Modelling the Short Qt Syndrome Gene Mutations : And Their Role in Cardiac Ar...

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Item Weight: 128.2 Oz Language: English Number of Pages: Xvii, 217 Pages height: 0.5 in ISBN: 9783319361512 Publication Year: 2016 Book Title: Modelling the Short Qt Syndrome Gene Mutations : And Their Role i Format: Trade Paperback Publisher: Springer International Publishing A&G Series: Springer Theses Ser. Publication Name: Modelling the Short Qt Syndrome Gene Mutations : and Their Role in Cardiac Arrhythmogenesis Subject: Life Sciences / Cell Biology, Cardiology, Life Sciences / Biology, Research & Methodology Item Height: 0.5 in Author: Ismail Adeniran Subject Area: Science, Medical Type: Textbook Item Width: 6.1 in Item Length: 9.2 in width: 6.1 in

Description

Modelling the Short Qt Syndrome Gene Mutations : And Their Role in Cardiac Ar.... The multiphysics models developed provide a powerful platform for identifying the root causes of various arrhythmias and investigating therapeutic interventions for these diseases. Modelling the Short Qt Syndrome Gene Mutations : And Their Role in Cardiac Arrhythmogenesis, Paperback by Adeniran, Ismail, ISBN 3319361511, ISBN-13 9783319361512, Brand New, Free shipping in the US The Short QT Syndrome (SQTS) is characterized by abbreviated QT intervals on the electrocardiogram, increased risk of cardiac arrhythmias and sudden death. Although several gene mutations have been identified in SQT patients, the role of these mutations in promoting arrhythmogenesis is still not completely understood. Consequently, this thesis employs multidisciplinary approaches to develop a 3D virtual heart, which is then used to elucidate how the short QT syndrome facilitates and maintains ventricular arrhythmias and to determine its effects on ventricular mechanical contraction. The findings in this thesis provide a comprehensive and mechanistic explanation for a number of gene mutations associated with potassium channels in terms of susceptibility to arrhythmia. The multiphysics models developed provide a powerful platform for identifying the root causes of various arrhythmias and investigating therapeutic interventions for these diseases. The thesis was examined by Prof. Chris Huang of the University of Cambridge, the most authoritative figure in cardiac electrophysiology, who has described the work as “outstanding.”