Literature DB >> 1762432

Prediction of femoral impact forces in falls on the hip.

S N Robinovitch1, W C Hayes, T A McMahon.   

Abstract

A major determinant of the risk of hip fracture in a fall from standing height is the force applied to the femur at impact. This force is determined by the impact velocity of the hip and the effective mass, stiffness, and damping of the body at the moment of contact. We have developed a simple experiment (the pelvis release experiment) to measure the effective stiffness and damping of the body when a step change in force is applied to the lateral aspect of the hip. Results from pelvis release experiments with 14 human subjects suggest that both increased soft tissue thickness over the hip and impacting the ground in a relaxed state can decrease the effective stiffness of the body, and subsequently reduce peak impact forces. Comparison between our fall impact force predictions and in-vitro measures of femoral fracture strength suggest that any fall from standing height producing direct, lateral impact on the greater trochanter can fracture the elderly hip.

Entities:  

Mesh:

Year:  1991        PMID: 1762432     DOI: 10.1115/1.2895414

Source DB:  PubMed          Journal:  J Biomech Eng        ISSN: 0148-0731            Impact factor:   2.097


  55 in total

1.  Transmission of force in the lumbosacral spine during backward falls.

Authors:  Carolyn Van Toen; Meena M Sran; Stephen N Robinovitch; Peter A Cripton
Journal:  Spine (Phila Pa 1976)       Date:  2012-04-20       Impact factor: 3.468

2.  A poisson process model for hip fracture risk.

Authors:  Zvi Schechner; Gangming Luo; Jonathan J Kaufman; Robert S Siffert
Journal:  Med Biol Eng Comput       Date:  2010-06-04       Impact factor: 2.602

3.  Evaluation of hip fracture risk in relation to fall direction.

Authors:  Manabu Nankaku; Hideto Kanzaki; Tadao Tsuboyama; Takashi Nakamura
Journal:  Osteoporos Int       Date:  2005-02-18       Impact factor: 4.507

4.  Femoral neck cortical geometry measured with magnetic resonance imaging is associated with proximal femur strength.

Authors:  S L Manske; T Liu-Ambrose; P M de Bakker; D Liu; S Kontulainen; P Guy; T R Oxland; H A McKay
Journal:  Osteoporos Int       Date:  2006-07-18       Impact factor: 4.507

5.  Cortical and trabecular bone in the femoral neck both contribute to proximal femur failure load prediction.

Authors:  S L Manske; T Liu-Ambrose; D M L Cooper; S Kontulainen; P Guy; B B Forster; H A McKay
Journal:  Osteoporos Int       Date:  2008-07-26       Impact factor: 4.507

6.  Subject-specific planning of femoroplasty: a combined evolutionary optimization and particle diffusion model approach.

Authors:  Ehsan Basafa; Mehran Armand
Journal:  J Biomech       Date:  2014-05-14       Impact factor: 2.712

7.  Comparison of hip geometry, strength, and estimated fracture risk in women with anorexia nervosa and overweight/obese women.

Authors:  Katherine Neubecker Bachmann; Pouneh K Fazeli; Elizabeth A Lawson; Brian M Russell; Ariana D Riccio; Erinne Meenaghan; Anu V Gerweck; Kamryn Eddy; Tara Holmes; Mark Goldstein; Thomas Weigel; Seda Ebrahimi; Diane Mickley; Suzanne Gleysteen; Miriam A Bredella; Anne Klibanski; Karen K Miller
Journal:  J Clin Endocrinol Metab       Date:  2014-12       Impact factor: 5.958

8.  Effects of hip abductor muscle forces and knee boundary conditions on femoral neck stresses during simulated falls.

Authors:  W J Choi; P A Cripton; S N Robinovitch
Journal:  Osteoporos Int       Date:  2014-07-16       Impact factor: 4.507

Review 9.  Sideways fall-induced impact force and its effect on hip fracture risk: a review.

Authors:  M Nasiri Sarvi; Y Luo
Journal:  Osteoporos Int       Date:  2017-07-20       Impact factor: 4.507

10.  Does obesity really make the femur stronger? BMD, geometry, and fracture incidence in the women's health initiative-observational study.

Authors:  Thomas J Beck; Moira A Petit; Guanglin Wu; Meryl S LeBoff; Jane A Cauley; Zhao Chen
Journal:  J Bone Miner Res       Date:  2009-08       Impact factor: 6.741

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