Download Slides

Survey
yes no Was this document useful for you?
   Thank you for your participation!

* Your assessment is very important for improving the workof artificial intelligence, which forms the content of this project

Document related concepts

Neurogenomics wikipedia , lookup

Neuroscience and intelligence wikipedia , lookup

Human multitasking wikipedia , lookup

Nervous system network models wikipedia , lookup

Environmental enrichment wikipedia , lookup

Affective neuroscience wikipedia , lookup

Cortical cooling wikipedia , lookup

Executive functions wikipedia , lookup

Clinical neurochemistry wikipedia , lookup

Blood–brain barrier wikipedia , lookup

Donald O. Hebb wikipedia , lookup

Feature detection (nervous system) wikipedia , lookup

Emotional lateralization wikipedia , lookup

Activity-dependent plasticity wikipedia , lookup

Lateralization of brain function wikipedia , lookup

Neuroinformatics wikipedia , lookup

Brain wikipedia , lookup

Selfish brain theory wikipedia , lookup

Time perception wikipedia , lookup

Haemodynamic response wikipedia , lookup

Neurophilosophy wikipedia , lookup

Brain morphometry wikipedia , lookup

Connectome wikipedia , lookup

Anatomy of the cerebellum wikipedia , lookup

Neurolinguistics wikipedia , lookup

Neuroesthetics wikipedia , lookup

History of neuroimaging wikipedia , lookup

Cognitive neuroscience of music wikipedia , lookup

Limbic system wikipedia , lookup

Neuroplasticity wikipedia , lookup

Neural correlates of consciousness wikipedia , lookup

Neuroeconomics wikipedia , lookup

Cognitive neuroscience wikipedia , lookup

Neuropsychopharmacology wikipedia , lookup

Brain Rules wikipedia , lookup

Neuropsychology wikipedia , lookup

Metastability in the brain wikipedia , lookup

Neuroanatomy wikipedia , lookup

Aging brain wikipedia , lookup

Human brain wikipedia , lookup

Holonomic brain theory wikipedia , lookup

Transcript
Vocabulary & General Concepts
of Brain Organization
Jeanette J. Norden, Ph.D.
Professor Emerita
Vanderbilt University School of Medicine
Course Outline
• Lecture 1: Vocabulary & General Concepts of Brain
Organization
• Lecture 2: Cellular & Molecular Organization of the Brain
• Lecture 3: Brain Areas involved in Different Types of Memory
• Lecture 4: What Modern Neuroscience Reveals about what
Memory is and isn’t
• Lecture 5: Disorders that affect Memory
• Lecture 6: How to keep your Memory – and Brain – Healthy and
Happy!
CNS: Brain & spinal cord
PNS: Any nervous elements
outside of the brain & spinal cord
Both the CNS and
PNS are made up of
individual cells called
“neurons”; the brain
alone has 100 billion
neurons or nerve
cells
• A number of directional terms are used to refer to the nervous
system:
–
–
–
–
–
–
ROSTRAL: towards the “head” end
CAUDAL: towards the “tail” end
DORSAL: back or upper surface
VENTRAL: belly or under surface
MEDIAL: towards the midline
LATERAL: towards the side
D
D
C
R
V
Lateral view
R
C
V
Medial view
•
The brain or “encephalon” is subdivided into 5 divisions (beginning
rostrally or “towards” the head end): telencephalon, diencephalon,
mesencephalon, metencephalon and myelencephalon
• Nuclei or areas are groups of neurons forming structures
with specific functions
– For example, each of the different colors on our brain
model represents an individual nucleus or area – each
with its own internal structure and function
• Each of the 5 brain subdivisions contains specific nuclei or areas
which have important functions
– Telencephalon: consists of two cerebral hemispheres; the
outer covering of the hemispheres is called the “cortex”
(“rind” or “bark”); the cortex is responsible for voluntary
action or thought and for subjective experience
– Diencephalon: includes the thalamus (or “anteroom” – the
structure that “decides” what will be transmitted up to the
cortex) and the hypothalamus (the structure that maintains
homeostasis in the body)
• Mesencephalon (or midbrain): contains many small nuclei that
are important in reflexes, such as reflex turning of the eyes
towards the source of an object or sound
• Metencephalon: pons (“bridge” – a structure that connects the
cerebellum [“little cerebrum”] with the rest of the brain and the
cerebellum (involved in learned skilled motor movement)
• Myelencephalon: medulla – area of the brain that controls vital
functions
The midbrain, pons and medulla are also called the “brainstem”
Looking across different groups of
animals, the brainstem is remarkably
similar in structure and function;
it is the telencephalon that
undergoes the greatest change
CORTEX
• The CORTEX represents the outer covering of the cerebral
hemispheres; it consists of layers of nerve cells (from 3 to 6 layers)
and varies in thickness from ~1-4 mm
• The CORTEX is divided into 5 “lobes” (4 are named after the cranial
bones which overlie them)
–
–
–
–
FRONTAL LOBE
PARIETAL LOBE
OCCIPITAL LOBE
TEMPORAL LOBE
– “LIMBIC LOBE” – Medially located structures involved in learning, memory
and emotion
CORTEX
Limbic Lobe
Learning, Memory & Emotion
Brodmann’s System for dividing the Cortex
into Functional Areas
The Brain is also Organized into “Systems”
• As time allows, we will look at various lobes of the
cortex and discuss how the different lobes play a
role in various brain functions, including the ability
to make a voluntary movement, the ability to identify
an object by sight, and the ability to speak &
understand language (we will save the specific
discussion of areas involved in memory until later in
our course)
• As we discuss various functions, we will also
mention how a patient might present if they were to
have damage to the area – regardless of whether the
damage is caused by a stroke or by a tumor or an
other brain disorder
Motor System
(Frontal lobe)
Leg
Face
SOMATOSENSORY SYSTEM
(Parietal Lobe)
Visual System
(Occipital Lobe)
HEARING & LANGUAGE
(Temporal Lobe)