Skeletal System. Skeleton. Support. Function of Bones. Movement. Protection 10/15/12

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Skeleton Skeletal System 1 Axial Skeleton-Bones that form the longitudinal axis of the body (skull and spinal column). Appendicular Skeleton-Bones of the limbs and girdles. Also include joints, ligaments and cartilage. 2 Function of Bones Support Support Protection Movement Storage Blood cell formation Forms the internal framework that supports and anchors all soft organs. 3 4 Protection Movement Protect the soft organs like the brain, spinal cord and organs of the digestive, respiratory and reproductive systems. Muscles attached to bones via tendons. 5 6 1

Storage Blood Cell Formation Fat is stored in the cavities of the bone. Minerals like calcium and phosphorus are stored in the actual bone. Blood cells are formed in the marrow cavities of certain bones. 7 8 Types of Bones Long Bones-Longer than they are wide. Examples include the femur, humerus, tibia, fibula, radius and ulna. Short Bones-Cube shape made of mostly spongy bone. Examples include the bones of the wrist and ankle. 9 Structure of a Long Bone Long shaft is called the diaphysis (compact bone). Covered and protected by a fibrous connective membrane called periosteum. Sharpey s fibers secure the the periosteum to the underling bone. The end of the long bones are called epiphyses. 10 Types of Bones (cont.) Flat Bones-Thin and flat, usually curved. Examples include the ribs, sternum, scapula and the bones of the skull. Irregular Bones-Found in the backbone/vertebrae and some bones of the face. 11 12 2

Functions Within a Long Bone Epiphysis-Site of spongy bone and hematopoiesis (blood formation) in adults. Hematopoiesis also occurs in the red marrow of the epiphysis. Diaphysis-Long bone shaft containing the compact bone. Yellow marrow cavity-contains yellow marrow and is the site for fat strorage. 13 14 Growth of the Bone Articular Cartilage Longitudinal growth occurs along the epiphyseal plate. A glassy hyaline cartilage at the end of the bones provides a slippery surface that decreases the friction at joints. 15 16 Epiphyseal Line Shaft A remnant of the epiphyseal plate seen in young growing bone which allows for lengthwise growth. In the cavity of the shaft fat tissue is present called yellow marrow. In young bones, red marrow is found there producing blood cells. In adults, red marrow is found in the cavities of spongy area of flat bones. 17 18 3

Microscopic Anatomy Bone cells called osteocytes are in a matrix called lacunae arranged in tiny circles called lamellae around central (Haversian) canals which run lengthwise and carry blood vessels. Tiny canals called canaliculi connect the bone cells to a nutrient supply. 19 20 Bone Formation Two stages of ossification. Hyaline cartilage is covered with bone matrix by cells called osteoblasts. The hyaline cartilage is digested away opening a cavity within the newly formed bone. 21 22 Bone Growth Bones widen when osteoblasts add bone tissue to the external face of the diaphysis. Bone growth controlled by growth hormone and sex hormones activated during puberty. 23 24 4

Axial Skeleton 80 BONES 25 26 Skull Cranium Cranium-Protects the brain Facial Bones-Holds the eyes and allows the facial muscles to convey expression. All bones fused together by sutures. The jaw bone is called the mandible. Composed of eight large flat bones. Frontal, Parietal (2), Temporal (2), Occipital, Ethmoid, and Sphenoid Bones. 27 28 Facial Bones Fourteen bones make up the face, 12 are paired. Paired Bones: Maxillae, Palatine, Zygomatic, Lacimal, Nasal and Interior Nasal Conchae Bones. Single Bones include the Mandible and Vomer Bone. 29 Sinuses Sinuses are air pockets that are located within the bones of the skull connected to your nasal passages. These channels permit air to flow from the nose into the sinuses and allow drainage of mucous from each sinus into the nose. Susceptible to infection because they connect to the nasal passage. 30 5

Major Sinus Cavities The Hyoid Bone Not really part of the skull. Only bone not connected to any other bone. Located suspended in the mid neck about 2 cm above the layrnx. 31 32 Vertebral Column (Spine) Extends from the skull to the pelvis. Transmits the weight of the body to the lower limbs. Composed of 26 irregular bones. Separated by intervertebral discs, which cushion the vertebrae and give the spine flexibilty. 33 34 Types of Vertebrae Abnormalities of the Spine Cervical-(C 1 to C 7 ) compose the neck region. Thoracic-(T 1 to T 12 )-larger bones which the ribs attach to. Lumbar-(L 1 to L 5 )-large, sturdy blocklike bones. 35 36 6

Sacrum Coccyx 5 fused vertebrae located below L 5. Human tailbone below the sacrum composed of 3-5 tiny fused vertebrae. 37 38 Bony Thorax Bony Thorax Sternum-three fused flat bones attached to the first seven pairs of ribs anteriorly either directly or indirectly. Protects the heart and lungs. Ribs-12 pairs. All articulate posteriorly with the thoracic vertebrae. The true ribs (1-7) are the first seven pairs of ribs attached to the sternum. 39 40 False Ribs False ribs (8-12) are the next five pairs are either attached indirectly to the sternum or lack attachment at all (floating ribs 11-12 ) Appendicular Skeleton 126 BONES 41 42 7

Appendicular Skeleton Shoulder (Pectoral) Girdle 126 bones of the limbs and girdles (pelvic and pectoral) Clavicle or collar bone. Scapula Flexible Lightweight Shallow socket for limb attachment. 43 44 Arm Bones Hand Bones Upper arm is called the humerus Lower arm bones are the radius and ulna. Carpal bones (wrist) Metacarpals (palms) Phalanges (fingers) 45 46 Pelvic Girdle Composed of three bones, the Ilium, Pubic Bone and the Ischium. Massive to bear weight. Deep, secure pocket for limb attachment. Upper leg is the femur, which is the heaviest and longest bone in the body. The lower leg bones are the tibia and fibula. Leg Bones 47 48 8

Foot Bones Tarsal bones make up the posterior part of the foot. Metatarsal bones form the sole of the foot. Phalanges are the toes. Bone Disorder-Osteoporosis A disease that causes a thinning of the bone. Affects 50% of women over 65 Affects 20% of men over 70 Bones so thin even a hug can break the bone. Causes the body to slump as age increases. 49 50 Common Types of Fractures How the Bone Heals 51 52 Joints Joints All bones (except the hyoid) meet at a joint. Hold bones together. Allow movement of the rigid skeleton. 53 54 9

Types of Joints Fibrous-hold bones of the skull together. Cartilaginous-slightly moveable and found in the pelvis and the between the vertebrae. Synovial-Keeps the bones separated by a joint cavity. 55 Types of Synovial Joints Plane Joints-Found in the wrist allowing gliding with no rotation. Hinge Joints-Uniaxial movement found in the ankle, fingers an knee. Pivot Joint-Found in the elbow. Condyloid Joint-Knuckles Saddle Joints-Thumb Ball and Socket Joint-Multiaxial movement of the shoulder and hip. These are the most flexible 56 Disorders of the Joints Arthritis-Inflammation of the joints Rheumatoid Arthritis-The body attempts to destroy its own tissue. The joints become bent Gout-Uric acid builds up and crystallizes in the joints. Movement is very painful. Developmental Aspects 57 58 Endocrine System-Regulates uptake and release of calcium by bones. Muscular System-Increases bone strength. Nervous System-Conveys sense of pain in the bones and joints Integumentary System-Provides vitamin D for proper calcium absorption. Urinary System-Activates vitamin D for proper calcium usage. Reproductive System-produce hormones that form skeleton and epiphyseal closure. 59 60 10