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Biology 211: Human Anatomy & Physiology - A Tour through the Visible Human

Join Dr. Greg Erianne for an introduction to human anatomy and physiology. Explore the course objectives, syllabus, and study guides, and learn about the organization of the human body, characteristics of life, and homeostasis.

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Biology 211: Human Anatomy & Physiology - A Tour through the Visible Human

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  1. Welcome to Biology 211Human Anatomy &Physiology I A tour through the Visible Human (National Library of Medicine)… Please fill in any one of the sign-in sheets on the front desk!

  2. General Information • Who am I? • Greg Erianne, Ph.D. • Office Hours; See Syllabus, Rm. E-419 • E-mail • NVCC: gerianne@nvcc.commnet.edu • Home: gerianne@optonline.net • Tel; 203-596-8633 (voice mail) Please be sure you have filled out the sign-in sheet!

  3. Visual Anatomy & PhysiologyFirst EditionMartini & Ober Chapter 1 An Introduction to Anatomy & Physiology Lecture 1

  4. Overview of Today’s Lecture • Course and Publisher Web site • Course Description/Textbook/Lab Book • Course Objectives and Syllabus Review • Blueprint for success • Organization of the Human Body • Characteristics of Life • Homeostasis • Anatomical Terminology

  5. Course Web Site • Our Web sites for this class are located at: • http://www.gserianne.com/science/GerianneBio211 (Main) • Announcements (VERY IMPORTANT TO LOOK AT FREQUENTLY!) • Syllabus and all lecture/lab schedules • Lecture and Lab slides used in class (ppt and pdf formats) • Supplementary online materials for Lecture and Lab • Lecture and Lab Exam Study Guides • Links to many other sites including McGraw Hill Publisher’s Web site • Extra credit assignments • http://my.commnet.edu (BB Vista; Secondary) • You will need your student ID and password for the Blackboard (BB) Vista site • This BB Vista site will be used ONLY be for self tests and grades

  6. Outline of Course/Requirements • Course Description • Lecture / discussion format • Lectures will follow Martini’s Visual Anatomy and Physiology, 1st editionclosely • Figures used for class • Laboratory • Wood’s Laboratory Manual, 4th edition • Reading assignments should be done BEFORE you come to class/lab

  7. Major objectives of this course • In general, you will… • Master the objectives listed in the Study Guides • Develop a further mastery of scientific/biomedical terminology • Further develop your ability to think logically and critically • Let’s review the syllabus and handouts…

  8. Blueprint for Success • Most importantly… • **See Suggestions for Studying (handed out) • Skim your textbook BEFORE lecture and make notes • Take notes in your own words and become mentally involved during lecture; review/rewrite your notes after lecture • Ask questions if you don’t understand • Continually review previously learned material • Use all the study aids available to you • Why the Visual Anatomy & Physiology textbook and how is it different? How can it help you succeed? What if you don’t like the format? *

  9. Overview of Anatomy and Physiology Anatomy – study of structure - Gross anatomy – macroscopic (types?) - Cytology (microanatomy) – cells - Histology (microanatomy) – tissues Physiology – study of function - Specialized, e.g., neuro-, cellular-, patho- - Comparative physiology Structure is always related to function; if structure changes, function changes What’s this red stuff all about, anyway?

  10. How Structure Determines Function Figure from: Hole’s Human A&P, 12th edition, 2010

  11. Levels of Organization Figure from: Hole’s Human A&P, 12th edition, 2010

  12. Important Definitions of Organizational Terms • Cell– The basic unit of biological structure and function (what is a ‘basic unit’ of something?) • Tissues – A group of cells working together to perform one or more specific functions • Organs – Two or more tissues working in combination to perform several functions • Organ System – Interaction of organs functioning closely together

  13. General Function of Organ Systems A&P I A&P II

  14. Organ Systems – Integument and Skeletal Figure from Martini, Anatomy & Physiology, Prentice Hall, 2001

  15. Organ Systems – Muscular and Nervous Rapidly-acting, short-term control (Skeletal muscle shown) Figure from Martini, Anatomy & Physiology, Prentice Hall, 2001

