Whole blood for testing in clinical labs is usually collected from?

Answers

Answer 1

Answer:

Superficial vein

Explanation:

Whole blood for testing in clinical labs is usually collected from superficial vein.

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Related Questions

Describe the layers of an artery versus a capillary versus a vein.

Answers

Answer:

Arteries:

Arteries have thick layer of elastic fibers. The lumen is narrow in the arteries. The semilunar valves are absent and the outer wall is thick. They are inserted deep to the body surface.

Capillaries:

Capillaries do not have any elastic fibers. The lumen is very small. The semilunar valve are not present and the outer wall is one cell layer thick. They are present inside all the tissues.

Vein:

Vein has thin layer of elastic fibers. The lumen is wide in the veins. The semilunar valves is present and outer wall is thin. They are present near the body surface.

Papanicolaou smear is usually done to determine cancer of:
a. Cervix
b. Ovaries
c. Fallopian tubes
d. Breast

Answers

Answer: a. Cervix

Explanation:

Whete does the stimulus occur in order to initiate an AP?
a. Cell body
b. Dendrites
c. Axon hillock

Answers

Answer:

The answer to the question: Where does the stimulus occur in order to initiate an AP, would be, B: Dendrites.

Explanation:

When an impulse is to be generated and passed on as an action potential towards a corresponding neuronal cell, and a final affected organ, the neurons need first to be stimulated so that an action potential begins. This stimulus comes as a neurotransmitter released by other neurons near the one that will be stimulated. This neurotransmitter will bind to the receptors on the dendrites of the neuron to be stimulated and immediately this will cause the ion channels, gated and non-gated, to open and close so that an action potential can be initiated. The cell body then initiates the first action potential, and will in turn stimulate the axon to also start their own action potential, which will, like a domino effect, move down to the axon terminals. This process will be followed all along a neuronal circuit.

Which of the following vessels, if stimulated to vasoconstrict, would cause increased filtration in the glomerular capillaries?
(a) Afferent arteriole
(b) Vasa recta
(c) Efferent arteriole
(d) Peritubular capillaries

Answers

Answer:

The correct answer will be option- C.

Explanation:

The filtration rate of the glomerulus is affected by the size of the arterioles: afferent and efferent. These arterioles are regulated through the hormones mainly prostaglandins, epinephrine, renin, angiotensin II and aldosterone.

The afferent arteriole vasoconstriction decreases the glomerular filtration rate (GFR) but in contrast, the vasoconstriction of efferent arteriole due to angiotensin II will increase the GFR because of the increase in glomerular capillary pressure.

Thus, option- C is the correct answer.

Hypoglycemia can cause
a. elevated blood pressure, flushing of the skin, and increased sensitivity to pain.
b. slow heart rate, dry skin, and constipation.
c. headache, sweating, and shakiness.
d. decreased thirst, urination, and appetite.

Answers

Answer:

C

Explanation:

Hypoglycemia is the decrease of blood glucose in the body. Glucose is broken down in the body to release energy. Lack of energy of the body leads to the symptoms listed above

Final answer:

Hypoglycemia is a condition characterized by low blood glucose levels. It can cause symptoms such as headache, sweating, and shakiness. option a is correct.

Explanation:

Hypoglycemia is a condition characterized by low blood glucose levels. It can cause symptoms such as headache, sweating, and shakiness. Insufficient glucose availability to cells due to hypoglycemia can lead to muscle weakness and, in severe cases, unconsciousness or death if left untreated.

Hypoglycemia occurs when the blood glucose level drops below normal, typically defined as below 70 mg/dL. This condition can be caused by various factors, including diabetes treatment, excessive alcohol consumption, certain medications, critical illnesses, hormone deficiencies, and tumors. When blood sugar levels fall too low, the body is unable to function properly, leading to a range of symptoms such as headache, sweating, shakiness, irritability, confusion, and in severe cases, seizures and loss of consciousness.

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Stores of this form of carbohydrate are released from the liver to help maintain constant blood glucose levels.

Answers

Answer:

Glycogen

Explanation:

The glycogen is composed by a glucose multibranch. Muscles are a reserve for the glycogen but the main reserve is the liver. When the insuline levels go down the glycogen is released thanks to the glycogen phsporylase and when the insuline and carbohydrate levels are high in plasma, the insuline takes those carbohydrates to the liver stimulating other enzimes to produce the glycogen.

