Toward Development of Novel Remote Ultrasound Robotic System Using Soft Robotics Technology

Author:

Papendorp Sky1,Ovando Ammy1,Gharaie Saleh2,Mosadegh Bobak3,Guerra-Zubiaga David1ORCID,Alaie Seyedhamidreza4,Ashuri Turaj5,Amiri Moghadam Amir Ali1

Affiliation:

1. Department of Robotics and Mechatronics Engineering, Kennesaw State University , Marietta, GA 30060

2. School of Engineering, Deakin University , Geelong 3216, VIC, Australia

3. Department of Radiology, Dalio Institute of Cardiovascular Imaging, Weill Cornell Medicine New York, NY 10021

4. Department of Mechanical and Aerospace Engineering, New Mexico State University , Las Cruces, NM 88003

5. Southern Polytechnic College of Engineering and Engineering Technology, Kennesaw State University , Marietta, GA 30060

Abstract

Abstract This paper reports on the development of a novel soft robotic system for remote ultrasound applications. Direct contact of the ultrasound probe with the patient's body represents a safety risk and therefore control of the probe's positioning and applied force is a crucial task. The proposed robot uses a passive control system that provides safe interaction between the robot and the patient by leveraging soft robotics technology. The soft robot's structure can be considered as a nonlinear spring which can be designed to exert a safe force within the robot's workspace to guarantee the safety of human–robot interaction. The literature suggests that effective ultrasound imaging of both the heart and abdomen requires six degrees-of-freedom. These degrees-of-freedom consist of three translational motions, which are achieved using a novel hybrid soft cable-driven parallel robot, and three wrist motions, which is based on a universal joint design. The experimental results show that the robot can achieve all these six degrees-of-freedom, and its blocking force can be engineered to generate a uniform force within the workspace.

Publisher

ASME International

Subject

General Medicine

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3. Biomedical Soft Robots: Current Status and Perspective;Biomed. Eng. Lett.,2020

4. A Novel Soft Robotic Hand for Prosthetic Applications,2022

5. Human-Compliant Body-Attached Soft Robots Towards Automatic Cooperative Ultrasound Imaging,2016

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