Dual Neurosecretory Innervation of the Adenohypophysis of Hippocampus, the Sea-horse
Francis Knowles+2 more
openalex +1 more source
Detailed projection patterns of septal and diagonal band efferents to the hippocampus in the rat with emphasis on innervation of CA1 and dentate gyrus [PDF]
Csaba Nyakas+3 more
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A hydraulically actuated “Neurotentacle” probe offers tunable stiffness for precise implantation into the deep brain without rigid shuttles or dissolvable coatings. It stiffens during insertion to penetrate tissue and softens afterward to minimize damage and enable stable long‐term recordings.
Yang Wang+8 more
wiley +1 more source
An Amygdala‐hippocampus Circuit for Endocannabinoid Modulation of Anxiety Avoidance
This study employs three synapse‐specific endocannabinoids (eCB) probes to monitor dynamic eCB release, activate CB1Rs and knockdown 2‐AG biosynthesis enzymes in glutamatergic anterior basolateral amygdala ‐ ventral hippocampus (aBLA–vHPC) circuit. At aBLA–vHPC circuits, activation of CB1Rs reduce anxiety avoidance, and knockdown of eCB biosynthesis ...
Bao Xue+9 more
wiley +1 more source
EFFECT OF FORNICAL STIMULATION UPON THE CA1 AND CA2 APICAL DENDRITE OF RABBIT'S HIPPOCAMPUS
Yasuichiro Fujita, Yoshio Nakamura
openalex +2 more sources
Correlation between oxytocin neuronal sensitivity and oxytocin receptor binding: an electrophysiological and autoradiographical study comparing rat and guinea pig hippocampus. [PDF]
M. Raggenbass+3 more
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CRB‐2131, as a novel Nox inhibitor, suppresses brain oxidation, tauopathy, and neuro‐inflammation, thereby preventing death of mature neurons and promoting regeneration of immature neurons. Ultimately, this fosters a resilient brain and protects cognition.
Jihyeon Lee+13 more
wiley +1 more source
6. THE CORRELATION OF THE RHYIHMIC WAVES OF THE HIPPOCAMPUS WITH THE BEHAVIORS OF DOGS
Y Shimazono+5 more
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Identifying Tipping Points during Healthy Brain Aging through Single‐Nucleus Transcriptomic Analysis
This study applies single‐nucleus transcriptomics and systems dynamics to uncover nonlinear aging patterns in healthy human brains. By introducing dynamic network biomarker theory, the authors identify a critical tipping point at ages 56–60 during aging, and highlight glial instability as a key mediator.
Peiru Wu+9 more
wiley +1 more source