David S. Wack, Ph.D.

Affiliations: 
Communicative Disorders and Sciences State University of New York, Buffalo, Buffalo, NY, United States 
Area:
acoustic calibration, auditory electrophysiology, vestibular/balance function/dysfunction, functional imaging and aging
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"David Wack"

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Robert F. Burkard grad student 2010 SUNY Buffalo
 (Localization of the binaural mechanisms underlying masking level differences, using fMRI.)
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Publications

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Wack DS, Polak P, Furuyama J, et al. (2014) Masking level differences--a diffusion tensor imaging and functional MRI study. Plos One. 9: e88466
Schecklmann M, Landgrebe M, Poeppl TB, et al. (2013) Neural correlates of tinnitus duration and distress: a positron emission tomography study. Human Brain Mapping. 34: 233-40
Wack DS, Cox JL, Schirda CV, et al. (2012) Functional anatomy of the masking level difference, an fMRI study. Plos One. 7: e41263
Magnano C, Schirda C, Weinstock-Guttman B, et al. (2012) Cine cerebrospinal fluid imaging in multiple sclerosis. Journal of Magnetic Resonance Imaging : Jmri. 36: 825-34
Badgaiyan RD, Wack D. (2011) Evidence of dopaminergic processing of executive inhibition Plos One. 6
McNerney KM, Lockwood AH, Coad ML, et al. (2011) Use of 64-channel electroencephalography to study neural otolith-evoked responses. Journal of the American Academy of Audiology. 22: 143-55
Wack DS, Badgaiyan RD. (2011) Complex singular value decomposition based noise reduction of dynamic pet images Current Medical Imaging Reviews. 7: 113-117
McNerney KM, Lockwood AH, Coad ML, et al. (2011) Response to Dr. Papathanasiou Journal of the American Academy of Audiology. 22: 482-483
Burkard R, Reyes S, Wack D, et al. (2010) Can Source Localization and Functional Imaging Help Identify the Generators of Auditory Evoked Potentials? Perspectives On Hearing and Hearing Disorders Research and Diagnostics. 14: 4
Dwyer M, Bergsland N, Hussein S, et al. (2009) A sensitive, noise-resistant method for identifying focal demyelination and remyelination in patients with multiple sclerosis via voxel-wise changes in magnetization transfer ratio Journal of the Neurological Sciences. 282: 86-95
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