"Human TRPA1 activity is suppressed by caffeine (Figure 10), whereas in mice this ion channel is stimulated by caffeine."

https://doi.org/10.1177/0960327119877460

#MouseVsHuman #MouseModel #Mice #TRPA1 #TRPchannels #caffeine #pain #neuroscience #biology

Our new #preprint on #ThreePhoton in vivo #imaging of #neurons and #glia πŸ”¬ in the medial prefrontal cortex (#mPFC) 🧠 with sub-cellular resolution πŸ” is out! Check it out on #biorxiv:

🌍 https://www.biorxiv.org/content/10.1101/2024.08.28.610026v1

#Neuroscience #multiphoton #3p vs. #2p #twophoton #hippocampus #drosophila #MouseModel #DeepImaging #preprintalert #DZNE @dzne

DAMM, Detect Any #MouseModel 🐭, has just been released πŸ‘Œ It’s a robustly validated mouse detector that excels in generalization, tracking mice in complex social and experimental settings with zero to minimal setup-specific training

🌍 http://web.eecs.umich.edu/gkaul/DAMM
🌍 GitHub: http://github.com/backprop64/DAMM
πŸ“’ Kaul et al. (2024) http://biorxiv.org/content/10.1101/2024.01.18.576153v1

#BehavioralScience #behavioralanalysis #neuroscience #machinelearning

Macrophages are essential immune cells that reside in all tissues. Some macrophages arise from monocytes in the blood, but during fetal development they also come from a unique pathway!

We still have a lot to learn, but here I'll describe how Zhao et al. (2023) used mouse models to uncover hints about which progenitor cells create tissue-macrophages.

https://doi.org/10.1016/j.celrep.2023.113364

#Macrophages #MouseModel #Immunology #Immunity #scRNAseq #FlowCytometry #Research #JournalArticle #JournalClub

1/9🧡

Really cool application of Infinity Flow to #MouseModel #Tcells, which allows readout/prediction of >200 surface epitopes on single cells via #FlowCytometry.

https://doi.org/10.1016/j.immuni.2023.06.005

By @maxevrard
#Immunology #TissueImmunity

A novel orthotopic mouse model replicates human lung cancer cachexia. https://doi.org/10.1002/jcsm.13222 #CancerCachexia #LungCancer #MuscleWasting #MouseModel #OrthotopicMouseModel

New results in a mouse model "demonstrate the rapid and potent effects of [artificial light at night] on cerebrovascular networks, highlighting the importance of ALAN mitigation in the context of health and cerebrovascular disease."

https://www.cell.com/iscience/fulltext/S2589-0042(23)01073-8

#Neuroscience #Chronobiology #MouseModel #ModelOrganism #Cerebrovascular #ALAN

#scientists previously believed silent synapses were only present during early development; however, #mousemodel research found that about 30% of all synapses in the cortex are silent.

https://scitechdaily.com/surprising-discovery-mit-neuroscientists-find-that-adult-brain-is-filled-with-millions-of-silent-synapses/

Surprising Discovery: MIT Neuroscientists Find That Adult Brain Is Filled With Millions of β€œSilent Synapses”

The ability of the adult brain to form new memories and absorb new information may be explained by these immature connections. MIT neuroscientists have found that the adult brain is filled with millions of "silent synapses" β€” immature connections between neurons that are not active until they are n

SciTechDaily

#scientists previously believed silent synapses were only present during early development; however, #mousemodel research found that about 30% of all synapses in the cortex are silent.

https://scitechdaily.com/surprising-discovery-mit-neuroscientists-find-that-adult-brain-is-filled-with-millions-of-silent-synapses/

Surprising Discovery: MIT Neuroscientists Find That Adult Brain Is Filled With Millions of β€œSilent Synapses”

The ability of the adult brain to form new memories and absorb new information may be explained by these immature connections. MIT neuroscientists have found that the adult brain is filled with millions of "silent synapses" β€” immature connections between neurons that are not active until they are n

SciTechDaily