» Articles » PMID: 11993304

Effects of Training on the Distribution of Cardiac Output in Patients with Coronary Artery Disease

Overview
Journal Circulation
Date 1970 Oct 1
PMID 11993304
Citations 17
Authors
Affiliations
Soon will be listed here.
Abstract

In nine patients with coronary artery disease, cardiac output distribution was evaluated at rest and during exercise by measurement of cardiac output and regional blood flow parameters (hepatic and muscle blood flow). In seven patients repeated values were obtained after a physical training program of 4 to 10 weeks' duration. After training, cardiac output was reduced at moderate work loads (13.1%) causing a change of the relation between oxygen uptake and cardiac output from hyperkinetic to normal. During heavy exercise the cardiac output was increased (5.5%) after training. Similar changes were observed in muscle blood flow, which was reduced at submaximal loads (14.9%) and increased at maximal (8.6%). Hepatic blood flow showed in contrast a less pronounced reduction at both work loads after training (difference, 7.2%). These effects of training could be explained as peripheral regulatory alterations without implying primary improvement in myocardial performance. They are consistent with the view that local changes in the trained muscles are important for the reduction in myocardial pressure-work caused by physical conditioning.

Citing Articles

A necessary role of DNMT3A in endurance exercise by suppressing ALDH1L1-mediated oxidative stress.

Villivalam S, Ebert S, Lim H, Kim J, You D, Jung B EMBO J. 2021; 40(9):e106491.

PMID: 33847380 PMC: 8090849. DOI: 10.15252/embj.2020106491.


Sildenafil improves exercise capacity in patients with cystic fibrosis: a proof-of-concept clinical trial.

Rodriguez-Miguelez P, Ishii H, Seigler N, Crandall R, Thomas J, Forseen C Ther Adv Chronic Dis. 2019; 10:2040622319887879.

PMID: 31803404 PMC: 6876159. DOI: 10.1177/2040622319887879.


Exercise and Vascular Insulin Sensitivity in the Skeletal Muscle and Brain.

Olver T, Laughlin M, Padilla J Exerc Sport Sci Rev. 2019; 47(2):66-74.

PMID: 30883470 PMC: 6424136. DOI: 10.1249/JES.0000000000000182.


Exercise and the Skeletal Muscle Epigenome.

McGee S, Walder K Cold Spring Harb Perspect Med. 2017; 7(9).

PMID: 28320830 PMC: 5580508. DOI: 10.1101/cshperspect.a029876.


The Type 2 Diabetic Heart: Its Role in Exercise Intolerance and the Challenge to Find Effective Exercise Interventions.

Baldi J, Wilson G, Wilson L, Wilkins G, Lamberts R Sports Med. 2016; 46(11):1605-1617.

PMID: 27106558 DOI: 10.1007/s40279-016-0542-9.