Measuring the joint motion under physiological loads is fundamental for the comprehension of the normal and impaired musculoskeletal function [1]. Present measurement techniques in vivo are however invasive [2,3] or imprecise [4]. Dynamic magnetic resonance imaging (DMRI) represents an emerging technology that may over-come these limitations [5]. This work presents a procedure to quantify the knee kinematics under physiological loads and about 90° of knee flexion. The accuracy of a new registration algorithm is also discussed.

Michele Conconi, M.B. (2022). INVESTIGATION OF KNEE FLEXION UNDER ORTHOSTATIC PHISIOLOGICAL LOADS THROUGH DYNAMIC MRI. Taipei.

INVESTIGATION OF KNEE FLEXION UNDER ORTHOSTATIC PHISIOLOGICAL LOADS THROUGH DYNAMIC MRI

Michele Conconi;Nicola Sancisi;
2022

Abstract

Measuring the joint motion under physiological loads is fundamental for the comprehension of the normal and impaired musculoskeletal function [1]. Present measurement techniques in vivo are however invasive [2,3] or imprecise [4]. Dynamic magnetic resonance imaging (DMRI) represents an emerging technology that may over-come these limitations [5]. This work presents a procedure to quantify the knee kinematics under physiological loads and about 90° of knee flexion. The accuracy of a new registration algorithm is also discussed.
2022
Proceedings of WCB 2022
1
2
Michele Conconi, M.B. (2022). INVESTIGATION OF KNEE FLEXION UNDER ORTHOSTATIC PHISIOLOGICAL LOADS THROUGH DYNAMIC MRI. Taipei.
Michele Conconi, Matteo Berni, Nicola Sancisi, Filippo De-Carli, Giuseppe Monetti
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/905982
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