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- 7414 messages
1st CfP ACAIN 2024 - 4th Int. Advanced Course & Symposium on Artificial Intelligence & Neuroscience, September 22-25 2024, Riva del Sole Resort & SPA, Castiglione della Pescaia (Grosseto) Tuscany, Italy -> Submission Deadline: March 23
by Giuseppe Nicosia
Call for Participation & Call for Papers (apologies for multiple copies)
_______________________________________________________________
The 4th International Advanced Course & Symposium on Artificial
Intelligence & Neuroscience,
September 22-25, 2024, Riva del Sole Resort & SPA, Castiglione della
Pescaia (Grosseto) Tuscany, Italy
W: https://acain2024.icas.events
E: acain(a)icas.cc
FB: https://www.facebook.com/ACAIN.LakeDistrict/
Symposium Deadlines
Paper Submission (Symposium): by Saturday March 23, 2024 (AoE).
https://acain2024.icas.events/symposium-call-for-papers/
https://easychair.org/conferences/?conf=acain2024
Notification of Decision for Papers (Symposium): by Wednesday July 10, 2024.
Camera Ready Submission (Symposium): by Monday July 20, 2024.
Author Registration (Symposium): by July 20, 2024.
Regular Registration (Symposium): by Saturday March 23, 2024.
Late Registration (Symposium): from Sunday March 24, 2024.
Course Deadlines
Regular Registration (Course): by Saturday March 23, 2024.
Late Registration (Course): from Sunday March 24, 2024.
Oral Presentation Submission (Course): by Saturday March 23, 2024.
Notification of Decision for Oral Presentation (Course): by August 31, 2024.
SCOPE & MOTIVATION:
ACAIN 2024: AI meets Computational Neuroscience and Cognitive Science
The ACAIN 2024 symposium and course is an interdisciplinary event featuring
leading scientists from AI and Neuroscience, providing a special
opportunity to learn about cutting-edge research in the fields of AI,
Neuroscience, Neuroscience-Inspired AI, Human-Level AI, and Cognitive
Science.
The 4th Advanced Course and Symposium on Artificial Intelligence &
Neuroscience (ACAIN) is a full-immersion four-day Course and Symposium in
Tuscany on cutting-edge advances in Artificial Intelligence and
Neuroscience with lectures delivered by world-renowned experts. The Course
provides a stimulating environment for academics, early career researchers,
Post-Docs, PhD students and industry leaders. Participants will also have
the chance to present their results with oral talks or posters, and to
interact with their colleagues, in a convivial and productive environment.
Two days of keynote talks and oral presentations, the ACAIN Symposium,
(September 24-25), will be preceded by lectures of leading scientists, the
ACAIN Course, (September 22-23).
Bringing together AI and neuroscience promises to yield benefits for both
fields. The future impact and progress in both AI and Neuroscience will
strongly depend on continuous synergy, exchange, collaboration and
efficient cooperation between the two research communities. These are the
goals of the International Course and Symposium - ACAIN 2024, which is
aimed both at AI experts with interests in Neuroscience and at
neuroscientists with an interest in AI. ACAIN 2024 accepts rigorous
research that promotes and fosters multidisciplinary interactions between
artificial intelligence and neuroscience.
The Advanced Course is suited for scholars, academics, early career
researchers, Post-Docs, PhD students and industry leaders.
The Event (Course and Symposium) will involve a total of 36-40 hours of
lectures.
Academically, this will be equivalent to 8 ECTS points for the PhD Students
and
the Master Students attending the Event.
LECTURERS
https://acain2024.icas.events/course-lecturers/
* Auke Jan Ijspeert, EPFL, Switzerland
* Zeb Kurth-Nelson, DeepMind & UCL, London, UK
* Kevin J Miller, DeepMind & UCL, London, UK
* Thomas Parr, Oxford University, UK
* Eric Schulz, Max Planck Institute for Biological Cybernetics, Tuebingen,
Germany
More Lecturers TBA
COURSE DESCRIPTION:
https://acain2024.icas.events/course-description/
SYMPOSIUM CALL FOR PAPERS:
https://acain2024.icas.events/symposium-call-for-papers/
SYMPOSIUM PROGRAM COMMITTEE (partial list, confirmed members):
https://acain2024.icas.events/program-committee/
ORGANIZING COMMITTEE:
https://acain2024.icas.events/symposium-committee/
VENUE & ACCOMMODATION:
https://acain2024.icas.events/venue/
ACAIN 2024 is a *Residential Conference*, all participants (invited
speakers, authors, organizers, chairs, participants)
must book and stay at the Riva del Sole Resort and Spa. No exceptions are
allowed.
