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.

INVESTIGATION OF KNEE FLEXION UNDER ORTHOSTATIC PHISIOLOGICAL LOADS THROUGH DYNAMIC MRI / Michele Conconi, Matteo Berni, Nicola Sancisi, Filippo De-Carli, Giuseppe Monetti. - ELETTRONICO. - (2022), pp. 1-2. (Intervento presentato al convegno WCB 2022 tenutosi a Taipei, Taiwan nel 10-14 July 2022).

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
INVESTIGATION OF KNEE FLEXION UNDER ORTHOSTATIC PHISIOLOGICAL LOADS THROUGH DYNAMIC MRI / Michele Conconi, Matteo Berni, Nicola Sancisi, Filippo De-Carli, Giuseppe Monetti. - ELETTRONICO. - (2022), pp. 1-2. (Intervento presentato al convegno WCB 2022 tenutosi a Taipei, Taiwan nel 10-14 July 2022).
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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