  16. Organ Systems – Endocrine and Cardiovascular Slower-acting, longer-term control (compared to nervous system) Figure from Martini, Anatomy & Physiology, Prentice Hall, 2001

  17. Organ Systems – Lymphatic and Respiratory Figure from Martini, Anatomy & Physiology, Prentice Hall, 2001

  18. Organ Systems – Digestive and Urinary Figure from Martini, Anatomy & Physiology, Prentice Hall, 2001

  19. Organ Systems – Reproductive Figure from Martini, Anatomy & Physiology, Prentice Hall, 2001

  20. Homeostasis A CRITICAL (and very testable) concept in physiology Body’s maintenance of a stable internal environment **Absence of homeostasis = DISEASE • Homeostatic Mechanisms – monitor aspects of the internal environment and corrects any changes • Receptors - provide information about environment • Control center - tells what a particular value should be • Effectors - causes responses to change internal environment

  21. Homeostasis Figure from: Hole’s Human A&P, 12th edition, 2010 Major goal of homeostasis is to keep this consistent (Interstitial fluid) The 70 trillion cells in our bodies surround themselves with their own environment. This is the environment that must remain stable despite changes outside.

  22. Homeostasis Negative feedback– deviation from set point progressively lessens Positive feedback– deviation from set point gets progressively greater Figure from: Hole’s Human A&P, 12th edition, 2010

  23. Homeostasis • Remember that homeostasis does NOT mean constant! • Continual variations occur in body systems • Gives rise to ‘normal ranges’ (See Appendix B) • Examples of negative feedback • Temperature regulation, blood pressure, blood glucose levels • Examples of positive feedback • Blood clotting, milk production, uterine contraction

  24. Homeostatic Mechanisms Notice that this occurs in a ONE-WAY circuit. Figure from: Hole’s Human A&P, 12th edition, 2010

  25. Homeostatic Mechanisms (cont’d) Know the normal temperature of the body Notice that this occurs in a ONE-WAY circuit. Figure from: Hole’s Human A&P, 12th edition, 2010

  26. Body Cavities (Posterior) Know the names and positions of the body cavities (Anterior) Figure from: Hole’s Human A&P, 12th edition, 2010

  27. Body Cavities (cont’d) Axial Know the terms on this slide Appendicular Figure from: Hole’s Human A&P, 12th edition, 2010

  28. Serous Membranes Visceral layer – covers an organ Parietal layer – lines a cavity or bodywall • Thoracic Membranes • Visceral pleura • Parietal pleura • Visceral pericardium • Parietal pericardium • Abdominopelvic Membranes • Visceral peritoneum • Parietal peritoneum Serous fluid – thin, watery, slippery fluid typically separating serous membranes

  29. Serous Membranes Be able to label ALL parts of this diagram; (What system is each organ a part of?) Figure from: Hole’s Human A&P, 12th edition, 2010

  30. Serous Membranes Be able to label ALL parts of this diagram (What system is each organ a part of?) Figure from: Hole’s Human A&P, 12th edition, 2010

  31. Anatomical Terminology Know these terms Anatomical Position– body standing erect, facing forward, upper limbs at the sides, palms facing forward

  32. Body Sections Know this

  33. Anatomical Subdivisions Used most in clinical situations Used most in surgical/anatomical study situations

  34. Body Regions Know the terms on this slide and their locations on the body Fig 2.3 in Lab Manual

  35. Review • Anatomy = structure; physiology = function • Structure determines function • The human body (multicellular organisms) can be organized in increasing levels of complexity • Atom, molecule, cell, tissue, organ, organ system • The eleven organ systems of the body function to maintain homeostasis

  36. Review • Homeostasis is the maintenance of a stable (NOT CONSTANT!) internal environment • Requires: receptor(s), control center, and effector(s) • Typically uses a negative feedback mechanism • The body contains cavities that house our organs • Dorsal (posterior) cavity • Ventral (anterior) cavity • Body cavities are lined by serous membranes • Visceral • Parietal *

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