RGB-D-Based Framework to Acquire, Visualize and Measure the Human Body for Dietetic Treatments

Author:

Fuster-Guilló AndrésORCID,Azorín-López JorgeORCID,Saval-Calvo Marcelo,Castillo-Zaragoza Juan Miguel,Garcia-D'Urso Nahuel,Fisher Robert B.ORCID

Abstract

This research aims to improve dietetic-nutritional treatment using state-of-the-art RGB-D sensors and virtual reality (VR) technology. Recent studies show that adherence to treatment can be improved using multimedia technologies. However, there are few studies using 3D data and VR technologies for this purpose. On the other hand, obtaining 3D measurements of the human body and analyzing them over time (4D) in patients undergoing dietary treatment is a challenging field. The main contribution of the work is to provide a framework to study the effect of 4D body model visualization on adherence to obesity treatment. The system can obtain a complete 3D model of a body using low-cost technology, allowing future straightforward transference with sufficient accuracy and realistic visualization, enabling the analysis of the evolution (4D) of the shape during the treatment of obesity. The 3D body models will be used for studying the effect of visualization on adherence to obesity treatment using 2D and VR devices. Moreover, we will use the acquired 3D models to obtain measurements of the body. An analysis of the accuracy of the proposed methods for obtaining measurements with both synthetic and real objects has been carried out.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Advances in Human Body Modelling to Improve the Treatment of Obesity and Overweight;Springer Proceedings in Complexity;2024

2. Predictive Modeling of Body Shape Changes in Individuals on Dietetic Treatment Using Recurrent Networks;Lecture Notes in Networks and Systems;2023

3. Accurate Estimation of Parametric Models of the Human Body from 3D Point Clouds;18th International Conference on Soft Computing Models in Industrial and Environmental Applications (SOCO 2023);2023

4. A Template-Based Method for Automatic Anthropometric Measurements from Multiple 3D Scans;Proceedings of the International Conference on Ubiquitous Computing & Ambient Intelligence (UCAmI 2022);2022-11-21

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