The spontaneous emergence of contraction-inducing electrical activity in the uterus at the beginning of labor remains poorly understood, partly due to the seemingly contradictory observation that isolated uterine cells are not spontaneously active. It is known, however, that the expression of gap junctions increases dramatically in the approach to parturition, by more than one order of magnitude, which results in a significant increase in inter-cellular electrical coupling. In this paper, we build upon previous studies of the activity of electrically excitable smooth muscle cells (myocytes) and investigate the mechanism through which the coupling of these cells to electrically passive cells results in the generation of spontaneous activity ...
Uterine contractions during labor are discretely regulated by rhythmic action potentials (AP) of var...
A comprehensive multiscale model of the uterine muscle electrical activity would permit understandin...
A comprehensive multiscale model of the uterine muscle electrical activity would permit understandin...
<div><p>The spontaneous emergence of contraction-inducing electrical activity in the uterus at the b...
The spontaneous emergence of contraction-inducing electrical activity in the uterus at the beginning...
The spontaneous emergence of contraction-inducing electrical activity in the uterus at the beginning...
The spontaneous emergence of contraction-inducing electrical activity in the uterus at the beginning...
This thesis investigates the origin of spontaneous activity in the uterus. This organ does not show ...
This thesis investigates the origin of spontaneous activity in the uterus. This organ does not show ...
This thesis investigates the origin of spontaneous activity in the uterus. This organ does not show ...
This thesis investigates the origin of spontaneous activity in the uterus. This organ does not show ...
This thesis investigates the origin of spontaneous activity in the uterus. This organ does not show ...
The electrical excitability of uterine smooth muscle cells is a key determinant of the contraction o...
\u3cp\u3eThe uterine muscle (the myometrium) plays its most evident role during pregnancy, when quie...
<div><p>The electrical excitability of uterine smooth muscle cells is a key determinant of the contr...
Uterine contractions during labor are discretely regulated by rhythmic action potentials (AP) of var...
A comprehensive multiscale model of the uterine muscle electrical activity would permit understandin...
A comprehensive multiscale model of the uterine muscle electrical activity would permit understandin...
<div><p>The spontaneous emergence of contraction-inducing electrical activity in the uterus at the b...
The spontaneous emergence of contraction-inducing electrical activity in the uterus at the beginning...
The spontaneous emergence of contraction-inducing electrical activity in the uterus at the beginning...
The spontaneous emergence of contraction-inducing electrical activity in the uterus at the beginning...
This thesis investigates the origin of spontaneous activity in the uterus. This organ does not show ...
This thesis investigates the origin of spontaneous activity in the uterus. This organ does not show ...
This thesis investigates the origin of spontaneous activity in the uterus. This organ does not show ...
This thesis investigates the origin of spontaneous activity in the uterus. This organ does not show ...
This thesis investigates the origin of spontaneous activity in the uterus. This organ does not show ...
The electrical excitability of uterine smooth muscle cells is a key determinant of the contraction o...
\u3cp\u3eThe uterine muscle (the myometrium) plays its most evident role during pregnancy, when quie...
<div><p>The electrical excitability of uterine smooth muscle cells is a key determinant of the contr...
Uterine contractions during labor are discretely regulated by rhythmic action potentials (AP) of var...
A comprehensive multiscale model of the uterine muscle electrical activity would permit understandin...
A comprehensive multiscale model of the uterine muscle electrical activity would permit understandin...