which feature distinguishes protostomes from deuterostomes? body plan symmetry position of blastopore in embryo anterior brain presence of mesoderm in embryonic development

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Answer 1

The feature distinguishes protostomes from deuterostomes is the position of blastopore in embryo (option B)

Metazoans are classified as protostomes or deuterostomes depending on how they develop during the embryonic stage. Understanding the links between various animal groupings is made easier by this divide. The primary distinction between protostomes and deuterostomes is the development of the blastopore into a mouth in protostomes as opposed to an 4nal opening in deuterostomes.  

The fate of the blastopore throughout their embryonic development is the main distinction between protostomes and deuterostomes. A protostome's blastopore matures into a mouth, whereas a deuterostome's blastopore turns into an 4nal aperture.

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Related Questions

At which position of the codon do scientists observe wobble base pairing; first, second or third?

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Scientist observe wobble base pairing at the third position of the codon (See picture).

The pairing of two nucleotides in an RNA molecule known as a wobble base pair deviates from the Watson-Crick base pair rules. Because hypoxanthine is the nucleobase of inosine, "I" is used for it in the nomenclature of nucleic acids; otherwise, names of nucleobases and the nucleosides they correlate with are used.

The Wobble Hypothesis, put out by Francis Crick, attempts to explain this. He proposed that the 5' base on the anticodon, which binds to the 3' base on the mRNA, was not as tightly packed in space as the other two bases and might, therefore, have unconventional base pairing. Crick gave it a clever moniker based on the slight "play" or wobble that takes place at the third codon position.

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what is the temperature in kansas city for the football game?

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The weather for the Bills-Chiefs National Football League game at GEHA Field at Arrowhead Stadium in Kansas City, Missouri on October 16, 2022 will be 63° cloudy with a 0% chance of precipitation.

Kansas City is on the western edge of Missouri, straddling the Kansas border. Known for its barbecue, jazz heritage and fountains. The American Jazz Museum downtown shares a building with the Negro League Baseball Museum in the historic 18th Street and Vine Jazz District. Temperature is defined as a measure of the average kinetic energy of all particles in a substance. The faster particles move through a substance, the higher the average kinetic energy of the substance, the higher the temperature, and the warmer it feels.  

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Where is the KE (kinetic) the highest? When the spring is at the?
A-bottom
B- middle
C- top


Where is the PEgray (potential energy from gravity) the highest?
A-bottom
B- middle
C- top


Where is the PEelas (elastic potential energy) the highest?
A- bottom
B-middle
C-top


Is work being done with mass?
If so explain why, if not explain why.

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Answer: B C A

Explanation: Trust me

a) what is the minimum number of mitochondrial trnas required to recognize glutamine codons? what sort of interaction does this capitalize on?

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Two minimum numbers of mitochondrial tRNAs are required to recognize glutamine codon. It is capitalized for codon-specific interaction.

There are 37 genes contained in mitochondrial DNA, and every single one of them is required for proper mitochondrial function. Thirteen of these genes are responsible for providing instructions on how to generate enzymes related to oxidative phosphorylation. ATP, also known as adenosine triphosphate, is the principal source of energy that is produced by cells.

This process, known as oxidative phosphorylation, requires oxygen and simple carbohydrates as its inputs. The remaining genes are responsible for providing the instructions needed to manufacture DNA's chemical cousins, ribosomal RNA (rRNA) and transfer RNA (tRNA), respectively. These different forms of RNA play an important role in the construction of functional proteins from their constituent amino acid building blocks.

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in a cross between a white-eyed female fruit fly and a red-eyed male fruit fly, what is the expected outcome?

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The expected outcome is  Two X chromosomes in female fly

Red eyed females and white eyed men result from the cross of a white eyed female and a red eyed man.

This hybrid may occasionally produce entirely white-eyed females and red-eyed males. This is caused by the non-separation of two homologous X chromosomes during meiosis's anaphase I.

Both X chromosomes go to the same pole, resulting in the creation of one gamete with XX and one without.

Fertilization of a XX gamete with Y-sperm produces XXY (white eyed females), while fertilization of a XX gamete with X-sperm produces red eyd men (X).

