揭示小鼠大脑中活跃神经元与网络活动框架,展示脑活动如何随昼夜变化
A framework to determine active neurons and networks within the mouse brain reveals how brain activity changes over the course of the day
生物技术与制药领域的最新动态
A framework to determine active neurons and networks within the mouse brain reveals how brain activity changes over the course of the day
Beyond the buzz: Grounding interoceptive interventions in mechanisms of brain–body coupling
Oxytocin neurons drive melanocortin circuit maturation via vesicle release during a neonatal critical period
Does the liver talk to the brain? If so, how and why?
In defense of pleasure: We need to rethink food reward and obesity
Interoception as a central mechanism in Whole Person Health
Evolving life-history traits promote biodiversity via eco-evolutionary feedback mechanisms
The body sends a signal: Perspectives on interoception
Cell2Spatial is a computational framework that maps single cells to spatial transcriptomic spots to reconstruct tissue architecture
The blood–brain barrier regulates brain tumor growth through the SLC36 amino acid transporter Pathetic in Drosophila
Hydroxyurea induces an oxidative stress response that triggers ER expansion and cytoplasmic protein aggregation
Chromosome duplication causes premature aging via defects in ribosome quality control
Transient frontopolar cortex stimulation induces prolonged disruption to counterfactual processing
Bacterial immune systems as causes and consequences of microbiome structure
Development of bitopic nanobody-ligand conjugates targeting G protein-coupled receptors and exhibiting logic-gated signaling
Sleep deprivation and sleep intensity exert distinct effects on cerebral vasomotion and brain pulsations driven by the respiratory and cardiac cycles
Diverse biophysical and molecular mechanisms drive phytoplankton sinking in response to starvation
Eye blinks synchronize with musical beats during music listening
STUPPIT is a proximity labeling tool for labeling intermediary proteins that bridge two non-interacting proteins
Editorial Note: Global Regulator SATB1 Recruits β-Catenin and Regulates TH2 Differentiation in Wnt-Dependent Manner