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May 29, 2020Medicine & Science in Sports & Exercise18 citations

Left Ventricular Fibrosis in Middle-Age Athletes and Physically Active Adults

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LBLaura BanksMAMustafa A. AltahaAYAndrew T. Yan

Key Result

Focal left ventricular late gadolinium enhancement was observed at similar frequencies in middle-age endurance athletes and physically active adults (33% vs 20%, P=0.25).

Study Design

Type

Cross-Sectional (n=92)

Structured PICO

Does endurance athletic training increase left ventricular fibrosis compared to recommended physical activity levels in middle-aged adults?

P
Population
92 healthy recreational middle-age endurance athletes (EA) and physically active (PA) adults (45-65 yr)
I
Intervention
Endurance athletic training
C
Comparator
Recommended physical activity levels
O
Outcome
Cardiac remodeling, presence of left ventricular (LV) late gadolinium enhancement (LGE), and T1 valuessurrogate

Focal LGE at the right ventricular hinge point occurs at similar frequencies in middle-aged endurance athletes and physically active adults without global extracellular volume expansion, suggesting a physiologic remodeling response.

Main Result

Absolute Event Rate: 33% vs 20%

p-value: p=0.25

Limitations

  • Lack of prospective, long-term follow-up to determine the clinical implications of hinge-point LGE

Abstract

INTRODUCTION: Cardiac magnetic resonance (CMR) late gadolinium enhancement (LGE) and T1 mapping techniques enable the quantification of focal and diffuse myocardial LGE, respectively. Studies have shown evidence of fibrosis in middle-age athletes, but not relative to physically active (PA) adults who perform recommended physical activity levels. Therefore, we examined cardiac remodeling and presence of left ventricular (LV) LGE and T1 values in both recreational middle-age endurance athletes (EA) and PA adults. METHODS: Healthy EA and PA adults (45-65 yr) completed a standardized 3-T CMR protocol with ventricular volumetry, LV LGE, and T1 mapping. RESULTS: Seventy-two EA and 20 PA participants (mean age, 53 ± 5 vs 56 ± 4 yr; P < 0.01; V˙O2peak = 50 ± 7 vs 37 ± 9 mL·kg·min, P < 0.0001) were examined, with CMR data available in 89/92 participants. Focal LV LGE was observed in 30% of participants (n = 27/89): 33% of EA (n = 23/69; 33%) and 20% of PA (n = 4/20; 20%). LGE was present at the right ventricular hinge point (n = 21/89; 23.5%) or identified as ischemic (n = 2/89; 2%) or nonischemic (n = 4/89; 4%). Focal LV LGE was observed similarly in both EA and PA (P = 0.25). EA had larger LV chamber sizes and T1 native values (1169 ± 35 vs 1190 ± 26, P = 0.02) compared with PA, with similar LV ejection fraction. Global extracellular volume (ECV) was similar in both EA and PA (22.6% ± 3.5% vs 21.5% ± 2.6%, P = 0.26), with no relationship between global ECV and LV mass (r = -0.16, P = 0.19). CONCLUSIONS: Focal LGE at the right ventricular hinge point was detected at the same frequency in both groups, was unrelated to demographic or clinical indices, and was found without evidence of global ECV expansion in EA, suggesting a physiologic remodeling response. The long-term clinical implications of hinge-point LGE require clarification using prospective, long-term follow-up studies.

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Cite This Study

Banks et al. (2020) conducted a cross-sectional in Healthy middle-age endurance athletes and physically active adults (n=92). Endurance athlete (EA) training vs. Physically active (PA) adults was evaluated on Presence of focal left ventricular late gadolinium enhancement (LGE) (p=0.25). Focal left ventricular late gadolinium enhancement was observed at similar frequencies in middle-age endurance athletes and physically active adults (33% vs 20%, P=0.25).

synapsesocial.com/papers/6a1c7ffe66d062ff2dc3e342https://doi.org/10.1249/mss.0000000000002411
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