Staff Bibliographies

Michael Remple, PhD, Regional Director of Clinical Research and Associate Director of Deep Brain Stimulation (DBS) Services, joined Sentient Medical Systems in 2006. Dr. Remple received his PhD from Vanderbilt University and is a Member of ASSFN and ASET.

 

PUBLISHED JOURNALS :

  1. Remple M.S., Bradenham, C.H., Kao, C.C., Charles, P.D., Neimat J.S., and Konrad, P.E. (2011). Subthalamic Nucleus Neuronal firing rate increases with Parkinson’s Disease progression. Movement Disorders, (in process).

  2. Konrad PE, Neimat J.S., Yu H., Kao C.C., Remple M.S., D'Haese P.F., and Dawant B.M. (2010). Customized, Miniature Rapid-Prototype Stereotactic Frames for Use in Deep Brain Stimulator Surgery: Initial Clinical Methodology and Experience from 263 Patients from 2002 to 2008. Stereotact Funct Neurosurg, 89: 34-41.

  3. D'Haese, P.F., Pallavaram, S., Li,R., Remple, M.S., Kao, C., Neimat, J.S., Konrad, P.E., and Dawant,B.M. (2010) CranialVault and its CRAVE tools: a clinical computer assistance system for Deep Brain Stimulation (DBS) therapy, Medical Image Analysis, (epub ahead of print)

  4. Pallavaram S, Dawant B, Remple M.S., Yu H, Neimat J, Konrad P, Kao C, and D'Haese P.F. (2010). Effect of brain shift on the creation of functional atlases for deep brain stimulation surgery. Journal of Computer Assisted Radiology and Surgery, 5: 221-228.

  5. Pallavaram, S., Dawant, B.M., Li, R., Neimat J.S., Remple M.S., Kao C, Konrad P.E., and D'Haese P.F. (2009). A method to correct for brain shift when building electrophysiological atlases for deep brain stimulation (DBS) surgery.. Med Image Comput Comput Assist Interventions, 12: 557-6.

  6. Remple, M.S., Sarpong, Y., and Neimat, J.S. (2008). Frontiers in the surgical treatment of Parkinson’s Disease. Expert Reviews in Neurotherapeutics, 8: 897-906.

  7. Pallavaram S, D'Haese PF, Kao C, Yu H, Remple M, Neimat J, Konrad P, and Dawant B (2008). A new method for creating electrophysiological maps for DBS surgery and their application to surgical guidance. Med Image Comput Comput Assist Interventions.11:670-7

  8. Remple, M.S., Lyon, D.C., Reed, J.L., Stepnieweska, I., and Kaas, J.H. (2007). The organization of frontoparietal cortex in the tree shrew (Tupaia belangeri) II: Connectional evidence for a posterior parietal network, Journal of Comparative Neurology, 501:121-149.

  9. Adkins, D., Boychuk, J., Remple, M.S., and Kleim, J.A. (2006). Motor training induces experience-specific patterns of plasticity across motor cortex and spinal cord, Journal of Applied Physiology, 101:1776-82.

  10. Remple, M.S., Reed, J.L., Stepnieweska, I. and Kaas, J.H. (2006). The organization of frontoparietal cortex in the tree shrew (Tupaia belangeri) I: Architecture, microelectrode maps, and corticospinal connections. Journal of Comparative Neurology, 497, 133-54.

  11. Henry, E.C., Remple, M.S., O'Riain, J.M., and Catania, K.C., (2006). The organization of somatosensory cortical areas in the naked mole-rat (Heterocephalus glaber). Journal of Comparative Neurology, 495, 434-52.

  12. Remple, M.S., Jain, N., Diener, P.S. and Kaas, J.H. (2004). Bilateral effects of spinal overhemisections on the development of the somatosensory system in rats. Journal of Comparative Neurology, 475, 604-19.

  13. Kleim, J.A., Hogg, T.M., VandenBerg, P.M., Cooper, N.R., Bruneau, R. and Remple, M. (2004). Cortical synaptogenesis and motor map reorganization occur during late but not early phase of motor skill learning. Journal of Neuroscience, 24, 628–633.

  14. Remple, M.S., Henry, E.C., and Catania, K.C., (2003). The organization of somatosensory cortex in the laboratory rat (Rattus norvegicus) – Evidence for two lateral areas joined at the representation of the teeth. Journal of Comparative Neurology, 467, 105-118.

  15. Catania, K.C., and Remple, M.S. (2002). Somatosensory cortex dominated by the representation of teeth in the naked mole-rat brain. Proceedings of the National Academy of Sciences USA. 99:5692-7.

