3 Introduction to Brain Imaging
65
41. Hartkens, T., Hill, D.L., Castellano-Smith, A.D., Hawkes, D.J., Maurer Jr., C.R., Martin, A.J.,
Hall, W.A., Liu, H., Truwit, C.L.: Measurement and analysis of brain deformation during
neurosurgery. IEEE Trans. Med. Imaging. 22(1), 82–92 (2003)
42. Hendler, T., Pianka, P., Sigal, M., Kafri, M., Ben Bashat, D., Constantini, S., Graif, M.,
Fried, I., Assaf, Y.: Delineating gray and white matter involvement in brain lesions: threedimensional alignment of functional magnetic resonance and diffusion-tensor imaging.
J.Neurosurg. 99(6), 1018–1027 (2003)
43. Hillebrand, A., Barnes, G.R.: A quantitative assessment of the sensitivity of whole-head MEG
to activity in the adult human cortex. NeuroImage. 16(3 Pt 1), 638–650 (2002)
44. Hodolic, M., Topakian, R., Pichler, R.: (18)F-fluorodeoxyglucose and (18)F-flumazenil
positron emission tomography in patients with refractory epilepsy. Radiol. Oncol. 50(3), 247–
253 (2016)
45. Holodny, A.I., Schulder, M., Liu, W.C., Wolko, J., Maldjian, J.A., Kalnin, A.J.: The effect
of brain tumors on BOLD functional MR imaging activation in the adjacent motor cortex:
implications for image-guided neurosurgery. AJNR Am. J. Neuroradiol. 21(8), (2000).
PM:11003273
46. Hou, B.L., Bradbury, M., Peck, K.K., Petrovich, N.M., Gutin, P.H., Holodny, A.I.: Effect
of brain tumor neovasculature defined by rCBV on BOLD fMRI activation volume in the
primary motor cortex. NeuroImage. 32(2), (2006). PM:16806983
47. Ives, J.R., Warach, S., Schmitt, F., Edelman, R.R., Schomer, D.L.: Monitoring the patient’s
EEG during echo planar MRI. Electroencephalogr. Clin. Neurophysiol. 87(6), 417–420
(1993)
48. James, M.L., Gambhir, S.S.: A molecular imaging primer: modalities, imaging agents, and
applications. Physiol. Rev. 92(2), 897–965 (2012)
49. Jellison, B.J., Field, A.S., Medow, J., Lazar, M., Salamat, M.S., Alexander, A.L.: Diffusion
tensor imaging of cerebral white matter: a pictorial review of physics, fiber tract anatomy, and
tumor imaging patterns. AJNR Am. J. Neuroradiol. 25(3), 356–369 (2004)
50. Jones, T., Rabiner, E.A., Company, P. E. T. R. A: The development, past achievements, and
future directions of brain PET. J. Cereb. Blood Flow Metab. 32(7), 1426–1454 (2012)
51. Kastrup, A., Li, T.Q., Takahashi, A., Glover, G.H., Moseley, M.E.: Functional magnetic
resonance imaging of regional cerebral blood oxygenation changes during breath holding.
Stroke. 29(12), (1998). PM:9836778
52. Keles, G.E., Lamborn, K.R., Berger, M.S.: Low-grade hemispheric gliomas in adults: a
critical review of extent of resection as a factor influencing outcome. J. Neurosurg. 95(5),
735–745 (2001)
53. Keles, G.E., Lamborn, K.R., Berger, M.S.: Coregistration accuracy and detection of brain shift
using intraoperative sononavigation during resection of hemispheric tumors. Neurosurgery.
53(3), 556–562 (2003)
54. Knake, S., Halgren, E., Shiraishi, H., Hara, K., Hamer, H.M., Grant, P.E., Carr, V.A., Foxe, D.,
Camposano, S., Busa, E., Witzel, T., Hamalainen, M.S., Ahlfors, S.P., Bromfield, E.B., Black,
P.M., Bourgeois, B.F., Cole, A.J., Cosgrove, G.R., Dworetzky, B.A., Madsen, J.R., Larsson,
P.G., Schomer, D.L., Thiele, E.A., Dale, A.M., Rosen, B.R., Stufflebeam, S.M.: The value of
multichannel MEG and EEG in the presurgical evaluation of 70 epilepsy patients. Epilepsy
Res. 69(1), 80–86 (2006)
55. Kraff, O., Quick, H.H.: 7T: physics, safety, and potential clinical applications. J. Magn. Reson.
Imaging. 46(6), 1573–1589 (2017)
56. Krainik, A., Duffau, H., Capelle, L., Cornu, P., Boch, A.L., Mangin, J.F., Le, B.D., Marsault,
C., Chiras, J., Lehericy, S.: Role of the healthy hemisphere in recovery after resection of the
supplementary motor area. Neurology. 62(8), 1323–1332 (2004)
57. Kumar, A., Asano, E., Chugani, H.T.: alpha-[(1)(1)C]-methyl-L-tryptophan PET for tracer
localization of epileptogenic brain regions: clinical studies. Biomark. Med. 5(5), 577–584
(2011)
58. Kwong, K.K., Belliveau, J.W., Chesler, D.A., Goldberg, I.E., Weisskoff, R.M., Poncelet, B.P.,
Kennedy, D.N., Hoppel, B.E., Cohen, M.S., Turner, R.: Dynamic magnetic resonance imaging
65
41. Hartkens, T., Hill, D.L., Castellano-Smith, A.D., Hawkes, D.J., Maurer Jr., C.R., Martin, A.J.,
Hall, W.A., Liu, H., Truwit, C.L.: Measurement and analysis of brain deformation during
neurosurgery. IEEE Trans. Med. Imaging. 22(1), 82–92 (2003)
42. Hendler, T., Pianka, P., Sigal, M., Kafri, M., Ben Bashat, D., Constantini, S., Graif, M.,
Fried, I., Assaf, Y.: Delineating gray and white matter involvement in brain lesions: threedimensional alignment of functional magnetic resonance and diffusion-tensor imaging.
