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The process by which the oxygenated blood moves from left auride to left ventricle and then through aorta to all parts of the body is known as

  • a)
    Extracellular circulation

  • b)
    Intracellular circulation

  • c)
    Pulmonary circulation 

  • d)
    Systemic circulation

Correct answer is option 'D'. Can you explain this answer?
Verified Answer
The process by which the oxygenated blood moves from left auride to le...
The process by which the oxygenated blood moves from the left auride to left ventricle and then through the aorta to all parts of the body is known as systemic circulation. It is commonly seen in amphibians, reptiles, birds, and mammals. 
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Most Upvoted Answer
The process by which the oxygenated blood moves from left auride to le...
Correct answer is C not D becoz in pulmonary circulation blood system carries deoxygenated blood.
Community Answer
The process by which the oxygenated blood moves from left auride to le...
Pulmonary Circulation
Pulmonary circulation is the process by which oxygenated blood moves from the left atrium to the left ventricle and then through the aorta to all parts of the body. This process is vital for delivering oxygen and vital nutrients to various tissues and organs and removing waste products.

Explanation
To understand the process of pulmonary circulation, let's break it down step by step:

1. Left Atrium: The process begins in the left atrium of the heart. The left atrium receives oxygenated blood from the lungs through the pulmonary veins.

2. Left Ventricle: From the left atrium, the oxygenated blood flows into the left ventricle. The left ventricle is the chamber of the heart responsible for pumping blood to the rest of the body.

3. Aorta: The left ventricle contracts, pushing the oxygenated blood out of the heart through the aorta. The aorta is the largest artery in the body and carries blood to all parts of the body.

4. Systemic Circulation: Once the oxygenated blood is in the aorta, it enters the systemic circulation. Systemic circulation refers to the circulation of blood throughout the body, delivering oxygen and nutrients to various tissues and organs.

5. Tissue Exchange: As the oxygenated blood flows through the systemic circulation, it reaches smaller arteries, arterioles, and eventually capillaries. In the capillaries, oxygen and nutrients are exchanged with the surrounding tissues, providing them with the necessary substances for their functioning.

6. Deoxygenation and Waste Removal: After oxygen and nutrients are exchanged, the blood becomes deoxygenated and carries waste products, such as carbon dioxide, back to the heart.

7. Right Atrium: The deoxygenated blood re-enters the heart through the right atrium. It is then pumped into the right ventricle.

8. Pulmonary Circulation: The deoxygenated blood is then pumped from the right ventricle to the lungs through the pulmonary artery. In the lungs, carbon dioxide is removed, and oxygen is replenished through the process of respiration.

9. Left Atrium (again): After oxygenation in the lungs, the blood returns to the heart through the pulmonary veins, specifically the left atrium, to begin the process of systemic circulation again.

In summary, the process of pulmonary circulation involves the movement of oxygenated blood from the left atrium to the left ventricle and then through the aorta to all parts of the body. This provides oxygen and nutrients to tissues and organs while removing waste products.
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The process by which the oxygenated blood moves from left auride to left ventricle and then through aorta to all parts of the body is known asa)Extracellular circulationb)Intracellular circulationc)Pulmonary circulationd)Systemic circulationCorrect answer is option 'D'. Can you explain this answer?
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