Abstract
Laparoscopic surgery is a minimally invasive procedure that is performed by viewing endoscopic cam-era images. However, the limited field of view of endoscopic cameras makes laparoscopic surgery diffi-cult. To provide more visual information during laparoscopic surgeries, augmented reality (AR) surgical navigation systems have been developed to visualize the positional relationship between the surgical field and organs based on preoperative medical images of a patient. However, since earlier studies used preoperative medical images, the navigation became inac-curate as the surgery progressed because the organs were displaced and deformed during surgery. To solve this problem, we propose a mixed reality (MR) surgery navigation system in which surgical instruments are tracked by a motion capture (Mocap) system; we also evaluated the contact between the instruments and organs and simulated and visualized the deformation of the organ caused by the contact. This paper describes a method for the numerical calculation of the deformation of a soft body. Then, the basic technology of MR and projection mapping is presented for MR surgical navigation. The accuracy of the simulated and visualized deformations is evaluated through basic experiments using a soft rectangular cuboid object.
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CITATION STYLE
Chen, X., Sakai, D., Fukuoka, H., Shirai, R., Ebina, K., Shibuya, S., … Konno, A. (2022). Basic Experiments Toward Mixed Reality Dynamic Navigation for Laparoscopic Surgery. Journal of Robotics and Mechatronics, 34(6), 1253–1267. https://doi.org/10.20965/jrm.2022.p1253
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