  16. Remple, M.S., Bruneau, R.M., VandenBerg, P.M., Geortzen, C. and Kleim, J.A. (2002). Sensitivity of cortical movement representations to motor experience: Evidence that skill learning but not strength training induces functional organization. Behavioral Brain Research, 123, 133-41.

  17. Kleim, J.A., Barbay, S., Cooper, N.R., Hogg, T.M., Reidel, C.N., Remple, M.S., and Nudo, R.J. (2001). Motor-learning dependent synaptogenesis is localized to functionally reorganized motor cortex. Neurobiology of Learning and Memory, 77, 63-77.

ABSTRACTS:

  1. Remple, M.S., Hayes, C.H., Kao, C., Charles, P.D., Neimat, J.S., and Konrad, P.E. (2009). STN neuronal firing rate increases with Parkinson’s Disease progression. Congress of Neurological Surgeons. New Orleans. Online.

  2. Pallavaram, S., D’Haese, P.F., Remple, M.S., Neimat, J.S., Kao, C., Li., R., Konrad, P.E., Dawant, B.M. (2009). Detecting brain shift during deep brain stimulation surgery using intra-operative data and functional atlases: a preliminary study. International Symposium on Biomedical Imaging. Boston 

  3. Remple, M.S., Pallavaram, S., Kao, C., D’Haese, P.F., Neimat, J.S., Dawant, B.M., and Konrad, P.E. (2008). The relationship between subthalamic nucleus (STN) somatotopy and deep brain stimulation (DBS) efficacy and side effect maps: an atlas study. Abstract Viewer/Itinerary Planner. Washington, DC: Society for Neuroscience. Online.

  4. Remple, M.S., Pallavaram, S., D’Haese, P.F., Dawant, BM, and Neimat, J.S. (2008). Organization of sensorimotor responses in the human subthalamic nucleus. American Society of Neurophysiological Monitoring annual meeting, Chicago.

  5. Harrison, H., Manus, N.D., Gill, C.E., Kao, C.C., Remple, M.S., Davis T.L., Neimat J.S., Konrad, P.E., and Charles, P.D. (2007). Firing patterns of STN neurons in early stage PD patients implanted with DBS. Movement Disorders Society Annual Meeting, Istanbul Turkey

  6. Konrad, P.E., Remple M.S., Margolin, L.D., Franklin R., and Kao, C. (2006). Customized stereotactic system for research in animals: Advantages of a rapid-prototyped platform over traditional stereotactic frames. Program No. 592.19. Abstract Viewer/Itinerary Planner. Washington, DC: Society for Neuroscience. Online.

  7. Remple, M.S., Stepniewska, I., Reed, J.L., and Kaas, J.H. (2004). The sensory connections of motor cortex in tree shrews. Program No. 641.15. 2004 Abstract Viewer/Itinerary Planner. Washington, DC: Society for Neuroscience. Online.

  8. Remple, M.S., Reed, J.L., Stepniewska, I., and Kaas, J.H. (2003).. The organization of motor cortex and the distribution of corticospinal neurons in tree shrews. Program No. 708.6. 2003 Abstract Viewer/Itinerary Planner. Washington, DC: Society for Neuroscience. Online.

  9. Catania, K.C., Remple, M.S., Henry, E.C., and Remple, F.E. (2002). The organization of somatosensory areas in lateral cortex of the rat. Program No. 650.10. 2002 Abstract Viewer/Itinerary Planner. Washington, DC: Society for Neuroscience, Online.

  10. Remple, M.S., Jain, N., Diener, P.S., and Kaas, J.H. (2002). Bilateral effects of spinal overhemisections on the development of the somatosensory system in the rat. Program No. 650.1. 2002 Abstract Viewer/Itinerary Planner. Washington, DC: Society for Neuroscience. Online.

  11. Catania, K.C., and Remple, M.S. (2001). The organization of somatosensory cortex in the naked mole-rat (Heterocephalus glaber ). Society for Neuroscience, 27.

  12. Kleim, J.A., Bruneau, R., Remple, M., Soroka, N. and Cooper, N. (2001). Forelimb strength training leads to increased synapse number within the ventral spinal cord of the rat. Society for Neuroscience, 27.

  13. Remple, M., Cooper, N., Goertzen, C., VandenBerg, P. and Kleim, J.A. (2000). Effects of differential motor experience on the functional organization of the motor cortex. Society for Neuroscience Abstracts, 26.

  14. Kleim, J.A., Cooper, N., Hogg, T., Reidel, C., & Remple, M. (1999). Learning-dependent structural and functional reorganization of the rat motor cortex. Canadian Society for Brain Behaviour and Cognitive Science.

  15. Kleim, J.A., Hogg, T., Reidel, C., & Remple, M. (1999). Learning-dependent structural and functional reorganization of the rat motor cortex. Winter Conference on Brain Research.

 

 

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