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Cardiac Cell Culture Technologies Microfluidic and On-Chip Systems / edited by Zbigniew Brzozka, Elzbieta Jastrzebska.

Contributor(s): Brzozka, Zbigniew., editor literario | Jastrzebska, Elzbieta., editor literario
Material type: materialTypeLabelE-bookSeries: (Engineering (Springer-11647)).Publisher: Cham : Springer International Publishing, 2018Description: 1 recurso en línea (XIX, 234 páginas 58 ilustraciones, 57 ilustraciones a color).ISBN: 9783319706856.Subject: Corazón | Células | BiotecnologíaOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Introduction -- Microfluidic Systems -- Lab-on-a-chip Systems for Cellomics - Materials and Technology -- Organ-on-a-chip Systems -- Biological Bases of Cardiac Function and the Pro-Regenerative Potential of Stem Cells in the Treatment of Myocardial Disorder -- Pluripotent and Mesenchymal Stem Cells - Challenging Sources for Derivation of Myoblast -- Microfluidic Systems for Cardiac Cell Culture - Characterization -- Heart-on-a-chip Systems -- Cardiac Cell Culture Microtechnologies Based on Stem Cells.
Abstract: Microfluidic systems for cardiac cell culture are discussed based on tested cells and the methods of cardiac cell stimulation; The use of stem cell stimulation into cardiac cells in microfluidic systems is discussed in the context of electrical, biochemical, physical, and mechanical stimulations; Provides an overview of the measurements and data that can be extracted from on-chip systems for use in diagnostics, drug discovery and screening, and clinical therapy.  This book provides an introduction to the biological background of heart functioning and analyzes the various materials and technologies used for the development of microfluidic systems dedicated to cell culture, with an emphasis on cardiac cells. The authors describe the characterization of microfluidic systems for cardiac cell culture and center their discussion of the use of stem cell stimulation based on four different types: electrical, biochemical, physical, and mechanical. This book is appropriate for researchers focused on on-chip technologies and heart studies, students in bioengineering and microengineering courses, and a variety of professionals, such as biotechnologists, biomedical engineers, and clinicians working in the cardiac diseases field.
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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) FCBS | FCAD QP114.C44 C373 2018 EB (Browse shelf(Opens below)) Acceso electrónico eBook.15113062
Total holds: 0

Introduction -- Microfluidic Systems -- Lab-on-a-chip Systems for Cellomics - Materials and Technology -- Organ-on-a-chip Systems -- Biological Bases of Cardiac Function and the Pro-Regenerative Potential of Stem Cells in the Treatment of Myocardial Disorder -- Pluripotent and Mesenchymal Stem Cells - Challenging Sources for Derivation of Myoblast -- Microfluidic Systems for Cardiac Cell Culture - Characterization -- Heart-on-a-chip Systems -- Cardiac Cell Culture Microtechnologies Based on Stem Cells.

Microfluidic systems for cardiac cell culture are discussed based on tested cells and the methods of cardiac cell stimulation; The use of stem cell stimulation into cardiac cells in microfluidic systems is discussed in the context of electrical, biochemical, physical, and mechanical stimulations; Provides an overview of the measurements and data that can be extracted from on-chip systems for use in diagnostics, drug discovery and screening, and clinical therapy.  This book provides an introduction to the biological background of heart functioning and analyzes the various materials and technologies used for the development of microfluidic systems dedicated to cell culture, with an emphasis on cardiac cells. The authors describe the characterization of microfluidic systems for cardiac cell culture and center their discussion of the use of stem cell stimulation based on four different types: electrical, biochemical, physical, and mechanical. This book is appropriate for researchers focused on on-chip technologies and heart studies, students in bioengineering and microengineering courses, and a variety of professionals, such as biotechnologists, biomedical engineers, and clinicians working in the cardiac diseases field.

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