中国骨质疏松杂志
中國骨質疏鬆雜誌
중국골질소송잡지
Chinese Journal of Osteoporosis
2015年
9期
1065-1068,1086
,共5页
股骨颈%松质骨%模量%颈干角%扭转角
股骨頸%鬆質骨%模量%頸榦角%扭轉角
고골경%송질골%모량%경간각%뉴전각
Femoral neck%Cancellous bone%Modulus%Neck shaft angle%Torsion angle
目的:股骨的不同颈干角、不同扭转角以及弹性模量对股骨颈中松质骨受力的影响。方法在股骨颈的松质骨中植入力传感器,在Instron材料试验机上进行两种不同的加载速度,四种不同载荷进行试验分析。结果颈干角越大,股骨颈中的松质骨的受力越小,扭转角越大,受力越小,股骨模量与股骨颈中的松质骨受力相关,快速的冲击使股骨颈中的松质骨承受较大的力,但是当超过松质骨的弹性形变,慢速的压缩载荷使松质骨承受较大的应力。结论正常的颈干角,扭转角是有利于松质骨的承受负荷,颈干角大,松质骨受力变小,不利于股骨颈中的松质骨的骨小梁的保持,尤其是发生骨质疏松,松质骨变得稀疏,更不能承力,容易发生骨折。扭转角大,松质骨受力变小,也会造成松质骨的稀疏,骨折的风险也会大。
目的:股骨的不同頸榦角、不同扭轉角以及彈性模量對股骨頸中鬆質骨受力的影響。方法在股骨頸的鬆質骨中植入力傳感器,在Instron材料試驗機上進行兩種不同的加載速度,四種不同載荷進行試驗分析。結果頸榦角越大,股骨頸中的鬆質骨的受力越小,扭轉角越大,受力越小,股骨模量與股骨頸中的鬆質骨受力相關,快速的遲擊使股骨頸中的鬆質骨承受較大的力,但是噹超過鬆質骨的彈性形變,慢速的壓縮載荷使鬆質骨承受較大的應力。結論正常的頸榦角,扭轉角是有利于鬆質骨的承受負荷,頸榦角大,鬆質骨受力變小,不利于股骨頸中的鬆質骨的骨小樑的保持,尤其是髮生骨質疏鬆,鬆質骨變得稀疏,更不能承力,容易髮生骨摺。扭轉角大,鬆質骨受力變小,也會造成鬆質骨的稀疏,骨摺的風險也會大。
목적:고골적불동경간각、불동뉴전각이급탄성모량대고골경중송질골수력적영향。방법재고골경적송질골중식입력전감기,재Instron재료시험궤상진행량충불동적가재속도,사충불동재하진행시험분석。결과경간각월대,고골경중적송질골적수력월소,뉴전각월대,수력월소,고골모량여고골경중적송질골수력상관,쾌속적충격사고골경중적송질골승수교대적력,단시당초과송질골적탄성형변,만속적압축재하사송질골승수교대적응력。결론정상적경간각,뉴전각시유리우송질골적승수부하,경간각대,송질골수력변소,불리우고골경중적송질골적골소량적보지,우기시발생골질소송,송질골변득희소,경불능승력,용역발생골절。뉴전각대,송질골수력변소,야회조성송질골적희소,골절적풍험야회대。
Objective To investigate the influence of different neck shaft angle, torsion angle, and elastic modulus in the force characteristics of the cancellous bone of the femoral neck.Methods A sensor was implanted in the cancellous bone of the femoral neck.The bone under two loading rate and four kinds of load was tested using Instron testing machine.Results The larger the neck shaft angle was, the smaller the force of the cancellous bone of femoral neck bore.The larger the torsion angle was, the smaller the force it bore.The modulus of femur neck was related to the force that the cancellous bone of femoral neck bore.Rapid impact made the cancellous bone of the femoral neck stood larger force.When the force was beyond the elastic deformation of the cancellous bone, compressive load under slow speed made cancellous bone stood greater stress.Conclusion Normal neck shaft angle and torsion angle are beneficial to the bearing capacity of the cancellous bone.When neck shaft angle gets larger, the cancellous bone stands less force, which is not beneficial to the stability of the cancellous bone of femoral neck.Especially in osteoporosis, the cancellous bone becomes sparse, which is vulnerable to the load and is prone to fracture.Larger torsion angle and less force standing by the cancellous bone can also cause the thinning of the cancellous bone and higher risk of fracture.