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Incredible Nervous System

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Presentation on theme: "Incredible Nervous System"— Presentation transcript:

1 Incredible Nervous System
Module 4 Incredible Nervous System

2 GENES & EVOLUTION Genetic information
brain and body developed according to complex chemical instructions that were written in a human cell no larger than a grain of sand Fertilization Zygote Chromosomes Chemical alphabet Genes and proteins Genome Genetic factors

3 GENES & EVOLUTION (CONT.)
Fertilization human life has its beginnings when a father’s sperm, which contains 23 chromosomes, penetrates a mother’s egg, which contains 23 chromosomes

4 p68 SPERM EGG ZYGOTE

5 GENES & EVOLUTION (CONT.)
Zygote the largest human cell, about the size of a grain of sand a zygote is a cell that results when an egg is fertilized a zygote contains 46 chromosomes arranged in 23 pairs

6 GENES & EVOLUTION (CONT.)
Chromosomes a short, rodlike, microscopic structure that contains a tightly coiled strand of the chemical DNA, which is an abbreviation for deoxyribonucleic acid

7 GENES & EVOLUTION (CONT.)
Chemical alphabet each chromosome contains a long, coiled strand of DNA, which resembles a ladder that has been twisted over an over upon itself each rung of the DNA ladder is made up of four chemicals the order in which the four different chemicals combine to form rungs creates a microscopic alphabet

8 p68 DNA

9 GENES & EVOLUTION (CONT.)
Genes and proteins Gene a specific segment on the long strand of DNA that contains instructions for making proteins Proteins chemical building blocks from which all the parts of the brain and body are constructed

10 p68 CHROMOSOME

11 GENES & EVOLUTION (CONT.)
Genome The Human Genome Project began in 1995 and cost over $2.7 billion reached its first goal in 2003 of mapping all the human genes researchers found only about 30,000 human genes instead of the estimated 100,000

12 GENES & EVOLUTION (CONT.)
Genetic factors researchers are discovering how genetic factors interact with the environment to result in the development of mental retardation, emotional and personality traits, mental disorders, and various cognitive abilities Fragile X syndrome an inherited developmental disability, is due to a defect in the X chromosome

13 GENES & EVOLUTION (CONT.)
Evolution of the human brain 1859 Charles Darwin published the Origin of Species Theory of Evolution says that different species arose from a common ancestor and that those species that survived were best adapted to meet the demands of their environment

14 p69 SKULL SIZE

15 STUDYING THE LIVING BRAIN
Brain scans techniques that can look through the thick skull and picture the brain with astonishingly clarity yet cause no damage to the extremely delicate brain cells MRI and fMRI

16 STUDYING THE LIVING BRAIN (CONT.)
MRI magnetic resonance imagery involves passing nonharmful radio frequencies through the brain fMRI functional magnetic resonance imaging measures the activity of specific neurons that are functioning during cognitive tasks, such as thinking, listening

17 p70 MRI

18 STUDYING THE LIVING BRAIN (CONT.)
Brain scans and Cognitive Neuroscience PET scan positron emission tomography involves injecting a slightly radioactive solution into the blood and then measuring the amount of radiation absorbed by brain cells called neurons

19 p71 PET

20 STUDYING THE LIVING BRAIN (CONT.)
Tools versus Animals naming animals naming tools

21 p71 THINK OF ANIMALS BRAIN

22 p71 THINKING OF TOOLS BRAIN

23 ORGANIZATION OF THE BRAIN
Divisions of the Nervous System Major divisions of the nervous system central nervous system - CNS peripheral nervous system - PNS

24 ORGANIZATION OF THE BRAIN (CONT.)
Central nervous system - CNS made up of the brain and spinal cord

25 p72 CNS

26 ORGANIZATION OF THE BRAIN (CONT.)
Peripheral nervous system - PNS includes all the nerves that extend from the spinal cord and carry messages to and from various muscles, glands, and sense organs located throughout the body Subdivisions of the PNS somatic nervous system autonomic nervous system - ANS sympathetic division parasympathetic division

