3 Introduction to Brain Imaging
67
79. Mori, S., van Zijl, P.C.: Fiber tracking: principles and strategies - a technical review. NMR
Biomed. 15(7–8), 468–480 (2002)
80. Moseley, M.E., Cohen, Y., Kucharczyk, J., Mintorovitch, J., Asgari, H.S., Wendland, M.F.,
Tsuruda, J., Norman, D.: Diffusion-weighted MR imaging of anisotropic water diffusion in
cat central nervous system. Radiology. 176(2), 439–445 (1990)
81. Mukamel, R., Fried, I.: Human intracranial recordings and cognitive neuroscience. Annu.
Rev. Psychol. 63, 511–537 (2012)
82. Muoio, B., Giovanella, L., Treglia, G.: Recent developments of 18F-FET PET in neurooncology. Curr. Med. Chem. 25, 3061 (2017)
83. Nabavi, A., Black, P.M., Gering, D.T., Westin, C.F., Mehta, V., Pergolizzi Jr., R.S., Ferrant,
M., Warfield, S.K., Hata, N., Schwartz, R.B., Wells III, W.M., Kikinis, R., Jolesz, F., Jolesz,
F.A.: Serial intraoperative magnetic resonance imaging of brain shift. Neurosurgery. 48(4),
787–797 (2001)
84. Naidich, T.P., Valavanis, A.G., Kubik, S.: Anatomic relationships along the low-middle
convexity: Part I–Normal specimens and magnetic resonance imaging. Neurosurgery. 36(3),
517–532 (1995)
85. Nimsky, C., Ganslandt, O., Cerny, S., Hastreiter, P., Greiner, G., Fahlbusch, R.: Quantification
of, visualization of, and compensation for brain shift using intraoperative magnetic resonance
imaging. Neurosurgery. 47(5), 1070–1079 (2000)
86. Nimsky, C., Ganslandt, O., Buchfelder, M., Fahlbusch, R.: Glioma surgery evaluated by
intraoperative low-field magnetic resonance imaging. Acta Neurochir. Suppl. 85, 55–63
(2003)
87. Nimsky, C., Ganslandt, O., Buchfelder, M., Fahlbusch, R.: Intraoperative visualization for
resection of gliomas: the role of functional neuronavigation and intraoperative 1.5 T MRI.
Neurol. Res. 28(5), 482–487 (2006)
88. Nunez, P.L., Srinivasan, R.: Electric fields of the brain : the neurophysics of EEG. In: Oxford.
Oxford University Press, New York (2006)
89. Ogawa, S., Lee, T.M., Kay, A.R., Tank, D.W.: Brain magnetic resonance imaging with
contrast dependent on blood oxygenation. Proc. Natl. Acad. Sci. U.S.A. 87(24), 9868–9872
(1990)
90. Ogawa, S., Tank, D.W., Menon, R., Ellermann, J.M., Kim, S.G., Merkle, H., Ugurbil, K.:
Intrinsic signal changes accompanying sensory stimulation: functional brain mapping with
magnetic resonance imaging. Proc. Natl. Acad. Sci. U.S.A. 89(13), 5951–5955 (1992)
91. Papadakis, N.G., Murrills, C.D., Hall, L.D., Huang, C.L., Adrian, C.T.: Minimal gradient
encoding for robust estimation of diffusion anisotropy. Magn Reson. Imaging. 18(6), 671–
679 (2000)
92. Parmar, H., Sitoh, Y.Y., Yeo, T.T.: Combined magnetic resonance tractography and functional
magnetic resonance imaging in evaluation of brain tumors involving the motor system. J.
Comput. Assist. Tomogr. 28(4), 551–556 (2004)
93. Parvizi, J., Kastner, S.: Promises and limitations of human intracranial electroencephalography. Nat. Neurosci. 21(4), 474–483 (2018)
94. Pasternak, O., Sochen, N., Gur, Y., Intrator, N., Assaf, Y.: Free water elimination and mapping
from diffusion MRI. Magn Reson. Med. 62(3), 717–730 (2009)
95. Petrella, J.R., Shah, L.M., Harris, K.M., Friedman, A.H., George, T.M., Sampson, J.H.,
Pekala, J.S., Voyvodic, J.T.: Preoperative functional MR imaging localization of language
and motor areas: effect on therapeutic decision making in patients with potentially resectable
brain tumors. Radiology. 240(3), 793–802 (2006)
96. Phelps, M.E.: PET: a biological imaging technique. Neurochem. Res. 16(9), 929–940 (1991)
97. Pierpaoli, C., Jezzard, P., Basser, P.J., Barnett, A., Di Chiro, G.: Diffusion tensor MR imaging
of the human brain. Radiology. 201(3), 637–648 (1996)
98. Rachinger, W., Goetz, C., Popperl, G., Gildehaus, F.J., Kreth, F.W., Holtmannspotter, M.,
Herms, J., Koch, W., Tatsch, K., Tonn, J.C.: Positron emission tomography with O-(2[18F]fluoroethyl)-l-tyrosine versus magnetic resonance imaging in the diagnosis of recurrent
gliomas. Neurosurgery. 57(3), 505–511 (2005).; discussion 505–511
67
79. Mori, S., van Zijl, P.C.: Fiber tracking: principles and strategies - a technical review. NMR
Biomed. 15(7–8), 468–480 (2002)
80. Moseley, M.E., Cohen, Y., Kucharczyk, J., Mintorovitch, J., Asgari, H.S., Wendland, M.F.,
Tsuruda, J., Norman, D.: Diffusion-weighted MR imaging of anisotropic water diffusion in
cat central nervous system. Radiology. 176(2), 439–445 (1990)
