft tissue compression produced significant increases in BMD, but not in BV or transverse callus size, indicating significant measurable increases in callus composition without significant change in gross dimensions. Our experimental design minimizes confounding factors, such as micromotion, immobilization, and altered venous flow, suggesting that these are not the primary mechanisms for fracture healing enhancement. Further studies with more animals and study groups are necessary to confirm efficacy and identify optimal compression pressures and schedules.

摘要

局部软组织压迫骨折可促进骨折愈合。其机制尚不清楚。过去的研究集中在间歇性软组织压迫上。我们报告了一项初步研究,评估了在设计用于最小化混杂变量的截骨模型中,持续软组织压迫与增强骨折愈合之间的关系。将 9 只新西兰白兔的腓骨双侧截骨,开放性稳定,并配备氨纶袜套。使用变形元件(负载= 26mmHg)单侧压缩骨折部位的软组织。对侧作为对照,不进行压缩。每周进行 X 光片监测截骨愈合情况。两组所有腓骨均在术后 6 周愈合。然后对实验侧和对照侧进行骨矿物质密度(BMD)和骨体积(BV)的 micro-CT 分析。比较实验性和对照性横向骨痂-骨干比(TCSR)的放射测量值。实验性骨痂的 BMD 大于非压缩对照组。BV 和 TCSR 在对照组和实验性截骨之间没有差异。持续的局部软组织压迫可显著增加 BMD,但不增加 BV 或横向骨痂大小,这表明骨痂成分有显著的可测量增加,而大体尺寸没有显著变化。我们的实验设计最大限度地减少了混杂因素,如微动、固定和静脉血流改变,这表明这些不是骨折愈合增强的主要机制。需要更多的动物和研究组进行进一步的研究,以确认疗效,并确定最佳的压缩压力和方案。

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本文引用的文献

1
Intermittent pneumatic compression in fracture and soft-tissue injuries healing.
Br Med Bull. 2008;88(1):147-56. doi: 10.1093/bmb/ldn024. Epub 2008 Jul 1.
5
Cyclic pneumatic soft-tissue compression accelerates the union of distal radial osteotomies in an ovine model.
J Bone Joint Surg Br. 2006 Mar;88(3):411-5. doi: 10.1302/0301-620X.88B3.16856.
6
The effect of intermittent pneumatic compression on fracture healing.
J Orthop Trauma. 2005 Jul;19(6):371-6. doi: 10.1097/01.bot.0000161239.81128.05.
7
Effect of cyclic pneumatic soft tissue compression on simulated distal radius fractures.
Clin Orthop Relat Res. 2005 Apr(433):183-8. doi: 10.1097/01.blo.0000149994.58542.c9.
8
Effect of intermittent pneumatic soft-tissue compression on fracture-healing in an animal model.
J Bone Joint Surg Am. 2003 Aug;85(8):1446-53. doi: 10.2106/00004623-200308000-00004.
10
Intermittent pneumatic compression devices -- physiological mechanisms of action.
Eur J Vasc Endovasc Surg. 2001 May;21(5):383-92. doi: 10.1053/ejvs.2001.1348.

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