L
Li Pan
Researcher at Siemens
Publications - 41
Citations - 1212
Li Pan is an academic researcher from Siemens. The author has contributed to research in topics: Magnetic resonance imaging & Imaging phantom. The author has an hindex of 17, co-authored 40 publications receiving 1080 citations. Previous affiliations of Li Pan include Johns Hopkins University & Johns Hopkins University School of Medicine.
Papers
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Journal ArticleDOI
Left ventricular concentric remodeling is associated with decreased global and regional systolic function: The multi-ethnic study of atherosclerosis
Boaz D. Rosen,Thor Edvardsen,Shenghan Lai,Ernesto Castillo,Li Pan,Michael Jerosch-Herold,Shantanu Sinha,Richard A. Kronmal,Donna K. Arnett,John R. Crouse,Susan R. Heckbert,David A. Bluemke,Joao A.C. Lima +12 more
TL;DR: In this cross-sectional study of asymptomatic individuals, concentric left ventricular remodeling was related to decreased regional systolic function, which was more pronounced in the left anterior descending coronary artery territory and may reflect the local transition from compensatory remodeling to myocardial dysfunction.
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Fast tracking of cardiac motion using 3D-HARP
TL;DR: In this paper, a 3D-HARmonic phase model is used to represent a collection of material points inside the left ventricle (LV) wall at a reference time to track the motion of the mesh through a cardiac cycle.
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Regional diastolic dysfunction in individuals with left ventricular hypertrophy measured by tagged magnetic resonance imaging--the Multi-Ethnic Study of Atherosclerosis (MESA).
Thor Edvardsen,Boaz D. Rosen,Li Pan,Michael Jerosch-Herold,Shenghan Lai,W. Gregory Hundley,Shantanu Sinha,Richard A. Kronmal,David A. Bluemke,Joao A.C. Lima +9 more
TL;DR: Left ventricular hypertrophy is associated with regional diastolic dysfunction in individuals without evidence of clinical cardiovascular disease and preserved systolic function and stepwise regression analyses showed a direct relationship between regional diastsolic dysfunction and increasing LV mass.
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Multisite, multivendor validation of the accuracy and reproducibility of proton-density fat-fraction quantification at 1.5T and 3T using a fat-water phantom.
Diego Hernando,Samir D. Sharma,Mounes Aliyari Ghasabeh,Bret D. Alvis,Sandeep Arora,Gavin Hamilton,Li Pan,Jean Shaffer,Keitaro Sofue,Keitaro Sofue,Nikolaus M. Szeverenyi,E. Brian Welch,Qing Yuan,Mustafa R. Bashir,Ihab R. Kamel,Mark J. Rice,Claude B. Sirlin,Takeshi Yokoo,Scott B. Reeder +18 more
TL;DR: To evaluate the accuracy and reproducibility of quantitative chemical shift‐encoded (CSE) MRI to quantify proton‐density fat‐fraction (PDFF) in a fat–water phantom across sites, vendors, field strengths, and protocols.
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Real-time imaging of regional myocardial function using fast-SENC.
TL;DR: The results of the fast‐SENC technique in a single heartbeat acquisition were comparable to those obtained by conventional SENC in a long acquisition time, and may prove useful for imaging during stress or arrhythmia.