Assessment of Cellular and Organ Function and Dysfunction using Direct and Derived MRI Methodologies

Assessment of Cellular and Organ Function and Dysfunction using Direct and Derived MRI Methodologies
Author :
Publisher : BoD – Books on Demand
Total Pages : 118
Release :
ISBN-10 : 9789535127222
ISBN-13 : 9535127225
Rating : 4/5 (225 Downloads)

Book Synopsis Assessment of Cellular and Organ Function and Dysfunction using Direct and Derived MRI Methodologies by : Christakis Constantinides

Download or read book Assessment of Cellular and Organ Function and Dysfunction using Direct and Derived MRI Methodologies written by Christakis Constantinides and published by BoD – Books on Demand. This book was released on 2016-10-26 with total page 118 pages. Available in PDF, EPUB and Kindle. Book excerpt: Despite the tremendous growth in the field of magnetic resonance imaging (MRI) evidenced in the initial phases of its development in the early twentieth century, scientific focus has shifted in recent years toward the study of physiology and pathophysiology that span the spatial scales of the molecule, cell, tissue, and organ. Intensified research activities over the past 15 years have justified efforts toward molecular and cellular imaging, dual-modality imaging systems, real-time acquisitions, dedicated image processing techniques and applications, and the critical evaluation of their potential translational value for use in the clinic. The integrative focus on molecular-cellular-tissue-organ function and dysfunction has taken a primary role in modern, personalized medicine, and it is envisaged to continue to do so, as accumulated knowledge from basic and clinical science work continues to elucidate molecular, cellular, and physiological/pathophysiological pathways and mechanisms. In this scientific effort, MRI continues to play a critical and synergistic role from the perspectives of basic science, diagnosis, and clinical interventional/therapeutic approaches. Within the realm of the current role of MRI in modern medicine, this book summarizes state-of-the-art direct and derived MRI methodologies and approaches as applied toward the assessment of cellular and organ function and dysfunction. The contributions in this effort are not excessive but few, comprehensive, and distinguished and of high quality. The topic areas can be generalized to find applications in other scientific areas and span both brain and cardiac applications, extending interest to wider audiences.


Assessment of Cellular and Organ Function and Dysfunction using Direct and Derived MRI Methodologies Related Books

Assessment of Cellular and Organ Function and Dysfunction Using Direct and Derived MRI Methodologies
Language: en
Pages:
Assessment of Cellular and Organ Function and Dysfunction using Direct and Derived MRI Methodologies
Language: en
Pages: 118
Authors: Christakis Constantinides
Categories: Medical
Type: BOOK - Published: 2016-10-26 - Publisher: BoD – Books on Demand

DOWNLOAD EBOOK

Despite the tremendous growth in the field of magnetic resonance imaging (MRI) evidenced in the initial phases of its development in the early twentieth century
Impaired Oxygen Delivery in Experimental Disease Models: Pathogenesis, Diagnostics and Treatment Strategies
Language: en
Pages: 128
Authors: Johanna Catharina Duvigneau
Categories: Medical
Type: BOOK - Published: 2022-10-06 - Publisher: Frontiers Media SA

DOWNLOAD EBOOK

Endometriosis
Language: en
Pages: 164
Authors: Giovana Gonçalves
Categories: Medical
Type: BOOK - Published: 2022-06-28 - Publisher: BoD – Books on Demand

DOWNLOAD EBOOK

Endometriosis is a common and serious disease that is estimated to cost the world economy $9.7 billion a year. Most of these costs come from lost productivity a
Handbook of Research on AI Methods and Applications in Computer Engineering
Language: en
Pages: 659
Authors: Kaddoura, Sanaa
Categories: Computers
Type: BOOK - Published: 2023-01-30 - Publisher: IGI Global

DOWNLOAD EBOOK

The development of artificial intelligence (AI) involves the creation of computer systems that can do activities that would ordinarily require human intelligenc