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Netter's Neuroscience Coloring Book

Reinforce your knowledge of neuroanatomy, neuroscience, and common pathologies of the nervous system with this active and engaging learn and review tool! Netter’s Neuroscienc… Leer más

Descripción

Reinforce your knowledge of neuroanatomy, neuroscience, and common pathologies of the nervous system with this active and engaging learn and review tool! Netter’s Neuroscience Coloring Book by Drs. David L. Felten and Mary Summo Maida, challenges you to a better understanding of the brain, spinal cord, and peripheral nervous system using visual and tactile learning. It’s a fun and interactive way to trace pathways and tracts, as well as reinforce spatial, functional, and clinical concepts in this fascinating field.

Puntos claves

  • More than 145 key topics in neuroscience and neuroanatomy, using bold, clear drawings based on classic Netter art
  • Coloring exercises for visual and tactile learning as you trace pathways and tracts, reinforcing spatial, functional, and clinical concepts in this fascinating field
  • A clear organization with 4 major sections: (1) Overview of the nervous system; (2) regional neuroscience; (3) systemic neuroscience; and (4) global neuroscience
  • Three major components for each topic and accompanying illustrations: What is it and what does it do?; Color the most important structures; and What is the functional and clinical significance?
  • Text revision based on extensive student feedback
  • New coloring exercises on Endogenous Opioid Systems, Insular Cortex, Prefrontal Cortex, Dementias, Alzheimer’s Disease, Posttraumatic Stress, Traumatic Brain Injury (TBI), and Brain Substrates of Addictive Disorders
  • Clinical Notes that bridge basic science with health care and medicine
  • Expanded workbook review questions and bulleted lists throughout to reinforce comprehension and retention
  • Enhanced eBook version included with purchase. Your enhanced eBook includes completed coloring and workbook pages for reference and allows you to access all of the text and figures from the book on a variety of devices

De interès para

Students in neuroscience courses or who are preparing for an upcoming neuroscience course/program (these range from high school students and premeds to medical and health professions students and students in neuroscience research, linguistics, etc.)

