Intracellular recordings were made from the circular layer of the intact muscular wall of the guinea-pig gastric antrum in preparations where much of the corpus remained attached. When two electrodes were positioned parallel to and near to the greater curvature, slow waves were first detected at the oral site and subsequently at the anal site: The oro-anal conduction velocity was found to be 2.5mm s-1M. When one electrode was positioned near the greater curvature and the other at a circumferential location, slow waves were first detected near the greater curvature and subsequently at the circumferential site: The circumferential conduction velocity was 13.9mm s-1. When recordings were made from preparations in which the circular muscle laye...
<p>The control (A) and obstructed murine model (B). A summary of electrical parameters from control ...
We have developed an anatomically based model to simulate slow wave activity in the small intestine....
We have developed an anatomically based model to simulate slow wave activity in the small intestine....
This paper provides an electrical description of the propagation of slow waves and pacemaker potenti...
When intracellular recordings were made from the circular layer of the intact muscular wall of the i...
When intracellular recordings were made from the circular layer of the intact muscular wall of the i...
This paper provides an electrical description of the generation of slow waves in the guinea-pig gast...
The stomach generates a characteristic pattern of coordinated activity whereby rings of contraction ...
Electrical slow waves in gastrointestinal (GI) muscles are generated by interstitial cells of Cajal...
Copyright © 2002 The Physiological SocietyWhen intracellular recordings were made from the antral re...
In the gastrointestinal (GI) tract electrical slow waves yield oscillations in membrane potential th...
(Gastrointest. Liver Physiol. 23): G636-G645,1991.-The pres-ent study compares the electrophysiologi...
Intracellular recordings were made from short segments of the muscular wall of the guinea-pig gastri...
al o f P hy si ol og y In the gastrointestinal tract, slow waves are initiated by a network of inter...
The basic driving unit of oscillatory electrical activity in stomach and intestine is the slow wave,...
<p>The control (A) and obstructed murine model (B). A summary of electrical parameters from control ...
We have developed an anatomically based model to simulate slow wave activity in the small intestine....
We have developed an anatomically based model to simulate slow wave activity in the small intestine....
This paper provides an electrical description of the propagation of slow waves and pacemaker potenti...
When intracellular recordings were made from the circular layer of the intact muscular wall of the i...
When intracellular recordings were made from the circular layer of the intact muscular wall of the i...
This paper provides an electrical description of the generation of slow waves in the guinea-pig gast...
The stomach generates a characteristic pattern of coordinated activity whereby rings of contraction ...
Electrical slow waves in gastrointestinal (GI) muscles are generated by interstitial cells of Cajal...
Copyright © 2002 The Physiological SocietyWhen intracellular recordings were made from the antral re...
In the gastrointestinal (GI) tract electrical slow waves yield oscillations in membrane potential th...
(Gastrointest. Liver Physiol. 23): G636-G645,1991.-The pres-ent study compares the electrophysiologi...
Intracellular recordings were made from short segments of the muscular wall of the guinea-pig gastri...
al o f P hy si ol og y In the gastrointestinal tract, slow waves are initiated by a network of inter...
The basic driving unit of oscillatory electrical activity in stomach and intestine is the slow wave,...
<p>The control (A) and obstructed murine model (B). A summary of electrical parameters from control ...
We have developed an anatomically based model to simulate slow wave activity in the small intestine....
We have developed an anatomically based model to simulate slow wave activity in the small intestine....