Ashlee Shields Unit 1 Assignment 1: Homeostasis Imbalances GE 258 ITT Technical Institute-Youngstown March 22‚ 2014 April 5‚ 2014 Explaining hypertension to a 63 year old male that has only completed the eighth grade you want to make sure that you can make it so that he understands what is wrong with him and how to handle it. So instead of tell him that hypertension “is a condition that increases the risk for heart attack‚ stroke‚ kidney failure‚ coronary heart disease
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repair the fractured femur and a biopsy of the bone tissue indicated that the composition of the osteoid was normal. Healing of the fractured femur is proceeding slowly. 1. What organ(s) is(are) involved? The organ that is involved would be the skeletal system. 2. What primary tissue type is involved? The primary tissue involved is bone tissue. 3. What specific type of tissue is affected? The specific tissue that is affected is the connective tissue. 4. What specific types of cells produce
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Science Assesment – Homeostasis Homeostasis is the state of body in the system which variables are regulated so that internal conditions remain stable and relatively construct. Homeostasis works by monitoring levels of variables and making connections by negative feedback mechanisms. Negative feedback is a reaction in which the system responds in such a way as to reverse the direction of change. The three components of a homeostatic control system is a receptor‚ this detects changes. The integrator
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Unit 5 task 3 (P5 M2 D2) – explain the concept of homeostasis‚ discuss the probable homeostatic response to changes in the internal environment during exercise‚ how homeostatic mechanisms control temperature‚ breathing and heart rate and evaluate the importance of homeostasis in maintaining healthy functioning of the body. Homeostasis Homeostasis is the maintenance of a constant internal environment in organisms. It involves volume of blood and tissue fluid within restricted limits‚ it also maintains
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Explain the concept of homeostasis. P6: Follow guidelines to interpret collected data for heart rate‚ breathing rate and temperature before and after a standard period of exercise. M2: Discuss the probably homeostatic responses to changes in the internal environment during exercise. M3: Present Date collected before and after a standard period of exercise. D2: Evaluate the importance of homeostasis in maintaining the healthy functioning of the body. P5 Homeostasis is a natural response
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R E V I E W NAME ____________________________________ LAB TIME/DATE _______________________ S H E E T EXERCISE 15 Print Form Gross Anatomy of the Muscular System Classification of Skeletal Muscles 1. Several criteria were given for the naming of muscles. Match the criteria (column B) to the muscle names (column A). Note that more than one criterion may apply in some cases. Column A g a d f a Column B a. b. c. d. e. f. g. action of the muscle shape of the muscle location of the
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LAB EXERCISE 2 THE PHYSIOLOGY OF SKELETAL MUSCLE (Martini p. 306-316) Work in groups of 4 Objectives: Name and describe the phases of a muscle twitch. Explain why the "all or none" law is reflected in the activity of a single muscle cell but not in an intact skeletal muscle. Understand that the graded response of skeletal muscle is a function of the number of muscle fibers stimulated and the frequency of the stimulus. Define and explain the physiological basis of the following: - subminimal‚
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Homeostasis‚ the tendency towards a relatively stable equilibrium between interdependent elements‚ especially as maintained by physiological processes. Any living creature needs to maintain a constant internal environment in order for their cells to work at optimal levels in order for them to survive and reproduce. Thermoregulation is a type of homeostasis that keeps the internal body temperature at a consistent level despite external stimuli. When the thermoreceptors in the skin/hypothalamus notice
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INVESTIGATION OF PHYSIOLOGICAL & MECHANICAL PROPERTIES OF SKELETAL MUSCLE USING FROG GASTROCNEMIUS AIM The purpose of this experiment was to demonstrate the physiological as well as mechanical properties of skeletal muscle using the gastrocnemius muscle of a frog by exploring five different investigations namely the single twitch‚ the graded response‚ the relationship between muscle length and tension‚ muscle tetanus‚ and muscle fatigue. These individual experiments aim to explore the way muscles
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muscle tissue: skeletal‚ smooth‚ and cardiac. Skeletal muscle was investigated in this lab. Skeletal muscle is composed of two filaments called actin and myosin‚ which run parallel to each other. Actin has a protein that run along it called tropomyosin‚ that prevents actin from binding to it‚ unless calcium is bound to a part of the tropomyosin called troponin. Sets of actin and myosin filaments are divided into individual units called sarcomeres. Sarcomeres are what gives skeletal muscle tissue its
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