Growth of a new capillary supply into the region produces granulation tissue.
a. True
b. False

Answers

Answer: True

Explanation:

Granulation of tissues is also known as vascularization of tissues. The new capillaries that is formed makes the tissue appear granular and pink.

Granulation of tissues can be defined as the infill in the wound.It consists of macrophages, neovas-culture and fibroblast which work in the combination to deposit matrix.

This matrix helps in support and growth of granulation and wound healing.

Hyperpolarization:
a. occurs during the latent period.
b. means the inside of the neuron is more negative than normal.
c. causes an action potential
d. all of the above.

Answers

Answer:

Option (b).

Explanation:

Hyperpolarization may be defined as the process of change in the cell potential towards more negative. The hyperpolarization state occurs after repolarization state.

The restinf membrane potential of the cell is -70mV. The influx of calcium ions in the cell, causes the change in the membrane potential and makes the cell negative upto -90mV. Hence, the inside of the neuron become more negative than the normal cell potential.

Thus, the correct answer is option (b).

Final answer:

Hyperpolarization refers to a change in the membrane potential of a neuron where the inside becomes more negative than normal. It is an inhibitory response that makes it less likely for a neuron to fire.

Explanation:

b. means the inside of the neuron is more negative than normal.

Hyperpolarization refers to a change in the membrane potential of a neuron where the inside becomes more negative than the normal resting potential of the neuron. This occurs due to an increased permeability of the membrane to potassium ions, leading to an efflux of positive charges.

Hyperpolarization is an inhibitory response in neurons and can occur during the refractory period following an action potential, not during the latent period. It can be caused by an external stimulus or as a result of the neurotransmitter release. It inhibits the generation of action potentials, making it less likely for a neuron to fire.

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Describe how shortening the length of the muscle affects the thin and thick filaments?

Answers

Answer:

The length of the thick and thin filament do not shorten during muscle shortening.

Explanation:

The muscle contraction helps in he movement of the body parts.The muscle shortening causes the actin filament to pull along the myosin towards the center of the sarcomere.

The actin and myosin filaments completely overlap with each other. The sarcomere shorten during the muscle contraction but the thick and thin filaments length do not change. These thick and thin filament over lap with each other but there length remains the same.

Sam and Joan have been married for 25 years and have three children: Max, who is 23; Janet, who is 19; and Sarah, who is 15. Janet has just been diagnosed with a mental illness. Describe the objective and subjective burdens each family member may experience. Describe the meaning this diagnosis may have to Janet’s parents, younger sibling, and older sibling.

Answers

Answer:

People who are diagnosed with a mental illness, whatever this may be, carry out an enormous burden, not simply because of their illness, but because of the stigma that these carry before society. They are also a problem for families, who must find coping mechanisms to help the person.

On the objective side of things, Janet´s family will have, as a group, to learn to understand the illness that Janet has been diagnosed with, the necessary treatments and procedures that will be necessary to help her, and their importance in providing Janet with a semblance of normalcy. There is also the issue of medical expenses, doctors, necessary medication, house care if that is necessary, and the sacrifices that as a family they will have to make to face, and help Janet face, the problem. Each of the family members become a support group, and a network, for Janet.

Subjectively, each member has to deal with his/her own feelings towards the diagnosis, and what it entails. The mother and father, being adults, and being a couple, have formed a network between the two of them to face the issue, but each one will face the problem differently. The father, will most likely have to face the issue of providing so that medical costs can be faced, while the mother will have to become the main caregiver. In the case of the siblings, the older one will have to face the issue of stigma, how others perceive his sister and how he will perceive his own sister, now that he knows her diagnosis. The younger one, will have to face the way that her peers view the issue, and respond to ir accordingly.

These are only some of the consequences that will be faced by the family of Sam and Joan, given the diagnosis of mental illness of their daughter Janet.

The glomerular filtration rate would most likely be affected by:
a. hormones
b. changes in glomerular blood pressure
c. pH of blood
d. dietary changes

Answers

Answer:

The correct answer will be option- B.

Explanation:

Glomerular filtration rate or GFR is the rate of the volume of filtrate formed by all renal corpuscles of both kidneys per unit time that is 120 ml/ min. The GFR depends on the pressure gradient in the glomerulus mainly its hydrostatic pressure.

The GFR is directly proportional to the glomerular blood pressure as the blood pressure increases, the hydrostatic pressure also increases which increases the GFR as more water and solutes enter the bowman's capsule. With the decrease in the blood vessels, the GFR decreases.

Thus, option- B is the correct answer.

