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References

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  1. J. F. Thery, Thesis de Doctorat, GRETSI, Nice (1977).
  2. J. Cornillault, “Particle Size Analyzer,” Appl. Opt. 11, 265 (1972).
    [CrossRef] [PubMed]
  3. M. Born, E. Wolf, Principles of Optics (Pergamon, London, 1959), pp. 369–399.
  4. W. Pollack et al., “A Study of the Forces Involved in the Second Stage of Haemagglutination,” Transfusion 5, No.2, 158 (1965).
    [CrossRef]
  5. M. Bessis, L. S. Lessin, “The Discocyte-Echinocyte Equilibrium of the Normal and Pathologic Red Cells,” Blood 36, 399 (1970).
    [PubMed]

1972 (1)

1970 (1)

M. Bessis, L. S. Lessin, “The Discocyte-Echinocyte Equilibrium of the Normal and Pathologic Red Cells,” Blood 36, 399 (1970).
[PubMed]

1965 (1)

W. Pollack et al., “A Study of the Forces Involved in the Second Stage of Haemagglutination,” Transfusion 5, No.2, 158 (1965).
[CrossRef]

Bessis, M.

M. Bessis, L. S. Lessin, “The Discocyte-Echinocyte Equilibrium of the Normal and Pathologic Red Cells,” Blood 36, 399 (1970).
[PubMed]

Born, M.

M. Born, E. Wolf, Principles of Optics (Pergamon, London, 1959), pp. 369–399.

Cornillault, J.

Lessin, L. S.

M. Bessis, L. S. Lessin, “The Discocyte-Echinocyte Equilibrium of the Normal and Pathologic Red Cells,” Blood 36, 399 (1970).
[PubMed]

Pollack, W.

W. Pollack et al., “A Study of the Forces Involved in the Second Stage of Haemagglutination,” Transfusion 5, No.2, 158 (1965).
[CrossRef]

Thery, J. F.

J. F. Thery, Thesis de Doctorat, GRETSI, Nice (1977).

Wolf, E.

M. Born, E. Wolf, Principles of Optics (Pergamon, London, 1959), pp. 369–399.

Appl. Opt. (1)

Blood (1)

M. Bessis, L. S. Lessin, “The Discocyte-Echinocyte Equilibrium of the Normal and Pathologic Red Cells,” Blood 36, 399 (1970).
[PubMed]

Transfusion (1)

W. Pollack et al., “A Study of the Forces Involved in the Second Stage of Haemagglutination,” Transfusion 5, No.2, 158 (1965).
[CrossRef]

Other (2)

J. F. Thery, Thesis de Doctorat, GRETSI, Nice (1977).

M. Born, E. Wolf, Principles of Optics (Pergamon, London, 1959), pp. 369–399.

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Figures (3)

Fig. 1
Fig. 1

Experimental arrangement: laser, He–Ne laser; MO, microscope objective; L1, collimator lens; L2, transformer lens; M1,M2, mirrors; PMT, photomultiplier tube; DMA, digital microammeter; X-Y recorder.

Fig. 2
Fig. 2

Typical diagram L(r) vs r obtained from 1/64 and 1/128 antiserum dilutions and from a single layer of free erythrocytes.

Fig. 3
Fig. 3

Diagram L(r) vs r obtained from the same sample (1/128 antiserum dilution) at different periods of incubation (2 and 17 min).

Tables (1)

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Table I Obtained Values of Haemagglutination Parameter

Equations (2)

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I ( r ) = | 2 J 1 ( k a r / R ) ( k a r / R ) | 2 N I 0 ,
L ( r ) = 1 E 0 2 π 0 r I ( r ) r d r d θ = 1 J 0 2 ( k a ̅ r / R ) J 1 2 ( k a ̅ r / R ) ,

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