PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
January 16, 2025Acta Physiologica9 citationsOpen Access

Left atrial reservoir strain as a predictor of cardiac dysfunction in a murine model of pressure overload

View Full Paper
JSJohn P. SalvasTMThomas Moore‐MorrisCGCraig J. Goergen

Structured PICO

Does left atrial reservoir strain predict cardiac dysfunction in a murine model of pressure overload?

P
Population
Murine model subjected to pressure overload via transverse aortic constriction (TAC), n=16 (subgroup n=10 for acute adaptations).
I
Intervention
High-resolution ultrasound assessment of left atrial (LA) strain.
C
Comparator
Baseline measurements prior to transverse aortic constriction.
O
Outcome
Left atrial and left ventricular function at 2 and 4 weeks post-TAC (and 3 days for acute phase).surrogate

Left atrial reservoir strain is an early, non-invasive predictor of cardiac dysfunction in a murine model of pressure overload, preceding changes in LA volume or LV ejection fraction.

Abstract

AIM: Left atrial (LA) strain is emerging as a valuable metric for evaluating cardiac function, particularly under pathological conditions such as pressure overload. This preclinical study investigates the predictive utility of LA strain on cardiac function in a murine model subjected to pressure overload, mimicking pathologies such as hypertension and aortic stenosis. METHODS: High-resolution ultrasound was performed in a cohort of mice (n = 16) to evaluate left atrial and left ventricular function at baseline and 2 and 4 weeks after transverse aortic constriction (TAC). Acute adaptations in cardiac function were assessed in a subgroup of mice (n = 10) with 3 days post-TAC imaging. RESULTS: We report an increase in LA max volume from 11.0 ± 4.3 μL at baseline to 26.7 ± 16.7 μL at 4 weeks (p = 0.002) and a decrease in LA reservoir strain from 20.8 ± 5.4% at baseline to 10.2 ± 6.9% at 4 weeks (p = 0.001). In the acute phase, LA strain dysfunction was present at 3 days (p < 0.001), prior to alterations in LA volume (p = 0.856) or left ventricular (LV) ejection fraction (p = 0.120). LA reservoir strain correlated with key indicators of cardiac performance including left ventricular (LV) ejection fraction (r = 0.541, p < 0.001), longitudinal strain (r = -0.637, p < 0.001), and strain rate (r = 0.378, p = 0.007). Furthermore, markers of atrial structure and function including LA max volume (AUC = 0.813, p = 0.003), ejection fraction (AUC = 0.853, p = 0.001), and strain (AUC = 0.884, p < 0.001) all predicted LV dysfunction. CONCLUSION: LA strain and function assessments provide a reliable, non-invasive method for the early detection and prediction of cardiac dysfunction in a model of pressure overload.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Salvas et al. (2025) studied this question.

synapsesocial.com/papers/6a86bc73d25f83eb4715401dhttps://doi.org/10.1111/apha.14277
Ask AI
Helpful
Bookmark
Share
View Full Paper