Development and Application of a Probabilistic/mechanistic Model to Investigate the Influence of Safety Flooring on Population-level Hip Fracture Risk

Development and Application of a Probabilistic/mechanistic Model to Investigate the Influence of Safety Flooring on Population-level Hip Fracture Risk
Author :
Publisher :
Total Pages : 128
Release :
ISBN-10 : OCLC:1036279529
ISBN-13 :
Rating : 4/5 ( Downloads)

Book Synopsis Development and Application of a Probabilistic/mechanistic Model to Investigate the Influence of Safety Flooring on Population-level Hip Fracture Risk by : Daniel Martel

Download or read book Development and Application of a Probabilistic/mechanistic Model to Investigate the Influence of Safety Flooring on Population-level Hip Fracture Risk written by Daniel Martel and published by . This book was released on 2017 with total page 128 pages. Available in PDF, EPUB and Kindle. Book excerpt: Hip fractures are a devastating injury in the older adult population. They are almost exclusively sustained during a fall-related event, with lateral falls resulting in an impact to the proximal femur most highly associated with fracture risk. The health consequences of hip fractures, as well as their large associated costs, have led to extensive research on this topic. Of particular interest is the prediction of hip fractures. While certain mechanical factors, such as impact force and bone strength, are directly related with fracture outcomes during a lateral fall to the hip, many clinical tools or models used to predict risk of hip fracture (such as FRAX) do not explicitly incorporate these mechanical aspects into their predictions. Furthermore, these models do not lend themselves well to population-level analysis, as they require variables that are specific to each assessed individual. A population-level model could provide insight into the population-level risk of fall-related hip fracture risk, as well as explore the effectiveness of population-level interventions in a virtual environment. Accordingly, the primary goal of this thesis project was to develop a mechanistically based probabilistic model of population-level hip fracture risk for Canadian older adults. The model generated virtual individuals (VI), to whom certain physical characteristics were pseudo-randomly assigned. These physical characteristics were used as inputs into algorithms used to estimate impact force and bone strength. Factor of Risk (FOR) was calculated as the ratio between impact force and bone strength, and used as a metric of hip fracture risk. The model was pseudo-validated by replicating groups of VI representing the 4 samples reported in Dufour et al, 2012; the model estimated group mean FOR within 0.05 of those reported in the article. To estimate the population-level risk of fall-related hip fracture in the Canadian older adults, the model was run with a sample of 100 000 VI; the model estimates were characterized as distributions of FOR for both males and females, with the mean (SD) FOR being 0.067 (0.34) for females and 0.422 (0.23) for males. The secondary goal of this thesis project was to develop a safety flooring intervention module, and implement it into the probabilistic model in order to estimate the influence of a population wide safety flooring intervention on hip fracture risk. A mechanical testing experiment was conducted to investigate the effects of fall and faller-specific factors (impact velocity, effective mass, TSTT, and pelvic stiffness) on the force attenuation provided by a SmartCells[TM] safety floor. Regression analyses revealed significant main effects (p


Development and Application of a Probabilistic/mechanistic Model to Investigate the Influence of Safety Flooring on Population-level Hip Fracture Risk Related Books

Development and Application of a Probabilistic/mechanistic Model to Investigate the Influence of Safety Flooring on Population-level Hip Fracture Risk
Language: en
Pages: 128
Authors: Daniel Martel
Categories: Biomechanics
Type: BOOK - Published: 2017 - Publisher:

DOWNLOAD EBOOK

Hip fractures are a devastating injury in the older adult population. They are almost exclusively sustained during a fall-related event, with lateral falls resu
Image-Based Multilevel Biomechanical Modeling for Fall-Induced Hip Fracture
Language: en
Pages: 171
Authors: Yunhua Luo
Categories: Science
Type: BOOK - Published: 2017-01-05 - Publisher: Springer

DOWNLOAD EBOOK

Fall-induced hip fracture is an epidemic health risk among elderly people. This book presents an image-based multilevel modeling approach to understanding the b
Chart Supplement, Pacific
Language: en
Pages: 324
Authors:
Categories: Aeronautics
Type: BOOK - Published: 2010 - Publisher:

DOWNLOAD EBOOK

Fragility Fracture Nursing
Language: en
Pages: 169
Authors: Karen Hertz
Categories: Medical
Type: BOOK - Published: 2018-06-15 - Publisher: Springer

DOWNLOAD EBOOK

This open access book aims to provide a comprehensive but practical overview of the knowledge required for the assessment and management of the older adult with
Orthogeriatrics
Language: en
Pages: 355
Authors: Paolo Falaschi
Categories: Anesthesiology
Type: BOOK - Published: 2021 - Publisher: Springer Nature

DOWNLOAD EBOOK

This new open access edition supported by the Fragility Fracture Network aims at giving the widest possible dissemination on fragility fracture (especially hip