81. Mukamel, R., Fried, I.: Human intracranial recordings and cognitive neuroscience. Annu.
Rev. Psychol. 63, 511–537 (2012)
82. Muoio, B., Giovanella, L., Treglia, G.: Recent developments of 18F-FET PET in neurooncology. Curr. Med. Chem. 25, 3061 (2017)
83. Nabavi, A., Black, P.M., Gering, D.T., Westin, C.F., Mehta, V., Pergolizzi Jr., R.S., Ferrant,
M., Warfield, S.K., Hata, N., Schwartz, R.B., Wells III, W.M., Kikinis, R., Jolesz, F., Jolesz,
F.A.: Serial intraoperative magnetic resonance imaging of brain shift. Neurosurgery. 48(4),
787–797 (2001)
84. Naidich, T.P., Valavanis, A.G., Kubik, S.: Anatomic relationships along the low-middle
convexity: Part I–Normal specimens and magnetic resonance imaging. Neurosurgery. 36(3),
517–532 (1995)
85. Nimsky, C., Ganslandt, O., Cerny, S., Hastreiter, P., Greiner, G., Fahlbusch, R.: Quantification
of, visualization of, and compensation for brain shift using intraoperative magnetic resonance
imaging. Neurosurgery. 47(5), 1070–1079 (2000)
86. Nimsky, C., Ganslandt, O., Buchfelder, M., Fahlbusch, R.: Glioma surgery evaluated by
intraoperative low-field magnetic resonance imaging. Acta Neurochir. Suppl. 85, 55–63
(2003)
87. Nimsky, C., Ganslandt, O., Buchfelder, M., Fahlbusch, R.: Intraoperative visualization for
resection of gliomas: the role of functional neuronavigation and intraoperative 1.5 T MRI.
Neurol. Res. 28(5), 482–487 (2006)
88. Nunez, P.L., Srinivasan, R.: Electric fields of the brain : the neurophysics of EEG. In: Oxford.
Oxford University Press, New York (2006)
89. Ogawa, S., Lee, T.M., Kay, A.R., Tank, D.W.: Brain magnetic resonance imaging with
contrast dependent on blood oxygenation. Proc. Natl. Acad. Sci. U.S.A. 87(24), 9868–9872
(1990)
90. Ogawa, S., Tank, D.W., Menon, R., Ellermann, J.M., Kim, S.G., Merkle, H., Ugurbil, K.:
Intrinsic signal changes accompanying sensory stimulation: functional brain mapping with
magnetic resonance imaging. Proc. Natl. Acad. Sci. U.S.A. 89(13), 5951–5955 (1992)
91. Papadakis, N.G., Murrills, C.D., Hall, L.D., Huang, C.L., Adrian, C.T.: Minimal gradient
encoding for robust estimation of diffusion anisotropy. Magn Reson. Imaging. 18(6), 671–
679 (2000)
92. Parmar, H., Sitoh, Y.Y., Yeo, T.T.: Combined magnetic resonance tractography and functional
magnetic resonance imaging in evaluation of brain tumors involving the motor system. J.
Comput. Assist. Tomogr. 28(4), 551–556 (2004)
93. Parvizi, J., Kastner, S.: Promises and limitations of human intracranial electroencephalography. Nat. Neurosci. 21(4), 474–483 (2018)
94. Pasternak, O., Sochen, N., Gur, Y., Intrator, N., Assaf, Y.: Free water elimination and mapping
from diffusion MRI. Magn Reson. Med. 62(3), 717–730 (2009)
95. Petrella, J.R., Shah, L.M., Harris, K.M., Friedman, A.H., George, T.M., Sampson, J.H.,
Pekala, J.S., Voyvodic, J.T.: Preoperative functional MR imaging localization of language
and motor areas: effect on therapeutic decision making in patients with potentially resectable
brain tumors. Radiology. 240(3), 793–802 (2006)
96. Phelps, M.E.: PET: a biological imaging technique. Neurochem. Res. 16(9), 929–940 (1991)
97. Pierpaoli, C., Jezzard, P., Basser, P.J., Barnett, A., Di Chiro, G.: Diffusion tensor MR imaging
of the human brain. Radiology. 201(3), 637–648 (1996)
98. Rachinger, W., Goetz, C., Popperl, G., Gildehaus, F.J., Kreth, F.W., Holtmannspotter, M.,
Herms, J., Koch, W., Tatsch, K., Tonn, J.C.: Positron emission tomography with O-(2[18F]fluoroethyl)-l-tyrosine versus magnetic resonance imaging in the diagnosis of recurrent
gliomas. Neurosurgery. 57(3), 505–511 (2005).; discussion 505–511
