Structural consequences of subchondral bone involvement in segmental osteonecrosis of the femoral head
β Scribed by Dr. Thomas D. Brown; Kelly J. Baker; Richard A. Brand
- Publisher
- Elsevier Science
- Year
- 1992
- Tongue
- English
- Weight
- 978 KB
- Volume
- 10
- Category
- Article
- ISSN
- 0736-0266
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β¦ Synopsis
Abstract
Appearance of a crescent sign usually marks the onset of necrotic femoral head collapse, but very little is known about which local factors contribute most critically to avoiding or postponing fracture of atβrisk juxtaarticular cancellous bone. A threeβdimensional finite element model was used to test the hypothesis that an initially mechanically uncompromised subchondral plate could provide a substantial degree of stress protection to a weakened underlying segmental infarction. The computational simulation of osteonecrosis showed that the principal stress distribution for an assumption of subchondral plate weakening (given also an underlying, comparably weakened segmental infarction) differed inappreciably from that of a normal femoral head. However, the tendency for local structural failure, as reflected in the ratio of stress to strength, was substantially higher in the former instance. If, instead, the mechanical integrity of the subchondral plate overlying the weakened segmental infarction was assumed to be preserved, computed stress levels in the atβrisk subjacent necrotic cancellous bone were still over 70% as high as for the weakenedβplate case. The data thus indicate that even a fully normal subchondral plate can provide only modest stress protection of a weakened underlying segmental infarction, whereas weakening of the necrotic cancellous bone throughout the infarction induces marked stress increase in the overlying subchondral plate. These findings suggest that the onset of collapse is probably dominated much more strongly by the degree of structural degradation of the cancellous bone within the main infarct body, than by the degree of structural degradation within the subchondral plate.
π SIMILAR VOLUMES
An experiment was undertaken to obtain approximate values for the intrinsic elastic modulus of subchondral bone. Shallow spherical caps, with uniform and incrementally controlled thickness, were machined from subchondral bone in the weight-bearing regions of 11 fresh-frozen normal femoral head autop
The laser speckle method is a new form of tissue flowmetry that can analyze the interference pattern that appears when tissue is illuminated with a laser beam. During surgery for 100 cases of osteonecrosis of the femoral head, we measured the blood flow within the subchondral bone using this method.
## Abstract LeggβCalveβPerthes disease (LCPD) is one of the most common causes of a permanent deformity of the femoral head among pediatric hip disorders. Mechanical loading of the osteonecrotic femoral head undergoing repair is thought play a significant role in the development of the femoral head
## Abstract Osteonecrosis of the femoral head (ONFH) usually affects young individuals. In advanced stages of ONFH, total hip replacement is the golden standard. However, survivorship after total hip replacement has been reported to be poorer in patients with ONFH compared to patients with primary