Índice

Section I: Overview of the Nervous System

1. Neurons and Their Properties

1.1. Neuronal Structure

1.2. Types of Synapses

1.3. Neuronal Cell Types

1.4. Glial Cell Types

1.5. Astrocyte Biology

1.6. Microglial Biology

1.7. Oligodendroglial Biology

1.8. The Blood-Brain Barrier

1.9. Axonal Transport in the CNS and PNS

1.10. Myelination of CNS and PNS Axons

1.11. Neuronal Resting Potential

1.12. Graded Potentials in Neurons

1.13. Action Potentials

1.14. Conduction Velocity

1.15. Neurotransmitter Release

1.16. Multiple Neurotransmitter Synthesis, Release, and Signaling from Individual Neurons

1.17. Chemical Neurotransmission


2. Brain, Skull and Meninges

2.1. Meninges and Their Relationships to the Brain and Skull

2.2. Surface Anatomy of the Forebrain: Lateral View

2.3. Cerebral Cortex Anatomy and Functional Regions: Lateral View

2.4. Cortical Architecture: Brodmann's Areas

2.5. Midsagittal Surface of the Brain

2.6. Basal Surface of the Brain

2.7. Axial and Mid-Sagittal Views of the Central Nervous System

2.8. Horizontal (Axial) Brain Sections Showing the Basal Ganglia

2.9. Major Limbic Forebrain Structures


3. Brain Stem, Cerebellum, and Spinal Cord

3.1. Brain Stem Surface Anatomy: Posterolateral View

3.2. Brain Stem Surface Anatomy: Anterior View

3.3. Cerebellar Anatomy

3.4. Spinal Cord Gross Anatomy: Posterior View

3.5. Spinal Cord Cross-Sectional Anatomy in Situ

3.6. Spinal Cord White Matter and Gray Matter


4. Ventricles, Cerebrospinal Fluid, and Vasculature

4.1. Schematic of the Ventricular System

4.2. Mid-Sagittal View of the Ventricular System

4.3. Circulation of the Cerebrospinal

4.4. Arterial Supply to the Brain and Meninges

4.5. Arterial Distribution to the Brain: Circle of Willis, Choroidal Arteries, and Lenticulostriate Arteries

4.6. Arterial Distribution to the Brain: The Cerebral Arteries

4.7. Arterial Distribution to the Brain: The Vertebro-Basilar System

4.8. Blood Supply to the Hypothalamus and Pituitary Gland

4.9. Arterial Blood Supply to the Spinal Cord

4.10. Venous Drainage of the Brain and Venous Sinuses
Review Questions

Section II: Regional Neuroscience

5. Peripheral Nervous System

5.1. Spinal Cord with Sensory, Motor, and Autonomic Components of Peripheral Nerves

5.2. Anatomy of a Peripheral Nerve

5.3. Relationship of Spinal Nerve Roots to Vertebrae

5.4. Sensory Channels: Reflex and Cerebellar

5.5. Sensory Channels: Lemniscal

5.6. Motor Channels: Basic Organization of Lower and Upper Motor Neurons

5.7. Autonomic Channels

5.8. Cutaneous Receptors

5.9. The Neuromuscular Junction, Autonomic Neuroeffector Junctions, and Neurotransmission

5.10. Brachial Plexus

5.11. Dermatomal Distribution

5.12. Cutaneous Distribution of Peripheral Nerves

5.13. Cholinergic and Adrenergic Distribution to Motor and Autonomic Structures

5.14. Autonomic Distribution to the Head and Neck

5.15. Enteric Nervous System


6. Spinal Cord

6.1. Cytoarchitecture of the Spinal Cord Gray Matter

6.2. Spinal Cord Histological Cross Sections

6.3. Spinal Cord Syndromes

6.4. Spinal Cord Lower Motor Neuron Organization and Control

6.5. Spinal Somatic Reflex Pathways

6.6. Muscle and Joint Receptors and Muscle Spindles


7. Brain Stem and Cerebellum

7.1. Cranial Nerves

7.2. Cranial Nerves and their Nuclei: Schematic View from Above

7.3. The Vestibulocochlear Nerve (CN VIII)

7.4. Reticular Formation: General Pattern of Nuclei in the Brain Stem

7.5. Cerebellar Organization: Lobes and Regions

7.6. Cerebellar Anatomy

7.7. Deep Cerebellar Nuclei and Cerebellar Peduncles

7.8. Brain Stem Arterial Syndromes


8. Forebrain: Diencephalon and Telencephalon

8.1. Thalamic Nuclei and Interconnections with the Cerebral Cortex

8.2. Hypothalamus and Pituitary Gland

8.3. Schematic of Hypothalamic Nuclei

8.4. Axial Section through the Forebrain

8.5. Coronal Section through the Forebrain

8.6. Layers of the Cerebral Cortex

8.7. Vertical Columns: Functional Units of the Cerebral Cortex

8.8. Efferent Connections of the Cerebral Cortex

8.9. Cortical Association Fibers

8.10. Aphasias and Cortical Areas of Damage

8.11. Noradrenergic Pathways

8.12. Serotonergic Pathways

8.13. Dopaminergic Pathways

8.14. Central Cholinergic Pathways
