Quantitative Measurement of CyberKnife Robotic Arm Steering

Author:

Wong Kenneth H.1,Dieterich Sonja2,Tang Jonathan1,Cleary Kevin1

Affiliation:

1. Imaging Science and Information Systems (ISIS) Center Department of Radiology Georgetown University 2115 Wisconsin Avenue NW #603 Washington, DC 20007, USA

2. Department of Radiation Medicine Georgetown University Hospital 3800 Reservoir Road NW Washington, DC 20007, USA

Abstract

Respiratory motion is a significant and challenging problem for radiation medicine. Without adequate compensation for respiratory motion, it is impossible to deliver highly conformal doses to tumors in the thorax and abdomen. The CyberKnife frameless stereotactic radiosurgery system with Synchrony provides respiratory motion adaptation by monitoring skin motion and dynamically steering the beam to follow the moving tumor. This study quantitatively evaluated this beam steering technology using optical tracking of both the linear accelerator and a ball-cube target. Respiratory motion of the target was simulated using a robotic motion platform and movement patterns recorded from previous CyberKnife patients. Our results show that Synchrony respiratory tracking can achieve sub-millimeter precision when following a moving object.

Publisher

SAGE Publications

Subject

Cancer Research,Oncology

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