B2.1.3 The Heart Flashcards

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1
Q

Give some ways in which cardiac output is increased during vigorous exercise

A

Increased heart rate
Increased stroke volume
More adrenaline

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2
Q

Explain what causes the blood pressure in the aorta to be higher than the blood pressure in the pulmonary artery

A

Left ventricle has thicker muscle

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3
Q

Explain why a vein is described as an organ

A

It’s made of tissue

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4
Q

Explain how the elastic tissue helps even out the pressure of the blood going through the arteries

A

Elastic tissue stretches when pressure gets too high

And recoils when pressure returns to normal

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5
Q

The Cardiac cycle is controlled by the sinoatrial node (SAN) and the atrioventricular node (AVN). Describe how

A

The SAN initiates heartbeat
SAN sends waves of electricity across the atria causing atrial contraction
AVN delays to allow the atria to empty (and the ventricles to fill up) before the ventricles contract
AVN them sends a wave of electrical impulses down “bundle of His”
This causes the ventricles to contract from the base up (ventricular systole)

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6
Q

An increase in respiration in the tissues of a mammal affects the oxygen dissociation curve of haemoglobin. Describe and explain how

A

Increase in carbon dioxide so the curve moves to the right

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7
Q

People living in high altitudes have more red blood cells than people living at sea level l. Explain the advantage of this to people living at high altitudes

A

They will have more haemoglobin so can pick up more oxygen in the lungs

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8
Q

Explain how fluids leave the capillaries at the arterial end

A

Hydrostatic pressure is greater than the osmotic effect so molecules are forced out

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9
Q

Explain how the shape of a red blood cell allows it to take up a large amount of oxygen in a short time

A

It’s has a large surface area to volume ratio for diffusion

It is flat and thin so oxygen can reach all haemoglobin rapidly

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10
Q

Describe how the increase in pressure of the blood in the arteries is a result from the events in the cardiac cycle

A

Increase in blood pressure caused by blood leaving the heart and entering the arteries
This is a result of ventricular systole

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11
Q

Describe the part played by proteins in the plasma in returning tissue fluid to the capillaries

A

A high concentration of protein produces a lower water potential so water moves into the capillaries by osmosis

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12
Q

Give some changes that will increase blood flow through the skeletal muscles

A

Increase in heart rate
Increased volume of blood pumped per beat
Dilation of vessels
Increased blood pressure

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13
Q

Explain some advantages of increasing the blood flow through the skeletal muscles during exercise

A

More oxygen supplied for respiration so less anaerobic respiration
More glucose supplies for respiration
Carbon dioxide rapidly removed from respiring cells

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14
Q

Describe how the regular contractions of the atria and the ventricles is initiated and coordinated by the heart itself

A

Cardiac muscle is myogenic
SAN sends a wave of electrical impulses across the atria
This initiates the contraction of the atria
AVN then spreads an electrical signal across the ventricles causing the ventricles to contract once they have filled with blood

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15
Q

Describe how haemoglobin loads and unloads oxygen in the body

A

Haemoglobin picks up oxygen at high partial pressures e.g. In the lungs
Haemoglobin unloads oxygen at low partial pressures e.g. In respiring tissues

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16
Q

Explain how the structure of arterioles enables the regulation of blood flow to different parts of the body

A

Muscles in the walls for the arterioles contact increasing blood flow

17
Q

When is the arterial pressure at its maximum value?

A

When the ventricles are contracting

18
Q

give 2 ways the aorta structure is suited to function

A
  1. Elastic tissue - stretch and recoil /spring back
  2. muscle layer for contraction
  3. Thick walls to resist pressure and stop it bursting
  4. smooth endothelium - reduces friction
  5. semi lunar valve - prevents back flow
19
Q

name the blood vessels that carry blood to the heart muscle

A

coronary arteries