Radiation Risk Estimation

Lieferzeit: Lieferbar innerhalb 14 Tagen

144,95 

Based on Measurement Error Models, De Gruyter Series in Mathematics and Life Sciences 5

ISBN: 3110441802
ISBN 13: 9783110441802
Verlag: De Gruyter GmbH
Umfang: XXX, 240 S., 13 s/w Illustr., 13 b/w ill.
Erscheinungsdatum: 06.03.2017
Weitere Autoren: Masiuk, Sergii/Kukush, Alexander/Shklyar, Sergiy et al
Auflage: 1/2017
Format: 1.9 x 25.6 x 17.6
Gewicht: 593 g
Produktform: Gebunden/Hardback
Einband: Gebunden

The De Gruyter Series in Mathematics and Life Sciences is devoted to the publication of monographs in the field. They cover topics and methods in fields of current interest that use mathematical approaches to understand and explain, model and influence phenomena in all areas of life sciences. This includes, among others, theory and application of biological mathematical modeling, complex systems biology, bioinformatics, computational biomodeling stochastic modeling, biostatistics, computational evolutionary biology, comparative genomics, or structural bioinformatics. Also, new types of mathematical problems that arise from biological knowledge shall be covered.

Artikelnummer: 8616717 Kategorie:

Beschreibung

This monograph discusses statistics and risk estimates applied to radiation damage under the presence of measurement errors. The first part covers nonlinear measurement error models, with a particular emphasis on efficiency of regression parameter estimators. In the second part, risk estimation in models with measurement errors is considered. Efficiency of the methods presented is verified using data from radio-epidemiological studies. Contents: Part I - Estimation in regression models with errors in covariates Measurement error models Linear models with classical error Polynomial regression with known variance of classical error Nonlinear and generalized linear models Part II Radiation risk estimation under uncertainty in exposure doses Overview of risk models realized in program package EPICURE Estimation of radiation risk under classical or Berkson multiplicative error in exposure doses Radiation risk estimation for persons exposed by radioiodine as a result of the Chornobyl accident Elements of estimating equations theory Consistency of efficient methods Efficient SIMEX method as a combination of the SIMEX method and the corrected score method Application of regression calibration in the model with additive error in exposure doses

Autorenporträt

S. Masiuk, A. Kukush, S. Shklyar, M. Chepurny, I. Likhtarov, Radiation Protection Institute, Ukraine.

Herstellerkennzeichnung:


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De Gruyter GmbH
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DE

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