This is referred to as non-disjunction of two X chromosomes.

so the final outcome is Two X chromosomes in female fly

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tay-sachs is an autosomal recessive condition that results from a mutation in a gene encoding the lysosomal enzyme, hexa,that normally degrades a specific type of lipid in brain cells. failure to degrade the lipid results in degradation of brain neurons, and results in death in infancy or early childhood. phil and claire have a child with tay-sachs. what is the probability that their next two children will also have tay-sachs?

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The probability that Phil and Claire's next two children will both have Tay-Sachs is 6.25%.

Both Phil and Claire are carriers of the Tay-Sachs gene, meaning they each have one normal copy of the gene and one mutated copy. When two carriers have a child, each child has a 25% chance of inheriting two copies of the mutated gene and therefore having Tay-Sachs. The probability of having two children with Tay-Sachs in a row is (0.25) * (0.25) = 0.0625, or 6.25%. This means that there is a 6.25% chance that their next two children will both have Tay-Sachs.

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can you differentiate the obstructive pulmonary disorders? drag the statements that apply to each into the box.

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Obstructive pulmonary disorders : Symptoms include loud snoring and unrestful sleep ,Diagnosis requires a sleep study ,Obesity is a risk factor option  (a, e,f )

Chronic obstructive pulmonary disease (COPD), which includes chronic bronchitis and emphysema, is a lung condition that causes difficulty breathing over time. Millions of Americans are affected by the illness, which is a primary cause of disability and mortality in the United States. The good news is that COPD is frequently avoidable and treated.

The American Lung Association is dedicated to assisting persons suffering with COPD. We provide a range of tools and illness information. Check out some of our most important COPD support and education tools listed below. Alternatively, scroll down to see our whole COPD section.

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Full Question: Can you differentiate the obstructive pulmonary disorders? Drag the statements that apply to each into the box.

Obstructive sleep apnea

Also called hyperventilation syndrome

Involves recurrent episodes of sleep apnea 5 to 7 minutes in duration

Symptoms include loud snoring and unrestful sleep

Diagnosis requires a sleep study

Obesity is a risk factor

which characteristic would not be considered useful for a model genetic organism? easy to make crosses and evaluate offspring a long generation time inexpensive to house and propagate large numbers of offspring adaptability to a laboratory environment

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It's possible that a model genetic organism with a lengthy generation time is useless.

All over the world, model organisms are crucial tools used by scientists. These organisms are easy to maintain in the lab, share a large number of genes with humans, and reproduce quickly, making it easier to study the effects of genetic engineering.

A model organism is a species that has undergone extensive research. This is frequently due to the species' ease of maintenance, propensity for procreation, and advantageous experimental characteristics.

To better understand biological processes, researchers use non-human species as models in the lab. Usually, they are easy to take care of and breed in a lab setting.

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as blood circulates, it transports inhaled __ from the lungs to body cells and __ from body cells to the lungs to be exhaled.

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As the blood flows, it carries carbon dioxide from the body cells to the lungs for exhalation and oxygen that has been inhaled from the lungs to the cells of the body.

One of its primary functions is blood transport. Blood veins mimic a network of streets where mail is delivered and garbage is collected. Blood circulates oxygen, minerals, hormones, and waste products like carbon dioxide throughout the body. The heart continually pumps blood throughout the body, allowing for constant blood flow.

The purpose of red blood cells is to transport oxygen. They have a bi-concave shape that increases the surface area available for absorbing oxygen, a thin membrane that easily allows gases to pass through it, are tiny and flexible to fit through small vessels, and contain hemoglobin, which binds to oxygen.

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whether bacterium or blue whale, every organism is made of __________

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whether bacterium or blue whale, every organism is made of cells.

How come it is called a cell?

After using a very primitive microscope to examine a piece of cork, Robert Hooke proposed the name "cell" in 1665, derived from the Latin cella, which means "storeroom or chamber."It is also claimed that he believed the rectangular spaces resembled some monastic cells.

What do cells go by?

The fundamental units of all living organisms are cells.There are many billions of cells in a human body.They give the body structure, absorb nutrients from meals, turn those into energy, and perform certain tasks.

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according to regan, with regard to animal agriculture, the goal of the animal rights movement should be:

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According to the philosopher Tom Regan, the goal of the animal rights movement with regard to animal agriculture should be to abolish it entirely.

Regan argues that animals have inherent value and should not be treated as mere property or commodities to be used for human benefit. He believes that animals have the same moral rights as humans, and therefore, it is wrong to use them for food, clothing, or other purposes.

