Suppression of Clothing-Induced Acoustic Attenuation in Robotic Auscultation

Author:

Tsumura Ryosuke1ORCID,Umezawa Akihiro2,Morishima Yuko3,Iwata Hiroyasu2,Yoshinaka Kiyoshi1

Affiliation:

1. Health and Medical Research Institute, National Institute of Advanced Industrial Science and Technology, Tsukuba 305-8564, Japan

2. Department of Creative Science and Engineering, Waseda University, Tokyo 162-0042, Japan

3. Faculty of Medicine, University of Tsukuba, Tsukuba 305-8577, Japan

Abstract

For patients who are often embarrassed and uncomfortable when exposing their breasts and having them touched by physicians of different genders during auscultation, we are developing a robotic system that performs auscultation over clothing. As the technical issue, the sound obtained through the clothing is often attenuated. This study aims to investigate clothing-induced acoustic attenuation and develop a suppression method for it. Because the attenuation is due to the loss of energy as sound propagates through a medium with viscosity, we hypothesized that the attenuation is improved by compressing clothing and shortening the sound propagation distance. Then, the amplitude spectrum of the heart sound was obtained over clothes of different thicknesses and materials in a phantom study and human trial at varying contact forces with a developed passive-actuated end-effector. Our results demonstrate the feasibility of the attenuation suppression method by applying an optimum contact force, which varied according to the clothing condition. In the phantom experiments, the attenuation rate was improved maximumly by 48% when applying the optimal contact force (1 N). In human trials, the attenuation rate was under the acceptable attenuation (40%) when applying the optimal contact force in all combinations in each subject. The proposed method promises the potential of robotic auscultation toward eliminating gender bias.

Funder

Japan Society for the Promotion of Science

Publisher

MDPI AG

Subject

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

Reference28 articles.

1. Pereira, D., Castro, A., Gomes, P., Areias, J.C.N.C., Reis, Z.S.N., Coimbra, M.T., and Cruz-Correia, R. (2016). Encyclopedia of E-Health and Telemedicine, IGI Global.

2. NCD Countdown 2030: Worldwide Trends in Non-Communicable Disease Mortality and Progress towards Sustainable Development Goal Target 3.4;Bennett;Lancet,2018

3. Follow-up of Adults with Noncritical COVID-19 Two Months after Symptom Onset;Laurent;Clin. Microbiol. Infect.,2021

4. Nonlinear Time Series and Principal Component Analyses: Potential Diagnostic Tools for COVID-19 Auscultation;Raj;Chaos Solitons Fractals,2020

5. The Female Patient, the Male Physician, and the Inadequate Cardiac Exam;Deloughery;Acad. Med.,2018

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