an analysis of the interplay between anatomy, structure, breathing and fractal dynamics /
نام نخستين پديدآور
Clara Mihaela Ionescu
وضعیت ویراست
وضعيت ويراست
1st ed
وضعیت نشر و پخش و غیره
محل نشرو پخش و غیره
New York :
نام ناشر، پخش کننده و غيره
Springer,
تاریخ نشرو بخش و غیره
c2013
مشخصات ظاهری
نام خاص و کميت اثر
1 online resource (xxv, 217 p.) :
ساير جزييات
ill
فروست
عنوان فروست
Series in bioengineering,
شاپا ي ISSN فروست
2196-8861
یادداشتهای مربوط به کتابنامه ، واژه نامه و نمایه های داخل اثر
متن يادداشت
Includes bibliographical references and index
یادداشتهای مربوط به مندرجات
متن يادداشت
Introduction -- The Human Respiratory System -- Respiratory Impedance -- Modelling the Respiratory Tract by Means of Electrical Analogy -- Mathematical Basis for Modelling -- Modelling the Respiratory Tract by Means of Mechanical Analogy -- Frequency Domain: Parametric Model Selection -- Time Domain: Fractal Dimension -- Nonlinear Effects in Measurement of Respiratory Impedance -- Conclusion -- Appendices: Mathematical Basis of Fractional Calculus; Overview of Forced Oscillation Technique Devices
بدون عنوان
0
یادداشتهای مربوط به خلاصه یا چکیده
متن يادداشت
The Human Respiratory System combines emerging ideas from biology and mathematics to show the reader how to produce models for the development of biomedical engineering applications associated with the lungs and airways. Mathematically mature but in its infancy as far as engineering uses are concerned, fractional calculus is the basis of the methods chosen for system analysis and modelling. This reflects two decades' worth of conceptual development which is now suitable for bringing to bear in biomedical engineering. The text reveals the latest trends in modelling and identification of human respiratory parameters with a view to developing diagnosis and monitoring technologies. Of special interest is the notion of fractal structure which is indicative of the large-scale biological efficiency of the pulmonary system. The related idea of fractal dimension represents the adaptations in fractal structure caused by environmental factors, notably including disease. These basics are linked to model the dynamical patterns of breathing as a whole. The ideas presented in the book are validated using real data generated from healthy subjects and respiratory patients and rest on non-invasive measurement methods. The Human Respiratory System will be of interest to applied mathematicians studying the modelling of biological systems, to clinicians with interests outside the traditional borders of medicine, and to engineers working with technologies of either direct medical significance or for mitigating changes in the respiratory system caused by, for example, high-altitude or deep-sea environments
قطعه
عنوان
OhioLINK electronic book center (Online)
عنوان
SpringerLink
موضوع (اسم عام یاعبارت اسمی عام)
موضوع مستند نشده
Mechanical impedance
موضوع مستند نشده
Respiration
موضوع مستند نشده
Respiratory organs-- Pathophysiology
مقوله موضوعی
موضوع مستند نشده
MED-- 075000
موضوع مستند نشده
SCI-- 036000
رده بندی ديویی
شماره
612
.
2
ويراست
23
رده بندی کنگره
شماره رده
QP121
شماره رده
QP121
نشانه اثر
.
I65
2013eb
نشانه اثر
.
I65
2013eb
نام شخص به منزله سر شناسه - (مسئولیت معنوی درجه اول )