Biomedical Engineering Reference
In-Depth Information
[99] Linka, T., et al., “The Intensity Dependence of Auditory Evoked ERP Components Predicts
Responsiveness to Reboxetine Treatment in Major Depression,” Pharmacopsychiatry ,
Vol. 38, May 2005, pp. 139-143.
[100] Mulert, C., et al., “Prediction of Treatment Response in Major Depression: Integration of
Concepts,” J. Affect. Disord. , Vol. 98, March 2007, pp. 215-225.
[101] Guille, V., et al., “An Examination of Acute Changes in Serotonergic Neurotransmission
Using the Loudness Dependence Measure of Auditory Cortex Evoked Activity: Effects of
Citalopram, Escitalopram and Sertraline,” Hum. Psychopharmacol. , Vol. 23, April 2008,
pp. 231-241.
[102] Norra, C., et al., “Loudness Dependence of Evoked Dipole Source Activity During Acute
Serotonin Challenge in Females,” Hum. Psychopharmacol. , Vol. 23, January 2008,
pp. 31-42.
[103] Wu, J., et al., “Prediction of Antidepressant Effects of Sleep Deprivation by Metabolic
Rates in the Ventral Anterior Cingulate and Medial Prefrontal Cortex,” Am. J. Psychiatry,
Vol. 156, August 1999, pp. 1149-1158.
[104] Wu, J. C., et al., “Effect of Sleep Deprivation on Brain Metabolism of Depressed Patients,”
Am. J. Psychiatry, Vol. 149, April 1992, pp. 538-543.
[105] Mayberg, H. S., et al., “Cingulate Function in Depression: A Potential Predictor of Treat-
ment Response,” Neuroreport , Vol. 8, March 3, 1997, pp. 1057-1061.
[106] Saxena, S., et al., “Differential Brain Metabolic Predictors of Response to Paroxetine in
Obsessive-Compulsive Disorder Versus Major Depression,” Am. J. Psychiatry, Vol. 160,
March 2003, pp. 522-532.
[107] Pascual-Marqui, R. D., C. M. Michel, and D. Lehmann, “Low Resolution Electromagnetic
Tomography: A New Method for Localizing Electrical Activity in the Brain,” Int. J.
Psychophysiol., Vol. 18, October 1994, pp. 49-65.
[108] Pizzagalli, D., et al., “Anterior Cingulate Activity as a Predictor of Degree of Treatment
Response in Major Depression: Evidence from Brain Electrical Tomography Analysis,”
Am. J. Psychiatry, Vol. 158, March 2001, pp. 405-415.
[109] Collins, D. L., et al., “Automatic 3D Intersubject Registration of MR Volumetric Data in
Standardized Talairach Space,” J. Comput. Assist. Tomogr. , Vol. 18, March-April 1994,
pp. 192-205.
[110] Worrell, G. A., et al., “Localization of the Epileptic Focus by Low-Resolution Electromag-
netic Tomography in Patients with a Lesion Demonstrated by MRI,” Brain Topogr. ,
Vol. 12, Summer 2000, pp. 273-282.
[111] Seeck, M., et al., “Non-Invasive Epileptic Focus Localization Using EEG-Triggered Func-
tional MRI and Electromagnetic Tomography,” Electroencephalogr. Clin. Neurophysiol. ,
Vol. 106, June 1998, pp. 508-512.
[112] Pizzagalli, D. A., T. R. Oakes, and R. J. Davidson, “Coupling of Theta Activity and Glucose
Metabolism in the Human Rostral Anterior Cingulate Cortex: An EEG/PET Study of Nor-
mal and Depressed Subjects,” Psychophysiology , Vol. 40, November 2003, pp. 939-949.
[113] Davidson, R. J., et al., “Frontal Versus Parietal EEG Asymmetry During Positive and Nega-
tive Affect,” Psychophysiology , Vol. 16, 1979, pp. 202-203.
[114] Davidson, R. J., “What Does the Prefrontal Cortex 'Do' in Affect: Perspectives on Frontal
EEG Asymmetry Research,” Biol. Psychol. , Vol. 67, October 2004, pp. 219-233.
[115] Allen, J. J., and J. P. Kline, “Frontal EEG Asymmetry, Emotion, and Psychopathology: The
First, and the Next 25 Years,” Biol. Psychol. , Vol. 67, October 2004, pp. 1-5.
[116] Bruder, G. E., “Dichotic Listening: New Developments and Applications in Clinical
Research,” Ann. NY Acad. Sci. , Vol. 620, 1991, pp. 217-232.
[117] Bruder, G. E., et al., “Dichotic Listening Before and After Fluoxetine Treatment for
Major
Depression:
Relations
of
Laterality
to
Therapeutic
Response,”
Neuropsychopharmacology , Vol. 15, August 1996, pp. 171-179.
Search WWH ::




Custom Search