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Chapter 2: Brain and Behavior Chapter topics Neurons – Building a Biocomputer The Nervous System – Wired for Action Research Methods – Charting the Brain The Cerebral Cortex- My, What a Big Brain you have! The Subcortex – At the Core of the Matter The Endocrine System – Hormones and Behavior Psychology in Action – Handedness Neurons Building a “Biocomputer” How do nerve cells operate and communicate? Neuron and Its Parts Neuron: Individual nerve cell Dendrites: Receive messages from other neurons Soma: Cell body; body of the neuron Axon: Fiber that carries information away from the cell body of a neuron Axon Terminals: Branches that link the dendrites and somas of other neurons The Nerve Impulse Resting Potential: Electrical charge of an inactive neuron Threshold: Trigger point for a neuron’s firing Action Potential: Nerve impulse Negative After-Potential: A drop in electrical charge below the resting potential Synapse Microscopic gap between two neurons over which messages pass Neurotransmitters Chemicals that alter activity in neurons; brain chemicals • • • • Acetylcholine: Activates muscles Dopamine: Muscle control Serotonin: Mood and appetite control Receptor Site: Areas on the surface of neurons and other cells that are sensitive to neurotransmitters "To learn is to change. Education is a process that changes the learner." George Leonard "Not choice, but habit rules the unreflecting herd." ~William Wordsworth Plasticity Capacity of the brain to change in response to experience And, the capacity for routine Neurogenesis Production of new brain cells The Nervous System Wired for Action Neural Regulators Enkephalins: Relieve pain and stress; similar to endorphins Endorphins: Released by pituitary gland; also help to relieve pain Neuropeptides: Brain chemicals that regulate the activity of neurons Nerves and Neurons Nerves: Large bundles of axons and Myelin: Fatty layer of tissue that coats axons Neurilemma: Thin layer of cells wrapped dendrites around axons outside brain and spinal cord; forms a tunnel where damaged fibers go as they repair themselves Multiple Sclerosis (MS) Occurs when immune system attacks and destroys myelin layer in the individual’s body; numbness, weakness, and paralysis occur Central Nervous System Central Nervous System (CNS): Brain and spinal cord Peripheral Nervous System All parts of the nervous system outside of the brain and spinal cord Somatic System: Links spinal cord with body and sense organs; controls voluntary behavior Autonomic System: Serves internal organs and glands; controls automatic functions such as heart rate and blood pressure Two Divisions of the Autonomic System Sympathetic Nervous System: Arouses body; emergency system Parasympathetic Nervous System: Quiets body; most active after an emotional event The Spinal Cord Spinal Nerves: 31 of them; carry sensory and motor messages to and from the spinal cord Cranial Nerves: 12 pairs that leave the brain directly; keep entire body in communication with your brain Reflex Arc Simplest behavior; when a stimulus provokes an automatic response Research Methods Charting the Brain Brain Imaging Computed Tomographic Scanning (CT): Computer-enhanced X-ray image of the brain or body Magnetic Resonance Imaging (MRI): Functional MR (fMRI)I: MRI that records Positron Emission Tomography (PET): Uses a strong magnetic field, not an X-ray, to produce a 3D image of the brain or body brain activity Computer-generated color image of brain activity, based on glucose consumption in the brain Researching the Brain Ablation: Surgical removal of tissue Deep Lesioning: A thin wire electrode is Electrical Stimulation of the Brain (ESB): When an electrode is used to activate lowered into a specific area inside the brain. Electrical current is then used to destroy a small amount of brain tissue. target areas in the brain Electroencephalograph (EEG): Detects, amplifies, and records electrical activity in the brain Cerebral Cortex My, What a Big Brain You Have! Cerebral Cortex Outer layer of the cerebrum Cerebrum: Two large hemispheres that Corticalization: Increase in size and Cerebral Hemispheres: Right and left Corpus Callosum: Bundle of fibers cover upper part of the brain wrinkling of the cortex halves of the cortex connecting cerebral hemispheres Split Brains Corpus Callosum is cut; done to control severe epilepsy (seizure disorder). Result: The person now has two brains in one body. This operation is rare and is often used as a last resort Central Cortex Lobes Occipital: Back of brain; vision center Parietal: Just above occipital; bodily sensations such as touch, pain, and temperature Temporal: Each side of the brain; auditory and language centers Frontal: Movement, sense of smell, higher mental functions Contains motor cortex; controls motor movement Association Cortex All areas of the cerebral cortex that are not primarily sensory or motor in function Aphasia Speech disturbance resulting from brain damage Broca’s Area Language area in brain related to grammar and pronunciation If damaged, person knows what s/he wants to say but can’t say the words Wernicke’s Area Related to language comprehension If damaged, person has problems with meanings of words, NOT pronunciation Facial Agnosia Inability to perceive familiar faces Subcortex At the Core of the (Brain) Matter Subcortex All brain structures below cerebral cortex Hindbrain (Brainstem): Lowest portions of the brain; includes cerebellum, medulla, pons, and reticular formation Cerebellum Located at base of brain; regulates posture, muscle tone, and muscular coordination Also stores memories related to skills and habits Medulla Connects brain with the spinal cord and controls vital life functions such as heart rate and breathing Pons (Bridge) Acts as a bridge between medulla and other structures Influences sleep and arousal Reticular Formation (RF) Lies inside medulla and brainstem Associated with alertness, attention and some reflexes (breathing, coughing, sneezing, vomiting) Reticular Activating System (RAS) Part of RF that keeps the cortex active and alert Its alarm clock Limbic System System within forebrain closely linked to emotional response Thalamus: Relays sensory information to the cortex; switchboard Hypothalamus: Regulates emotional behaviors and motives (e.g., sex, hunger, rage, hormone release) Amygdala: Associated with fear responses Hippocampus: Associated with storing memories; helps us navigate through space Endocrine System Glands that pour chemicals (hormones) directly into the bloodstream or lymph system Pituitary Gland Regulates growth via growth hormone Too little growth hormone means person will be smaller than average Hypopituitary Dwarfs: As adults, perfectly proportioned but tiny Too much leads to giantism Excessive body growth Acromegaly Enlargement of arms, hands, feet, and facial bones Too much growth hormone released late in growth period Andre the Giant Pineal Gland Regulates body rhythms and sleep cycles Releases hormone melatonin, which responds to daily variations in light Thyroid In neck; regulates metabolism Hyperthyroidism: Overactive thyroid; person tends to be thin, tense, excitable, nervous Hypothyroidism: Underactive thyroid; person tends to be inactive, sleepy, slow, obese The Adrenal Glands Arouse body, regulate salt balance, adjust body to stress, regulate sexual functioning; located on top of kidneys. Releases epinephrine and norepinephrine (also known as adrenalin and noradrenalin). Epinephrine arouses body; is associated with fear. Norepinephrine arouses body; is linked with anger. The Adrenal Medulla Source of epinephrine and norepinephrine Adrenal Cortex Produces hormones known as corticoids Regulate salt balance Deficiency in some types will cause powerful salt cravings Oversecretion of adrenal sex hormones can cause virilism: exaggerated male characteristics (Bearded woman) May also cause premature puberty (full sexual development in childhood) if occurs early in life Psychology in Action If Your Brain is Right What is Left? Handedness Preference for right or left hand Dominant Hemisphere: Applies to side of person’s brain that produces language Lateralization: Difference in the abilities of the brain’s hemispheres