Literature DB >> 12419561

Midwall myocardial shortening in athletic left ventricular hypertrophy.

Jamil Mayet1, Ben Ariff, Balvinder Wasan, Neil Chapman, Manjit Shahi, Roxy Senior, Rodney A Foale, Simon A McG Thom.   

Abstract

BACKGROUND: Patients with pathological left ventricular hypertrophy have depressed midwall systolic shortening in spite of normal indices of left ventricular chamber function and a reduced midwall function has been observed to be an independent predictor of cardiovascular risk. Whether midwall shortening is depressed in physiological hypertrophy is unknown.
METHODS: Forty-two subjects, 27 athletes and 15 age- and sex-matched normal control subjects (group 1) were studied. The athletes were divided into those with eccentric hypertrophy (group 2) and those with concentric hypertrophy (group 3). Systolic left ventricular function was assessed at the midwall and endocardium using two-dimensional echocardiography in all subjects.
RESULTS: Left ventricular mass index was significantly greater in both athletic groups than in controls (group 1, 101+/-5.8 g/m(2), group 2, 141+/-11.1*, group 3, 155+/-5.8*; *P<0.01 compared with group 1). Left ventricular systolic function assessed at the endocardium was similar among all three groups (ejection fraction: group 1, 66.2+/-2.38, group 2, 66.8+/-1.44, group 3, 63.7+/-1.66%; endocardial fractional shortening: group 1, 37.1+/-1.71, group 2, 37.6+/-1.13, group 3, 35.1+/-1.25%). However, fractional shortening at the midwall was reduced in the concentric hypertrophy athletes compared with the other two groups (midwall fractional shortening: group 1, 21.9+/-1.1, group 2, 21.9+/-0.86, group 3, 18.4+/-0.96*%; P<0.05 compared with groups 1 and 2).
CONCLUSION: Subjects with physiological concentric hypertrophy have depressed midwall fractional shortening. This suggests that the observed discrepancy between midwall and endocardial shortening in patients with left ventricular hypertrophy is likely to be a function of the geometry and not necessarily a reflection of pathology within the myocardium.

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Year:  2002        PMID: 12419561     DOI: 10.1016/s0167-5273(02)00299-1

Source DB:  PubMed          Journal:  Int J Cardiol        ISSN: 0167-5273            Impact factor:   4.164


  4 in total

1.  Normal ranges and physiological changes of midwall fractional shortening in healthy korean population.

Authors:  Kyungil Park; Sung-A Chang; Hyung-Kwan Kim; Hyo-Eun Park; Sang-Hoon Na; Yong-Jin Kim; Dae-Won Sohn; Byung-Hee Oh; Young-Bae Park
Journal:  Korean Circ J       Date:  2010-11-30       Impact factor: 3.243

Review 2.  Left ventricular remodeling and dysfunction in primary aldosteronism.

Authors:  Cheng-Hsuan Tsai; Chien-Ting Pan; Yi-Yao Chang; Zheng-Wei Chen; Vin-Cent Wu; Chi-Sheng Hung; Yen-Hung Lin
Journal:  J Hum Hypertens       Date:  2020-10-16       Impact factor: 3.012

3.  Catecholamines Induce Left Ventricular Subclinical Systolic Dysfunction: A Speckle-Tracking Echocardiography Study.

Authors:  Jan Kvasnička; Tomáš Zelinka; Ondřej Petrák; Ján Rosa; Branislav Štrauch; Zuzana Krátká; Tomáš Indra; Alice Markvartová; Jiří Widimský; Robert Holaj
Journal:  Cancers (Basel)       Date:  2019-03-06       Impact factor: 6.639

4.  Effect of food intake on left ventricular wall stress.

Authors:  Ylva Gårdinger; Joanna Hlebowicz; Ola Björgell; Magnus Dencker
Journal:  Cardiovasc Ultrasound       Date:  2014-01-28       Impact factor: 2.062

  4 in total

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