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Blood Formation Factors Haemophilia Coagulation X Linked Recessive Body’s

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)
Title Haemophilia is an ... genetic disorder whereby ...
Settings 1,1,0 | n,n,n,n
Text1
X-linked recessive
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Text2
X-linked recessive
the body’s ability to control blood clotting (and hence stop bleeding) is impaired. The formation of a blood clot
...
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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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