Regan argues that animal agriculture violates the rights of animals by denying them the ability to pursue their own interests, such as avoiding pain and fear, and pursuing their own happiness.

He believes that the only way to respect animal rights is to abolish animal agriculture and to find alternative sources of food and other products. Regan argues that it is not enough to simply improve the treatment of animals within agriculture, but that the entire industry must be abolished in order to truly respect animal rights.

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Proteins with more than one polypeptide chain are said to have a ______ structure.

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Proteins with more than one polypeptide chain are said to have a Quaternary Structure.

Quaternary Structure refers to the structure of a protein macromolecule formed by interactions between multiple polypeptide chains. Each polypeptide chain is referred to as a subunit. Proteins with quaternary structure may consist of more than one of the same type of protein subunit. They may also be composed of different subunits. Hemoglobin is an example of a protein with quaternary structure. Hemoglobin, found in the blood, is an iron-containing protein that binds oxygen molecules. It contains four subunits: two alpha subunits and two beta subunits.

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in human females, germ-line cells that undergo meiosis are found in what organ?

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As germ cells that undergo meiosis and mature into oocytes, future eggs are created. Females are born frozen during their first meiotic prophase because they have a finite number of oocytes.

What is an oocyte's purpose?

In reproductive biology, an oocyte's role is to fuse into sperm after fertilization, develop into such an embryo followed by a blastocyst, and then go through a process called implantation when it connects to the uterine wall.

The oocyte is where?

The embryonic eggs are known as oocytes (an immature ovum). Oocytes develop to their fullest extent inside a follicle. These follicles are found in the outer layer of the ovaries.

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macrophages act as group of answer choices scavengers of worn-out cells. vectors of pathogens. destroyers of infected and cancerous cells. healers of damaged cells.

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macrophages act as: scavengers of worn-out cells.Animals known as scavengers eat dead creatures that have either perished naturally or have been consumed by other predators.

The innate immune system's macrophages are a kind of white blood cell that engulfs and digests pathogens including cancer cells, bacteria, cellular debris, and foreign objects that lack proteins that are particular to healthy body cells. Phagocytosis is the procedure, and it serves to protect the body from damage and infection. These larges may be found in almost all tissues, where they use amoeboid mobility to search for possible pathogens. They all belong to the mononuclear phagocyte system, however they have different shapes and names across the body. In addition to phagocytosis, they are essential for innate immunity's generic defence and assist kickstart adaptive immunity's specific defensive mechanisms by enlisting the aid of other immune cells like lymphocytes.

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complete question:macrophages act as:

A) scavengers of worn-out cells

B) healers of damaged cells

C) vectors of pathogens

D) destroyers of infected and cancerous cells

conifer trees are most likely to be found in which biome

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Conifer trees are most likely to be found in the temperate and boreal coniferous forests, also known as taiga or boreal forests.

These northern hemisphere biomes are distinguished by long, cold winters and brief, warm summers. These biomes have a narrow temperature range, with typical wintertime lows of -40°C (-40°F) and summertime highs of 20°C (68°F). Conifer trees, such pines, firs, and spruces, are well adapted to the low temperatures and brief growth seasons in these biomes, which restrict the types of flora that can flourish.

Conifer trees, which can withstand the cold and difficult growing circumstances, are significant elements of these biomes. They frequently have an ongoing energy source even in the winter because they are evergreen, which means they keep their leaves all year.

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the membrane proteins that bind with specific substrates and change shape to transport them across the cell membrane are .

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Carrier proteins are the membrane proteins that bind with specific substrates and change shape to transport them across the cell membrane.

What is the role of membrane protein?

Membrane proteins play an important role in the cell membrane by binding with specific substrates and changing shape to transport them across These proteins are responsible for a variety of functions, including the transport of nutrients, ions, and other molecules into and out of the cell. They also help regulate cellular processes such as signal transduction and cell-cell communication. In order to carry out these functions, membrane proteins must have a special ability to bind with specific substrates and change shape to allow them to pass through the cell membrane. This process is essential for maintaining homeostasis in cells and is necessary for their survival.

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red blood cells are red because they contain an abundance of the pigment protein called?

