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pro vyhledávání: '"Lionel Rayward"'
Autor:
Lionel Rayward, Mark Pearcy, Maree Izatt, Daniel Green, Robert Labrom, Geoffrey Askin, J Paige Little
Publikováno v:
PLoS ONE, Vol 18, Iss 3, p e0282634 (2023)
Introduction3D Non-Contact surface scanning (3DSS) is used in both biomechanical and clinical studies to capture accurate 3D images of the human torso, and to better understand the shape and posture of the spine-both healthy and pathological. This st
Externí odkaz:
https://doaj.org/article/37a97ce47cdb4b43b858a95eb4131995
Autor:
J Paige Little, Lionel Rayward, Mark J Pearcy, Maree T Izatt, Daniel Green, Robert D Labrom, Geoffrey N Askin
Publikováno v:
PLoS ONE, Vol 14, Iss 9, p e0222453 (2019)
INTRODUCTION:3D non-contact surface scanners capture highly accurate, calibrated images of surface topography for 3D structures. This study sought to establish the efficacy and accuracy of using 3D surface scanning to characterise spinal curvature an
Externí odkaz:
https://doaj.org/article/4ab2f478f1f74f179f6435f0f9e44595
Publikováno v:
AHFE International.
This study sought to better understand how actigraphy may be practically applied to interpret useful information about sleep arousals when used in future studies of home-based sleep. For this purpose, we analysed a small cohort of healthy adult’s s
Autor:
Lionel Rayward, J Paige Little
Publikováno v:
Journal of Biomechanics. 137:111085
Prior studies have demonstrated Finite Element (FE) analysis is a useful tool when analysing the complex interplay of tissue and body loads which act through the human pelvis in a subject lying supine. The computational accuracy and efficiency of FE
Autor:
Mark J. Pearcy, J. Paige Little, Daniel J. Green, Lionel Rayward, Maree T. Izatt, Robert D. Labrom, Geoffrey N. Askin
Publikováno v:
PLoS ONE, Vol 14, Iss 9, p e0222453 (2019)
PLoS ONE
PLoS ONE
Introduction. 3D non-contact surface scanners capture highly accurate, calibrated images of surface topography for 3D structures. This study sought to establish the efficacy and accuracy of using 3D surface scanning to characterise spinal curvature a