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Q.Define a Joint. Explain in brief mechanism of Muscle Contraction. OR Write short notes on the following :

(i) Urinary disorders
(ii) Osmoregulation
Jammu Kashmir JkboseJammu and Kashmir Board of School Education (Class 11) 2025Subjective· 5mImportance★★★★★
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A joint is the junction between two bones (or bone and cartilage) that allows movement; muscle contraction happens by the sliding filament mechanism, in which actin filaments slide over myosin filaments, shortening the sarcomere, powered by ATP and triggered by calcium ions released after a nerve impulse.

Joint: A joint is defined as the point of contact (articulation) between two or more bones, or between a bone and a cartilage, of the skeletal system. Joints hold the skeleton together while permitting different degrees and types of movement (e.g., ball-and-socket joint at the hip/shoulder allows movement in almost all directions; hinge joint at the elbow/knee allows movement in one plane only; fibrous/immovable joints, as in the skull, allow no movement).

Mechanism of muscle contraction (Sliding Filament Theory):

  1. A motor neuron delivers a nerve impulse to the neuromuscular junction, releasing the neurotransmitter acetylcholine, which generates an action potential in the muscle fibre (sarcolemma).
  2. This action potential spreads through the T-tubules into the sarcoplasmic reticulum, causing it to release stored Ca2+ ions into the sarcoplasm.
  3. The Ca2+ ions bind to troponin on the thin (actin) filament, causing a change in its shape and shifting tropomyosin, which was blocking the myosin-binding sites on actin.
  4. With the binding sites exposed, the myosin head (with ADP + Pi bound) attaches to actin, forming a cross-bridge.
  5. The myosin head then bends/pulls, dragging the actin filament inward towards the centre of the sarcomere (the 'power stroke'), releasing ADP + Pi.
  6. A new ATP molecule binds to the myosin head, causing it to detach from actin; hydrolysis of this ATP re-cocks the myosin head to its original position, ready for another cycle. …

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