References
- A
zuma R., A survey of augmented reality, Teleoper. Virtual Environ., 1997, 6 (4), 355–385. - I
toh Y., Langlotz T., Sutton J., Plopski A., Towards indistinguishable augmented reality: A survey on optical seethrough head-mounted displays, ACM Comput. Surv., 2021, 54 (6), 1–36. - G
rubert J., Itoh Y., Moser K., Swan J.E., A survey of calibration methods for optical see-through head-mounted displays, IEEE Trans. Vis. Comput. Graph., 2018, 24 (9), 2649–2662. - T
uceryan M., Genc Y., Navab N., Single-point active alignment method (SPAAM) for optical see-through hmd calibration for augmented reality, Teleoper. Virtual Environ., 2002, 11 (3), 259–276. - G
enc Y., Tuceryan M., Navab N., Practical solutions for calibration of optical see-through devices, Proc. Int. Symp. Mix. Augment. Real., 2002, 169. - G
enc Y., Sauer F., Wenzel F., Tuceryan M., Navab N., Optical see-through HMD calibration: A stereo method validated with a video see-through system, Proc. IEEE ACM Int. Symp. Augment. Real., 2000, 165–174. - Z
hang Z., Weng D., Liu Y., A modular calibration framework for 3D interaction system based on optical see-through head-mounted displays in augmented reality, Int. Conf. Vir. Real. Vis., 2016, 393–400. - M
c Garrity E., Tuceryan M., Owen C., Genc Y., Navab N., Evaluation of optical see-through systems, Proc. Int. Conf. Augment. Virtual Environ. 3D Imag., 2001, 18–21. - T
ang A., Zhou J., Owen C., Evaluation of calibration procedures for optical see-through head-mounted displays, Proc 2nd IEEE ACM Int. Sym. Mix. Augment. Real., 2003, 161–168, DOI: 10.1109/ISMAR.2003.1240699. - J
un H., Kim G., A calibration method for optical see-through head-mounted displays with a depth camera, IEEE Virtual Reality (VR), 2016, 103–111, DOI: 10.1109/VR.2016.7504693. - M
oser K., Itoh Y., Oshima K., Swan J.E., Klinker G., Sandor C., Subjective evaluation of a semi-automatic optical see- through head-mounted display calibration technique, IEEE Trans. Vis. Comput. Graph., 2015, 21 (4), 491–500. - M
c Garrity E., Tuceryan M., Owen C., Genc Y., Navab N., Evaluation of optical see-through systems, Proc. Int. Conf. Augment. Virtual Environ. 3D Imag., 2001, 18–21. - V
enkatesan M., Mohan H., Ryan J.R. et al., Virtual and augmented reality for biomedical applications, Cell. Rep. Med., 2021, 2 (7). - B
ogdanova R., Boulanger P., Zheng B., Depth perception of surgeons in minimally invasive surgery, Surg. Inov., 2016, 23 (5), 515–524, DOI: 10.1177/1553350616639141. - P
ietruski P., Majak M., Świątek -Najwer E. et al., Supporting mandibular resection with intraoperative navigation utilizing augmented reality technology – A proof of concept study, J. Craniomaxillofac. Surg., 2019, 47 (6), 854–859. - M
ajak M., Żuk M., Świątek -Najwer E., Popek M., Pietruski P., Augmented reality visualization for aiding biopsy procedure according to computed tomography based virtual plan, Acta Bioeng. Biomech., 2021, 23 (2), 81–89. - M
c Garrity E., Genc Y., Tuceryan M., Owen C., Navab N., A new system for online quantitative evaluation of optical see-through augmentation, Proc. IEEE ACM Int. Symp. Augment Real., 2001a, 157–166. - P
ietruski P., Majak M., Świątek -Najwer E. et al., Supporting fibula free flap harvest with augmented reality: A proof of concept study, Laryngoscope, 2020, 130 (5), 1173–1179.