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11.- What do gill lamellae and the infoldings in Anuran lungs havein common?- How do both of these structures help to maximize function?...

Question

11.- What do gill lamellae and the infoldings in Anuran lungs havein common?- How do both of these structures help to maximize function?

11. - What do gill lamellae and the infoldings in Anuran lungs have in common? - How do both of these structures help to maximize function?



Answers

How are the lungs similar to the stomata of plants, and how are they different?

So the question here asked us how our lungs similar to this tamada of plants. So if we recall here, lungs are going to be the place where carbon dioxide and oxygen exchange occurs. In a similar case, this is gonna Onley occur generally in animals here. Um whereas Tamada are going to essentially function as a similar role where it exchanges carbon dioxide and, um, oxygen here. But in this particular case, it's going to be in plants here. So the way at which still model work are that they essentially, um, can open and close. So these can open and close particular channels based on the electric, um, response to the plan itself to the environment here, and it's gonna allow costumes to flow in and out. However, in, um conscious your lungs arm or ah, lot more complicated. And these have to essentially have various layers. It goes down from our lungs until, like, bronchi, ALS and essentially bronc heels, or where the sites of oxygen exchange occurs in the blood. In this particular case. So essentially, these were just some brief differences between similarities and differences between the lungs and this tamada of planets

Hi in this video, we are talking about lungs and kind of trying to compare the lungs of the major vertebrate groups, essentially. What happens is as you get more advanced, you see more compartmentalization in the lungs. And the whole goal of that is to increase the surface area over which oxygen diffusion can take place so that you can get more oxygen into the bloodstream and into the tissues, as well as having a chance to get carbon dioxide to diffuse out. So this first lung might represent something like a salamander. So you have along just the sacks shape structure and you have some partitions within that long and the partitions are going to be places again, it's increasing the surface area where gas exchange can occur. But there are smaller animals, they need less oxygen. So the lungs work for for what they have. Um This next one might represent a step up something like a frog, still a still an amphibian. But it has more compartments. The compartments the partitions have become folded so that you can see the every time you fold something you give it more sides and so more surface area. The next one might be a wizard. And so you see that again, every time we go up or getting more surface area for gas exchange and then finally something like a mammal. Or you have many, many bronc heels leading to millions uh valvoline so that the compartmentalization has become magnified, creating enormous amounts of surface area for the gas exchange to occur so that you can get oxygen rich blood into the body. So that's just sort of a general way that the lung structure differs as you go up from a less advanced animals to more advanced animals. Thanks again for watching. Have a great day.

So both fish and birds have supportive skeletons of bone and cartilage skeletons include a cranium, vertebrae and paired appendages. Both have muscles that attach to these bones and Aidan movement. Bird skeletons are lightweight and mostly thin and hollow bones. The keel shaped sternum is where powerful light muscles attached to the body parts of fish skeletons will grow within their skin and become the hard spines of the fins and hard plates within their scales. They use these fins to steer themselves through the water. Both fish and birds rely heavily on these strong bone structures for movement.

This question asks, what is the main difference between the respiratory organ of fish and that of humans in terms of where they're located in the body. So fish have gills and humans have lungs. Um, once we identify that, those air the organs that we're actually talking about, the rest of this problem is very straightforward. So gills or the respiratory organ of fish extend outward from the body into their surrounding environment. So we're gonna say there outward from the body, contrastingly lungs or our respiratory organs reside inside our bodies. And that's all that they're looking at or looking. Teoh, answer with this question.


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