Biomedical Engineering Reference
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References
1. Andreff, N., Horaud, R., Espiau, B.: Robot hand-eye calibration using structure-from-motion.
Int. J. Robot. Res. 20(3), 228-248 (2001). doi: 10.1177/02783640122067372
2. Beyer, L., Wulfsberg, J.: Practical robot calibration with ROSY. Robotica 22(05), 505-512
(2004). doi: 10.1017/s026357470400027x
3. Chen, H.H.: A screw motion approach to uniqueness analysis of head-eye geometry. In:
Proceedings of CVPR '91. IEEE Computer Society Conf Computer Vision and Pattern
Recognition, pp. 145-151 (1991). doi: 10.1109/CVPR.1991.139677.
4. Chou, J.C.K., Kamel, M.: Finding the position and orientation of a sensor on a robot
manipulator using quaternions. Int. J. Robot. Res. 10(3), 240-254 (1991). doi: 10.1177/
027836499101000305
5. Daniilidis, K.: Hand-eye calibration using dual quaternions. Int. J. Robot. Res. 18(3),
286-298 (1999). doi: 10.1177/02783649922066213
6. Denavit, J., Hartenberg, R.S.: A kinematic notation for lower-pair mechanisms based on
matrices. J. Appl. Mech. 22(2), 215-221 (1955)
7. Dornaika, F., Horaud, R.: Simultaneous robot-world and hand-eye calibration. IEEE Trans.
Robot. Autom. 14(4), 617-622 (1998). doi: 10.1109/70.704233
8. Ernst, F., Richter, L., Matthäus, L., Martens, V., Bruder, R., Schlaefer, A., Schweikard, A.:
Non-orthogonal tool/flange and robot/world calibration for realistic tracking scenarios. Int.
J. Med. Robot. Comput. Assist. Surg 8(4), 407-420 (2012). doi: 10.1002/rcs.1427
9. Frantz, D.D., Wiles, A.D., Leis, S.E., Kirsch, S.R.: Accuracy assessment protocols for
electromagnetic tracking systems. Phys. Med Biol. 48(14), 2241 (2003)
10. Horaud, R., Dornaika, F.: Hand eye calibration. In: Proceedings of the Workshop on
Computer Vision for Space Applications, pp. 369-379 (1993)
11. Horaud, R., Dornaika, F.: Hand-eye calibration. Int. J. Robot. Res. 14(3), 195-210 (1995).
doi: 10.1177/027836499501400301
12. Khadem, R., Yeh, C.C., Sadeghi-Tehrani, M., Bax, M.R., Johnson, J.A., Welch, J.N.,
Wilkinson, E.P., Shahidi, R.: Comparative tracking error analysis of five different optical
tracking
systems.
Comput.
Aided
Surg.
5(2),
98-107
(2000).
doi: 10.3109/109290
80009148876
13. Li, M., Betsis, D.: Head-eye calibration. In: Proceedings of the 5th International Conference
on Computer Vision (ICCV'95), pp. 40-45 (1995). doi: 10.1109/ICCV.1995.466809.
14. Matthäus, L.: A robotic assistance system for transcranial magnetic stimulation and its
application to motor cortex mapping. Ph.D. thesis, Universität zu Lübeck (2008)
15. Park, F.C., Martin, B.J.: Robot sensor calibration: solving AX=XB on the Euclidean group.
IEEE Trans. Robot. Autom. 10(5), 717-721 (1994). doi: 10.1109/70.326576
16. Rausch, T., Leigh Jackson, J.: Using clinical workflows to improve medical device/system
development. In: High Confidence Medical Devices, Software, and Systems and Medical
Device
Plug-and-Play
Interoperability,
2007.
HCMDSS-MDPnP.
Joint
Workshop
on,
pp. 133-134 (2007). doi: 10.1109/HCMDSS-MDPnP.2007.31.
17. Remy, S., Dhome, M., Lavest, J.M., Daucher, N.: Hand-eye calibration. In: Intelligent Robots
and Systems, 1997. IROS '97, Proceedings of the 1997 IEEE/RSJ International Conference
on, vol. 2, pp. 1057-1065 (1997). doi: 10.1109/iros.1997.655141.
18. Richter, L., Ernst, F., Martens, V., Matthäus, L., Schweikard, A.: Client/server framework for
robot control in medical assistance systems. Int. J. Comput. Assist. Radiol. Surg. 5, 306-307
(2010) (Proceedings of the 24th International Congress and Exhibition on Computer Assisted
Radiology and Surgery (CARS'10))
19. Richter, L., Ernst, F., Schlaefer, A., Schweikard, A.: Robust robot-camera calibration for
robotized transcranial magnetic stimulation. Int. J. Med. Robot. Comput. Assist. Surg. 7(4),
414-422 (2011). doi: 10.1002/rcs.411
20. Shiu, Y.C., Ahmad, S.: Finding the mounting position of a sensor by solving a homogeneous
transform equation of the form AX = XB. In: Proceedings of the IEEE International
 
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