27 p72 PNS

28 ORGANIZATION OF THE BRAIN (CONT.)
Somatic nervous system network of nerves that connect either to sensory receptors or to muscles that you can move voluntarily, such as muscles in your limbs, back, neck, and chest nerves contain two kinds of fibers Afferent sensory fibers; carry information to the brain Efferent motor fibers; carry information from brain or spinal cord to the muscles

29 ORGANIZATION OF THE BRAIN (CONT.)
Autonomic nervous system - ANS regulates heart rate, breathing, blood pressure, digestion, hormone secretion, and other functions Sympathetic division triggered by threatening or challenging physical or psychological stimuli, increases physiological arousal and prepares the body for action Parasympathetic division returns the body to a calmer, relaxed state and is involved in digestion

30 ORGANIZATION OF THE BRAIN (CONT.)
Major Parts of the Brain Forebrain Midbrain Hindbrain pons medulla cerebellum

31 p73 SIDE VIEW OF BRAIN

32 ORGANIZATION OF THE BRAIN (CONT.)
Forebrain largest part of the brain has right and left sides called hemispheres hemispheres are responsible for a number of functions, including learning and memory, speaking and language, emotional responses, experiencing sensations, initiating voluntary movements, planning, and making decisions

33 ORGANIZATION OF THE BRAIN (CONT.)
Midbrain has a reward or pleasure center, which stimulated by food, sex, money, music, looking at attractive faces, and some drugs (cocaine) has areas for visual and auditory reflexes contains the reticular formation, which arouses the forebrain so that it is ready to process information from the senses

34 ORGANIZATION OF THE BRAIN (CONT.)
Hindbrain Has three distinct structures: Pons Medulla cerebellum

35 ORGANIZATION OF THE BRAIN (CONT.)
Pons functions as a bridge to interconnect messages between the spinal cord and brain Medulla located on top of the spinal cord includes a group of cells that control vital reflexes, such as respiration, heart rate, and blood pressure Cerebellum located in the very back and underneath the brain involved in coordinating motor movements but not in initiating voluntary movements

36 CONTROL CENTERS: FOUR LOBES
Wrinkled cortex a thin layer of cells that essentially covers the entire surface of the forebrain

37 CONTROL CENTERS: FOUR LOBES (CONT.)
Frontal lobe Parietal lobe Occipital lobe Temporal lobe

38 p74 FOUR LOBES

39 CONTROL CENTERS: FOUR LOBES (CONT.)
Frontal lobe involved with personality, emotions, and motor behaviors Parietal lobe involved with perception and sensory experiences Occipital lobe involved with visual processing Temporal lobe involved with hearing and speaking

40 CONTROL CENTERS: FOUR LOBES (CONT.)
Frontal lobe: functions motor cortex narrow strip of cortex that is located on the back edge of the frontal lobe and extends down its side involved in the initiation of all voluntary movements right side controls left left side controls right organization and function of motor cortex

41 p76 MOTOR CORTEX

42 CONTROL CENTERS: FOUR LOBES (CONT.)
Other functions of frontal lobe much knowledge of other frontal lobe functions comes from individuals who had damage to that area Phineas Gage

43 CONTROL CENTERS: FOUR LOBES (CONT.)
Parietal lobe: function location of somatosensory cortex narrow strip of cortex that is located on the front edge of the parietal lobe and extends down its side

44 p77 SENSORY HOMUNCULUS

45 CONTROL CENTERS: FOUR LOBES (CONT.)
Other functions of parietal lobe involved in several cognitive functions, including recognizing objects, remembering items, and perceiving and analyzing objects in space

46 CONTROL CENTERS: FOUR LOBES (CONT.)
Temporal lobe: functions primary auditory cortex located on top edge of each temporal lobe, receives electrical signals from receptors in the ears and transforms these signals into meaningful sound sensations, such as vowels and consonants

47 p78 TEMPORAL LOBE

48 CONTROL CENTERS: FOUR LOBES (CONT.)
Temporal lobe: functions auditory association area located directly below the primary auditory cortex transforms basic sensory information, such as noises or sounds, into recognizable auditory information, such as words or music