An ECG provides direct information about valve function.
A. True
B. False

Answers

an egg provides direct info about valve function
Answer B FALSE
Final answer:

An ECG measures the electrical activity of the heart but does not provide direct information about valve function. For valve function, other tests like an echocardiogram are needed.

Explanation:

The statement, 'An ECG provides direct information about valve function.' is False. An ECG (Electrocardiogram) is a test that measures the electrical activity of the heart. It shows how fast the heart is beating, and whether the heart's rhythm is steady or irregular. However, it doesn't provide direct information about the heart valve's function. Evaluating the function of the heart valves typically requires other tests, such as an echocardiogram which uses sound waves to create a detailed image of the heart's structure and function.

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A chemical digestion in the small intestine that breaks down fats.

Answers

Answer:

Fat digestion begins from the mouth but the majority of the fat is digested in the small intestine as the digestive juice, a mixture of bile juice and pancreatic juice is secreted by the liver and pancreas respectively which contains digestive enzymes like trypsin, chymotrypsin, amylase and lipase helps in digestion of the fat.

The digestive juice is delivered to the small intestine through ducts which helps in breakdown and digestion of fats. Lipase enzyme acts on the fat and cholesterol which break down these and form small or tiny particles called chylomicrons thus completing the digestion of fats.

Nerve impulses from ________ will result in inspiration.
a. the preoptic nucleus of the hypothalamus
b. Broca's center
c. the chemoreceptor center
d. the ventral respiratory group

Answers

Answer:

Nerve impulses from  ( d ) the ventral respiratory group will result in inspiration.

Explanation:

In the brainstem , respiratory center is located in medulla oblongata and pons . The respiratory center is the combination of three major respiratory groups of neurons , which are present , one in the pons and two in the medulla  .

Pons have the pontine respiratory group , and medulla have a dorsal respiratory group and the ventral respiratory group .

Now,

the ventral respiratory group of neurons , which contains both inspiratory and the expiratory neurons .

Blood pressure is much lower in the pulmonary circulation than in systemic circulation.
a. True
b. False

Answers

Answer:

True

Explanation:

Blood pressure is much lower in the pulmonary circulation than in systemic circulation.

Which of the following hormones is oxytocin?
A. insulin
B. thyroxine
C. progesterone
D. pitocin

Answers

Explanation:

thyroxine

The two main actions of oxytocin in the body are contraction of the womb (uterus) during childbirth and lactation. Oxytocin stimulates the uterine muscles to contract and also increases production of prostaglandins, which increase the contractions further.

High-density lipoproteins (HDLs) transport cholesterol from cells to the liver, where it becomes part of bile. HDLs are ____________ lipoproteins because they are used in cell repair and growth and do not tend to accumulate in body spaces where they are not needed.

Answers

Final answer:

High-density lipoproteins (HDLs) are 'beneficial' lipoproteins. They transport excess cholesterol from various body cells to the liver, where the cholesterol is made into bile. They also contribute to cell repair and growth and do not accumulate needlessly within the body.

Explanation:

High-density lipoproteins (HDLs) are often referred to as the "good" cholesterol. They play a critical role in the body's lipid transport system by taking excess cholesterol from cells in different parts of the body to the liver. Once in the liver, the cholesterol becomes part of bile, a digestive liquid. HDLs are known as 'beneficial' lipoproteins due to their role in cell repair and growth and their tendency not to accumulate in places in the body where they're not needed, helping to prevent the build-up of harmful fatty deposits.

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Final answer:

High-density lipoproteins (HDLs) are beneficial because they transport cholesterol from cells to the liver. Here it becomes part of bile and does not accumulate in body spaces where it's not needed. The process involves triglycerides, phospholipids, cholesterol, chylomicrons, and the circulatory system.

Explanation:

High-density lipoproteins (HDLs) are considered beneficial lipoproteins because they transport excess cholesterol from cells to the liver, where it becomes part of bile. The transported cholesterol is then used in cell repair and growth, and does not accumulate in body spaces where it is not needed. HDLs thus help maintain a healthy balance of cholesterol in the body.

Free fatty acids and monoacylglycerides enter epithelial cells and are reincorporated into triglycerides. These triglycerides are subsequently mixed with phospholipids and cholesterol to form a complex called a chylomicron, which is a water-soluble lipoprotein. This chylomicron is transported in the lymphatic vessels and then enters the circulatory system. Once in the bloodstream, the enzyme lipoprotein lipase breaks down the triglycerides of the chylomicrons into free fatty acids and glycerol, which can be used for energy by cells or stored as fat in adipose tissue.

