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Design of a magnetic resonance imagi...
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University of Guelph (Canada).
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Design of a magnetic resonance imaging and micro-computed tomography compatible ovine stifle joint loading device to assess osteoarthritis progression.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Design of a magnetic resonance imaging and micro-computed tomography compatible ovine stifle joint loading device to assess osteoarthritis progression./
作者:
Innes, Maeghan Kathleen.
面頁冊數:
120 p.
附註:
Source: Masters Abstracts International, Volume: 47-05, page: 2957.
Contained By:
Masters Abstracts International47-05.
標題:
Biology, Animal Physiology. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=MR47777
ISBN:
9780494477779
Design of a magnetic resonance imaging and micro-computed tomography compatible ovine stifle joint loading device to assess osteoarthritis progression.
Innes, Maeghan Kathleen.
Design of a magnetic resonance imaging and micro-computed tomography compatible ovine stifle joint loading device to assess osteoarthritis progression.
- 120 p.
Source: Masters Abstracts International, Volume: 47-05, page: 2957.
Thesis (M.A.Sc.)--University of Guelph (Canada), 2009.
Keywords: knee joint simulator, knee joint biomechanics, menisci, osteoarthritis, magnetic resonance, micro-computed tomography
ISBN: 9780494477779Subjects--Topical Terms:
1017835
Biology, Animal Physiology.
Design of a magnetic resonance imaging and micro-computed tomography compatible ovine stifle joint loading device to assess osteoarthritis progression.
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Osteoarthritis is a potentially debilitating disease which can affect all the body's joints. There is no cure and limited treatments, often leading to joint replacement surgery. Medical imaging techniques can be used to non-invasively assess the state of soft tissue of an intact knee but not under weight bearing conditions. To allow weight bearing studies, a magnetic resonance imaging (MRI) and micro-computed tomography (muCT) compatible joint loading device was built to house an ovine (sheep) stifle (knee) at physiologic angles while applying physiologic loads. The simulator maintained the knee flexion angle, applied a constant load and did not create image artefacts. With this joint simulator the movement of the meniscus in a healthy stifle was evaluated using MR and muCT images. Meniscus volume, external (EID) and internal interhorn (IID) distance, and height were measured for both unloaded and loaded images.
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