Course review

B3.3 Muscle and motility [HL only]

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Learning objective

B3.3.1 (HL)—Movement adaptations

New

• Movement is universal, but only some organisms show locomotion • Motile organisms move for food, mates, migration, or escape • Sessile organisms such as coral or plants still move body parts or grow toward stimuli

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Learning objective

B3.3.2 (HL)—Sliding filament model

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• Sarcomeres contain actin thin filaments and myosin thick filaments between Z lines • Calcium binds troponin, moving tropomyosin away from actin binding sites • Myosin heads use ATP in a cross-bridge cycle to slide actin and shorten sarcomeres

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Learning objective

B3.3.3 (HL)—Titin and antagonistic muscles

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• Titin acts as a molecular spring in sarcomeres and centres myosin • Titin recoils after stretching and prevents overstretching • Antagonistic muscles are needed because muscles actively contract but do not actively extend

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Learning objective

B3.3.4 (HL)—Motor units

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• Motor neurons connect to skeletal muscle fibres at neuromuscular junctions • Acetylcholine release at motor end plates triggers sarcolemma excitation • Excitation releases calcium from sarcoplasmic reticulum to start contraction

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Learning objective

B3.3.5 (HL)—Skeletons as anchorage and levers

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• Skeletons provide support, protection, muscle anchorage, and lever systems • Vertebrate endoskeletons attach muscles by tendons • Arthropod exoskeletons use chitin, joints, and internal muscle attachments

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Learning objective

B3.3.6 (HL)—Synovial joint movement

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• Synovial joints contain lubricating synovial fluid between cartilage-covered bones • Tendons attach muscles to bones; ligaments connect bones and stabilize joints • The hip is a ball-and-socket joint between femur and pelvis

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Learning objective

B3.3.7 (HL)—Range of motion

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• Range of motion depends on joint type, bone surfaces, ligaments, and muscles • Ball-and-socket joints such as shoulder and hip allow circumduction • Hinge joints such as elbow and knee mainly allow flexion and extension

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Learning objective

B3.3.8 (HL)—Intercostal muscles

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• External and internal intercostal muscles act antagonistically during ventilation • External intercostals lift ribs up and out for inspiration • Internal intercostals pull ribs down and in during forced expiration

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Learning objective

B3.3.9 (HL)—Reasons for locomotion

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• Locomotion allows animals to forage, avoid predators, find mates, and migrate • Examples include blackbirds feeding, hares escaping predators, orangutans finding mates, and whales migrating • Locomotion can improve survival and reproductive success

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Learning objective

B3.3.10 (HL)—Swimming adaptations in marine mammals

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• Marine mammals have streamlined bodies, reduced drag, flippers, and up-down tail flukes • Reduced pelvic bones and absent hind limbs reduce resistance in water • Cetacean blowholes allow rapid surface breathing and close during dives

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