Adduction - Answers Moves closer to the midline
Abduction - Answers Moves away from the midline
Flexion - Answers Decreases the angle of a joint
Extension - Answers Increases the angle of a joint
Rotation - Answers Moves a bone around its own axis
Pronation - Answers Turns the palm down
Supination - Answers Turns the palm up
Inversion - Answers Moves the sole of the foot inward
Eversion - Answers Moves the sole of foot outward
Dorsiflexion - Answers Elevates the foot
Plantar flexion - Answers Lowers the foot (points the toes)
Circumduction - Answers Moves in a circle
Hyperextension - Answers Head tilts backwards
Opposition - Answers Thumb touches fingers
Special Characteristics of Muscles - Answers Excitability, Contractility, Extensibility, Elasticity
Muscle Functions - Answers Produce Movement, Maintain Posture and Body Position, Stabilize Joints,
Generating Heat, Protect Internal Organs
skeletal muscle - Answers attach to and cover the bony skeleton, longest muscle cells, have striations,
voluntary, responsible for body mobility
smooth muscle - Answers found in the walls of hollow visceral organs, elongated fibers with no
striation, involuntary.
striated muscle - Answers striped appearance of skeletal and cardiac muscle when viewed under a
microscope
epimysium - Answers dense irregular connective tissue that surround the whole muscle
perimysium - Answers fibrous connective tissue that covers the fasicle
fasicle - Answers a group of muscle fibers covered by perimysium
endomysium - Answers connective tissue that surrounds each individual muscle fiber (cell)
sarcolemma - Answers plasma membrane of a muscle fiber (cell).
myofibrils - Answers rodlike bundle of contractile filaments (myofilaments) found in muscle fibers
muscle fibers - Answers A cylindrical, multinucleate cell composed of numerous myofibrils that
contracts when stimulated.
sarcomere - Answers The segment of a myofibril between two adjacent Z lines, the smallest
contractile unit of a muscle
myofilaments - Answers filament that constitutes myofibrils. Comprised of two types: actin (thin) and
myosin (thick)
Sliding Filament theory - Answers during contraction the thin filaments slide past the thick ones so
that the actin and myosin filaments overlap to a greater degree.
tendon - Answers cord-like structures that attach muscle to bone
aponeuroses - Answers sheetlike structures that attach muscles indirectly to bones, cartilages, or
connective tissue coverings
cardiac muscle - Answers found only in the heart, striations, branching cells, intercalated discs,
involuntary
Compresssion fracture - Answers Fracture where bone is crushed
Closed (simple fracture) - Answers Fracture where the bone does not break the skin
Spiral fracture - Answers Ragged break when excessive twisting force is applied to the bone
Greenstick fracture - Answers Partial fracture of a bone (usually in children)
Open (compound fracture) - Answers Break in the bone where the bone comes through the skin
Depressed fracture - Answers Broken bone portion is pressed inward
Impacted - Answers Broken bone ends are forced into each other
Ligament - Answers fibrous cord that binds the bones together at joints
Joint function - Answers gives the body flexibility and allow movement
Fibrous joint - Answers an immovable joint (especially between the bones of the skull)
Cartilaginous joint - Answers two bones are linked by cartilage
Synovial joint - Answers a freely movable joint