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(Hemoglobin) is the oxygen-carrying protein that is found within all RBCs. It picks up oxygen where it is abundant (the lungs) and drops off oxygen where it is needed around the body. Hemoglobin is also the pigment that gives RBCs their red color.

during drug evaluation, chemicals that may have therapeutic value are tested on laboratory animals and would be considered in which stage of development?

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During drug evaluation, chemicals that may have therapeutic value are tested on laboratory animals in the preclinical stage of development.

The preclinical stage refers to the initial testing and evaluation of a drug candidate in a laboratory setting and in animals, before it is tested in human trials.

In this stage, the potential efficacy and safety of the drug candidate is evaluated, and the appropriate dose and administration method are determined. The results of the preclinical testing are used to determine whether the drug candidate should progress to clinical trials.

This stage is critical in the drug development process as it provides important information about the safety and potential efficacy of the drug candidate before it is tested in humans.

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When an allele is the only variant in the population it is said to be... a. Drifted b. Fixedc. Completed. Whole

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An allele is a variant form of a gene, and it can occur in different populations. When an allele is the only variant present in a population, it is referred to as being "fixed." So option b is correct.

This means that all individuals in the population have the same version of the gene and that alternative forms of the gene have been lost over time. The process by which an allele becomes fixed is known as genetic drift, where random changes in gene frequency occur due to chance events such as mutations, migration, and genetic drift. Once an allele is fixed, it can no longer change and becomes a permanent feature of the population. This process can have a significant impact on the characteristics and evolution of a species over time.

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which appendage provides the ability to attach to surfaces and other cells?

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The ability to adhere to surfaces and other cells is provided by filaments and pili, which are appendages that are essential to many cellular activities.

What are appendages?

Any extensions or outgrowths that are joined to a major body or structure are referred to be appendages. Numerous creatures, including animals, plants, and microbes, contain them in a variety of forms.

Depending on the organism and the form of attachment, the appendage that allows for attachment to surfaces and other cells is referred to as a filament or a pilus. Many bacteria and certain eukaryotic cells have protein structures called filaments and pili on their surfaces. They act as an adhesion mechanism, enabling cells to cling to surfaces, to one another, and to other things.

Pili in bacteria serve a number of purposes, such as the exchange of genetic material during conjugation, affixedness to surfaces for colonisation, and biofilm development. In eukaryotes, filaments contribute to cytoskeleton development, cell movement, and cell-to-cell adhesion.

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according to schmidt's motor program-based theory of motor control, the mechanism primarily responsible for the control of coordinated movement, the gmp, controls:

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The primary mechanism for controlling coordinated movement controls, according to Schmidt's motor program-based theory of motor control: every action that uses the same limb.

What exactly does Schmidt's motor program entail?

A generalized motor program, or GMP—a set of motor commands that are specified prior to movement initiation—is retrieved from memory and then adapted to a particular circumstance, according to schema theory (Schmidt, 1975).

Hypothetical variables stored in memory that, when recalled, transform into necessary motor patterns are referred to as motor programs. The study of the processes involved in acquiring and refining skills is known as motor learning or skill-based training. It regularly provides coaches and players with essential techniques and strategies.

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Reactants called _______ bind to an enzyme’s _______ site where a chemical reaction takes place.

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Substrate, active site. Substrates are the reactants in an enzyme-catalyzed process.

Until the reaction is complete, and the products are released, chemicals bind in the active site of an enzyme. Chemical reactants known as substrates are what enzymes bind to. Each type of enzyme may have one or many substrates, depending on the particular chemical reaction. The substrate binds to the enzyme by interacting with the amino acids in the binding site. The binding region on enzymes is commonly called the active site because it contains amino acids that both bind the substrate and aid in its conversion into product.

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PLEASE HELP WILL GIVE BRAINLIST TO BEST ASNWER
Complete the Cladogram
Explain why u put the organisms the cladogram

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Answer:

You do this in order to show evolution. This shows the time line of organisms and how they have evolved over years and mutated in different ways.

Explanation:

compared to axons without myelin sheaths, what is the speed of action potentials through axons with a myelin sheath

Answers

By lowering resistance and enabling saltatory conduction, myelination speeds up action potentials.

What is Saltatory conduction?

When electrical signals move quickly along myelinated axons, they bounce from node to node rather of flowing continuously along the entire axon. Compared to unmyelinated axons, where the signal flows continuously along the length of the axon, this leads to faster signal transmission.

