Describe how the mammalian (human) circulatory system and the amphibian circulatory system are different. Your description should include any structural differences as well as the effect that structural difference has on the blood . This can be answered in 2 or 3 sentences.
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Describe how the mammalian (human) circulatory system and the amphibian circulatory system are different. Your description should include any structural differences as well as the effect that structural difference has on the blood . This can be answered in 2 or 3 sentences.
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- Write the following structures into sequence as a drop of blood would pass them on the double circuit of a mammalian system. aorta to systemic arteries and arterioles aortic semilunar valve inferior and superior vena cavae left atrioventricular valve (also called biscupid or mitral valve) left atrium left ventricle pulmonary capillaries to venules pulmonary trunk/arteries to arterioles pulmonary semilunar valve pulmonary veins right atrioventricular valve (also called tricuspid valve) right atrium right ventricle systemic capillaries to venules and veinsnote whether the statements below are consistent with an open or closed circulatory system. The circulating fluid flows in one direction (unidirectionally) through a circulatory loop. The circulating fluid is called hemolymph. Ostia are pores in the heart, important for circulatory function. The circulating fluid is called blood. The circulating fluid remains in vessels as it moves throughout the organism. Is the more efficient type of circulatory system.Use this labelled diagram of a human heart & major blood vessels to answer these questions. Which structure is labelled "G"? Aorta • Black arrows indicate direction of blood flow Blue structures contain deoxygenated blood Red structures contain oxygenated blood Cardiac muscle Inferior vena cava Left atrium A- Left ventricle Mitral valve Pulmonary artery Pulmonary valve D- -D Pulmonary veins Right atrium N- Right ventricle M- Superior vena cava G. Tricuspid valve K-
- An organism’s circulatory system functions in transport, delivering nutrients to cell and removing waste. The structure and efficiency of circulatory systems varies in different organisms.note whether the statements below are consistent with an open or closed circulatory system. The circulating fluid flows in one direction (unidirectionally) through a circulatory loop. The circulating fluid is called hemolymph. Ostia are pores in the heart, important for circulatory function. The circulating fluid is called blood. The circulating fluid remains in vessels as it moves throughout the organism. Is the more efficient type of circulatory system.In what 2 ways is an insect's circulatory system different from a vertebrate's circulatory system? (choose 2 answers) Question 14 options: The insect has closed circulatory system. Insects have a tracheal system that delivers oxygen to it's cells directly so it is not associated with the circulatory system. Insects have a tracheal system that delivers oxygen to it's circulatory system. The insect has an open circulatory system instead of one that is closed (as in vertebrates). This means that the circulatory fluid of vertebrates moves much faster than that of insects.Three circulatory systems of vertebrates are represented in the following diagram. Identify to which group of animals each circulatory system belongs and mention the reasons for considering them as such. ↑ Capilares de las branquias Aorta Capilares sanguíneos ↓ Capilares pulmonares Aorta Capilares sanguíneos ↓ Capilares pulmonares Aorta Capilares sanguineos
- Which of the following is the best description of the arthropod circulatory system? Question 6 options: hemocoel regulated by a three-chambered heart hemocoel regulated by a tubular or single-chambered heart pseudocoel with no vasculature and no regulation hemocoel with no vasculature and no regulation pseudocoel regulated by a two-chambered heart with vasculatureUse this labelled diagram of a human heart & major blood vessels to answer these questions. Which structure is labelled "N"? Aorta Black arrows indicate direction of blood flow • Blue structures contain deoxygenated blood Red structures contain oxygenated blood Cardiac muscle Inferior vena cava Left atrium A- В Left ventricle Mitral valve Pulmonary artery Pulmonary valve D D Pulmonary veins Right atrium N- M- Right ventricle F G. Superior vena cava Tricuspid valve K-All of the following are TRUE of a vertebrate whose blood flows directly from the respiratory organs to the body tissues without first returning to the heart, EXCEPT: cannot support a terrestrial lifestyle cannot separate oxygenated blood from deoxygenated blood has a two-chambered heart has a single circuit circulatory system all of these statements are true
- Which of the following is true of the circulatory system of a grasshopper? A. One or more muscular chamber hearts drive blood through the closed circulatory system of the grasshopper. B. The grasshopper has an open circulatory system with a heart that is a peristaltic vessel. C. Because the grasshopper has an open circulatory system, the maximum hemolymph pressures that can be achieved are relatively low, which limits the maximum metabolic rate that can be achieved. D. The grasshopper does not have a specialized circulatory system - instead, its circulatory system consists of the fluid in the body cavity which is circulated by means of the body movements of the animal. E. Both B and C are true of the circulatory system of the grasshopper.Many objects designed by engineers have “circulatory systems” of one type or another. Describe at least three or four examples. Why do engineers sometimes include systems of flowing fluids in objects they design? We often hear it said that animal systems can teach us how to design engineered systems. If you were a biologist teaching a group of engineers about the lessons of animal circulatory systems, what principles would you emphasize?Fill in the table to compare and contrast the structures of the heart and the path of circulation for each organism in the activity. (Check out the hagfish, but you do not need to know the details for its complex circulatory system.) Organism Fish Lungfish Frog Turtle Crocodile Mammal Bird Heart Structure 2 Chambered Heart 2 Chambered Heart 3 Chambered Heart 3 Chambered Heart 4 Chambered Heart 4 Chambered Heart 4 Chambered Heart Mechanism for gas exchange 7022017 Number & type of circulatory loops Single, Closed Single, Closed Double, Closed Double, Closed Double, Closed Double, Closed Double, Closed