Q.Write structure and function of human heart. OR Differentiate between striated and non-striated muscles.
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Start your 14-day free trial to unlock the full solution →The heart's four-chamber design and its set of one-way valves together allow it to run two separate circuits at once — pumping deoxygenated blood to the lungs and oxygenated blood to the rest of the body — without the two blood supplies mixing.
Structure: The human heart sits enclosed in a double-layered protective sac, the pericardium (containing pericardial fluid that reduces friction during beating). It has four chambers: two smaller, thin-walled upper chambers, the right and left atria (which receive blood), and two larger, thick-walled lower chambers, the right and left ventricles (which pump blood out). A muscular septum separates the right side from the left, keeping oxygenated and deoxygenated blood apart. Four valves enforce one-way flow: the tricuspid valve (between right atrium and right ventricle), the bicuspid/mitral valve (between left atrium and left ventricle), and the pulmonary and aortic semilunar valves (guarding the exits of the right and left ventricles respectively). The heart wall is made of cardiac muscle (myocardium), which is myogenic — it generates its own rhythmic contractions, initiated by the sinoatrial node ("pacemaker").
Function: The right atrium receives deoxygenated blood from the body (via the venae cavae) and passes it to the right ventricle, which pumps it to the lungs via the pulmonary artery (pulmonary circulation) to be oxygenated. Oxygenated blood returns from the lungs to the left atrium via the pulmonary veins, passes to the left ventricle, and is pumped out through the aorta to the rest of the body (systemic circulation). Because both circuits run through the same beating heart but stay physically separate, this arrangement is called double circulation, which keeps oxygenated blood from mixing with deoxygenated blood and allows efficient, high-pressure delivery of oxygen to tissues.
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