Michael A. Moffitt, Ph.D.

Boston Scientific 
"Michael Moffitt"
Mean distance: 17.97 (cluster 22)
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Bronstein JM, Tagliati M, McIntyre C, et al. (2015) The rationale driving the evolution of deep brain stimulation to constant-current devices. Neuromodulation : Journal of the International Neuromodulation Society. 18: 85-8; discussion 88-
Lempka SF, Johnson MD, Moffitt MA, et al. (2011) Theoretical analysis of intracortical microelectrode recordings. Journal of Neural Engineering. 8: 045006
Lee D, Moffitt M, Bradley K, et al. (2007) Selective neural activation by field sculpting: results from a new computer model for spinal cord stimulation Bmc Neuroscience. 8: 105
Lempka SF, Johnson MD, Barnett DW, et al. (2006) Optimization of microelectrode design for cortical recording based on thermal noise considerations. Conference Proceedings : ... Annual International Conference of the Ieee Engineering in Medicine and Biology Society. Ieee Engineering in Medicine and Biology Society. Annual Conference. 1: 3361-4
Gustafson KJ, Moffitt MA, Wang X, et al. (2006) Topography of spinal neurons active during hindlimb withdrawal reflexes in the decerebrate cat. Neuroscience. 141: 1983-94
Moffitt MA, McIntyre CC. (2005) Model-based analysis of cortical recording with silicon microelectrodes. Clinical Neurophysiology : Official Journal of the International Federation of Clinical Neurophysiology. 116: 2240-50
Moffitt MA, Dale BM, Duerk JL, et al. (2005) Functional magnetic resonance imaging of the human lumbar spinal cord. Journal of Magnetic Resonance Imaging : Jmri. 21: 527-35
Moffitt MA, McIntyre CC. (2005) Cortical recording with silicon microelectrodes: Model-based analysis of contact dimension and encapsulation changes on recorded waveforms 2nd International Ieee Embs Conference On Neural Engineering. 2005: 149-150
Moffitt MA, Grill WM. (2004) Electrical localization of neural activity in the dorsal horn of the spinal cord: a modeling study. Annals of Biomedical Engineering. 32: 1694-709
Moffitt MA, McIntyre CC, Grill WM. (2004) Prediction of myelinated nerve fiber stimulation thresholds: limitations of linear models. Ieee Transactions On Bio-Medical Engineering. 51: 229-36
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