Der Hypophysen-Schilddrüsen-Regelkreis

Entwicklung und klinische Anwendung eines nichtlinearen Modells

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Last edited by Johannes W. Dietrich
July 25, 2014 | History

Der Hypophysen-Schilddrüsen-Regelkreis

Entwicklung und klinische Anwendung eines nichtlinearen Modells

  • 2 Want to read
  • 1 Currently reading

Thyroid hormones play a central role in metbolic coordination. Robust control of thyroid homeostasis is therefore essential for survival and reproduction.

In 1940, eleven years after the discovery of the thyrotropic hormone TSH by Aron in the year 1929, W. T. Salter postulated the existence of a feedback loop linking pituitary and thyroid gland, similarly to the two gonadotropic feedback control loops that had been described shortly before. Salter's hypothesis could be proved by Astwood and Hoskins only a few years later. In 1968, Panda and Turner succeeded in a quantitative description ot the interdependence of thyroxine and TSH levels, but the first mathematical models of the feedback loop had already been developed up to 12 years earlier.

Over the years, cybernetic models of thyroid homeostasis were increasingly improved, a success that was also enabled by growing empirical data. As a consequence of this continued evolution, some of the newest models are also suitable for medical decision making.

This book is a comprehensive description of one of these novel "parametrically isomorphic" models. It describes mathematical and computational aspects of this model as well as a diagnostic tool (SPINA Thyr) that allows for evaluating the thyroid's secretory capacity (GT) and sum activity of peripheral deiodinases (GD).

Additionally, it describes reference ranges for GT and GD in a healthy population and the distributions of both structure parameters in patients suffering from selected thyroid diseases. A last section is devoted to diagnostic power of secretory capacity and deiodinase sum activity in terms of sensitivity, specificity and likelihood ratios.

Publish Date
Language
German
Pages
195

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Book Details


Table of Contents

1 Einleitung. 1
2 Theoretische Grundlagen. 9
2.1 Methoden der biologischen Kybernetik. 9
2.2 Das Wirkungsgefüge des thyreotropen Regelkreises. 18
2.3 Signale, Bausteine und Organisationsstrukturen. 20
3 Entwicklung eines nichtlinearen Regelkreis-Modells. 25
3.1 Einzelgleichungen der Übertragungsglieder. 29
3.2 Vorhersage von Hormonkonzentrationen im Gleichgewicht. 35
3.3 Rechnersimulationen. 41
3.4 Parametrisierung des Modells. 46
3.5 Evaluation. 52
4 Deduktion eines diagnostischen Verfahrens aus dem Modell. 57
4.1 SPINA - Ein Ansatz zur Ermittlung von Strukturparametern des Regelkreises. 57
4.2 Design einer Diagnostikstudie für epidemiologische Grunddaten (Phase I). 59
4.3 Experimentelle Anwendung der Referenzwerte in einem retrospektiven Ansatz (Phase II). 61
4.4 Statistische Auswertung. 65
4.5 Entwicklung von Software für die praktische Anwendung. 66
5 Ergebnisse, Bewertung und Anwendung. 69
5.1 Modellevaluation. 69
5.1.1 Vorhergesagte Gleichgewichtskonzentrationen. 69
5.1.2 Zeitverhalten in Ruhe. 70
5.1.3 Verhalten bei Belastungen. 75
5.1.4 Simulierte Funktionsstörungen. 78
5.2 Methodenevaluation. 87
5.2.1 Verteilung der Verhaltens- und Strukturparameter bei Gesunden und Kranken. 93
5.2.2 Diagnostische Wertigkeit der Parameter. 113
5.3 Berechnungs-Software. 118
6 Diskussion. 121
7 Zusammenfassung. 133
8 Literaturverzeichnis. 135
8.1 Druckwerke. 135
8.2 Internet-Ressourcen und Online-Materialien. 141
9 Anhang. 143
9.1 Symbolverzeichnis. 143
9.2 Wirkungsgefüge des Gesamtmodells. 147
9.3 Ausgewählte Quelltexte der entwickelten Programme. 151
9.3.1 Simulationsprogramm "SimThyr". 151
9.3.2 Rechenhilfe "SpinaThyr". 161
9.3.3 SPINA-Thyr (CGI-Version). 164
9.3.4 Berechnungsprogramm für die Korrelationsdimension "CD2". 167
9.4 Abdruck des standardisierten Anamnesebogens. 175
9.5 Korrelationsgraphiken zur Berechnung der fraktalen Dimension. 177
9.6 ROC-Kurven. 181

Edition Notes

Published in
Berlin, Germany
Series
Spektrum medizinischer Forschung ; Bd. 2

Classifications

Universal Decimal Classification
519.7:[577+616-092+612.4+616-008+616-092+616.4]=30

The Physical Object

Format
Paperback
Pagination
VI, 188
Number of pages
195
Dimensions
20.5 x 14.5 x 1.2 centimeters
Weight
280 grams

ID Numbers

Open Library
OL24586469M
ISBN 10
3897228505
ISBN 13
9783897228504
OCLC/WorldCat
50451543
niedersächsische_staats-_und_universitätsbibliothek_göttingen
2002 A 25878
amazon.de_asin
3897228505
Deutsche National Bibliothek
963812734
mathematic_subject_classification
93C10
staats-_und_universitätsbibliothek_hamburg
2002 U 1849
Bayerische Staatsbibliothek BSB-ID
2002.846
university_library_of_the_ludwig-maximilian_university_of_munich
0700/UMD 9532

Source records

amazon.com record

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History

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July 25, 2014 Edited by Johannes W. Dietrich Edited without comment.
October 15, 2012 Edited by 80.142.34.68 Edited without comment.
August 23, 2012 Edited by 80.142.15.37 Edited without comment.
August 1, 2012 Edited by 212.23.135.178 Edited without comment.
January 10, 2011 Created by 134.147.157.18 Added new book.