Voluntary wheel running effects on intra-accumbens opioid driven diet preferences in male and female rats

2019 ◽  
Vol 155 ◽  
pp. 22-30
Author(s):  
Jenna R. Lee ◽  
Melissa A. Tapia ◽  
Valerie N. Weise ◽  
Emily L. Bathe ◽  
Victoria J. Vieira-Potter ◽  
...  
2020 ◽  
Vol 377 ◽  
pp. 112235
Author(s):  
Dvijen C. Purohit ◽  
Atulya D. Mandyam ◽  
Michael J. Terranova ◽  
Chitra D. Mandyam

1982 ◽  
Vol 28 (5) ◽  
pp. 899-903 ◽  
Author(s):  
Kumpei Tokuyama ◽  
Masayuki Saito ◽  
Hiromichi Okuda

2020 ◽  
Author(s):  
Rachel Stones ◽  
Mark Drinkhill ◽  
Ed White

AbstractRegular mild exercise is recommended to the general population as beneficial to health. Regular exercise typically leads to structural and electrical remodelling of the heart but in human studies it is difficult to relate the extrinsic and intrinsic influences on intact hearts to changes seen at the single cell level. In this study we wished to test whether changes in electrical activity in intact hearts, in response to voluntary wheel running exercise training, were consistent with our previous observations in single cardiac myocytes and whether these changes resulted in altered susceptibility to arrhythmic stimuli.Female rats performed 5 weeks of voluntary wheel running. Implanted telemetry transmitters were used to measure electrocardiograms (ECGs) and determine heart rate variability (HRV) in conscious, unrestrained, trained (TRN) and sedentary (SED) animals. In isolated hearts, left ventricular epicardial monophasic action potentials (MAPs) were recorded and the responses to potentially arrhythmic interventions were assessed.Exercise training caused cardiac hypertrophy, as indexed by a significantly greater heart weight to body weight ratio. Consistent with previous measurements of action potential duration in single myocytes, MAPs were significantly longer at 50%, 75% and 90% repolarization. Arrhythmic susceptibility was not different between SED and TRN hearts. Trained animals displayed significantly altered HRV by week 5, in a manner consistent with reduced sympathetic tone, however resting ECG parameters, including those most associated with repolarisation duration, were unaltered. We conclude that intrinsic changes to cellular cardiac electrophysiology, induced by mild voluntary exercise, are not attenuated by the electronic loading that occurs in intact hearts. However, in vivo, extrinsic neuro-hormonal control of the heart may minimize the effects of intrinsic alterations in electrical activity.


2007 ◽  
Vol 39 (Supplement) ◽  
pp. S53
Author(s):  
David S. Hydock ◽  
Chia-Ying Lien ◽  
Carole M. Schneider ◽  
Reid Hayward

2008 ◽  
Vol 40 (Supplement) ◽  
pp. S82
Author(s):  
Traci Parry ◽  
David S. Hydock ◽  
Urszula T. Iwaniec ◽  
Russell T. Turner ◽  
Chia-Ying Lien ◽  
...  

2017 ◽  
Vol 49 (5S) ◽  
pp. 440
Author(s):  
Jon-Philippe K. Hyatt ◽  
Lindsay Caprio ◽  
Elisa J. Bienenstock ◽  
Jung A. Kim ◽  
Gary E. McCall

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