This paper presents an important advance in genetically encoded voltage imaging of the developing zebrafish spinal cord in vivo, capturing voltage dynamics in neuronal populations, single cells, and ...
Study shows how kangaroos achieve greater energetic efficiency when hopping fast, presenting new approaches for further investigation into kangaroo and macropod kinematics.
Learn more about eLife assessments Blood flow to the brain is a sensitive marker of neuronal activity as well as of a number of diseases, including stroke, tumours and neurodegenerative conditions.
Up-to-date computational pipeline characterizes G-protein-coupled receptor (GPCR) repertoires in the closest relatives of metazoans, providing a framework to investigate the evolutionary origins and ...
Findings reveal how harm and responsibility shape feelings of guilt and shame in different ways, which in turn drive behaviours in response to these emotions.
Using drugs that inhibit enzymes called CDK4/6 and CDK2 extends the G1 phase of the cell cycle and helps to slow the growth of drug-resistant breast cancer.
Association of paleopalynological data from the Nanxiong Basin, south China, and late Paleocene niche expansion in endemic Asian fossil mammals.
Testosterone promotes the conversion of glucose to fatty acids by increasing the expression of ACLY in seminal vesicle epithelial cells, thereby regulating the seminal plasma components.
Ripples maintain time-locked occurrence across the septo-temporal axis and hemispheres while showing local phase coupling, revealing a dual mode of synchrony in CA1 network dynamics.
Genes steadily associated with prognosis define conserved mitotic and immune programs that robustly predict cancer patient survival and therapeutic resistance across tumor types.
The PINOID (PID) protein kinase is required for flower initiation in Arabidopsis. The pid mutants fail to initiate flowers on inflorescences, a phenotype that is mimicked by disrupting either the ...
Analyzing stochastic cell-to-cell variability can potentially reveal causal interactions in gene regulatory networks.
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