11 Gas exchange in Humans Flashcards

1
Q

Aerobic respiration

A

Chemical reactions in cells in which nutrient molecules are broken down using oxygen to release energy.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
2
Q

The breathing system

A

The organ system that allows the body to obtain the oxygen it needs for aerobic respiration, and to remove the carbon dioxide produced as a waste product

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
3
Q

Aveoli

A

Tiny air sacs in the lungs that provide a large surface area to volume ratio for efficient gas exchange.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
4
Q

How air gets to the lungs

A

nose/mouth → larynx → trachea → bronchi → bronchioles → alveoli

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
5
Q

Diffuse

A

The net movement of particles from a region of their higher concentration to a region of their lower concentration, down a concentration gradient, as a result of their random movement.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
6
Q

Breathing

A

The process of moving air in and out th elungs

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
7
Q

Gas exchange

A

Oxygen diffuses into the blood stream from the aveoli

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
8
Q

Expiration

A

Mechanism to remove air from the lungs.(Exhaling)

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
9
Q

Inspiration

A

Mechanism to take in air to the lungs.(Inhaling)

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
10
Q

Where does gas exchange happen

A

Gas exchange happens at the surface of the alveoli, allowing oxygen to diffuse from the air into blood in the capillaries, and carbon dioxide to diffuse from the blood in the capillaries into the air

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
11
Q

Trachea

A

A tube made of cartilage that allows ventilation to the lungs from the mouth and nose.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
12
Q

Thorax

A

The chest cavity that protects some of the main internal organs such as the heart and lungs. Muscle contractions in the thorax allows for ventilation.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
13
Q

Diaphragm

A

A large dome-shaped muscle at the base of the thorax (chest) that helps to ventilate the lungs.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
14
Q

Intercostal muscles

A

Muscle tissue between the ribs in the thorax. Contraction and relaxation of these muscles allows the lungs to be ventilated.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
15
Q

What happens in the thorax when you breathe in (or inhale):

A

the volume of the thorax increases
the pressure inside decreases and becomes less than the pressure outside
air is pushed into the lungs.

How well did you know this?
1
Not at all
2
3
4
5
Perfectly
16
Q

What happens to the thorax when you breathe out (or exhale):

A

the volume of the thorax decreases
the pressure inside increases and becomes more than the pressure outside
air is pushed out of the lungs.

17
Q

The changes in the volume of the thorax are caused by:

A

contraction and relaxation of the diaphragm
contraction and relaxation of the intercostal muscles resulting in movement of the ribs

18
Q

What happens to the structure of the thorax when breathing

A

Structure Breathing in/Breathing out
diaphragm: contracts/relaxes
internal intercostal muscles: relax/contract
external intercostal muscle: contract/relax
ribcage: moves upwards and outwards/moves downwards and inwards

19
Q

Inspired air

A

The air being inhaled into the lungs.

20
Q

Expired air

A

The air exhaled from the lungs.

21
Q

Compositions of inspired air and expired air.

A

Inspired air / Expired air
oxygen: 21% / 16%
carbon dioxide: 0.04% / 4%
water vapour level: variable (depends on the
relative humidity) / always high

22
Q

Why are there differences in the compositions between inspired and expired air

A

The differences in compositions of inspired air and expired air are related to the ways in which the body uses or produces the gases:

Oxygen is used by cells during aerobic respiration
Carbon dioxide is a waste product of respiration and must be removed from the body.

Expired air contains more water vapour than inspired air because moisture evaporates from the cells of the gas exchange surface.

23
Q

Effect of exercise on breathing

A

The cells of the body respire more during physical activity, to provide the energy needed by the muscles. This increased rate of respiration produces more carbon dioxide as a waste product. The increasing concentration of carbon dioxide in the blood is detected by the brain. It triggers the body to respond by increasing the rate and depth of breathing to expel the carbon dioxide from the body. These changes also increase the amount of oxygen obtained, needed for aerobic respiration to continue.

24
Q

How exercise and breathing can have an effect on the Ph of Blood

A

High levels of carbon dioxide in the blood can cause changes in its ​​​ pH level, making it more acidic. This is because the carbon dioxide dissolves to form carbonic acid, which in turn decreases the pH of the blood.

25
Q

What type of cells protect the breathing system

A

Goblet cells
​​​​​​Ciliated cells

26
Q

Goblet cells and how it helps protect the breathing system

A

Specialist cells in the lining of membranes that produce mucus.
Produce sticky mucus, which is secreted from these cells.
This mucus lines the inside of the trachea. Pathogens and particles in inspired air become trapped in the sticky mucus.

27
Q

Ciliated cells and how it helps protect the breathing system

A

Type of specialised cell with cilia (fine hairs) that sweep mucus out of the nose and throat.
Ciliated cells line the surfaces of the nose, trachea, bronchi and bronchioles.
They are specialised cells with very fine structures called cilia
Movements of the cilia sweep mucus out of the breathing system to the throat (where it is then swallowed).
This carries any trapped pathogens or particles away from the breathing system.
Smoking damages cilia, so mucus is less efficiently swept up.

28
Q

The four adaptation of the aveoli in the lungs

A

Large surface area
Moist surface
Thin lining
Good blood supply

29
Q

Properties of gas exchange surfaces

A

Thin- so gases only have a short diffusion distance
Large surface area- many molecules of gas can diffuse at the same time
Moist- prevent cell death, enable gases to dissolve
Ventilation- maintain concentration gradients by continually supplying oxygen and removing carbon dioxide
Blood supply- enable transport of gases to and from lungs when needed