In cardiac research, single-cell experimental models have been extensively used to study the molecular mechanisms of intracellular Ca(2+) homeostasis. The results of these studies are usually extrapolated to the tissue level assuming that the phenomena studied at the cellular level are either similar in the intact organ, or only slightly modified by variables that exist at the whole-heart level. The validity of these assumptions has rarely been confirmed experimentally. Common obstacles associated with the study of intracellular Ca(2+) signals in beating hearts include motion artifacts and spatio-temporal limitations of the recording system. In this work, action potentials and intracellular Ca(2+) signals were measured in beating hearts fro...
Local Ca2+ Releases (LCRs) are crucial events involved in cardiac pacemaker cell function. However, ...
<p>Background: Understanding the microscopic dynamics of the beating heart has been challenging due ...
Cytosolic Ca2+ ions regulate numerous aspects of cellular activity in almost all cell types, control...
In cardiac research, single-cell experimental models have been extensively used to study the molecul...
In the heart, molecular signaling studies are usually performed in isolated myocytes. However, many ...
We used a total internal reflection fluorescence microscope based on the near field optics principle...
Many vital processes depend on the generation, changes, and conduction of cellular transmembrane pot...
Heart disease has been the leading cause of death in the United States for more than one century. Mo...
The rising phase of rat cardiac action potentials was measured in physiological solutions using the ...
Advances in the development of voltage sensitive dyes and Ca2+ sensors in combination with innovativ...
The changes measured in intracellular fluorescein fluorescence polarization (IFFP) are used as a new...
We describe a novel two-photon (2P) laser scanning microscopy (2PLSM) protocol that provides ratiome...
Fluorescence imaging of intrinsic fluorophores of tissue is a powerful method to assess metabolic ch...
AbstractNear-field scanning optical microscopy (NSOM) has been used to study the nanoscale distribut...
Real-time imaging of moving organs and tissues at microscopic resolutions represents a major challen...
Local Ca2+ Releases (LCRs) are crucial events involved in cardiac pacemaker cell function. However, ...
<p>Background: Understanding the microscopic dynamics of the beating heart has been challenging due ...
Cytosolic Ca2+ ions regulate numerous aspects of cellular activity in almost all cell types, control...
In cardiac research, single-cell experimental models have been extensively used to study the molecul...
In the heart, molecular signaling studies are usually performed in isolated myocytes. However, many ...
We used a total internal reflection fluorescence microscope based on the near field optics principle...
Many vital processes depend on the generation, changes, and conduction of cellular transmembrane pot...
Heart disease has been the leading cause of death in the United States for more than one century. Mo...
The rising phase of rat cardiac action potentials was measured in physiological solutions using the ...
Advances in the development of voltage sensitive dyes and Ca2+ sensors in combination with innovativ...
The changes measured in intracellular fluorescein fluorescence polarization (IFFP) are used as a new...
We describe a novel two-photon (2P) laser scanning microscopy (2PLSM) protocol that provides ratiome...
Fluorescence imaging of intrinsic fluorophores of tissue is a powerful method to assess metabolic ch...
AbstractNear-field scanning optical microscopy (NSOM) has been used to study the nanoscale distribut...
Real-time imaging of moving organs and tissues at microscopic resolutions represents a major challen...
Local Ca2+ Releases (LCRs) are crucial events involved in cardiac pacemaker cell function. However, ...
<p>Background: Understanding the microscopic dynamics of the beating heart has been challenging due ...
Cytosolic Ca2+ ions regulate numerous aspects of cellular activity in almost all cell types, control...