Adaptation of Left Ventricular Twist Mechanics in Exercise-Trained Children Is Only Evident after the Adolescent Growth Spurt.

Details

Ressource 1Download: 38056578.pdf (1675.33 [Ko])
State: Public
Version: Final published version
License: CC BY-NC-ND 4.0
Serval ID
serval:BIB_E5B0ABBEF37A
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Adaptation of Left Ventricular Twist Mechanics in Exercise-Trained Children Is Only Evident after the Adolescent Growth Spurt.
Journal
Journal of the American Society of Echocardiography
Author(s)
Perkins D.R., Talbot J.S., Lord R.N., Dawkins T.G., Baggish A.L., Zaidi A., Uzun O., Mackintosh K.A., McNarry M.A., Cooper S.M., Lloyd R.S., Oliver J.L., Shave R.E., Stembridge M.
ISSN
1097-6795 (Electronic)
ISSN-L
0894-7317
Publication state
Published
Issued date
05/2024
Peer-reviewed
Oui
Volume
37
Number
5
Pages
538-549
Language
english
Notes
Publication types: Journal Article ; Research Support, Non-U.S. Gov't
Publication Status: ppublish
Abstract
The extent of structural cardiac remodeling in response to endurance training is maturity dependent. In adults, this structural adaptation is often associated with the adaptation of left ventricular (LV) twist mechanics. For example, an increase in LV twist often follows an expansion in end-diastolic volume, whereas a reduction in twist may follow a thickening of the LV walls. While structural cardiac remodeling has been shown to be more prominent post-peak height velocity (PHV), it remains to be determined how this maturation-dependent structural remodeling influences LV twist. Therefore, we aimed to (1) compare LV twist mechanics between trained and untrained children pre- and post-PHV and (2) investigate how LV structural variables relate to LV twist mechanics pre- and post-PHV.
Left ventricular function and morphology were assessed (echocardiography) in endurance-trained and untrained boys (n = 38 and n = 28, respectively) and girls (n = 39 and n = 34, respectively). Participants were categorized as either pre- or post-PHV using maturity offset to estimate somatic maturation.
Pre-PHV, there were no differences in LV twist or torsion between trained and untrained boys (twist: P = .630; torsion: P = .382) or girls (twist: P = .502; torsion: P = .316), and LV twist mechanics were not related with any LV structural variables (P > .05). Post-PHV, LV twist was lower in trained versus untrained boys (P = .004), with torsion lower in trained groups, irrespective of sex (boys: P < .001; girls: P = .017). Moreover, LV torsion was inversely related to LV mass (boys: r = -0.55, P = .001; girls: r = -0.46, P = .003) and end-diastolic volume (boys: r = -0.64, P < .001; girls: r = -0.36, P = .025) in both sexes.
A difference in LV twist mechanics between endurance-trained and untrained cohorts is only apparent post-PHV, where structural and functional remodeling were related.
Keywords
Humans, Male, Female, Adolescent, Ventricular Function, Left/physiology, Adaptation, Physiological/physiology, Heart Ventricles/diagnostic imaging, Heart Ventricles/physiopathology, Child, Ventricular Remodeling/physiology, Echocardiography/methods, Exercise/physiology, Echocardiography, Exercise, Myocardium, Twist, Youth
Pubmed
Open Access
Yes
Create date
07/12/2023 16:37
Last modification date
11/05/2024 9:10
Usage data