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PowerPoint ® Lecture Slide Presentation by Patty Bostwick-Taylor, Florence-Darlington Technical College Copyright © 2009 Pearson Education, Inc., publishing.

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Presentation on theme: "PowerPoint ® Lecture Slide Presentation by Patty Bostwick-Taylor, Florence-Darlington Technical College Copyright © 2009 Pearson Education, Inc., publishing."— Presentation transcript:

1 PowerPoint ® Lecture Slide Presentation by Patty Bostwick-Taylor, Florence-Darlington Technical College Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings PART A 5 The Skeletal System

2 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings The Skeletal System  Parts of the skeletal system .  Two subdivisions of the skeleton .

3 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Functions of Bones  Support the body  Protect soft organs  Allow movement due to attached skeletal muscles  Store minerals and fats  Blood cell formation

4 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Bones of the Human Body  Two basic types of bone tissue  Compact bone  Spongy bone Figure 5.2b

5 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Classification of Bones on the Basis of Shape Figure 5.1

6 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Classification of Bones  Long bones  Typically longer than they are wide  Have a shaft with heads at both ends  Contain mostly compact bone

7 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Classification of Bones Figure 5.1a

8 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Classification of Bones  Short bones  Generally cube-shape  Contain mostly spongy bone

9 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Classification of Bones Figure 5.1b

10 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Classification of Bones  Flat bones  Thin, flattened, and usually curved  Two thin layers of compact bone surround a layer of spongy bone

11 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Classification of Bones Figure 5.1c

12 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Classification of Bones  Irregular bones  Irregular shape  Do not fit into other bone classification categories

13 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Classification of Bones Figure 5.1d

14 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Anatomy of a Long Bone  Diaphysis  Shaft  Epiphysis  Ends of the bone

15 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Anatomy of a Long Bone Figure 5.2a

16 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Anatomy of a Long Bone  Periosteum  Outside covering  Fibrous connective tissue membrane  Sharpey’s fibers  Secure periosteum to underlying bone  Arteries  Supply bone cells with

17 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Anatomy of a Long Bone Figure 5.2c

18 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Anatomy of a Long Bone  Articular cartilage  Covers the external surface of the epiphyses  Decreases friction at joint surfaces

19 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Anatomy of a Long Bone  Epiphyseal plate  Flat plate of hyaline cartilage  Epiphyseal line  Remnant of the epiphyseal plate

20 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Anatomy of a Long Bone Figure 5.2a

21 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Anatomy of a Long Bone  Medullary cavity  Cavity inside of the shaft  Contains yellow marrow in adults  Contains red marrow in infants

22 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Anatomy of a Long Bone Figure 5.2a

23 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Bone Markings  Surface features of bones  Sites of attachments for muscles, tendons, and ligaments  Categories of bone markings  Projections or processes—grow out from the bone surface  Depressions or cavities—indentations

24 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Bone Markings Table 5.1 (1 of 2)

25 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Bone Markings Table 5.1 (2 of 2)

26 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Microscopic Anatomy of Bone  Osteon (Haversian system)  A unit of bone containing central canal and matrix rings  Central (Haversian) canal  Opening in the center of an osteon  Perforating (Volkman’s) canal  Canal perpendicular to the central canal

27 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Microscopic Anatomy of Bone Figure 5.3a

28 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Microscopic Anatomy of Bone  Lacunae  Cavities containing bone cells  Arranged in concentric rings  Lamellae  Rings around the central canal

29 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Microscopic Anatomy of Bone Figure 5.3b–c

30 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Microscopic Anatomy of Bone  Canaliculi  Tiny canals  Radiate from the central canal to lacunae  Form a transport system

31 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Microscopic Anatomy of Bone Figure 5.3b

32 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Formation of the Human Skeleton  In embryos, the skeleton is primarily hyaline cartilage  During development, much of this cartilage is replaced by bone  Cartilage remains in isolated areas

33 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Bone Growth (Ossification)  Epiphyseal plates allow for lengthwise growth of long bones during childhood  New cartilage is continuously formed  Older cartilage becomes ossified  Cartilage is broken down  Enclosed cartilage is digested away,

34 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Bone Growth (Ossification)  Bones are remodeled and lengthened until growth stops  Bones are remodeled in response to two factors  Bones grow in width (called appositional growth)

35 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Long Bone Formation and Growth Figure 5.4a Bone starting to replace cartilage Epiphyseal plate cartilage Articular cartilage Spongy bone In a childIn a fetusIn an embryo New bone forming Growth in bone width Growth in bone length Epiphyseal plate cartilage New bone forming Blood vessels Hyaline cartilage New center of bone growth Medullary cavity Bone collar Hyaline cartilage model (a)

36 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Long Bone Formation and Growth Figure 5.4a, step 1 Bone starting to replace cartilage In an embryo Bone collar Hyaline cartilage model (a)

37 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Long Bone Formation and Growth Figure 5.4a, step 2 Bone starting to replace cartilage In a fetusIn an embryo Growth in bone length Blood vessels Hyaline cartilage New center of bone growth Medullary cavity Bone collar Hyaline cartilage model (a)

38 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Long Bone Formation and Growth Figure 5.4a, step 3 Bone starting to replace cartilage Epiphyseal plate cartilage Articular cartilage Spongy bone In a childIn a fetusIn an embryo New bone forming Growth in bone width Growth in bone length Epiphyseal plate cartilage New bone forming Blood vessels Hyaline cartilage New center of bone growth Medullary cavity Bone collar Hyaline cartilage model (a)

39 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Long Bone Formation and Growth Figure 5.4b

40 Copyright © 2009 Pearson Education, Inc., publishing as Benjamin Cummings Types of Bone Cells  Osteocytes  Osteoblasts  Osteoclasts  Break down bone matrix for remodeling and release of calcium in response to parathyroid hormone  Bone remodeling


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