Robot‐Assisted Ocular Tumour Radiotherapy Positioning and Tracking System

Author:

Wang Xu1,Shi Dequan1,Wang Kundong123,Ming Xue4,Shengyin Xiangzi4,Jia Shouqiang2

Affiliation:

1. School of Electronic Information and Electrical Engineering Shanghai Jiao Tong University Shanghai China

2. Department of Radiology Jinan People's Hospital Affiliated to Shandong First Medical University Jinan China

3. Biomimetic Systems Laboratory Shanghai Engineering Research Center of Intelligent Addiction Treatment and Rehabilitation Shanghai China

4. Department of Radiation Physics Shanghai Proton Heavy Ion Hospital Shanghai Proton Heavy Ion Radiation Therapy Engineering and Technology Research Centre Shanghai China

Abstract

ABSTRACTBackgroundPrecise dose position distribution is crucial for ocular proton therapy.MethodsA non‐invasive eye positioning and tracking system with novel structure is designed to reduce eye movement and facilitate precise dose by guiding the direction of patients' gaze. The system helps to achieve gaze guidance by controlling the light source fixed on two turntables above the patient's face. Tracking of the eye is achieved by cameras attached to the end of a 6DOFs robotic arm to capture the image reflected from a mirror above the patient's face.ResultsAfter all operation steps, the accuracy of the robotic arm is 0.18 mm (SD 0.25 mm) and the accuracy of the turntables is 0.01° (SD 0.02°). The EPTS is tested to be remotely controlled in real time with sufficient precision and repeatability.ConclusionThe system is expected to improve the safety and efficiency of ocular proton therapy.

Publisher

Wiley

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