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- A doctor is in an emergency situation where a person needs blood so badly that she will die if she doesn’t receive a transfusion. Assume these things: The patient is unable to communicate her blood type to the doctor The doctor does NOT have access to a blood typing test The doctor DOES have access to transfusion supplies, including an IV catheter and a bag of blood with unknown type 17. How might blood compatibility be determined in this scenario? Did you save all the patients?Use the following information to answer questlons1-4: The Rh factor isa protein that can be found on the surface of red blood cells. If your blood cells have this protein, you are Rh positive. If your blood cells do not have this proteir you are Rh negative. The allele that codes for the Rh protein is dominant. In humans a serlous condition can occur when a pregnant Rh negative mother carries a Rh positive fetus The genotype for the mother must be Homozygous dominant not enough information Heterozygous dominant Homozygous recessive The genotype for the father must be homozygous dominant only either heterozygous dominant or homozygous recessive not enough information heterozygous dominant only either heterorygous dominant or homozygous dominant The genotvype for the fetus must be homozygous dominant only heterozygous dominant only either heterozygous dominant or homozygous dominant either heteroryVR dominant or homozygous recessive O000 O0odIf a man has M blood group which of the following is FALSE? Group of answer choices: He is a homozygote His child will always have the M blood type His child’s blood would react to anti-M antibody His blood reacts to anti-M antibody
- A man with type A + blood and a woman with type B + blood have a baby with type O - blood. Calculate the genotype of each: Man = A + : Woman = B + : Baby = 0 -: There is a mix-up at the hospital between parents and babies. As the administrator in charge, you must send the correct baby home with its proper parents. Match proper parents with their baby. Parents #1 AB - and O- and C Parents #2 A - and O- Parents #3 A+ and AB + type for Baby S A + Baby T B- Baby U 0-A mom that is AB+ had a son with a B- man. Describe all possible gametes both parents could produce and list all possible blood types the baby could have, what antigens these blood types would have and what antibodies would be produced in the individual with these blood types. Lastly, explain why this baby would have a hemolytic disease, use the following information: type A hemophilia, a disorder in which blood does not clot properly, is governed by a recessive allele on the X chromosome. Suppose a healthy woman is a carrier and marries a man with hemophilia A, and they are expecting a child. Use XH = normal clotting, Xh = hemophilia. What is the chance the child will be male? What is the chance the child will be a male with hemophilia? What is the chance the child will be a female with hemophilia?
- The following scenario can be seen on Ch 29 Clinical case study on Heredity (27-year-old with normal pregnancy): Mrs. Rodriguez’ blood type is type O, and her husband’s is type A. She is currently pregnant and she would like to know what type of blood her baby will have. For discussion 7 please answer the following questions: What are the genotype and phenotype of Mrs. Rodriguez? What are the genotype and phenotype of Mr. Rodriguez, given that Mr. Rodriguez’s mother has O blood type and his father has A blood type? (use Punnett Square on your worksheet to find out the genotype of Mr. Rodriquez) What is the probability that Mrs. Rodriguez’s baby will have O blood type? A? B? AB? (use Punnett Square as your worksheet) Type O =______% Type A = _____ % Type B =______% Type AB =______%A newborn is typed as A (D) positive and is diagnosed as having hemolytic disease of the newborn due to anti-D. The child's genotype is MOST likely which of the following? DCe/dce dCe/dce DCe/DCe dce/dceinterpret using the punnett square below to both sets of parents (Parents A , Parents B, & Parents C).based on your results of filling in the boxes. What are the chances Parents A, Parents B, and Parents C will have a child with Sickle Cell? What are the chances the child will be a carrier for Sickle Cell?
- A newborn has a positive DAT using anti-IgG AHG. An antibody screen is performed on the newborn's serum and is negative. The newborn forward types as A positive while the mother is O Positive. Explain two possibilities for this result. What is your next step?Complete Punnett square C for an individual with an AO genotype that mates with another AO genotype individual.Given: Father - heterozygous for the H locus of the H antigen, heterozygous for the B locus of the ABO blood group system, heterozygous for the D locus of the Rh blood group system, and deuteranope Mother - heterozygous for the H locus of the H antigen, heterozygous for the A locus of the ABO blood group system, heterozygous for the D locus of the Rh blood group system, and carrier for the trait deuteranopia Task: Using the line fork method, determine the probabilities in ratio form of all possible phenotype combinations of the traits in the biological offspring of the couple. Include the solution