https://lod2024.icas.events/lod-2024-a-residential-conference/
Riva del Sole Resort & SPA
a: Località Riva del Sole - Castiglione della Pescaia (Grosseto) CAP 58043,
Tuscany - Italy
p: +39-0564-928111
f: +39-0564-935607
e: booking.events(a)rivadelsole.it
w: www.rivadelsole.it/en
ACTIVITIES:
https://acain2024.icas.events/activities/
REGISTRATION:
https://acain2024.icas.events/registration/
See you in Tuscany in September!
ACAIN 2024 Organizing Committee.
E: acain(a)icas.cc
W: https://acain2024.icas.events
FB: https://www.facebook.com/ACAIN.LakeDistrict
--
Feb. 1, 2024
Call for Abstracts: 33rd Annual Computational Neuroscience Meeting (CNS*2024)
by Rubchinsky, Leonid L
We are inviting abstracts for the 33rd Annual Computational Neuroscience Meeting (CNS*2024), which will be in Natal, Brazil, July 20-24, 2024.
The main meeting begins in the evening of Saturday, July 20 and runs through Tuesday, July 23. It will be preceded by a day of tutorials (Saturday, July 20) and followed by workshops (Tuesday, July 23 mixed with the main meeting and Wednesday, July 24 workshops only).
Registration and abstract submission are open now. Abstract submission deadline: March 11, 2024.
Note that one of the authors must register as a sponsoring author for the main meeting before abstract submission. In case the abstract is not accepted for presentation, the registration fee will be refunded. Submitted abstracts are used for creating the program and for publication. Please follow the formatting guidelines on the submission site.
Travel awards are available for student and postdoc members of OCNS. Please apply during the abstract submission form and note that an extended abstract is required when applying for a travel award or oral presentation format.
Registration: https://ocns.memberclicks.net/cns-2024-registration
Abstract submission for main meeting: https://www.cnsorg.org/cns-2024-abstract-submission
CNS*2024 meeting information: https://www.cnsorg.org/cns-2024
Workshop proposals are being accepted at: https://www.cnsorg.org/cns-2024-call-for-workshops
Tutorial proposals are being accepted at: https://www.cnsorg.org/cns-2024-call-for-tutorials
With kind regards,
Leonid Rubchinsky
OCNS Vice President
***********************
Leonid Rubchinsky, PhD
Professor
Department of Mathematical Sciences, Indiana University Purdue University Indianapolis
Stark Neurosciences Research Institute, Indiana University School of Medicine
402 N. Blackford St
Indianapolis, IN 46202-3216
lrubchin(a)iu.edu
http://www.math.iupui.edu/~lrubchin
***********************
Jan. 31, 2024
[Meetings] Extended Deadline - 15 February: 2024 Nengo Summer School
by Michael Furlong
Dear colleagues,
The deadline for application submission to the Nengo Summer School, has been extended to February 15th, 2024.
Applications can be submitted at this link:https://forms.gle/xhkNENnpPHeBXu5W7
[All details about this school can be found online at https://www.nengo.ai/summer-school]
The Centre for Theoretical Neuroscience at the University of Waterloo is excited to announce our 9th annual Nengo summer school on large-scale brain modelling and neuromorphic computing. This two-week school will teach participants to use the Nengo simulation package to build state-of-the-art cognitive and neural models to run both in simulation and on neuromorphic hardware. Summer school participants will be given on-site access to neuromorphic hardware and will learn to run high-level applications using Nengo! More generally, Nengo provides users with a versatile and powerful environment for designing cognitive and neural systems and has been used to build what is currently the world's largest functional brain model, Spaun, which includes spiking deep learning, reinforcement learning, adaptive motor control, and cognitive control networks.
For a look at the last in-person summer school, check out this short video: https://youtu.be/vRcN5-0wdQE
We welcome applications from all interested graduate students, postdocs, professors, and industry professionals with a relevant background.
***Application Deadline: February 15, 2024***
Format: A combination of tutorials and project-based work. Participants are encouraged to bring their own ideas for projects, which may focus on testing hypotheses, modelling neural or cognitive data, implementing specific behavioural functions with neurons, expanding past models, or providing a proof-of-concept of various neural mechanisms. Hands-on tutorials, work on individual or group projects, and talks from invited faculty members will make up the bulk of day-to-day activities. A project demonstration event will be held on the last day of the school, with prizes for strong projects!
