Postdoctoral Scholar @UCSF-Ingraham lab. Studying estrogen regulation of hypothalamic non-neuronal and neuronal cells in different reproductive states.
I am excited to share my first-author pre-print in songbirds, where we explore mechanisms of brain circuit restoration at the behavioral, neuronal, and transcriptomic level over time - a collaboration with @alfairhall, @lpachter and @neuroluebbert
https://t.co/5FpXVS8uPP
Pretty stoked to share my postdoc work, now out in Science! 🎉
We show how estrogen ingeniously co-opts communication between gut epithelial cells to modulate pain.
https://t.co/xLTxGUfxTl
🧵⬇️ THREAD (1/11)
Thrilled to share our preprint -
A Cellular Basis for Heightened Gut Sensitivity in Females
https://t.co/4bcwvhkCAD
Why is GI pain more common in women?
Blame it on estrogen! It ramps up the cross-talk between L-cells and EC cells — making the gut more sensitive to pain signals.
1/10 Very excited to announce that my thesis project is now a preprint! We present the first detailed study of mental imagery in human ventral temporal cortex, bringing together the interests of @doristsao and @UeliRutishauser. https://t.co/LBukzKqMOA
A thread acknowledging the many contributions of the @UCSF@UCDavisHealth team for our study, out online at https://t.co/WPXWRTzjPU
1/7—We identify a new hormone, CCN3, produced in the hypothalamus to build bones and offset bone loss during lactation - a 5-year journey. One cover idea 👇.
Scientists Discover a New Hormone that Can Build Strong Bones | UC San Francisco
Thank you @LauraKurtzman for a great summary of team effort with @dr_ambrosi https://t.co/jQS25Hphu3
I am thrilled to share our work showcasing the remarkable recovery of a complex learned behavior in a predominantly unsupervised manner! This achievement is the product of a fantastic collaboration with @alfairhall and her exceptionally talented trainees.
Unsupervised restoration of a complex learned behavior, song production, after large-scale neuronal perturbation causing severe song degradation in zebra finches
https://t.co/XVoqiTztNL
A hunt, a surprise, and then clarity - Congrats to the team! Love 😍 it.
Brain-Derived CCN3 Is An Osteoanabolic Hormone That Sustains Bone in Lactating Females https://t.co/xCJIlDz2tZ
Our experiments reveal that the adult brain can overcome extended periods of E/I imbalance. The deployment of mechanisms typically employed during juvenile learning suggests that circuit plasticity may persist throughout adulthood, awaiting reactivation for circuit restoration.
I am excited to share my first-author pre-print in songbirds, where we explore mechanisms of brain circuit restoration at the behavioral, neuronal, and transcriptomic level over time - a collaboration with @alfairhall, @lpachter and @neuroluebbert
https://t.co/5FpXVS8uPP
Next, we set out to measure the cellular and transcriptomic changes underlying song recovery. Single-cell RNA sequencing of HVC during the height of circuit restoration (25 days) revealed elevated levels of microglia and MHC I (not seen in virus-injected control).
Super excited to share a preprint! At @Caltech, we build the first closed-loop brain-machine (#BMI) interface that is able to decode internal speech 💭. Check it out here: https://t.co/8bNDtGA6w2