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100

This area in the brain is primary responsible for imitating the ventilation cycle

Medulla oblongata

100

This structure in the brain is involved in changing the depth of inspiration , expiration or both. 

Pons

100

These two structures within the brain work together to help you get the right amount of air when you need it:

Pons and the medulla

100

The amount of air moved in or out of the lungs in a single breath is called

Tidal volume

100

The deepest breath you can take after a normal breath is called:

Inspiratory reserve volume

200

The maximum amount of air you can forcefully breathe out after a normal breath:

Expiratory reserve volume  

200

Gas remains in the lungs to keep them inflated is called:

Residual volume

200

The part of the airway that has no alveoli; where no gas exchange occurs:

Dead space

200

The amount of air that moves in and out of the lungs in a minute:

Minute volume

200

Breathing of a significant effort, and may require the accessory muscles in the chest, neck and abdomen:

Labored breathing
300

Inadequate respirations when the brain continues to send signals to the breathing muscles 

Agonal gasps

300

Systemic circulation carries blood from the heart to the:

Body

300

Pulmonary circulation is when blood is carried from the heart to the:

Lungs

300

The heart muscle is also called:

The myocardium

300

Upper and lower chambers of the heart

Upper: Atrium

Lower: Ventricles

400
Which side of the heart is high pressure and what side is low preesure? 

Right side is low pressure and the left side is high pressure.

400

The heart requires a constant supply of:

Oxygen and nutrients

400

The heart muscle blood supply comes from:

The aorta

400

The left side of the heart receives oxygenated blood from the lungs through the:

Pulmonary veins

400

Thin bands of fibrous tissue that prevent the heart's valves from inverting:

Chordae tindinae

500

The amount of blood moved in one beat:

Stroke volume

500

The amount of blood moved in one minute is called:

Cardiac output.

CO= HR X SV

500

Depolarization vs repolarization:

Depolarization: The electrical charges on the surface of the hear turn from positive to negative.

Repolarization: The heart returns to its resting state.

500

The electrical impulse of the heart begins where?

The sinoatrial node

500

Arteries carry blood:

Away from the heart.
600

Veins carry blood:

Back to the heart

600

The main artery carrying blood to the body from the left side of the heart:

Aorta

600

Pulmonary artery carries:  

Deoxygenated blood. They are the only arteries in the body that carry deoxygenated blood.

600

Smallest branches of arteries:

Arterioles 

600

Fragile divisions of the arterial system that allows contact between the blood and cells of tissue

Capillaries 

700

The smallest branches of veins are called:

 Venules

700

The veins become larger until they form:

Where do these vessel return from

The superior and inferior vena cava.

Superior vena cava carries blood from the upper body. 

Inferior vena cava carries blood from the lower body.

700

The protein responsible for carrying oxygen:

Hemoglobin

700

These cell play a role in immune defense:

White blood cells

700

These allow clots to form in the blood:

Platelets 

800

The liquid portion of blood: 

Plasma  

800

Red blood cels have a life span of about: 

120 days

800

When the heart contracts:

Systole

800

When the heart relaxes when filling with blood: 

Diastole 

800

The average adult, child and infant has about how much blood: 

Adult: 6 L of blood

Children 2 to 3

Infants: 300 mL

900

The circulation of blood in an organ or tissue:

Perfusion

900

The difference between systolic and diastolic blood pressure:

Pulse pressure

900

The amount of blood returning to the heart is called:

Preload

900

The pressure the left side of the heart must overcome when the left ventricle contracts:

Afterload

900

Inadequate perfusion in the body is called:

Hypoperfusion (shock)

1000

Blood loss causes the vessels to: 

Constrict to create a smaller bed for the decreased volume to fill 

1000

Blood loss cause the heart to:

Increased the rate to circulate the remaining blood faster. if the loss of blood is to great the adjustment fails and the patient goes into shock.

1000

MAP is:

Mean arterial pressure. The average arterial during systole and diastole.

MAP= (HR X SV) X SVR 

1000

30% of blood is found

In the arteries, heart, and capillaries
1000

70% of blood is found within: 

The veins and the venules

1100

Nutrients move from the capillaries to:

The interstitial space (between the cells) and then into the intercellular space (inside the cells).

1100

This force pushed fluid out of the capillaries:

Hydrostatic pressure

1100

The opposing force that causes blood to be pulled back into the capillaries by diffusion:

Oncotic pressure

1100

Blood from an artery does what:

Blood from a vein does what:

Blood from capillaries does what:

Artery: Blood gushes because of high pressure.

Veins: flows in a steady stream.

Capillaries: ooze at many tiny individual points. 

1100

These two hormones are secreted to stimulate the heart and blood vessels:

Epinephrine (adrenaline) and norepinephrine (noradrenaline).

1200

Beta 1

(Think 1 heart)

Heart; Increased rate and force of contraction 

1200

Beta 2

(Think 2 Lungs.)

Broncodilation 

1200

The alpha and beta adrenergic receptors prepare yhe body for:

Fight or flight

1200

Alpha 1

Blood vessels constricted.

1200

Muscarinic 

Heart decreased rate and force of contraction

1300

Pressure sensors with the body are called:

Baroreceptors 
1300

This structure comprises the brain and the spinal cord:

Central nervous system

1300

The nerves outside of the brain and spinal cord that link the CNs to various organs throughout the body:

Peripheral nervous system

1300

1. Regulates over which we have voluntary control, such as walking, talking, writing:

2. Involuntary portion; digestion, dilation and constriction of vessels:

1. Somatic nervous system

2. Autonomic nervous system 

1300

Controls all functions of the body:

Brain

1400

The largest portion of the brain:

Cerebrum

1400

Part of the brain that controls balance, muscle coordination and posture:

Cerebellum

1400

The relay center that connects the cerebrum and cerebellum to the spinal cord:

Brainstem

1400

The three parts of the brainstem:

The midbrain, the pons, and the medulla oblongata.

1400

Part of the brain that regulates consciousness:

Reticular activating system (RAS)

1500

Deoxygenated blood drains from the head via:

The internal and external jugular veins.

1500

The primary function of the spinal cord is to:

Transmit messages between the brain and the body.

1500

1.The fight or flight reaction that enables you to respond to stress:

2. Slows the body to the resting state; rest and digest:

1. Sympathetic nervous system 

2. Parasympathetic nervous system

1500

1.Sensory nerves function by: 

2. Motor nerves function by:

1. Sending messages to the brain via the spinal cord.

2. Carrying information from the brain to the muscles.

1500

What extends into skeletal muscle that when it receives an electrical impulse causes the muscle to contract:

Axons