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During the past decade many review papers and books have been devoted to descriptions and analyses of biological rhythms (chronobiology) in plants and animals. These contributed greatly to demonstrating the impor tance of bioperiodicities in living beings in general. However, the practi cal aspects of chronobiology with regard to human health and improving the treatment of disease have not yet been a major focus of publication. One of our aims is to establish the relevance of biological rhythms to the practice of medicine. Another is to organize and convey in a simple fashion information pertinent to health- and life-science professionals so that students, researchers, and practitioners can achieve a clear and pre cise understanding of chronobiology. We have limited scientific jargon to unavoidable basic and well-defined terms and we have emphasized illus trative examples of facts and concepts rather than theories or hypotheti cal mechanisms. This volume is divided into seven chapters, each of which is compre hensive in its treatment and includes an extensive bibliography. The book is organized to serve as a textbook and/or reference handbook of modem applied chronobiology. Chapter 1 describes the historical development of chronobiology and reviews why, when, and how major concepts were introduced, accepted, and transformed.
Everyone has heard of nature's "biological clocks", the phenomenon of periodic activity in plants, animals and humans. But what does chronobiology have to do with modern medicine? This book presents in a concise but comprehensive fashion the basic principles of chronobiology and their application to clinical medicine. The chapters are written by specialists in the field; they summarize the physiology, pathophysiology and pathology of the human time structure and outline the application of chronobiologic principles and techniques for diagnosis and treatment.
Introducing Biological Rhythms is a primer that serves to introduce individuals to the area of biological rhythms. It describes the major characteristics and discusses the implications and applications of these rhythms, while citing scientific results and references. Also, the primer includes essays that provide in-depth historic and other background information for those interested in more specific topics or concepts. It covers a basic cross-section of the field of chronobiology clearly enough so that it can be understood by a novice, or an undergraduate student, but that it would also be sufficiently technical and detailed for the scientist.
Periodical and predictable changes in biological susceptibility and response to a large variety of chemical agents, including drugs and food, have been documented since the early 1970s. This book provides a survey of clinically-documented research in chronopharmacology.
An introduction to the mathematical, computational, and analytical techniques used for modeling biological rhythms, presenting tools from many disciplines and example applications. All areas of biology and medicine contain rhythms, and these behaviors are best understood through mathematical tools and techniques. This book offers a survey of mathematical, computational, and analytical techniques used for modeling biological rhythms, gathering these methods for the first time in one volume. Drawing on material from such disciplines as mathematical biology, nonlinear dynamics, physics, statistics, and engineering, it presents practical advice and techniques for studying biological rhythms, with a common language. The chapters proceed with increasing mathematical abstraction. Part I, on models, highlights the implicit assumptions and common pitfalls of modeling, and is accessible to readers with basic knowledge of differential equations and linear algebra. Part II, on behaviors, focuses on simpler models, describing common properties of biological rhythms that range from the firing properties of squid giant axon to human circadian rhythms. Part III, on mathematical techniques, guides readers who have specific models or goals in mind. Sections on “frontiers” present the latest research; “theory” sections present interesting mathematical results using more accessible approaches than can be found elsewhere. Each chapter offers exercises. Commented MATLAB code is provided to help readers get practical experience. The book, by an expert in the field, can be used as a textbook for undergraduate courses in mathematical biology or graduate courses in modeling biological rhythms and as a reference for researchers.
Circadian rhythms, the biological oscillations based around our 24-hour clock, have a profound effect on human physiology and healthy cellular function. Circadian Rhythms: Health and Disease is a wide-ranging foundational text that provides students and researchers with valuable information on the molecular and genetic underpinnings of circadian rhythms and looks at the impacts of disruption in our biological clocks in health and disease. Circadian Rhythms opens with chapters that lay the fundamental groundwork on circadian rhythm biology. Section II looks at the impact of circadian rhythms on major organ systems. Section III then turns its focus to the central nervous system. The book then closes with a look at the role of biological rhythms in aging and neurodegeneration. Written in an accessible and informative style, Circadian Rhythms: Health and Disease,will be an invaluable resource and entry point into this fascinating interdisciplinary field that brings together aspects of neuroscience, cell and molecular biology, and physiology.
From the moment of conception until death rhythm is as much part of our structure as our bones and flesh. Most of us are dimly aware that we fluctuate in energy, mood, well-being, and performance each day, and that there are longer, more subtle behavioral alterations each week, each month, season, and year. Through studies of biological rhythms, many aspects of human variability - in symptoms of illness, in response to medical treatment, in learning, and job performance - are being illuminated. Already some of our changes of mood and of vulnerabilities to stress and illness, our peaks of strength and productivity, can be anticipated. Moreover, by the end of this decade, much that is still considered unpredictable in health and human performance may become foreseeable through research into the nature of biological time cycles. As a result, timing promises to become an important factor in preventive health programs and medicine. For example, since the effects of drugs depend in part upon the time of administration, timing may be used as a critical aspect of treatment. Evidence now suggests, too, that X-ray treatments, surgery, and even psychotherapy are influenced in their outcome by timing. Research on biological rhythms also promises to have an impact on problems of work performance - including accidents and absenteeism; a new concept of scheduling as part of health may one day influence the determination of work-shifts among transportation and communication personnel, and members of various professions. No corner of medicine - from the laboratory testing of new drugs and procedures to clinical and public health programs - is likely to remain untouched by the new explorations into biological rhythms. These studies are being made by scientists working with support from the National Institute of Mental Health, who have now joined forces with members of various disciplines ranging from biology to entomology and mathematics. The results of their work are provided in this comprehensive report. Contained here is compelling evidence that man is constructed not only of matter, but that he is temporally organized - and that this organization carries with it significant implications for man's mental and physical health. The National Institute of Mental Health has been fortunate to support some of the very few researchers who could lead the way in this new field, thus taking an initiative in an area that is still not widely acknowledged. It is hoped that this report - part of a continuing effort to analyze and evaluate the Institute's programs - will draw the attention of both scientists and laymen to an exciting and promising area of scientific activity. Bertram S. Brown, M.D. Director National Institute of Mental Health