Intracellular calcium (Ca2+) is the central regulator of heart contractility. Indeed, it couples the electrical signal, which pervades the myocardium, with cardiomyocytes contraction. Moreover, alterations in calcium management are the main factors contributing to the mechanical and electrical dysfunction observed in failing hearts. So, simultaneous analysis of the contractile function and intracellular Ca2+ is indispensable to evaluate cardiomyocytes activity. Intracellular Ca2+ variations and fraction shortening are commonly studied with fluorescent Ca2+ indicator dyes associated with microscopy techniques. However, tracking and dealing with multiple files manually is time-consuming and error-prone and often requires expensive apparatus a...
Rationale: Subcellular Ca2+ indicators have yet to be developed for the myofilament where disease mu...
Comprehensive functioning of Ca2+ cycling is crucial for excitation–contraction coupling of cardiomy...
Cardiomyocytes from human induced pluripotent stem cells (hiPSC-CMs) are increasingly recognized as ...
Intracellular calcium (Ca2+) is the central regulator of heart contractility. Indeed, it couples the...
Comprehensive functioning of Ca2+ cycling is crucial for excitation-contraction coupling of cardiomy...
In vitro measurements of cardiomyocyte contractility and Ca2+ handling have been used as a platform ...
ContHeart is a software designed to analyze cardiomyocyte contractile dynamics using Canny’s method ...
Live-cell imaging techniques are essential for acquiring vital physiological and pathophysiological ...
Live-cell imaging techniques are essential for acquiring vital physiological and pathophysiological ...
Live-cell imaging techniques are essential for acquiring vital physiological and pathophysiological ...
Comprehensive functioning of Ca2+ cycling is crucial for excitation-contraction coupling of cardiomy...
Calcium (Ca2+) is a key player in cardiomyocyte homeostasis, and its roles span from excitation-cont...
Calcium (Ca2+) is a key player in cardiomyocyte homeostasis, and its roles span from excitation-cont...
Live-cell imaging techniques are essential for acquiring vital physiological and pathophysiological ...
Rationale: Calcium transient analysis is central to understanding inherited and acquired cardiac phy...
Rationale: Subcellular Ca2+ indicators have yet to be developed for the myofilament where disease mu...
Comprehensive functioning of Ca2+ cycling is crucial for excitation–contraction coupling of cardiomy...
Cardiomyocytes from human induced pluripotent stem cells (hiPSC-CMs) are increasingly recognized as ...
Intracellular calcium (Ca2+) is the central regulator of heart contractility. Indeed, it couples the...
Comprehensive functioning of Ca2+ cycling is crucial for excitation-contraction coupling of cardiomy...
In vitro measurements of cardiomyocyte contractility and Ca2+ handling have been used as a platform ...
ContHeart is a software designed to analyze cardiomyocyte contractile dynamics using Canny’s method ...
Live-cell imaging techniques are essential for acquiring vital physiological and pathophysiological ...
Live-cell imaging techniques are essential for acquiring vital physiological and pathophysiological ...
Live-cell imaging techniques are essential for acquiring vital physiological and pathophysiological ...
Comprehensive functioning of Ca2+ cycling is crucial for excitation-contraction coupling of cardiomy...
Calcium (Ca2+) is a key player in cardiomyocyte homeostasis, and its roles span from excitation-cont...
Calcium (Ca2+) is a key player in cardiomyocyte homeostasis, and its roles span from excitation-cont...
Live-cell imaging techniques are essential for acquiring vital physiological and pathophysiological ...
Rationale: Calcium transient analysis is central to understanding inherited and acquired cardiac phy...
Rationale: Subcellular Ca2+ indicators have yet to be developed for the myofilament where disease mu...
Comprehensive functioning of Ca2+ cycling is crucial for excitation–contraction coupling of cardiomy...
Cardiomyocytes from human induced pluripotent stem cells (hiPSC-CMs) are increasingly recognized as ...