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#SPJ11Final answer:

High-density lipoproteins (HDLs) are beneficial because they transport cholesterol from cells to the liver. Here it becomes part of bile and does not accumulate in body spaces where it's not needed. The process involves triglycerides, phospholipids, cholesterol, chylomicrons, and the circulatory system.

Explanation:

High-density lipoproteins (HDLs) are considered beneficial lipoproteins because they transport excess cholesterol from cells to the liver, where it becomes part of bile. The transported cholesterol is then used in cell repair and growth, and does not accumulate in body spaces where it is not needed. HDLs thus help maintain a healthy balance of cholesterol in the body.

Free fatty acids and monoacylglycerides enter epithelial cells and are reincorporated into triglycerides. These triglycerides are subsequently mixed with phospholipids and cholesterol to form a complex called a chylomicron, which is a water-soluble lipoprotein. Thischylomicron is transported in the lymphatic vessels and then enters the circulatory system. Once in the bloodstream, the enzyme lipoprotein lipase breaks down the triglycerides of the chylomicrons into free fatty acids and glycerol, which can be used for energy by cells or stored as fat in adipose tissue.

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The major distinction between endocrine glands and exocrine glands is that endocrine glands secrete their product into
a) the blood
b) a duct
c) the stomach
d) the bladder

Answers

Answer:

A) The blood.

Explanation:

Endocrine glands produces hormones that must be excreted to the blood in order to be used in other organs or tissues meanwhile the exocrine glands produce no hormonal secretion, those glands produce enzimes that are secreted to the organ or tissue through a duct.

Describe the function of the plicae circulares.

Answers

Answer:

The circular folds or kerckring valve, are formations of the mucosa of the small intestine in the form of folds that start in the submucosa and go to the periphery reaching a length of 5 to 8 mm, are located in the final part of the duodenum and more abruptly in the jejunum and taking part of the ileum. Its main function is to increase the capacity of intestinal absorption as to delay the digestion of the chyme.

Salmonella typhi can move into a chronic asymptomatic carrier status in what organ of the body?
a) Liver
b) Spleen
c) Gallbladder
d) Intestinal lining

Answers

Answer:

The answer is D Intestinal lining

Explanation:

salmonella typhi is a bacterium that is acquired orally either by contaminated food or water, its characteristic clinical condition is a diarrheal disease, chronic carriers continue to expel these bacteria through their stools and spread the infection if not treated properly for a long time.

Which cartilage attaches to the posterior end of the vocal ligament and is important in manipulating it to produce speech?
a. thyroid cartilage
b. cricoid cartilage
c. arytenoid cartilage
d. epiglottis

Answers

Answer:

The correct answer is option C. arytenoid cartilage.

Explanation:

The arytenoid cartilages creates the part of the larynx to which the vocal folds and vocal ligament attach at posterior end.

The arytenoid cartilage is a pyramid like piece of cartilage that located in the larynx. These cartilage are two are in number and makes a pair. It is essential to make sound or voices.

Thus, the correct answer is option C. arytenoid cartilage.

What is the general location and primary function of Occipital Lobe?

Answers

Answer:Hola My name is Marissa and im here to help!:)

Explanation:

the occipital lobe is at the back of the brain just aboce the cerrebellum and beneath the parietal lobe

the funtion of the occiptal lobe is the main role it to control your vision and proccesing visual information.

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From letters A to E which is correctly described?
A) nasopharynx: usually receives only air, helps equalize pressure in inner ear
B) oropharynx: receives food and air, contains palatine and lingual tonsils
C) laryngopharynx: receives only food, lined with ciliated pseudostratified columnar epithelium
D) A and B are correct
E) A, B and C are correct

Answers

Answer:

The answer is B: Oropharynx.

Explanation:

The most posterior part of the mouth is known as an oropharynx, it corresponds anatomically to the throat; It extends from the soft palate to the hyoid bone, it also includes the back of the tongue. It is also the place where food, liquids and saliva travel when swallowed.

MRV =
a. tidal volume X breaths per minute
b. the total amount of exchangeable air
c. the function residual capacity
d. air inspired after a tidal inhalation, not including tidal volume

Answers

Answer:

Option (a).

Explanation:

Minute respiratory volume or minute ventilation may be defined as the amount of gas exhaled or inhaled in a minute. Wright respirometer can be used to calculate the minute ventilation.

