Publication | Closed Access
Robotic Compensation of Biological Motion to Enhance Surgical Accuracy
120
Citations
43
References
2006
Year
Hand TremorHaptic FeedbackMotor ControlSurgeryMovement AnalysisRehabilitation RoboticsBiomechanicsRobotic CompensationKinematicsRobotic TechnologiesHealth SciencesRoboticsComputer-assisted SurgeryRobotic TechnologyRehabilitationMedical RobotRobotic SurgeryMechanical SystemsRobot-assisted SurgeryHuman MovementMedicineAnesthesiology
Robotic technologies provide new ways to compensate quasi-periodic biological motion, enabling higher surgical accuracy without invasive measures such as cardiopulmonary bypass. This paper describes current research in robotic compensation of hand tremor, respiratory motion, and heartbeat during surgical procedures. An analysis of each physiological motion pattern is provided, as well as a description of novel compensation techniques
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