Review Questions

Section III: Systemic Neuroscience

9. Sensory Systems

9.1. Somatosensory System: Spinocerebellar Pathways

9.2. Somatosensory System: The Dorsal Column System and Epicritic Modalities

9.3. Somatosensory System: The Spinothalamic and Spinoreticular Systems and Protopathic Modalities

9.4. Mechanisms of Neuropathic Pain and Sympathetically-Maintained Pain

9.5. Descending Control of Ascending Somatosensory Systems

9.6. Trigeminal Sensory and Associated Systems

9.7. Pain-Sensitive Structures of the Head and Pain Referral

9.8. Taste Pathways

9.9. Peripheral Pathways for Sound Reception, and the Bony and Membranous Labyrinths

9.10. CN VIII Nerve Innervation of Hair Cells in the Organ of Corti

9.11. Central Auditory Pathways

9.12. Vestibular Receptors

9.13. Central Vestibular Pathways

9.14. Anatomy of the Eye

9.15. Anterior and Posterior Chambers of the Eye

9.16. The Retina: Retinal Layers

9.17. Anatomy and Relationships of the Optic Chiasm

9.18. Visual Pathways to the Thalamus, Hypothalamus, and Brain Stem

9.19. Pupillary Light Reflex

9.20. The Visual Pathway: The Retino-Geniculo-Calcarine Pathway

9.21. Visual Pathways in the Parietal and Temporal Lobes

9.22. Visual System Lesions


10. Motor Systems

10.1. Alpha and Gamma Lower Motor Neurons

10.2. Distribution of Lower Motor Neurons in the Spinal Cord

10.3. Distribution of Lower Motor Neurons in the Brain Stem

10.4. Corticobulbar Tract

10.5. Corticospinal Tract

10.6. Rubrospinal Tract

10.7. Vestibulospinal Tracts

10.8. Reticulospinal and Cortico-reticulospinal Pathways

10.9. Tectospinal Tract and Interstitiospinal Tract

10.10. Central Control of Eye Movements

10.11. Central Control of Respiration

10.12. Cerebellar Organization and Neuronal Circuitry

10.13. Cerebellar Afferents

10.14. Cerebellar Efferent Pathways

10.15. Schematic Diagram of Cerebellar Efferents to Upper Motor Neurons

10.16. Connections of the Basal Ganglia


11. Autonomic-Hypothalamic-Limbic Systems

11.1. General Organization of the Autonomic Nervous System

11.2. Forebrain Regions Associated With the Hypothalamus

11.3. Afferent and Efferent Pathways Associated with the Hypothalamus

11.4. Paraventricular Nucleus of the Hypothalamus

11.5. Cytokine Influences on Brain and Behavior

11.6. Circumventricular Organs

11.7. Regulation of Anterior Pituitary Hormone Secretion

11.8. Posterior Pituitary (Neurohypophyseal) Hormones: Oxytocin and Vasopressin

11.9. Neuroimmunomodulation

11.10. Anatomy of the Limbic Forebrain

11.11. Hippocampal Formation: General Anatomy

11.12. Neuronal Connections of the Hippocampal Formation

11.13. Major Afferent Connections of the Amygdala

11.14. Major Efferent Connections of the Amygdala

11.15. The Cingulate Cortex

11.16. Olfactory Pathways

Detalles del producto

Sobre los autores

DF

David L. Felten

DAVID L. FELTEN, MD, PhD, is Assoc. Dean of Clinical Sciences and Prof. Neurosciences at UMHS. He’s former VP for Research and Medical Director of Research at William Beaumont Health System and Founding Associate Dean for their School of Medicine. He previously served as Dean of Grad Med Ed at Seton Hall; Founding Executive Director of the Susan Samueli Center for Integrative Medicine and Prof of Anatomy and Neurobiology at UC Irvine; Founding Director of the Center for Neuroimmunology at Loma Linda School of Medicine; and the Kilian J. and Caroline F. Schmitt Professor and Chair of Department of Neurobiology, and Director of Markey Charitable Trust Institute for Neurobiology and Neurodegenerative Diseases and Aging at U of Rochester. His pioneering studies of autonomic innervation of lymphoid organs and neural-immune signaling underling psychoneuroimmunology has been featured on Bill Moyer’s, “Healing and the Mind,” “20/20,” and many other media venues. He served for over a decade on NBME, including Chair of the Neurosciences Committee for the USMLE.
Afiliaciones y experiencia
Distinguished Scholar in Residence, Division of Applied Health and Wellness, Keuka College, Keuka Park, New York, USA

MM

Mary Summo Maida

Afiliaciones y experiencia
Adjunct Professor of Neurobiology and Anatomy, University of Rochester School of Medicine, Rochester, New York, USA