Minute ventilation can be calculated by the formula:

MRV = TV × Breaths per minute.

Here, MRV is minute respiratory volume and TV is tidal volume.

Thus, the correct answer is option (a).

Which of the following is the most inferior cartilage of the larynx?
a. thyroid
b. arytenoid
c. corniculate
d. cricoid

Answers

Answer:

Cricoid.

Explanation:

Larynx is also known as voice box and lies above the trachea. Larynx helps in the protection of pharynx while swallowing the food.

Cricoid cartilage is the inferior wall cartilage of larynx. This is a ring shape in structure and present at the back part. This provides the attachment site for muscles, bones and cartilage.

Thus, the correct answer is option (d).

Which of the tollwing essential glands in the neck may be compromised during a thyroidectomy?
A. thymus
B. pituitary
C. parotid
D. parathyroid

Answers

Answer:

D. Parathyroid

Explanation:

The parathyroid is localized on the back of the thyroid gland. Due to their location, in a thyroidectomy, both the thyroid and the parathyroid glands are removed.

In the heart dissection you performed, you noted the muscular walls of the ventricles. The walls of the atria, however, were much thinner. Why do you think the ventricular walls are so much thicker that the atrial walls?

Answers

Answer:

The correct answer is that ventricles have to pump blood very far in the body.

Explanation:

The human heart contains four chambers. The right chambers of the heart are the right atrium and right ventricle and left side left atrium and left ventricle.

Ventricles have thick walls than atria as they have a thin wall comparatively because they have to do more work than the atrium. The atria are chambers that gets incoming blood. On the other hand, the chambers of ventricles pump the blood out of the heart. Even the left ventricle has thick walls than the right ventricle. Blood is propelled out of the heart with greater pressure from ventricles compared to the atria.

Thus, the correct answer is that ventricles have to pump blood very far in the body.

Select the correct statement's about the primary bronchi:
A) are branches arising from the trachea near the level of vertebra C5.
B) carry air toward each lung
C) are more muscular than cartilaginous.
D) are lined with stratified squamous epithelium.
E) All of these are correct

Answers

Answer:

The answer is B: carry air toward each lung.

Explanation:

The primary bronchi arise from the bifurcation of the trachea at the height of the IV thoracic vertebra, to go to the right and left lungs through its parenchyma; Its walls are made up of a fibrocartilaginous ring and carry air from the trachea to the lungs. The bronchi are covered by cylindrical pseudostratified and ciliated epithelia.

Which type of pulmonary disease affects the inspiratory volume of the lungs?
a. obstructive
b. restrictive

Answers

Answer:

Restrictive lung disease.

Explanation:

Restrictive lung disease may be defined as medical condition in which the lungs cannot be fully expanded. The lung capacity is decreased in this pulmonary disease.

Restrictive lung disease may decrease the inspiratory volume of the lungs whereas the expiratory volume is normal of an individual. This disease may get worse over time.

Thus, the correct answer is option (b).

Both the parasympathetic and sympathetic divisions are part of the somatic motor nervous division.
a. True
b. False

Answers

Answer:

The correct answer will be false

Explanation:

The somatic nervous system is a part of the peripheral nervous system which controls the voluntary action of the muscle which includes afferent and efferent neurons.

The sympathetic and parasympathetic nervous system are the parts of the autonomic nervous system which influences the function of the internal organs like smooth muscle and glands.

Thus, option false will be the correct answer.

Final answer:

The statement is false. The somatic nervous system is separate from the autonomic nervous system, which includes the parasympathetic and sympathetic divisions responsible for involuntary bodily functions. The correct answer is b. False.

Explanation:

The statement that both the parasympathetic and sympathetic divisions are part of the somatic motor nervous division is false.

The motor division of the peripheral nervous system is divided into two parts: the somatic nervous system and the autonomic nervous system. The somatic nervous system controls voluntary muscle movements and sensory information processing, utilizing motor neurons to relay information from the central nervous system to muscles.

In contrast, the autonomic nervous system controls involuntary functions and is divided into the sympathetic and parasympathetic nervous systems. The sympathetic nervous system is often referred to as the 'fight or flight' system, as it prepares the body for stressful situations.

The parasympathetic nervous system, on the other hand, is active during restful periods, promoting a 'rest and digest' state by slowing down the heart rate, among other functions. Therefore, the parasympathetic and sympathetic divisions are part of the autonomic, not the somatic, motor nervous division.

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