Description

Book Synopsis
Thorough understanding of electricity, electronics, biophysics, neurophysiology, and neuroanatomy renders more tractable otherwise complex electrophysiologically-based targeting. The textbook integrates these subjects in a single resource. Ultimately, electrophysiological monitoring required controlling the movement of electrons in electronic circuits. Thus, the textbook begins with fundamental discussions of electrons, the forces moving electrons, and the electrical circuits controlling these forces. The forces that allow recording and analysis also permeate the environment producing interference, such as noise and artifact. The textbook discusses noise and artifact and the measures to avoid or suppress them. The textbook discusses interpretive principles and methods for translating electrophysiological information collected along a trajectory into an understanding of the trajectory''s functional-anatomical location, as well as its optimal location and direction. Forms included allow

Table of Contents
Preface ; Chapter 1 - Importance of Intraoperative Neurophysiological Monitoring ; Chapter 2 - Preparations for Intraoperative Neurophysiological Monitoring ; Chapter 3 - Basic Concepts of Electricity and Electronics ; Chapter 4 - Electrode Recordings: Neurophysiology ; Chapter 5 - Microelectrode and Semi-Microelectrode Recordings: Electronics ; Chapter 6 - Noise and Artifact ; Chapter 7 - Microelectrode Recordings: Neuronal Characteristics and Behavioral Correlations ; Chapter 8 - Microstimulation and Macrostimulation ; Chapter 9 - The Subthalamic Nucleus ; Chapter 10 - The Globus Pallidus Interna Nucleus ; Chapter 11 - The Ventral Intermediate Nucleus of the Thalamus ; Chapter 12 - Clinical Assessments During Intraoperative Neurophysiological Monitoring ; Chapter 13 - Cases ; Chapter 14 - Future Intraoperative Neurophysiological Monitoring ; Appendix A - Subthalamic Nucleus Deep Brain Stimulation Algorithm ; Appendix B - Ventral Intermediate Thalamus Deep Brain Stimulation Algorithm ; Appendix C - Globus Pallidus Interna Deep Brain Stimulation Algorithm ; Appendix D - Microelectrode Recording Form for Subthalamic Nucleus Deep Brain Stimulation ; Appendix E - Microelectrode Recording Form for Globus Pallidus Interna ; Appendix F - Microelectrode Recording Form for Ventral Intermediate Thalamus ; Appendix G - Intraoperative Macrostimulation for Clinical Effect in Parkinson's Disease ; Appendix H - Intraoperative Macrostimulation for Clinical Effect in Tremor Disorders ; Appendix I - Intraoperative Macrostimulation for Clinical Effect on Dystonia ; Appendix J - Intraoperative Macrostimulation for Clinical effect on Tics ; Appendix K - Intraoperative Macrostimulation for Clinical Effect on Dyskinesia

Intraoperative Neurophysiological Monitoring for Deep Brain Stimulation

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    A Hardback by Erwin B. Montgomery Jr

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      View other formats and editions of Intraoperative Neurophysiological Monitoring for Deep Brain Stimulation by Erwin B. Montgomery Jr

      Publisher: Oxford University Press
      Publication Date: 8/28/2014 12:00:00 AM
      ISBN13: 9780199351008, 978-0199351008
      ISBN10: 0199351007

      Description

      Book Synopsis
      Thorough understanding of electricity, electronics, biophysics, neurophysiology, and neuroanatomy renders more tractable otherwise complex electrophysiologically-based targeting. The textbook integrates these subjects in a single resource. Ultimately, electrophysiological monitoring required controlling the movement of electrons in electronic circuits. Thus, the textbook begins with fundamental discussions of electrons, the forces moving electrons, and the electrical circuits controlling these forces. The forces that allow recording and analysis also permeate the environment producing interference, such as noise and artifact. The textbook discusses noise and artifact and the measures to avoid or suppress them. The textbook discusses interpretive principles and methods for translating electrophysiological information collected along a trajectory into an understanding of the trajectory''s functional-anatomical location, as well as its optimal location and direction. Forms included allow

      Table of Contents
      Preface ; Chapter 1 - Importance of Intraoperative Neurophysiological Monitoring ; Chapter 2 - Preparations for Intraoperative Neurophysiological Monitoring ; Chapter 3 - Basic Concepts of Electricity and Electronics ; Chapter 4 - Electrode Recordings: Neurophysiology ; Chapter 5 - Microelectrode and Semi-Microelectrode Recordings: Electronics ; Chapter 6 - Noise and Artifact ; Chapter 7 - Microelectrode Recordings: Neuronal Characteristics and Behavioral Correlations ; Chapter 8 - Microstimulation and Macrostimulation ; Chapter 9 - The Subthalamic Nucleus ; Chapter 10 - The Globus Pallidus Interna Nucleus ; Chapter 11 - The Ventral Intermediate Nucleus of the Thalamus ; Chapter 12 - Clinical Assessments During Intraoperative Neurophysiological Monitoring ; Chapter 13 - Cases ; Chapter 14 - Future Intraoperative Neurophysiological Monitoring ; Appendix A - Subthalamic Nucleus Deep Brain Stimulation Algorithm ; Appendix B - Ventral Intermediate Thalamus Deep Brain Stimulation Algorithm ; Appendix C - Globus Pallidus Interna Deep Brain Stimulation Algorithm ; Appendix D - Microelectrode Recording Form for Subthalamic Nucleus Deep Brain Stimulation ; Appendix E - Microelectrode Recording Form for Globus Pallidus Interna ; Appendix F - Microelectrode Recording Form for Ventral Intermediate Thalamus ; Appendix G - Intraoperative Macrostimulation for Clinical Effect in Parkinson's Disease ; Appendix H - Intraoperative Macrostimulation for Clinical Effect in Tremor Disorders ; Appendix I - Intraoperative Macrostimulation for Clinical Effect on Dystonia ; Appendix J - Intraoperative Macrostimulation for Clinical effect on Tics ; Appendix K - Intraoperative Macrostimulation for Clinical Effect on Dyskinesia

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