Physics of Complex Systems, from StatMech to Ecology and Neuroscience
Currently postdoc at @ictpnews - previously at @epfl and PhD at @LIPh_Lab @UniPadova
Our latest work with @dbusiello1 is out in Physical Review Letters! We combine information theory and stochastic thermodynamics to study how information can be efficiently transduced from hidden observables in noisy environments
@PhysRevLett
🧵👇
https://t.co/BKQNndAA18
A new study harnesses deterministic models to analyze survival probability and extinction time in finite-size populations — or ecosystems with a set carrying capacity.
🔗 https://t.co/7SK6CJzXUY
#Ecology
🏆 The winners of the "Entropy 2024 Outstanding Reviewer Award" have been announced!
👨🔬 The winners are: Dr. Giorgio Nicoletti, Dr. Chenxu Liu, Dr. Mario Stipčević, Dr. Peter Schlagheck, and Dr. Yuri Antonacci
Congratulations!
🔗https://t.co/tIZLQakKv9
🚀 New research alert! 🚀
Led by @jack_bjo@gnicoletti09@dbusiello1, our latest work in Physical Review Letters (https://t.co/nHWaMQQdzA) reveals how excitation-inhibition balance tunes the timescale of information coding in neuronal populations! 🧠🔬
#Balanced excitatory and inhibitory neuron activity is crucial for optimal brain #InformationProcessing, enhancing encoding efficiency and stability, according to recent findings in neuroscience. @physrevlett https://t.co/31ncsJmkyT https://t.co/VgJVL8cMfU
@NianticHelp I've contacted you via the app three days ago and still no reply. Several of my Kyurem do not know Glaciate, despite having the correct badge and riding the correct form. I wasted so many passes because of this, and the bug affected virtually all players. Could you at last reply?
@NianticHelp I've contacted you via the app three days ago and still no reply. Several of my Kyurem do not know Glaciate, despite having the correct badge and riding the correct form. I wasted so many passes because of this, and the bug affected virtually all players. Could you at last reply?
Now published @PhysRevLett: @gnicoletti09 & @dbusiello1@mpi_pks combine information theory and stochastic thermodynamics to identify the fundamental principles behind the mechanisms used by living organisms to extract information from a noisy environment. https://t.co/ZvgztF3j09
If you want to know more, check out our paper! @PhysicsMagazine also has an amazing viewpoint on our results, with a great non-technical overview!
https://t.co/Q21KbLheQU
9/9
Our latest work with @dbusiello1 is out in Physical Review Letters! We combine information theory and stochastic thermodynamics to study how information can be efficiently transduced from hidden observables in noisy environments
@PhysRevLett
🧵👇
https://t.co/BKQNndAA18
We use our framework to study red blood cells by quantifying how much information about the state of the internal cytoskeleton is transmitted to membrane flickering - unraveling a deep connection between healthy cellular conditions, energy dissipation, and information
8/9
In biological systems, optimal transduction strategies may boost information harvesting compared to the ideal case in which all the degrees of freedom are known
Letter: https://t.co/tL6okzjH5E
Viewpoint: https://t.co/XbLhERfnFb
Researchers have combined information theory and stochastic thermodynamics to identify the fundamental principles behind the mechanisms that bees and other beings use to extract information from a noisy environment. https://t.co/zIiTxHdLuV