Participants will have the opportunity to learn how to:
* interface Nengo with various kinds of neuromorphic hardware (e.g. BrainDrop, SpiNNaker)
* build perceptual, motor, and sophisticated cognitive models using spiking neurons
* model anatomical, electrophysiological, cognitive, and behavioural data
* use a variety of single cell models within a large-scale model
* integrate machine learning methods into biologically oriented models
* interface Nengo with cameras and robotic systems
* implement modern nonlinear control methods in neural models
* and much more…
Date and Location: June 2nd to June 14th, 2024 at the University of Waterloo, Ontario, Canada.
Applications: Please visit http://www.nengo.ai/summer-school, where you can find more information regarding costs, travel, lodging, along with an application form listing required materials.
If you have any questions about the school or the application process, please contact Michael Furlong (michael.furlong(a)uwaterloo.ca) The school is partly supported by ABR, Inc. We look forward to hearing from you!
Jan. 31, 2024
Open Postdoctoral Position in the Rich Lab: An Update
by Rich, Scott
Dear Comp-Neuro Listserv,
I am still accepting applications for the open postdoctoral position<https://jobs.hr.uconn.edu/cw/en-us/job/498073/postdoctoral-research-associa…> in my new lab at the University of Connecticut. While applications are being considered on a “rolling” basis, I’m currently planning to perform the first batch of interviews in late February/early March. If you’d like to be considered for a potential interview during this time frame, please apply as soon as possible.
As a reminder, I’m also recruiting graduate students. If you’re interested, please express your interest by filling out this Google Form<https://forms.gle/5wtYfXrGuHC2QmLh8> and be sure to apply officially to UConn’s Department of Physiology and Neurobiology (following the instructions here<https://pnb.uconn.edu/graduate/graduate-application-and-admission-informati…>).
If you have any questions about these and other opportunities in my lab, please don’t hesitate to contact me.
___________
Sincerely,
Scott Rich, Ph.D.
Assistant Professor, University of Connecticut
Department of Physiology and Neurobiology
pnb.uconn.edu/person/scott-rich/
<http://pnb.uconn.edu/person/scott-rich/>scottrich.mystrikingly.com<http://scottrich.mystrikingly.com>
Jan. 31, 2024
CFP FRCCS 2024 Montpellier, France May 29 – 31, 2024
by Hocine Cherifi
Fourth* F*rench* R*egional* C*onference on* C*omplex* S*ystems
May 29 – 31, 2024
Montpellier, France
*FRCCS 2024* <https://iutdijon.u-bourgogne.fr/ccs-france/>
After successfully hosting the conference in Dijon in 2021, Paris in 2022,
and Le Havre in 2023, the fourth edition of the French Regional Conference
on Complex Systems (FRCCS 2024) will be held in Montpellier, France. This
single track international conference organized by CSS France
<https://www.cssfrance.org/> serves as a platform to foster
interdisciplinary exchanges among researchers from various scientific
disciplines and diverse backgrounds, including sociology, economics,
history, management, archaeology, geography, linguistics, statistics,
mathematics, and computer science.
FRCCS 2024 provides a valuable opportunity for participants to meet in
France, exchange and promote ideas, facilitating the cross-fertilization of
recent research work, industrial advancements, and original applications.
Moreover, the conference emphasizes research topics with a high societal
impact, showcasing the significance of complexity science in addressing
complex societal challenges. Join us in Montpellier as we collectively
strive to better understand complexity and its implications for society.
You are cordially invited to submit your contribution until *February 21,
2024.*
Finalized work (published or unpublished) and work in progress are welcome.
Two types of contributions are accepted:
· *Papers* about *original research* (up to 12 pages)
· *Extended Abstract* about *published or unpublished* research (3 to
4 pages).
