2023
DOI: 10.1155/2023/2763099
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In Vivo Evaluation of the Position and Orientation of the Geometric Axis of the Tibiotalar Joint

Abstract: Background. Fitting the surface morphology of the talar trochlea is one of the common methods to define the geometric axis of the tibiotalar joint (GATJ). However, the in vivo motion of such axis during gait has not been fully investigated. Methods. The ankle kinematic data of fifteen volunteers were collected by a dual fluoroscopic imaging system with a model-image registration method. The GATJ was defined by sphere-fitting the medial or lateral part of the trochlear surface of the talus. The position and ori… Show more

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“…This angle is highly dependent on the distal fibula's great positional variability ( 15 , 18 ) and on its ossification stage ( 19 ). Using the TA enables us to overcome this anatomical variability while reproducing the tibiotalar joint's geometric axis as closely as possible ( 20 ). The tibiotalar joint's geometric axis corresponds to a fixed axis about which the talus moves in the sagittal plane and gives a better appreciation of the foot's position during gait.…”
Section: Discussionmentioning
confidence: 99%
“…This angle is highly dependent on the distal fibula's great positional variability ( 15 , 18 ) and on its ossification stage ( 19 ). Using the TA enables us to overcome this anatomical variability while reproducing the tibiotalar joint's geometric axis as closely as possible ( 20 ). The tibiotalar joint's geometric axis corresponds to a fixed axis about which the talus moves in the sagittal plane and gives a better appreciation of the foot's position during gait.…”
Section: Discussionmentioning
confidence: 99%