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SfN Journals
@sfnjournals
@SfNtweets journals #JNeurosci and #eNeuro serve the field by publishing conceptual advances in neuroscience.
ID: 4735675768
http://www.sfn.org 07-01-2016 15:16:46
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#JNeurosci: Results from Trautwein, Yoav Schweitzer, et al. point to a neural candidate mediating our embodied sense of self and highlight the potential of integrating qualitative interview methods into neuroscientific experiments. University of Haifa jneurosci.org/lookup/DOI/10.…

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#JNeurosci: Ph.D. Miriam Morales Koyam Morales Weil et al. show that by employing a fully genetically encoded magnetogenetic approach called FeRIC, neuronal voltage can be modulated, inducing either depolarization or hyperpolarization through the activation of ion channels with magnetic

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#JNeurosci: Ruwaida Ben Musa, Jenn Cornelius-Green, Kevin Cummings, et al. provide evidence that orexin neurons in the perifornical hypothalamus of rats increase the strength of the peripheral chemoreflex through the activation of corticotropin-releasing hormone neurons in the paraventricular

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#JNeurosci: Julien Dirani and Liina Pylkkanen explored how our brains access semantic knowledge from different types of stimuli, such as pictures and words. Results suggest that our brains store concepts in a rich, multi-faceted way, beyond just semantic representations. NYU Psychology

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#JNeurosci: Copenhaver and Tara LeGates have identified the use of sex-specific mechanisms for synaptic plasticity in a circuit that influences reward-related behaviors. Their research has significant implications for understanding the neurobiology underlying sex differences in

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#eNeuro: Where in a fish’s brain is auditory information processed? Using a marker of neural activity (pS6) Corrales Parada et al. show that auditory stimulation activates the dorsal subdivision of the anterior tuberal nucleus in zebrafish diencephalon. Uni Graz/University of Graz
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#eNeuro: Results from Tylor Harlow Heather Read et al. support the feasibility of using a novel individualized, closed-loop, neuromodulation approach to investigate and potentially improve abnormal alpha and other oscillation activity associated with multiple neurological
