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骨折段低频可控微动影响骨痂矿化与力学特性的实验研究
引用本文:喻鑫罡,张先龙,曾炳芳. 骨折段低频可控微动影响骨痂矿化与力学特性的实验研究[J]. 上海交通大学学报(医学版), 2008, 28(12): 1491-1495
作者姓名:喻鑫罡  张先龙  曾炳芳
作者单位:上海交通大学第六人民医院骨科,上海200233
基金项目:上海市科委基金(024119040)~~
摘    要:目的探讨自行研制可控性微动外固定器对试验性长骨骨折愈合中骨痂矿化与愈合骨力学特性的影响。方珐对45只绵羊行双侧胫骨中段横行截骨,间隙2mm,用连有微动装置的单边外固定器固定。术后10d,随机选择一侧肢体进行微动刺激(30min/d),按不同的微动频率分为0.5Hz组、1Hz组和5Hz组(n=15),幅度为0.25mm,至第4周末结束;另一侧后肢不作微动,为对照组。分别于术后4、6、9周各处死5只动物,采集标本进行硬组织切片,观察骨痂矿化的程度,并比较9周后愈合骨的成骨速率、骨矿物质密度和力学特性。结果术后4、6周末,各实验组骨痂矿化骨小梁和类骨质的面积大于对照组(P〈0.05);术后9周末,各实验组矿化骨小梁的面积迅速增加,类骨质的面积低于对照组(P〈0.05)。各实验组成骨速率均快于对照组,且骨矿物质密度和愈合骨的峰值载荷、弯曲刚度高于对照组(P〈0.05),以1Hz组最为显著。结论骨折段早期低频微动能有效促进骨痂类骨质的形成与矿化,缩短骨痂矿化延迟时间,增加愈合骨的矿物质含量,进而加速骨折的愈合,微动频率以1Hz效果最佳。

关 键 词:可控性微动  骨折愈合  外固定器  矿物质含量  骨强度

Experimental study on callus calcification and mechanical property of healing bone under low frequency and controlled micromovement
YU Xin-gang,ZHANG Xian-long,ZENG Bing-fang. Experimental study on callus calcification and mechanical property of healing bone under low frequency and controlled micromovement[J]. Journal of Shanghai Jiaotong University:Medical Science, 2008, 28(12): 1491-1495
Authors:YU Xin-gang  ZHANG Xian-long  ZENG Bing-fang
Affiliation:Department of Orthopaedics;The Sixth People's Hospital;Shanghai Jiaotong University;Shanghai 200233;China
Abstract:Objective To investigate the effects of external fixator with dynamic device under low frequency and controlled micromovement on the callus calcification and mechanical property of healing bone.MethodsForty-five sheep were performed transverse osteotomy with a gap of 2 mm on the mid-shafts of both tibias,and the hind limbs were fixed with unilateral external fixators connected to a controlled micromovement device.Ten days after osteotomy,one hind limb of each sheep was randomly selected for micromovement(30...
Keywords:controlled micromovement  fracture healing  external fixator  bone mineral content  bone stiffness  
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