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新型低弹高强度β钛合金对大鼠骨质疏松性骨折愈合的影响
Alternative TitleEffects of novel β titanium alloy with high strenghth and low elastic modulus on bone healing of osteoporotic fracture in rats
沙漠1; 郭征2; 付军2; 李述军3; 李靖2; 吴智刚2; 袁超凡2; 石磊2; 王军2
2009
Source Publication中华创伤杂志
ISSN1001-8050
Volume000Issue:012Pages:1123-1128
Abstract目的评价新型低弹β钛合金内置物对大鼠骨质疏松骨折愈合的作用及应力遮挡效应。方法40只SD雌性大鼠去势,建立骨质疏松动物模型,采用Utvag方法制备双股骨骨折模型,选用弹性模量分别为110GPa和33GPa的钛合金制成髓内针固定骨折,左侧为高弹组,右侧为低弹组,分别于术后6,12周行组织学、Micro—CT及生物力学检测,Micro—CT检测指标为骨小梁的体积(BV)、样本体积(TV)及骨体积分数(BVF),生物力学检测指标为最大载荷,比较两种弹性模量钛合金置人物对骨折骨痂形成及力学特性的影响,并进行统计学分析。结果低弹组显示了更多的胶原及骨痂形成,骨小梁更厚,板层骨排列更加规则。骨质疏松大鼠股骨骨折后6周,低弹组ROI 1区TV值高于高弹组(P〈0.05),其余差异无统计学意义;术后12周,低弹组ROI 1区TV值、BV值均高于高弹组(P〈0.05)。低弹组R012区BV高于高弹组(P〈0.05)。生物力学检测提示低弹组最大载荷优于高弹组。结论新型低弹B钛合金内置物有利于大鼠骨质疏松骨折早期骨痂的形成,并提高骨折愈合的远期质量,减少了骨折固定节段的骨量丢失。
Other AbstractObjective To investigate the effects of a novel β titanium fixation with high strength and low elastic modulus on bone healing of osteoporotic fracture and its effects on stress shielding. Methods Forty female Sprague-Dawley rats were oophorectomized before establishment of femur fracture model. The fracture of left femur was stabilized by titanium alloy pin with high elastic modulus ( 110 GPa, high elasticity modulus group) and the fracture of right femur by titanium alloy pin with low elastic modulus (30 GPa, low elasticity modulus group). Six and 12 weeks later, the bone volume (BV), total volume (TV) and bone volume fraction (BVF) were detected by Micro-CT, and the maximum load was detected by biomechanical test. The effects of two titanium alloy pins on formation of bony calluses and mechanical properties of bones were compared. Results Compared with the low elasticity modulus group, more collagen and bony callus, thicker bone trabeculae and more regular lamellar bone were found in the high elasticity modulus group. In low elasticity modulus group, TV (ROI 1) was increased obviously at week 6, with no statistical differences in BV ( ROI 1 ), BV ( ROI 2 ) and maximum load between two groups (P 〈 0.05 ). TV and BV in region ROI 1 in the low elasticity modulus group were significantly higher than that in high elasticity modulus group ( P 〈 0.05 ), while BV in region ROI 2 in low elasticity modulus group was significantly higher than that in high elasticity modulus group at week 12 postoperatively ( P 〈 0.05 ). Biomechnical test indicated that the maximum load in low elasticity modulus group was higher than that in high elasticity modulus group. Conclusions The novel β titanium alloy with high strength and low elastic modulus helps reduce effects of stress shielding, diminish bone resorption, increase the fibrous callus formation at the initial phase and improve the quality of bone healing at the later phase.
Keyword骨质疏松 股骨骨折 大鼠 弹性模量
Indexed ByCSCD
Language中文
CSCD IDCSCD:3779105
Citation statistics
Document Type期刊论文
Identifierhttp://ir.imr.ac.cn/handle/321006/155829
Collection中国科学院金属研究所
Affiliation1.解放军第175医院
2.第四军医大学
3.中国科学院金属研究所
Recommended Citation
GB/T 7714
沙漠,郭征,付军,等. 新型低弹高强度β钛合金对大鼠骨质疏松性骨折愈合的影响[J]. 中华创伤杂志,2009,000(012):1123-1128.
APA 沙漠.,郭征.,付军.,李述军.,李靖.,...&王军.(2009).新型低弹高强度β钛合金对大鼠骨质疏松性骨折愈合的影响.中华创伤杂志,000(012),1123-1128.
MLA 沙漠,et al."新型低弹高强度β钛合金对大鼠骨质疏松性骨折愈合的影响".中华创伤杂志 000.012(2009):1123-1128.
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