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Updated: Aug 21, 2026

Deep-Learning Based Multi-Joint Synchronous Tracking for Objective Quantification of Hindlimb Locomotor Kinematics in Rats
Published on: April 3, 2026
Development of Dynamic Spatial Video Camera (DSVC) for 4D observation, analysis and modeling of human body locomotion
Naoki Suzuki1, Asaki Hattori, Mitsuhiro Hayashibe
1Institute for High Dimensional Medical Imaging, Jikei University School of Medicine 4-11-1 Izumihoncho Komae-shi, Tokyo, 201-8601, Japan.
Abstract:
We have developed an imaging system for free and quantitative observation of human locomotion in a time-spatial domain by way of real time imaging. The system is equipped with 60 computer controlled video cameras to film human locomotion from all angles simultaneously. Images are installed into the main graphic workstation and translated into a 2D image matrix. Observation of the subject from optional directions is able to be performed by selecting the view point from the optimum image sequence in this image matrix. This system also possesses a function to reconstruct 4D models of the subject's moving human body by using 60 images taken from all directions at one particular time. And this system also has the capability to visualize inner structures such as the skeletal or muscular systems of the subject by compositing computer graphics reconstructed from the MRI data set. We are planning to apply this imaging system to clinical observation in the area of orthopedics, rehabilitation and sports science.
