ChallandG. S.RatcliffeW. A.RatcliffeJ. G. (1975). Semi-automated radioimmunoassays for total serum thyroxine and tri-iodothyronine. Clinica Chimica Acta, 60, 25–32.
2.
ChallandG. S.SpencerC. A.RatcliffeJ. G. (1976). Observations on the automated calculation of radioimmunoassay results. Annals of Clinical Biochemistry, 13, 354–360.
3.
ChangP. C.RubinY. T.YuM. (1975). Optimal statistical design of radio-immunoassays and competitive protein-binding assays. Endocrinology, 96, 973–981.
4.
DemingW. E. (1964). Statistical Adjustment of Data.Dover, New York.
5.
DudleyR. A.FigdorH. C.KeroeE. A.MorrisA. C.MitzO. J. (1978). Well scintillation counter with automatic sample changing and data processing: An inexpensive instrument incorporating consumer products. In Radioimmunoassay and Related Procedures in Medicine.International Atomic Energy Agency, Vienna (In press).
6.
EkinsR. P. (1974). Basic principles and theory in radioimmunoassay and saturation analysis. British Medical Journal, 30, 3–11.
7.
EkinsR. P.NewmanG. B. (1970). Theoretical aspects of saturation analysis. Acta Endocrinology, Supplement 147, 11–30.
8.
EkinsR. P.SufiS.MalanP. G. (1978). An 'intelligent’ approach to radioimmunoassay sample counting employing a microprocessor controlled sample counter. In Radioimmunoassay and Related Procedures in Medicine.International Atomic Energy Agency, Vienna (In press).
9.
FinneyD. J. (1976). Radioligand assay. Biometrics, 32, 721–740.
10.
FrazierG. R.RodbardD. (1973). Radioimmunoassay Data Processing (2nd edition). Reports NIH-RIA 72–1 and NIH-RIA 72–2. National Technical Information Service, Springfield, Va, U.S.A.
11.
HalesC. N.RandleP. J. (1963). Immunoassay of insulin with insulin-antibody precipitates. Biochemical Journal, 88, 137–146.
12.
HealeyM. J. R. (1972). Statistical analysis of radio-immunoassay data. Biochemical Journal, 130, 207–210.
13.
JeffcoateS. L.DasR. E. G. (1977). Interlaboratory comparison of radioimmunoassay results. Annals of Clinical Biochemistry, 14, 258–260.
14.
MalanP. G.CoxM. G.LongE. M. R.EkinsR. P. (1978). Development in curve-fitting procedures for radioimmunoassay data using a multiple binding site model. In Computing in Clinical Laboratories, p. 283. Pitman Medical Publishing Co.
15.
MarschnerI.ErhardtF.ScribaP. C. (1973). Calculation of the radioimmunoassay standard curve by spline function. In Radioimmunoassay and Related Procedures in Medicine, p. 111. International Atomic Energy Agency, Vienna.
16.
MeinertC. N.McHughR. B. (1968). The biometry of an isotope displacement immunologic microassay. Mathematical Biosciences, 2, 319–338.
17.
RodbardD.CooperJ. A. (1970). A model for the prediction of confidence limits in radioimmunoassay and competitive protein binding assays. In In vitro Procedures with Radioisotopes in Medicine, p. 659. International Atomic Energy Agency, Vienna.
18.
RodbardD.HuttS. M. (1974). Statistical analysis of radioimmunoassays and immunoradiometric assays. In Radioimmunoassay and Related Procedures in Medicine, 1, 165. International Atomic Energy Agency, Vienna.
19.
RodbardD.MunsonP.De LeanA. (1978). Improved curve fitting, parallelism testing, characterisation of sensitivity and specificity, validation, and optimisation for radioligand assays. In Radioimmunoassay and Related Procedures in Medicine.International Atomic Energy Agency, Vienna (In press).
20.
SandelP.VogtW. (1978). Performance of various arithmetical methods for calculation of radioimmunoassay results. In Radioimmunoassay and Related Procedures in Medicine.International Atomic Energy Agency, Vienna (In press).
21.
WilkinsT. A.ChadneyD. C.BryantJ.PalmstrømS. H.WinderR. L. (1978). Non-linear least squares curve fitting of a simple statistical model to radioimmunoassay dose-response data using a mini-computer. In Radioimmunoassay and Related Procedures in Medicine.International Atomic Energy Agency, Vienna (In press).