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Ilya [14]
3 years ago
10

Discuss the importance of collaborating with members of

Medicine
1 answer:
Nezavi [6.7K]3 years ago
4 0

Answer:

Explanation:

The collaboration is essential for functioning of the team for the particular goal achievement. This will help in solving problems, greater patient care, staff and family satisfaction. Generally the patients of rehabilitation center goes through with physiological and pyschological disorders thus care is required with team collaboration.

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A woman with hydramnios has just given birth. The nurse recognizes that the infant must be assessed for which condition
torisob [31]

The infant of a mother with hydraminos must be assessed with esophageal atresia.

Hydraminos is excessive amniotic fluid. Any child born to a woman with hydramnios must have esophageal atresia ruled out. Because a fetus typically swallows amniotic fluid during intrauterine life, hydramnios happens. As a result of the fetus's inability to swallow properly due to esophageal atresia, the amniotic fluid level may become unusually high.

<h3>What is esophageal atresia?</h3>

When a newborn is born with esophageal atresia (EA), a portion of the esophagus is absent (the tube that connects the mouth to the stomach). The esophagus develops as two distinct, unconnected segments rather than as a tube connecting the mouth and the stomach. Some children have esophageal defects that prevent the ends from being surgically joined. Long-gap EA is what this is called.

To learn more about esophageal atresia with the help of given link:

brainly.com/question/13125577

#SPJ4

5 0
1 year ago
Explain how neurons communicate. Include a description of the action potential and how the action potential is converted into a
suter [353]

Answer:

Action potentials and chemical neurotransmitters.

Explanation:

Neurons communicate with each other via electrical events called ‘action potentials’ and chemical neurotransmitters.  At the junction between two neurons (synapse), an action potential causes neuron A to release a chemical neurotransmitter.  The neurotransmitter can either help (excite) or hinder (inhibit) neuron B from firing its own action potential.

In an intact brain, the balance of hundreds of excitatory and inhibitory inputs to a neuron determines whether an action potential will result.  Neurons are essentially electrical devices. There are many channels sitting in the cell membrane (the boundary between a cell’s inside and outside) that allow positive or negative ions to flow into and out of the cell.  Normally, the inside of the cell is more negative than the outside; neuroscientists say that the inside is around -70 mV with respect to the outside, or that the cell’s resting membrane potential is -70 mV.

This membrane potential isn’t static. It’s constantly going up and down, depending mostly on the inputs coming from the axons of other neurons. Some inputs make the neuron’s membrane potential become more positive (or less negative, e.g. from -70 mV to -65 mV), and others do the opposite.

These are respectively termed excitatory and inhibitory inputs, as they promote or inhibit the generation of action potentials (the reason some inputs are excitatory and others inhibitory is that different types of neuron release different neurotransmitters; the neurotransmitter used by a neuron determines its effect).

Action potentials are the fundamental units of communication between neurons and occur when the sum total of all of the excitatory and inhibitory inputs makes the neuron’s membrane potential reach around -50 mV (see diagram), a value called the action potential threshold.  Neuroscientists often refer to action potentials as ‘spikes’, or say a neuron has ‘fired a spike’ or ‘spiked’. The term is a reference to the shape of an action potential as recorded using sensitive electrical equipment.

Neurons talk to each other across synapses. When an action potential reaches the presynaptic terminal, it causes neurotransmitter to be released from the neuron into the synaptic cleft, a 20–40nm gap between the presynaptic axon terminal and the postsynaptic dendrite (often a spine).

After travelling across the synaptic cleft, the transmitter will attach to neurotransmitter receptors on the postsynaptic side, and depending on the neurotransmitter released (which is dependent on the type of neuron releasing it), particular positive (e.g. Na+, K+, Ca+) or negative ions (e.g. Cl-) will travel through channels that span the membrane.

Synapses can be thought of as converting an electrical signal (the action potential) into a chemical signal in the form of neurotransmitter release, and then, upon binding of the transmitter to the postsynaptic receptor, switching the signal back again into an electrical form, as charged ions flow into or out of the postsynaptic neuron.

4 0
4 years ago
An airplane flies in a straight line between two cities that are separated by 840 kilometers. If it takes 4 hours for the airpla
labwork [276]
What is its ______? Speed? We’ll go with that. If that’s not what the question asks, LMK in the comments & I’ll help if I can.

840 km divided by 4 hours = 210km/hr
6 0
3 years ago
Which type of depression results in an individual with a manic-depressive illness.
larisa [96]

Answer:

The correct option is : c. bipolar disorder

Explanation:

A manic depressive illness also known as bipolar disorder, is a serious mental disorder in which the person experiences extreme mood swings ranging from manic highs to depressive lows. The manic highs includes high energy, abnormally elevated mood and reduced need for sleep. Whereas, depressive lows include low energy, loss of interest and even suicidal thoughts.

Therefore, bipolar disorder causes manic-depressive illness in an individual.

6 0
4 years ago
Structures of the Cardiovascular System work together as an efficient pump and delivery
Igoryamba
So the correct answer to this question would be: Oxygen & Nutrients
5 0
3 years ago
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