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rosijanka [135]
3 years ago
7

A child wakes up with a sore throat. How is this information about this

Health
2 answers:
Katena32 [7]3 years ago
8 0
C. Afferent pathway
statuscvo [17]3 years ago
4 0
C. afferent pathway
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General anesthesia is not used frequently in obstetrics because of the risks involved. There are physiologic changes that occur
melisa1 [442]

Answer:

b) Fetal hypersensitivity to anesthetic

Explanation:

In general, any type of anesthesia does not present major problems, ie the risks of anesthesia in pregnancy are low, but it depends on a number of factors, ie they exist.

The fetus may have some sensitivity to the anesthetic drug and this may increase the risk of malformation of the baby, for example. The greatest risks are those of spontaneous abortion and premature birth. The likelihood of an abortion when a woman takes anesthesia is about 6%, up to 11% if given in the first trimester of pregnancy. The other concern, premature birth, must also be great, since there is an 8% chance of this happening when a pregnant woman is subjected to anesthesia.

But then how to deal with this kind of problem since anesthesia can do harm to the baby? As we said earlier, everything will depend on a number of factors. Of course, if you can avoid and only take anesthesia after pregnancy, this is most recommended.

3 0
3 years ago
What takes place when you inhale and exhale
Hatshy [7]
Breathing In (Inhalation)

When you breathe in, or inhale, your diaphragm contracts (tightens) and moves downward. This increases the space in your chest cavity, into which your lungs expand. The intercostal muscles between your ribs also help enlarge the chest cavity. They contract to pull your rib cage both upward and outward when you inhale.

As your lungs expand, air is sucked in through your nose or mouth. The air travels down your windpipe and into your lungs. After passing through your bronchial tubes, the air finally reaches and enters the alveoli (air sacs).

Through the very thin walls of the alveoli, oxygen from the air passes to the surrounding capillaries (blood vessels). A red blood cell protein called hemoglobin (HEE-muh-glow-bin) helps move oxygen from the air sacs to the blood.

At the same time, carbon dioxide moves from the capillaries into the air sacs. The gas has traveled in the bloodstream from the right side of the heart through the pulmonary artery.

Oxygen-rich blood from the lungs is carried through a network of capillaries to the pulmonary vein. This vein delivers the oxygen-rich blood to the left side of the heart. The left side of the heart pumps the blood to the rest of the body. There, the oxygen in the blood moves from blood vessels into surrounding tissues.

(For more information on blood flow, go to the Health Topics How the Heart Works article.)

Breathing Out (Exhalation)

When you breathe out, or exhale, your diaphragm relaxes and moves upward into the chest cavity. The intercostal muscles between the ribs also relax to reduce the space in the chest cavity.

As the space in the chest cavity gets smaller, air rich in carbon dioxide is forced out of your lungs and windpipe, and then out of your nose or mouth.

Breathing out requires no effort from your body unless you have a lung disease or are doing physical activity. When you're physically active, your abdominal muscles contract and push your diaphragm against your lungs even more than usual. This rapidly pushes air out of your lungs.

The animation below shows how the lungs work. Click the "start" button to play the animation. Written and spoken explanations are provided with each frame. Use the buttons in the lower right corner to pause, restart, or replay the animation, or use the scroll bar below the buttons to move through the frames.
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Moving your arm downward toward your side is an example of which following type of motion​
Nonamiya [84]

this is an adduction movement

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