L
Leanne Short
Researcher at University of Queensland
Publications - 33
Citations - 1739
Leanne Short is an academic researcher from University of Queensland. The author has contributed to research in topics: Coronary artery disease & Heart failure. The author has an hindex of 17, co-authored 33 publications receiving 1712 citations. Previous affiliations of Leanne Short include Princess Alexandra Hospital.
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Echocardiographic detection of early diabetic myocardial disease
TL;DR: Diabetic patients without overt heart disease demonstrate evidence of systolic dysfunction and increased myocardial reflectivity, although these changes are similar to those caused by LVH, they are independent and incremental to the effects of LVH.
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The relative importance of vascular structure and function in predicting cardiovascular events
TL;DR: Brachial artery reactivity is lower in patients with events, but is not an independent predictor of cardiovascular outcomes in this cohort of patients.
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Prediction of mortality by exercise echocardiography: a strategy for combination with the duke treadmill score.
TL;DR: A normal exercise echocardiogram confers a low risk of death, and positive results are an independent predictor of death; ischemia is incremental to other data.
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Prediction of mortality using dobutamine echocardiography
Thomas H. Marwick,Colin Case,Stephen G. Sawada,Curtis M. Rimmerman,Patricia Brenneman,Roxanne L. Kovacs,Leanne Short,Michael S. Lauer +7 more
TL;DR: DbE is an independent predictor of death, incremental to other data, and while a normal dobutamine echocardiogram predicts low risk of cardiac death, this risk increases with the extent of abnormal wall motion at rest and stress.
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Application of tissue Doppler to interpretation of Dobutamine echocardiography and comparison with quantitative coronary angiography
TL;DR: A fully quantitative interpretation of DE using site-specific normal ranges of tissue Doppler, which account for regional variations of base-apex function, is feasible and equivalent in accuracy to expert wall motion scoring.