scholarly journals An Ultrasound Imaging-Guided Robotic HIFU Ablation Experimental System and Accuracy Evaluations

2017 ◽  
Vol 2017 ◽  
pp. 1-8 ◽  
Author(s):  
Chih Yu An ◽  
Jia Hao Syu ◽  
Ching Shiow Tseng ◽  
Chih-Ju Chang

In recent years, noninvasive thermal treatment by using high-intensity focused ultrasound (HIFU) has high potential in tumor treatment. The goal of this research is to develop an ultrasound imaging-guided robotic HIFU ablation system for tumor treatment. The system integrates the technologies of ultrasound image-assisted guidance, robotic positioning control, and HIFU treatment planning. With the assistance of ultrasound image guidance technology, the tumor size and location can be determined from ultrasound images as well as the robotic arm can be controlled to position the HIFU transducer to focus on the target tumor. After the development of the system, several experiments were conducted to measure the positioning accuracy of this system. The results show that the average positioning error is 1.01 mm with a standard deviation 0.34, and HIFU ablation accuracy is 1.32 mm with a standard deviation 0.58, which means this system is confirmed with its possibility and accuracy.

Author(s):  
Jong-Chul Park Et.al

In this paper, for the treatment of axillary hyperhidrosis, we propose a driving algorithm for diagnosing the location / distribution / degree of sweat glands using ultrasound images and implementing a treatment device using high intensity focused ultrasound. Currently, treatment for axillary hyperhidrosis uses surgery to cut the skin itself or remove the sweat glands using an incision, but this has the disadvantage of scarring and long recovery time. To solve this, we propose a treatment device using high intensity focused ultrasound and a driving algorithm and a method for implementing a user interface environment.


2020 ◽  
Vol 17 (8) ◽  
pp. 759-771
Author(s):  
Eleftherios Spartalis ◽  
Sotirios P. Karagiannis ◽  
Nikolaos Plakopitis ◽  
Maria Anna Theodori ◽  
Dimosthenis Chrysikos ◽  
...  

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