Original | X-linked recessive the body’s ability to control blood clotting (and hence stop bleeding) is impaired. The formation of a blood clot is controlled by a cascade of coagulation factors whose genes are located on the X chromosome. When one of these factors becomes defective, fibrin formation is prevented so bleeding continues. Different forms of haemophilia can occur, based on which specific coagulation factor is mutated (e.g. haemophilia A = factor VIII) |
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Title | Haemophilia is an ... genetic disorder whereby ... |
Settings | 1,1,0 | n,n,n,n |
Text1 | X-linked recessive ... ... ... ... |
Text2 | X-linked recessive the body’s ability to control blood clotting (and hence stop bleeding) is impaired. The formation of a blood clot ... ... ... |
Text3 | ... the body’s ability to control blood clotting (and hence stop bleeding) is impaired. The formation of a blood clot is controlled by a cascade of coagulation factors whose genes are located on the X chromosome. When one of these factors ... ... |
Text4 | ... ... is controlled by a cascade of coagulation factors whose genes are located on the X chromosome. When one of these factors becomes defective, fibrin formation is prevented so bleeding continues. Different forms of haemophilia can occur, based on ... |
Text5 | ... ... ... becomes defective, fibrin formation is prevented so bleeding continues. Different forms of haemophilia can occur, based on which specific coagulation factor is mutated (e.g. haemophilia A = factor VIII) |
Full | X-linked recessive the body’s ability to control blood clotting (and hence stop bleeding) is impaired. The formation of a blood clot is controlled by a cascade of coagulation factors whose genes are located on the X chromosome. When one of these factors becomes defective, fibrin formation is prevented so bleeding continues. Different forms of haemophilia can occur, based on which specific coagulation factor is mutated (e.g. haemophilia A = factor VIII) |
Tags: 3_4_inheritance, haemophilia
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