*Keynote Speakers*
· Petter Holme <https://petterhol.me/>, Aalto University, Finland
· Sonia Kéfi <https://biodicee.edu.umontpellier.fr/who-we-are/sonia-kefi/>,
Université de Montpellier, France
· Natasa Przulj <https://www.bsc.es/przulj-natasa>, Barcelona
Supercomputing Center, Spain
· Boleslaw K. Szymanski <https://www.cs.rpi.edu/~szymansk/> Rensselaer
Polytechnic Institute, USA
· Ingmar Weber <https://ingmarweber.de/>, Saarland University, Germany
*Publication*
o Contributions will be included in the conference proceedings (With ISBN)
o *Selected submissions of unpublished work will be invited for
publication in special issues (fast track procedure) **of the journals:*
o Applied Network Science, <https://appliednetsci.springeropen.com/>
edited by Springer
o Complexity,
<https://www.hindawi.com/journals/complexity/?utm_source=google&utm_medium=c…>
edited by Hindawi
*Submission *
· Submit on CMT Microsoft at:
https://cmt3.research.microsoft.com/FRCCS2024/
· *Select the Track: FRCCS2024*
*Topics include, but are not limited to: *
· *Foundations of complex systems *
- Self-organization, non-linear dynamics, statistical physics,
mathematical modeling and simulation, conceptual frameworks, ways of
thinking, methodologies and methods, philosophy of complexity, knowledge
systems, Complexity and information, Dynamics and self-organization,
structure and dynamics at several scales, self-similarity, fractals
- *Complex Networks *
- Structure & Dynamics, Multilayer and Multiplex Networks, Adaptive
Networks, Temporal Networks, Centrality, Patterns, Cliques, Communities,
Epidemics, Rumors, Control, Synchronization, Reputation, Influence, Viral
Marketing, Link Prediction, Network Visualization, Network
Digging, Network
Embedding & Learning.
- *Neuroscience, **Linguistics*
- Evolution of language, social consensus, artificial intelligence,
cognitive processes & education, Narrative complexity
- *Economics & Finance*
- Game Theory, Stock Markets and Crises, Financial Systems, Risk
Management, Globalization, Economics and Markets, Blockchain, Bitcoins,
Markets and Employment
- *Infrastructure, planning, and environment *
- critical infrastructure, urban planning, mobility, transport and
energy, smart cities, urban development, urban sciences
- *Biological and (bio)medical complexity *
- biological networks, systems biology, evolution, natural sciences,
medicine and physiology, dynamics of biological coordination, aging
- *Social complexity*
o social networks, computational social sciences, socio-ecological
systems, social groups, processes of change, social evolution,
self-organization and democracy, socio-technical systems, collective
intelligence, corporate and social structures and dynamics, organizational
behavior and management, military and defense systems, social unrest,
political networks, interactions between human and natural systems,
diffusion/circulation of knowledge, diffusion of innovation
- *Socio-Ecological Systems*
- Global environmental change, green growth, sustainability &
resilience, and culture
- *Organisms and populations *
- Population biology, collective behavior of animals, ecosystems,
ecology, ecological networks, microbiome, speciation, evolution
- *Engineering systems and systems of systems*
- bioengineering, modified and hybrid biological organisms,
multi-agent systems, artificial life, artificial intelligence, robots,
communication networks, Internet, traffic systems, distributed
control, resilience, artificial resilient systems, complex systems
engineering, biologically inspired engineering, synthetic biology
- *Complexity in physics and chemistry*
- quantum computing, quantum synchronization, quantum chaos, random
matrix theory
*GENERAL CHAIRS*
Roberto Interdonato CIRAD, UMR TETIS, Montpellier
Bruno Pinaud LABRI University of Bordeaux
Join us at COMPLEX NETWORKS 2024 <https://www.complexnetworks.org/>
*-------------------------*
Hocine CHERIFI
University of Burgundy Franche-Comté
Laboratoire* I*nterdisciplinaire *C*arnot de *B*ourgogne - ICB UMR 6303 CNRS
Editor in Chief Plos Complex Systems
<https://plos.org/complex-systems-research-journal/#:~:text=PLOS%20Complex%2….>
Founding & Adisory Editor Applied Network Science
<https://appliednetsci.springeropen.com/>
Editorial Board member PLOS One <https://journals.plos.org/plosone/>, IEEE
ACCESS <https://ieeeaccess.ieee.org/?http%3A%2F%2Fieeeaccess_ieee_org%2F>,
Scientific
Reports <https://www.nature.com/srep/>,
Journal of Imaging <https://www.mdpi.com/journal/jimaging>, Quality and
Quantity <https://www.springer.com/journal/11135/>, Computational Social
Networks <https://computationalsocialnetworks.springeropen.com/>,
Complex Systems <https://www.complex-systems.com/>
Jan. 31, 2024
post-doc position at the neuroscience department in Copenhagen
by Carmelo Bellardita
Dear Colleagues,
We are excited to announce an opportunity for a Postdoctoral position in Computational Neuroethology in my laboratory at the Department of Neuroscience, University of Copenhagen. This two-year position, beginning May 15th , 2024, offers a unique chance to combine computer science and neuroscience.
