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Fundamentals of Respiratory System and Sounds Analysis / by Zahra Moussavi

By: Kazem Moussavi, Zahra M.(Zahra Marjan),, (1960-), autor
Material type: materialTypeLabelE-bookSeries: (Synthesis Lectures on Biomedical Engineering, 1930-0336).Publisher: Cham : Springer International Publishing, 2006Edition: 1st edition 2006.Description: 1 recurso en línea (VI, 60 páginas).ISBN: 9783031016172.Subject: Pulmones -- Enfermedades -- Diagnóstico | Aparato respiratorio -- Sonidos | AuscultaciónOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Anatomy and Physiology of Respiratory System -- The Model of Respiratory System -- Breath Sounds Recording -- Breath Sound Characteristics -- Current Research in Respiratory Acoustics -- Nonlinear Analysis of Lung Sounds for Diagnostic Purposes -- Adventitious Sound Detection -- Acoustic Mapping and Imaging of Thoracic Sounds.
Summary: Breath sounds have long been important indicators of respiratory health and disease. Acoustical monitoring of respiratory sounds has been used by researchers for various diagnostic purposes. A few decades ago, physicians relied on their hearing to detect any symptomatic signs in respiratory sounds of their patients. However, with the aid of computer technology and digital signal processing techniques in recent years, breath sound analysis has drawn much attention because of its diagnostic capabilities. Computerized respiratory sound analysis can now quantify changes in lung sounds; make permanent records of the measurements made and produce graphical representations that help with the diagnosis and treatment of patients suffering from lung diseases. Digital signal processing techniques have been widely used to derive characteristics features of the lung sounds for both diagnostic and assessment of treatment purposes. Although the analytical techniques of signal processing are largely independent of the application, interpretation of their results on biological data, i.e. respiratory sounds, requires substantial understanding of the involved physiological system. This lecture series begins with an overview of the anatomy and physiology related to human respiratory system, and proceeds to advanced research in respiratory sound analysis and modeling, and their application as diagnostic aids. Although some of the used signal processing techniques have been explained briefly, the intention of this book is not to describe the analytical methods of signal processing but the application of them and how the results can be interpreted. The book is written for engineers with university level knowledge of mathematics and digital signal processing.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería RC734.A94 2006 EB (Browse shelf(Opens below)) Acceso electrónico eBook.01112346
Total holds: 0

Anatomy and Physiology of Respiratory System -- The Model of Respiratory System -- Breath Sounds Recording -- Breath Sound Characteristics -- Current Research in Respiratory Acoustics -- Nonlinear Analysis of Lung Sounds for Diagnostic Purposes -- Adventitious Sound Detection -- Acoustic Mapping and Imaging of Thoracic Sounds.

Breath sounds have long been important indicators of respiratory health and disease. Acoustical monitoring of respiratory sounds has been used by researchers for various diagnostic purposes. A few decades ago, physicians relied on their hearing to detect any symptomatic signs in respiratory sounds of their patients. However, with the aid of computer technology and digital signal processing techniques in recent years, breath sound analysis has drawn much attention because of its diagnostic capabilities. Computerized respiratory sound analysis can now quantify changes in lung sounds; make permanent records of the measurements made and produce graphical representations that help with the diagnosis and treatment of patients suffering from lung diseases. Digital signal processing techniques have been widely used to derive characteristics features of the lung sounds for both diagnostic and assessment of treatment purposes. Although the analytical techniques of signal processing are largely independent of the application, interpretation of their results on biological data, i.e. respiratory sounds, requires substantial understanding of the involved physiological system. This lecture series begins with an overview of the anatomy and physiology related to human respiratory system, and proceeds to advanced research in respiratory sound analysis and modeling, and their application as diagnostic aids. Although some of the used signal processing techniques have been explained briefly, the intention of this book is not to describe the analytical methods of signal processing but the application of them and how the results can be interpreted. The book is written for engineers with university level knowledge of mathematics and digital signal processing.

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