Eléments de l'association
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List of bibliographic references
Number of relevant bibliographic references: 8.Ident. | Authors (with country if any) | Title |
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001702 | Tae Kim [États-Unis] ; J. Richard Jennings [États-Unis] ; Seong-Gi Kim [Corée du Sud] | Regional cerebral blood flow and arterial blood volume and their reactivity to hypercapnia in hypertensive and normotensive rats. |
002265 | Tao Jin [États-Unis] ; Hunter Mehrens [États-Unis] ; Kristy S. Hendrich [États-Unis] ; Seong-Gi Kim [États-Unis, Corée du Sud] | Mapping brain glucose uptake with chemical exchange-sensitive spin-lock magnetic resonance imaging |
002784 | Leon C. Ho ; Ian P. Conner [États-Unis] ; Chi-Wai Do [République populaire de Chine] ; Seong-Gi Kim [États-Unis, Corée du Sud] ; Ed X. Wu [République populaire de Chine] ; Gadi Wollstein [États-Unis] ; Joel S. Schuman [États-Unis] ; Kevin C. Chan [États-Unis] | In Vivo Assessment of Aqueous Humor Dynamics Upon Chronic Ocular Hypertension and Hypotensive Drug Treatment Using Gadolinium-Enhanced MRI |
003731 | Xiaopeng Zong [États-Unis] ; Juyoung Lee [Corée du Sud] ; Alexander Poplawsky [États-Unis] ; Seong-Gi Kim [États-Unis, Corée du Sud] ; Jong Chul Ye [Corée du Sud] | Compressed Sensing fMRI using Gradient-recalled Echo and EPI Sequences |
004C42 | Tao Jin [États-Unis] ; Seong-Gi Kim [États-Unis, Corée du Sud] | Advantages of chemical exchange‐sensitive spin‐lock (CESL) over chemical exchange saturation transfer (CEST) for hydroxyl– and amine–water proton exchange studies |
005308 | Alexander John Poplawsky [États-Unis] ; Seong-Gi Kim [États-Unis, Corée du Sud] | Layer-dependent BOLD and CBV-weighted fMRI responses in the rat olfactory bulb |
005715 | XIAOPENG ZONG [États-Unis] ; JUYOUNG LEE [Corée du Sud] ; Alexander John Poplawsky [États-Unis] ; Seong-Gi Kim [États-Unis, Corée du Sud] ; JONG CHUL YE [Corée du Sud] | Compressed sensing fMRI using gradient-recalled echo and EPI sequences |
009795 | Seong-Gi Kim [États-Unis] ; Seiji Ogawa [Japon, Corée du Sud] | Biophysical and physiological origins of blood oxygenation level-dependent fMRI signals |
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