Axons with a myelin sheath conduct action potentials more quickly than those without one. Myelin serves as an insulating layer around the axon, lowering the barrier to electrical signal flow and facilitating faster transmission.

Electrical signals go from one Ranvier node to the next in unmyelinated axons, but in myelinated axons, they leap from one node to the next, thus "skipping" the internode segments. This technique, known as saltatory conduction, causes electrical signals to travel through the axon considerably more quickly, enabling quick communication between neurons in the nervous system.

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the three main components of connective tissue are: a. collagen, elastin, and reticular fibers. b. alveoli, fibrous capsule, and secretory cells. c. ground substance, fibers, and cells. d. fibroblasts, chondroblasts, and osteoblasts.

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The correct answer to this question is (c) ground substance, fibers, and cells. The three main components of connective tissue are the substances above.

Along with epithelial tissue, muscle tissue, and nerve tissue, connective tissue, often known as fibrous tissue, is one of the four main forms of animal tissue. It develops from the mesenchyme, which comes from the intermediate embryonic germ layer known as mesoderm. All over the body, including the neurological system, connective tissue covers the gaps between diverse tissues. Connective tissue makes up the three meninges, which are membranes that protect the brain and spinal cord.

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Glucose, protein, glycerol, and long-chain fatty acids are absorbed from the small intestine directly into the bloodstream. True/False

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False, Glucose, protein, glycerol, and long-chain fatty acids are absorbed from the small intestine directly into the bloodstream.

Smaller molecules can move through the lumen of the small intestine and down its walls. Glycerol, protein, and long-chain fatty acids cannot pass through the wall of the small intestine; as a result, they must first be converted into simpler molecules before being absorbed into the lumen of the small intestine and into the blood.

The entrance within a tubular body structure is known as the lumen, and it is bordered by an epithelial membrane, which is a type of body tissue. The large and small intestines, veins, and arteries are some bodily organs that contain lumens.

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members of this phylum have cells that are a non-walled, multinucleate mass called a plasmodium.

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Myxogastrida is a phylum whose members have cells which are non-walled as well as multinucleate mass that is known as plasmodium.

Myxogastrida is basically a phylum which consists of slime molds. It consists of cells which do not have walls and have a multinucleate mass which is called a plasmodium.

Most of the species pass through several as well as different morphologic phases, like microscopic individual cells which are slimy amorphous organisms that are visible with the bare eyes and have conspicuously shaped fruit bodies.

They are distributed worldwide, but they are more commonly found in the temperate regions where they have a higher biodiversity as compared to the polar regions, the subtropics or the tropics. They are found mainly in the open forests and even in extreme regions like deserts, under snow blankets or even underwater.

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3. bacteria play central biological roles. explain how bacteria can be altered to make genetically engineered products.

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Bacteria are altered genetically in order to make genetically engineered products by using various methods of genetic engineering.

Bacteria can be altered in order to produce genetically engineered products by cutting the plasmid, which is the bacteria's circular DNA, in the section in which the alteration is required. This is done using restriction enzymes that are able to cut DNA at some specific sites, producing DNA   fragments which have sticky ends.  

The target DNA is introduced into the host through a vector. These genetically modified bacteria happen to find numerous potential application in the field of medicine, biology, agriculture, technology etc.

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the major tissue type that acts as a gatekeeper because it regulates the movement of materials in and out of certain body regions is?

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Common Purposes of Epithelial Tissue The cells of the an epithelium serve as the body's gatekeepers, regulating permeability and permitting only specific elements to pass through a physical barrier.Every substance entering the body must pass via an epithelium.

What kind of tissue serves as the gatekeeper?

Veins, lymphatic channels, and arteries all share a crucial characteristic.Endothelium is a sort of tissue that lines each one of them.Some cells are allowed into the vessels while other cells are kept out by the endothelium, which serves as a gatekeeper.Additionally, it lowers blood pressure.

Which kind of epithelial tissue serves as a protective layer?

Squamous epithelium stratified:This kind of epithelium typically performs defensive tasks, such as preventing bacteria from penetrating deeper tissues and/or preventing water loss.

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during the regeneration process of the skin after an injury, what is the combination of blood clot, fibroblasts, and an extensive capillary network called?

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the answer is granulation tissue
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