Title :
Toward In-Vivo Force and Motion Measurement for Vascular Surgery
Author :
Dangxiao Wang ; Cailing Yang ; Yuru Zhang ; Jing Xiao
Author_Institution :
State Key Lab. of Virtual Reality Technol. & Syst., Beihang Univ., Beijing, China
Abstract :
In-vivo measurement of force/torque and translation/rotation signals between the catheter and vessels during vascular surgery operations could provide a ground-truth data set for constructing and evaluating haptics-enabled surgical simulation systems. In this paper, we introduce a solution to measure both the translation/rotation of the catheter and the pushing/retracting resistance force and twisting resistance torque caused by multiregion contacts between the catheter and the vascular wall. The prototype has been validated with manipulation experiments of inserting a catheter into a vascular phantom model. The results illustrate that the device can detect collisions between the catheter and the vascular walls. Subtle force/torque changes caused by changes of movement direction can be detected. Force/torque changes at some critical point, such as the intersection point of vessels, can also be detected. The measurement of the catheter position can cover required ranges of translation or rotation.
Keywords :
biomechanics; biomedical measurement; blood vessels; catheters; force measurement; mechanical contact; motion measurement; phantoms; position measurement; prototypes; rotation; surgery; torque measurement; catheter position measurement; catheter rotation signal measurement; catheter translation signal measurement; catheter-vascular wall collision detection; catheter-vascular wall multiregion contacts; critical point; force changes; ground-truth data set; haptic-enabled surgical simulation system construction; haptic-enabled surgical simulation system evaluation; in vivo force measurement; in vivo motion measurement; in vivo torque measurement; manipulation experiments; movement direction change effect; prototype; pushing resistance force; retracting resistance force; rotation ranges; torque changes; translation ranges; twisting resistance torque; vascular phantom model; vascular surgery; vessel intersection point; vessels; Catheters; Force; Force measurement; Motion measurement; Sensors; Torque; Torque measurement; Force/torque; in vivo measurement; translation/rotation; vascular surgery; vascular surgery.;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.2014.2302239