ELAINE N. MARIEB EIGHTH EDITION 7 Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings PowerPoint ® Lecture Slide Presentation by.

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ELAINE N. MARIEB EIGHTH EDITION 7 Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings PowerPoint ® Lecture Slide Presentation by Jerry L. Cook, Sam Houston University ESSENTIALS OF HUMAN ANATOMY & PHYSIOLOGY PART A The Nervous System

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Objective 1 List the functions of the nervous system.

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Functions of the Nervous System 1. Sensory input – gathering information  To monitor changes occurring inside and outside the body  Changes = stimuli 2. Integration  To process and interpret sensory input and decide if action is needed

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Functions of the Nervous System 3. Motor output  A response to integrated stimuli  The response activates muscles or glands

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Objective 2 Create a chart of descriptions of the functional and structural divisions of the nervous system.

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Page 224 Organization of the Nervous System Figure 7.2

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Structural Classification of the Nervous System  Central nervous system (CNS)  Brain  Spinal cord  Peripheral nervous system (PNS)  Nerve outside the brain and spinal cord

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Figure 7.1 Functional Classification of the Peripheral Nervous System  Sensory (afferent) division  Nerve fibers that carry information to the central nervous system from sense organs

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Figure 7.1 Functional Classification of the Peripheral Nervous System  Motor (efferent) division  Nerve fibers that carry impulses away from the central nervous system to muscles or glands

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Functional Classification of the Peripheral Nervous System  Motor (efferent) division  Two subdivisions  Somatic nervous system = voluntary - skeletal muscles  Autonomic nervous system = involuntary – cardiac & smooth muscle, and glands

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Autonomic Functioning  Sympathetic – “fight-or-flight”  Response to unusual stimulus  Takes over to increase activities  Remember as the “E” division = exercise, excitement, emergency, and embarrassment

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Autonomic Functioning  Parasympathetic – housekeeping activities  Conserves energy  Maintains daily necessary body functions  “resting and digesting”  Remember as the “D” division - digestion, defecation

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Page 224 Organization of the Nervous System Figure 7.2

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Objective 3 Draw and label a neuron, describe its parts, and explain their classification.

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Nervous Tissue: Neurons  Neurons = nerve cells  Cells specialized to transmit messages  Major regions of neurons  Cell body – nucleus and metabolic center of the cell  Processes – fibers that extend from the cell body

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Neuron Anatomy  Cell body  Nissl substance – specialized rough endoplasmic reticulum  Neurofibrils – intermediate cytoskeleton that maintains cell shape Figure 7.4a

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Neuron Anatomy  Cell body  Nucleus  Large nucleolus Figure 7.4a–b

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Neuron Anatomy  Extensions outside the cell body  Dendrites – conduct impulses toward the cell body  Axons – conduct impulses away from the cell body Figure 7.4a

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Axons and Nerve Impulses  Axons end in axonal terminals  Axonal terminals contain vesicles with neurotransmitters  Axonal terminals are separated from the next neuron by a gap  Synaptic cleft – gap between adjacent neurons  Synapse – junction between nerves

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Nerve Fiber Coverings  Schwann cells – produce myelin sheaths in jelly-roll like fashion  Nodes of Ranvier – gaps in myelin sheath along the axon Figure 7.5

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Neuron Cell Body Location  Most are found in the central nervous system  Gray matter – cell bodies and unmylenated fibers  Nuclei – clusters of cell bodies within the white matter of the central nervous system  Ganglia – collections of cell bodies outside the central nervous system

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Functional Classification of Neurons  Sensory (afferent) neurons  Carry impulses from the sensory receptors  Cutaneous sense organs  Proprioceptors – detect stretch or tension  Motor (efferent) neurons  Carry impulses from the central nervous system

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Functional Classification of Neurons  Interneurons (association neurons)  Found in neural pathways in the central nervous system  Connect sensory and motor neurons

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Neuron Classification Figure 7.6

Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings Functional Properties of Neurons  Irritability – ability to respond to stimuli  Conductivity – ability to transmit an impulse  The plasma membrane at rest is polarized  Fewer positive ions are inside the cell than outside the cell