J.Neurosurg. 99(6), 1018–1027 (2003)
43. Hillebrand, A., Barnes, G.R.: A quantitative assessment of the sensitivity of whole-head MEG
to activity in the adult human cortex. NeuroImage. 16(3 Pt 1), 638–650 (2002)
44. Hodolic, M., Topakian, R., Pichler, R.: (18)F-fluorodeoxyglucose and (18)F-flumazenil
positron emission tomography in patients with refractory epilepsy. Radiol. Oncol. 50(3), 247–
253 (2016)
45. Holodny, A.I., Schulder, M., Liu, W.C., Wolko, J., Maldjian, J.A., Kalnin, A.J.: The effect
of brain tumors on BOLD functional MR imaging activation in the adjacent motor cortex:
implications for image-guided neurosurgery. AJNR Am. J. Neuroradiol. 21(8), (2000).
PM:11003273
46. Hou, B.L., Bradbury, M., Peck, K.K., Petrovich, N.M., Gutin, P.H., Holodny, A.I.: Effect
of brain tumor neovasculature defined by rCBV on BOLD fMRI activation volume in the
primary motor cortex. NeuroImage. 32(2), (2006). PM:16806983
47. Ives, J.R., Warach, S., Schmitt, F., Edelman, R.R., Schomer, D.L.: Monitoring the patient’s
EEG during echo planar MRI. Electroencephalogr. Clin. Neurophysiol. 87(6), 417–420
(1993)
48. James, M.L., Gambhir, S.S.: A molecular imaging primer: modalities, imaging agents, and
applications. Physiol. Rev. 92(2), 897–965 (2012)
49. Jellison, B.J., Field, A.S., Medow, J., Lazar, M., Salamat, M.S., Alexander, A.L.: Diffusion
tensor imaging of cerebral white matter: a pictorial review of physics, fiber tract anatomy, and
tumor imaging patterns. AJNR Am. J. Neuroradiol. 25(3), 356–369 (2004)
50. Jones, T., Rabiner, E.A., Company, P. E. T. R. A: The development, past achievements, and
future directions of brain PET. J. Cereb. Blood Flow Metab. 32(7), 1426–1454 (2012)
51. Kastrup, A., Li, T.Q., Takahashi, A., Glover, G.H., Moseley, M.E.: Functional magnetic
resonance imaging of regional cerebral blood oxygenation changes during breath holding.
Stroke. 29(12), (1998). PM:9836778
52. Keles, G.E., Lamborn, K.R., Berger, M.S.: Low-grade hemispheric gliomas in adults: a
critical review of extent of resection as a factor influencing outcome. J. Neurosurg. 95(5),
735–745 (2001)
53. Keles, G.E., Lamborn, K.R., Berger, M.S.: Coregistration accuracy and detection of brain shift
using intraoperative sononavigation during resection of hemispheric tumors. Neurosurgery.
53(3), 556–562 (2003)
54. Knake, S., Halgren, E., Shiraishi, H., Hara, K., Hamer, H.M., Grant, P.E., Carr, V.A., Foxe, D.,
Camposano, S., Busa, E., Witzel, T., Hamalainen, M.S., Ahlfors, S.P., Bromfield, E.B., Black,
P.M., Bourgeois, B.F., Cole, A.J., Cosgrove, G.R., Dworetzky, B.A., Madsen, J.R., Larsson,
P.G., Schomer, D.L., Thiele, E.A., Dale, A.M., Rosen, B.R., Stufflebeam, S.M.: The value of
multichannel MEG and EEG in the presurgical evaluation of 70 epilepsy patients. Epilepsy
Res. 69(1), 80–86 (2006)
55. Kraff, O., Quick, H.H.: 7T: physics, safety, and potential clinical applications. J. Magn. Reson.
Imaging. 46(6), 1573–1589 (2017)
56. Krainik, A., Duffau, H., Capelle, L., Cornu, P., Boch, A.L., Mangin, J.F., Le, B.D., Marsault,
C., Chiras, J., Lehericy, S.: Role of the healthy hemisphere in recovery after resection of the
supplementary motor area. Neurology. 62(8), 1323–1332 (2004)
57. Kumar, A., Asano, E., Chugani, H.T.: alpha-[(1)(1)C]-methyl-L-tryptophan PET for tracer
localization of epileptogenic brain regions: clinical studies. Biomark. Med. 5(5), 577–584
(2011)
58. Kwong, K.K., Belliveau, J.W., Chesler, D.A., Goldberg, I.E., Weisskoff, R.M., Poncelet, B.P.,
Kennedy, D.N., Hoppel, B.E., Cohen, M.S., Turner, R.: Dynamic magnetic resonance imaging
