Biomedical Engineering Reference
In-Depth Information
60. Reichenbach, A., Whittingstall, K., Thielscher, A.: Effects of transcranial magnetic
stimulation on visual evoked potentials in a visual suppression task. NeuroImage 54(2),
1375-1384 (2011). doi: 10.1016/j.neuroimage.2010.08.047
61. Renaud, P., Piccin, O., Lebossé, C., Laroche, E., de Mathelin, M., Bayle, B., Foucher, J.:
Robotic image-guided transcranial magnetic stimulation. In: Computer assisted radiology and
surgery (CARS), 20th international congress. Osaka, Japan (2006)
62. Richter, L., Ernst, F., Martens, V., Matthäus, L., Schweikard, A.: Client/server framework for
robot control in medical assistance systems. In: Proceedings of the 24th international
congress
and
exhibition
on
computer
assisted
radiology
and
surgery
(CARS'10).
Int.
J. Comput. Assist. Radiol. Surg. 5, 306-307 (2010)
63. 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
64. Richter, L., Matthäus, L., Schlaefer, A., Schweikard, A.: Fast robotic compensation of
spontaneous head motion during transcranial magnetic stimulation (TMS). In: UKACC
international conference on CONTROL 2010, pp. 872-877. United Kingdom Automatic
Control Council (2010)
65. Richter, L., Matthäus, L., Trillenberg, P., Diekmann, C., Rasche, D., Schweikard, A.:
Behandlung von chronischem Tinnitus mit roboterunterstützter TMS. In: 39. Jahrestagung
der Gesellschaft für Informatik, Lecture Notes in Informatics (LNI), vol. 154, pp. 86,
1018-1027. GI (2009)
66. Rossini, P.M., Barker, A.T., Berardelli, A., Caramia, M.D., Caruso, G., Cracco, R.Q.,
Dimitrijevic, M.R., Hallett, M., Katayama, Y., Lücking, C.H., de Noordhout, A.L.M.,
Marsden, C.D., Murray, N.M.F., Rothwell, J.C., Swash, M., Tomberg, C.: Non-invasive
electrical and magnetic stimulation of the brain, spinal cord and roots: basic principles and
procedures for routine clinical application. report of an ifcn committee. Electroencephalogr.
Clin. Neurophysiol. 91(2), 79-92 (1994). doi: 10.1016/0013-4694(94)90029-9 .
67. Roth, B.J.: Mechanisms for electrical stimulation of excitable tissue. Crit. Rev. Biomed. Eng.
22, 253-305 (1994)
68. Roth, Y., Amir, A., Levkovitz, Y., Zangen, A.: Three-dimensional distribution of the electric
field induced in the brain by transcranial magnetic stimulation using figure-8 and deep H-
coils. J. Clin. Neurophysiol. 24(1), 31-38 (2007)
69. Roth, Y., Zangen, A., Hallett, M.: A coil design for transcranial magnetic stimulation of deep
brain regions. J. Clin. Neurophysiol. 19(4), 361-370 (2002)
70. Ruff, C.C., Driver, J., Bestmann, S.: Combining tms and fmri: from virtual lesions to
functional-network accounts of cognition. Cortex 45(9), 1043-1049 (2009). doi: 10.1016/
j.cortex.2008.10.012 . Special Issue on the Contribution of TMS to Structure-Function
Mapping in the Human Brain. Action, Perception and Higher Functions
71. Ruohonen,
J.:
Transcranial
magnetic
stimulation:
modelling
and
new
techniques.
Dissertation,
Laboratory
of
Biomedical
Engineering
(BioMag),
Helsinki
University
of
Technology (1998)
72. Ruohonen,
J.,
Ilmoniemi,
R.J.:
Modeling
of
the
stimulating
field
generation
in
tms.
Electroencephalogr. Clin. Neurophysiol. Suppl. 51, 30-40 (1999)
73. Ruohonen, J., Karhu, J.: Navigated transcranial magnetic stimulation. Neurophysiol. Clin./
Clin. Neurophysiol. 40(1), 7-17 (2010). doi: 10.1016/j.neucli.2010.01.006
74. Sandbrink, F.: The mep in clinical neurodiagnosis. In: The Oxford Handbook of Transcranial
Magnetic Stimulation, Chap. 19, pp. 237-283. Oxford University Press, Oxford (2008)
75. Schönfeldt-Lecuona, C., Lefaucheur, J.P., Cardenas-Morales, L., Wolf, R.C., Kammer, T.,
Herwig, U.: The value of neuronavigated rtms for the treatment of depression. Neurophysiol.
Clin./Clin. Neurophysiol. 40(1), 37-43 (2010). doi: 10.1016/j.neucli.2009.06.004
76. Schweikard, A., Glosser, G., Bodduluri, M., Murphy, M.J., Adler J.R. Jr.: Robotic Motion
Compensation for Respiratory Movement during Radiosurgery. J. Comput. Aided Surg. 5(4),
263-277 (2000). doi: 10.3109/10929080009148894
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