49 CONTROL CENTERS: FOUR LOBES (CONT.)
Temporal lobe: functions Broca’s area - frontal lobe located in left frontal lobe necessary for combining sounds into words and arranging words into meaningful sentences Wernicke’s area located in the left temporal lobe necessary for speaking in coherent sentences and for understanding speech

50 p78 BROCA’S WERNIKE’S

51 CONTROL CENTERS: FOUR LOBES (CONT.)
Occipital lobe: functions vision primary visual cortex located at the very back of the occipital lobe receives electrical signals from receptors in the eyes and transforms these signals into meaningless basic visual sensations, such as lights, lines, shadows, colors, and textures

52 p79 OCCIPITAL LOBE

53 CONTROL CENTERS: FOUR LOBES (CONT.)
Occipital lobe: functions visual association area transforms basic sensations, such as lights, lines, colors, and textures, into complete, meaningful visual perceptions, such as persons, objects, or animals

54 LIMBIC SYSTEM: OLD BRAIN
Structures and functions Hypothalamus Amygdala Thalamus Hippocampus

55 p80 LIMBIC SYSTEM

56 LIMBIC SYSTEM: OLD BRAIN (CONT.)
Hypothalamus regulates many motivational behaviors, including eating, drinking, and sexual responses; emotional behaviors such as arousing the body when fighting or fleeing, and secretion of hormones, such as occurs at puberty Amygdala located in the tip of the temporal lobe receives input from all the senses evaluates the emotional significance of stimuli and facial expressions, especially those involving fear, distress, or threat

57 LIMBIC SYSTEM: OLD BRAIN (CONT.)
Thalamus gathers and processes information from the senses involved in receiving sensory information, doing some initial processing, and then relaying the sensory information to areas of the cortex Hippocampus curved structure inside the temporal lobe Involved in saving many kinds of fleeting memories by putting them into permanent storage in various parts of the brain

58 LIMBIC SYSTEM: OLD BRAIN (CONT.)
Autonomic nervous system Sympathetic Parasympathetic

59 p81 SYMPATHETIC PARASYMPATHETIC

60 LIMBIC SYSTEM: OLD BRAIN (CONT.)
Autonomic nervous system Sympathetic triggered by threatening or challenging physical or psychological stimuli Physiological responses increased heart rate, increased blood pressure, and dilated pupils fight or flight

61 LIMBIC SYSTEM: OLD BRAIN (CONT.)
Autonomic nervous system Parasympathetic decreases physiological arousal returns the body to a calmer, more relaxed state stimulates digestion during eating Physiological responses decreases heart rate lowers blood pressure stimulate digestion body returns to more relaxed state.

62 LIMBIC SYSTEM: OLD BRAIN (CONT.)
Autonomic nervous system Homeostasis sympathetic and parasympathetic systems work together to keep the body’s level of arousal in balance for optimum functioning

63 ENOCRINE SYSTEM Endocrine System
Made up of numerous glands that are located throughout the body. Glands secrete various chemicals called hormones. Pituitary Pancreas Thyroid Adrenal glands Gonads

64 p82 ENDOCRINE SYSTEM

65 ENOCRINE SYSTEM (CONT.)
Pituitary gland hangs below the hypothalamus divided into anterior and posterior Posterior rear portion regulates water and salt balance Anterior front portion regulates growth through secretion of growth hormone produces hormones that control the adrenal cortex, pancreas, thyroid, and pancreas

66 ENOCRINE SYSTEM (CONT.)
Pancreas regulates the level of sugar in the bloodstream by secreting insulin Thyroid located in the neck regulates metabolism through secretion of hormones

67 ENOCRINE SYSTEM (CONT.)
Adrenal glands adrenal cortex (outside part) secretes hormones that regulate sugar and salt balance adrenal medulla (inside part) secretes two hormones that arouse the body to deal with stress and emergencies epinephrine (adrenaline) norepinephrine (noradrenaline)

68 ENOCRINE SYSTEM (CONT.)
Gonads Females ovaries produce hormones that regulate sexual development, ovulation, and growth of sex organs Males testes produce hormones that regulate sexual development, production of sperm, and growth of sex organs


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