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the Turing Machine
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Join me through the journey of learning Computational Neuroscience topics.
Useful resources, positions and much more!
Get in touch: @nosratullah
Website: nosratullah.github.io
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The Neureka Smart Medtech Platform accelerates the development of personal digital therapies for Neurological disorders such as Epilepsy, Parkinson’s Disease, Chronic Pain, Severe Depression and Opioid addiction. Neureka delivers treatment solutions that impact neurological care and improves the lives of patients and their families.

Link: Neureka

#Neuroscience
Follow: @theTuringMachin
The Neureka Smart Medtech Platform accelerates the development of personal digital therapies for Neurological disorders such as Epilepsy, Parkinson’s Disease, Chronic Pain, Severe Depression and Opioid addiction. Neureka delivers treatment solutions that impact neurological care and improves the lives of patients and their families.

Link: Neureka

#Neuroscience
Follow: @theTuringMachine
sunpy
The community-developed, free and open-source solar data analysis environment for Python.

Link: SunPy

#DataScience
Follow: @theTuringMachine
SimFin is a database with financial data such as Income Statements, Balance Sheets and Cash Flow Statements, along with a simple Python API for downloading and using the data. These tutorials show how to use the SimFin API and data.
Link: SimFin
Github Repo: GitHub

#DataScience #DataAnalysis
Follow: @theTuringMachine
Forwarded from Scientific Programming (ZiAEE)
Computational neuroscience resources
On this page is a list of resources for learning computational neuroscience that are freely available online.
#resources
#computational_neuroscience
@scientific_programming
Forwarded from Apply Club Channel (Hadi M)
The Medical Imaging with Deep Learning #MIDL conference will be held free this year.

Registration is still required though.

Registration link: https://2020.midl.io/registration.html

🆔 @ApplyClub
Neurons are cells — small bodies of mostly water, ions, amino acids and proteins with remarkable electrochemical properties. They are the primary functional units of the brain. Our mental experiences — our perceptions, memories, and thoughts — are the result of the ebb and flow of salts across neural bi-lipid membranes and the synaptic transmissions between neurons. Understanding neurons and neural computation can help illuminate how our rich mental experiences are constructed and represented, the underlying principles of our behavior and decision making, as well as provide biological inspiration for new ways to process information and for artificial intelligence.

Link: Website
#Neuroscience
Follow: @theTuringMachine
Modern Research Data Management for Neuroscience

Upload your data to private repositories.
Synchronise across devices.
Securely access your data from anywhere.

Link: G-Node
#Neuroscience #Programming
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The geometry of abstraction in artificial and biological neural networks

The curse of dimensionality plagues models of reinforcement learning and decision-making. The process of abstraction solves this by constructing abstract variables describing features shared by different specific instances, reducing dimensionality and enabling generalization in novel situations. We characterized neural representations in monkeys performing a task where a hidden variable described the temporal statistics of stimulus-response-outcome mappings. Abstraction was defined operationally using the generalization performance of neural decoders across task conditions not used for training. This type of generalization requires a particular geometric format of neural representations. Neural ensembles in dorsolateral pre-frontal cortex, anterior cingulate cortex and hippocampus, and in simulated neural networks, simultaneously represented multiple hidden and explicit variables in a format reflecting abstraction. Task events engaging cognitive operations modulated this format. These findings elucidate how the brain and artificial systems represent abstract variables, variables critical for generalization that in turn confers cognitive flexibility

Link: Crowdcast
#Neuroscience #events
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Forwarded from datascienceinfo