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Chapter 11… Continued!. Review from last week… How do we control our muscles? – (How do we use the nervous system to make our muscles contract?) Brain.

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Presentation on theme: "Chapter 11… Continued!. Review from last week… How do we control our muscles? – (How do we use the nervous system to make our muscles contract?) Brain."— Presentation transcript:

1 Chapter 11… Continued!

2 Review from last week… How do we control our muscles? – (How do we use the nervous system to make our muscles contract?) Brain  spinal cord  motor nerve  motor neuron  effector (muscle)

3 Antagonistic Pairs of Muscles Pairs of muscles that work in opposite directions on the same body part – Circular and radial muscles in iris (eye) – Biceps and triceps muscles on elbow joint Biceps = flexor muscle – Flexes (bends) the arm Triceps = extensor muscle – Extends (straightens) the arm

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6 Let’s Work Our Muscles! Flexion of elbow – Biceps contracts, pulling radius toward scapula – Triceps relaxes Extension of elbow – Triceps contracts, pulling ulna toward scapula/humerus – Biceps relaxes

7 Reflexes in Simple Animal Behavior Taxis = a movement in response to a stimulus – The direction of movement is determined by the direction of stimulus Phototaxis = response to light – Positive = toward the light = moth – Negative = away from light = cockroach Geotaxis = response to gravity Chemotaxis = response to chemicals

8 Drugs that Affect the Brain Stimulants = increase alertness – Caffeine – found in coffee, tea, cola, chocolate, etc Depressants = slow down the brain – Alcohol – slows down the conduction of nerve impulses – slows reflexes, voluntary movements, and sensory perceptions Narcotics = relieve pain, produce sleep – Codeine, morphine, and heroin

9 Movie Time! Endocrine Control: Systems in Balance

10 The Endocrine System Hormones = chemicals that are used to pass information around the body – (In the NS it was electrical signals; now it’s chemical signals) Endocrine Glands = organs that make and secrete the hormones Blood Capillaries = run through the gland and pick up the secreted hormones, then carry them through the bloodstream

11 Hormones Hormones travel all through the body (in blood), but only affect target organs. Insulin’s target organ is the liver – (but it’s made and secreted by the pancreas!) Hormones eventually get broken down by enzymes and excreted by the kidneys.

12 Endocrine Glands

13 From Page 170… Endocrine Gland HormoneFunction of Hormone Adrenal GlandAdrenalinePrepares body for “fight or flight” PancreasInsulin Glucagon Reduces blood glucose Increases blood glucose TestisTestosteroneProduces male secondary sexual characteristics OvaryEstrogenProduces female secondary sexual characteristics OvaryProgesteroneInvolved in controlling menstrual cycle and pregnancy

14 Chemical Analogs Chemicals with similar properties. They function in similar ways in the body. – Artificial flavors in foods…

15 Remember the Seagulls? A chemical analog of Estrogen in the water (from pollution) caused “testicular feminization” in male birds. The males became so feminine that they wouldn’t mate with the females or help raise the chicks! So females paired up together…

16 Adrenaline Adrenaline = a hormone that increases your metabolic rate – Prepares your body for “fight or flight” Comes from the adrenal gland – Just above your kidneys – (notice the word part “renal” in there?) Your brain sends a nerve signal to adrenal glands, stimulating them to secrete adrenaline into the blood.

17 Adrenal Glands

18 Fight or Flight

19 Adrenaline’s Functions Increases heart rate Increases blood glucose – (T.O. = Liver) Restricts blood to digestive system; increases blood to muscles – (T.O. = Arteries/arterioles) Increases width of lung passages – (T.O. = Bronchii/bronchioles)

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24 Adrenaline… What is its function? What endocrine gland does it come from? What is its target organ?

25 Let’s Compare… Nervous SystemEndocrine System Type of SignalElectricalChemical Speed of Signalseveral meters per second~ speed of blood Where the Signal TravelsIn neurons and nervesIn blood vessels Where the Signal is Delivered To a specific part of the body Throughout the body (but only affects T.O.’s) How Long the Signal LastsSeconds or lessMinutes/Hours/Days

26 Questions for Homework Why is it important that we have our Nervous and Endocrine Systems? What could happen if either one were to malfunction? Why do the Nervous and Endocrine System work in the different ways that they do? Why it is important that each System works in the ways that it does?

27 Plants have Hormones, Too! Plant hormones are chemicals (just like ours). – But plants do NOT have endocrine glands. Plant hormones travel through the veins of the plant. They are broken down by plant enzymes.

28 How do Plants Grow? Plants grow by making new cells at the tips of their roots and shoots. At the same time, older cells on the roots and shoots grow by getting longer.

29 But how do the cells know to get longer?

30 Auxin Auxin = a plant hormone / growth substance that stimulates plant cells to lengthen. It’s made by cells at the tips of roots and shoots. Then it diffuses back along the roots/shoots and makes the older cells grow longer.

31 But how does a plant grow towards the light?

32 Phototropism In order to change direction, a plant shoot must grow longer on one side than the other. If light shines on the plant from one direction, Auxin accumulates on the shady side of the shoot. The shoot lengthens on the shady side, bending the plant toward the light!

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36 Tropisms Tropism = a plant’s growth response to a stimulus – The direction of growth is determined by the direction of the stimulus Phototropism = ? – Do plants show positive or negative phototropism? Geotropism = ? – Do plant roots show (+) or (-) geotropism? – What about plant shoots?

37 Use of Plant Hormones Auxin as a selective weedkiller… – (makes weeds grow too fast and die!) Auxin’s use in rooting cuttings… – (makes plant cuttings take root after being dipped in ‘hormone rooting powder’)


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