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Nanyin Zhang

Researcher at Pennsylvania State University

Publications -  110
Citations -  3802

Nanyin Zhang is an academic researcher from Pennsylvania State University. The author has contributed to research in topics: Resting state fMRI & Functional magnetic resonance imaging. The author has an hindex of 32, co-authored 94 publications receiving 2976 citations. Previous affiliations of Nanyin Zhang include University of Minnesota & University of Massachusetts Medical School.

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Tightly coupled brain activity and cerebral ATP metabolic rate.

TL;DR: Results conclude that the measured Ff,ATPase reflects the oxidative phosphorylation rate in resting rat brains, that this flux is tightly correlated to the change of energy demand under varied brain activity levels, and that a significant amount of ATP energy is required for “housekeeping” under the isoelectric state.
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Uncovering Intrinsic Connectional Architecture of Functional Networks in Awake Rat Brain

TL;DR: The current work revealed that functional networks in rats are organized in a nontrivial manner and conserve fundamental topological properties that are also seen in the human brain.
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Time to wake up: Studying neurovascular coupling and brain-wide circuit function in the un-anesthetized animal.

TL;DR: It is argued that the time is right to study neurovascular coupling and brain circuit function in the awake animal to bridge the physiological mechanisms that underlie animal and human neuroimaging signals, and to interpret them in light of underlying neural mechanisms.
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Intrinsic Organization of the Anesthetized Brain

TL;DR: The findings collectively show that the integrity of the whole-brain network can be conserved between widely dissimilar physiologic states while local neural networks can flexibly adapt to new conditions and illustrate that the governing principles of intrinsic brain organization might represent fundamental characteristics of the healthy brain.
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Anticorrelated Resting-state Functional Connectivity in Awake Rat Brain

TL;DR: Robust anticorrelated RSFC was demonstrated in a well characterized frontolimbic circuit between the infralimbic cortex (IL) and amygdala in the awake rat and was anatomically specific, highly reproducible and independent of preprocessing methods.