Harrigan T P, Harris W H
Orthopaedic Biomechanics Lab., Massachusetts General Hospital, Boston.
J Biomech. 1991;24(11):1047-58. doi: 10.1016/0021-9290(91)90021-e.
A three-dimensional non-linear finite element analysis of a cemented femoral component in which the component was partially debonded from the cement mantle was used to assess the effects of debonding on stresses in the cement. Three cases of partial cement-metal debonding were modelled with debonding of the proximal portion of the implant down to a horizontal plane which was 35, 62.5, or 82.5 mm below the prosthesis collar. Each situation was studied under loads simulating both gait and stairclimbing. Also, complete debonding between the implant and the surrounding cement mantle was modeled for loads simulating gait. Under stair climbing loads with partial cement-mental debonding, hoop stresses of 13-18 MPa were observed in the cement at the cement-metal interface at the proximal postero-medial corner of the implant. Similarly, in stair climbing, the maximum principal stresses in the cement were also adjacent to the proximal postero-medial region of the implant. These stresses were compressive and increased from 15 MPa with fully bonded interfaces to 48 MPa with debonding down to 82.5 mm below the prosthesis collar. Under gait loads, complete debonding caused high compressive stresses up to 34.9 MPa in the cement distal to the prosthesis tip. Thus, cement failure subsequent to prosthesis debonding is likely in the proximal region in a partially debonded implant due to stair climbing loads and is likely below the prosthesis tip in a fully debonded implant due to gait loading.
对一个骨水泥固定型股骨假体部件进行了三维非线性有限元分析,该部件与骨水泥套部分脱粘,以评估脱粘对骨水泥中应力的影响。模拟了三种部分骨水泥-金属脱粘的情况,即植入物近端向下至假体颈部下方35、62.5或82.5毫米处的水平面发生脱粘。每种情况都在模拟步态和爬楼梯的载荷下进行研究。此外,还对植入物与周围骨水泥套之间完全脱粘的情况进行了模拟,以模拟步态载荷。在部分骨水泥-金属脱粘的爬楼梯载荷下,在植入物近端后内侧角的骨水泥-金属界面处,骨水泥中的环向应力为13-18兆帕。同样,在爬楼梯时,骨水泥中的最大主应力也与植入物近端后内侧区域相邻。这些应力是压缩性的,从完全粘结界面时的15兆帕增加到脱粘至假体颈部下方82.5毫米时的48兆帕。在步态载荷下,完全脱粘会在假体尖端远端的骨水泥中产生高达34.9兆帕的高压缩应力。因此,对于部分脱粘的植入物,由于爬楼梯载荷,假体脱粘后骨水泥在近端区域可能会失效;而对于完全脱粘的植入物,由于步态载荷,骨水泥在假体尖端下方可能会失效。