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・ Erythrochiton giganteus
・ Erythrochiton gymnanthus
・ Erythrochiton jucundum
・ Erythrochiton nigrosignatum
・ Erythrochiton rubronigrum
・ Erythrochiton sellatum
・ Erythrocles
・ Erythrococca
・ Erythrococca columnaris
・ Erythrococca molleri
・ Erythrocrine
・ Erythrocruorin
・ Erythroculter
・ Erythrocyanosis crurum
・ Erythrocytapheresis
Erythrocyte aggregation
・ Erythrocyte deformability
・ Erythrocyte fragility
・ Erythrocyte rosetting
・ Erythrocyte sedimentation rate
・ Erythrodecton
・ Erythroderma
・ Erythrodermic mastocytosis
・ Erythrodes
・ Erythrodiplax
・ Erythrodiplax bromeliicola
・ Erythrodontia
・ Erythroecia
・ Erythroferrone
・ Erythrogenic toxin


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Erythrocyte aggregation : ウィキペディア英語版
Erythrocyte aggregation
Erythrocyte aggregation is the reversible clumping of these cells under low shear forces or at stasis. Erythrocytes aggregate in a special way, forming rouleaux. Rouleaux are stacks of erythrocytes which form because of the unique discoid shape of the cells in vertebrate body. The flat surface of the discoid RBCs give them a large surface area to make contact and stick to each other; thus, forming a rouleau. Rouleaux formation takes place only in suspensions of RBC containing high-molecular, fibrilar proteins or polymers in the suspending medium (often Dextran-2000 in-vitro). The most important protein causing rouleaux formation in plasma is fibrinogen. RBC suspended in simple salt solutions do not form rouleaux.
==Mechanism==
Erythrocyte aggregation is a physiological phenomenon that takes places in normal blood under low-flow conditions or at stasis. The presence or increased concentrations of acute phase proteins, particularly fibrinogen, results in enhanced erythrocyte aggregation.
Current experimental and theoretical evidence supports the mechanism related to the depletion of high-molecular weight molecules (e.g., fibrinogen) for rouleaux formation. This mechanism is also known as “chemiosmotic hypothesis” for aggregation.
Erythrocyte aggregation is determined by both suspending phase (blood plasma) and cellular properties. Surface properties of erythrocytes, such as surface charge density strongly influence the extent and time course of aggregation.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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