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Human Anatomy and Physiology II Lab 2: Blood Pathologies Heart Anatomy.

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Presentation on theme: "Human Anatomy and Physiology II Lab 2: Blood Pathologies Heart Anatomy."— Presentation transcript:

1 Human Anatomy and Physiology II Lab 2: Blood Pathologies Heart Anatomy

2 Activity 1Blood Pathologies Observe prepared slides of blood smears taken from patients with the following disorders: pernicious anemia iron deficiency anemia sickle cell anemia chronic lymphocytic leukemia eosinophilia

3 Anemia refers to any condition in which there is a reduction in the number of RBCs or a reduction in the concentration of normal hemoglobin Anemia can be classified according to etiology (cause) or on the basis of morphology – For morphological classification, the following terms are used: RBC SizeRBC Color Microcytic: small sizeHypochromic: pale color Normocytic: normal sizeNormochormic: normal color Macrocytic: large sizeHyperchromic: dark color

4 Pernicious Anemia: caused by vitamin B 12 deficiency A.Can be either macrocytic, hyperchromic or macrocytic, normochromic B.Note the enlarged, dark red blood cells, and the hypersegmented neutrophil in this smear http://library.med.utah.edu/WebPath/jpeg5/ HEME083.jpg

5 Iron Deficiency Anemia caused by iron insufficiency leading to decreased hemoglobin synthesis A.Is an example of microcytic, hypochromic anemia B.Note the small erythrocytes of varying sizes and the large area of central pallor

6 Sickle Cell Anemia: caused by a single amino acid substitution in the β chain of hemoglobin (valine replaces glutamic acid) A.This is a normochromic, normocytic anemia B.Note the sickle shaped erythrocytes.

7 Disorders Related to Leukocytes: I.Chronic Lymphocytic Leukemia caused by malignant lymphocyte progenitor cells in bone marrow A.Note the abundant small lymphocytes in this blood smear B.The lymphocyte nucleus may have a small indentation, or cleft

8 II.Eosinophilia many causes, including malignancy, connective tissue diseases, parasitic diseases, allergies; in some cases, no known cause Note the two normal looking eosinophils in the field

9 Objective 2Human Heart Anatomy The heart has an apex and a base: Base Apex

10 The heart is located in the mediastinum, surrounded by a pericardium: Human Heart In the Thorax Pericardial Sac Cut Open Surrounded by the pericardium

11 The wall of the heart consists of three tissue layers: 1.Epicardium (visceral pericardium) 2.Myocardium 3.Endocardium

12 Structures Visible On the Anterior Surface/Associated Vessels:

13 Structures Visible on The Posterior Surface:

14 The Heart Has Four Chambers: Interatrial Septum:lies between the atria Interventricular Septum:lies between the ventricles Right chambersLeft chambers Atria Ventricles

15 Internal Structures of the Heart

16 These two Structures of the Adult Heart Are Remnants of Fetal Circulation: Ligamentum Arteriosum Fossa Ovalis

17 The heart receives its own branch of systemic circulation – there vessels collectively are called coronary circulation

18

19 A Sectioned Preserved Human Heart: 1.Interatrial septum 2.Right atrium 3.Left atrium 4.Interventricular septum’ 5.Right ventricle 6.Left ventricle 9. Pulmonary trunk Frontal Section: anterior view of posterior section

20 Sheep’s Heart Dissection: note the thickness of the right ventricular and left ventricular walls

21 Cardiac Muscle in found in the myocardium:

22 Muscle Tissue Cardiac Muscle LocationStructureFunction heart wallcells (myocytes) are faintlyprovide pressure striated and branchingfor the circulation with one (or two)of blood centrally placed nuclei cells are connected by intercalated discs (gap junctions/desmosomes) Intercalated Disc Nuclei

23 Skeletal Muscle LocationStructureFunction Attached to thelong, thin cells (fibers) areposture, movement skeleton striated and multinucleated,stabilizes joints nuclei are in the periphery of the cell nucleus


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