The project involves evaluating behavioral changes in rodents due to nervous system pathologies and assessing therapeutic interventions for three main brain disorders (stroke, Parkinson and spinal cord injury). Our laboratory integrates molecular and systems neuroscience to investigate the anatomical substrate and functional principles of the neural control of movement. We also have a strong translational aspect in the lab, trying to identify new therapeutic solutions to restore functional movements after brain or spinal cord damage.
The ideal candidate should have a Ph.D. in Computer Science or a related field, with expertise in machine vision, machine learning, or AI. Skills in programming, imaging, and signal processing are highly valued, alongside a strong inclination for interdisciplinary research and collaboration. For more details about the position and application process, please visit Postdoc in Computational Neuroethology at the Department of Neuroscience (hr-manager.net)<https://candidate.hr-manager.net/ApplicationInit.aspx/?cid=1307&departmentI…> or contact me at cbellardita(a)sund.ku.dk for further inquiries.
Best,
Carmelo
Carmelo Bellardita, PhD
Associated professor, group leader
Neural Circuitries and Motor Repair Laboratory
Department of Neuroscience
Copenhagen University.
Blegdamsvej 3B
2200, Copenhagen, Denmark
Mobile: 0045-52807980
[Universities LOGO]
Jan. 30, 2024
Post-doc or Research Engineer position offer: Computational modeling of genetic mutations at cellular level
by Elif Köksal
*Context.* Developmental and epileptic encephalopathies (DEEs) are a group
of severe rare diseases where the combined effect of seizures, most often
drug resistant, and the non-seizures consequences of the disease etiology,
often genetic, entail a debilitating encephalopathy with drastic effects on
the neurodevelopmental, psychiatric, and motor abilities of the patients.
DEEs due to potassium channel mutations (K-DEEs) are emblematic of this
disease presentation.
*Rationale.* The mechanisms underlying the relationship between i) the
molecular effect of a gene mutation (KCNB1/KCNT1/KCNA2) on specific voltage
gated potassium channel function, and ii) the patient-specific phenotypes
observed in scalp-recorded EEG signals remain elusive. Computational models
inspired from neuronal physiology is now recognized as a most efficient way
to bridge the gap between i) changes occurringat the level of neurons and
neuronal circuits and ii) electroencephalographic (EEG) signals recorded in
patients containing markers of the underlying pathology.
*Objective.* The objective of the proposed research position is to design
novel neuro-inspired models taking into account the molecular effect of a
gene mutation on the specific voltage-gated potassium (K) channel function
and the specific phenotypes observed in patients (scalp-recorded EEG
signals) and in genetically-modified mice (local field potentials) in which
downregulation or upregulation of K channels is induced.
*Methods*. Detailed multicompartment models (i.e. including dendrites, soma
and axon) will be developed. They will be based on Hodgkin and Huxley's
(HH) formalism. They will describe both passive (membrane capacitance,
axial resistivity, leakage conductance, and membrane time constant) and
active (voltage-gated and ligand-gated ion channels) membrane properties.
The channel pathogenic variants of KCNB1/KCNT1/KCNA2 mutations identified
in 2 other work packages (1 & 2) will be inserted in the membrane in order
to study the impact of the channel mutation on the firing rate curves of
considered neuron subtypes, typically pyramidal neurons (PYR), somatostatin
(SST-), parvalbumin (PV-), and vasoactive intestinal polypeptide (VIP-)
positive interneurons. Optimization methods will be developed for
identifying optimal parameters minimizing the distance between real and
simulated electrophysiological signals (LFPs). Models will use the Hodgkin
& Huxley formalism. They will be developed in Python. They will extend
already-existing models at cellular level. Strong background is available (
https://perso.univ-rennes1.fr/fabrice.wendling/)
*Scientific domains.* Engineering (computational, biomedical);
Neuroscience; Neurology; Computer Science (implementation of Python
routines into an existing software application named COALIA).
*Scientific environment.* This research will benefit from an outstanding
clinical research environment, centeredaround the largest curated K-DEE
cohorts, coordinated by the Necker reference center for rare epilepsies
(Prof. Rima Nabbout), and assembling an extensive group of experts from
various specializations, including clinical,electrophysiological,
psychological, computational, translational research, biotechnology and
pharma industry.
*Candidate profile.* The research project is at the interface between
biomathematics (neuro-inspired models) and neuroscience/neurology
(epilepsy). The Post-doc/Engineer fellow (PhD level) will preferably have a
strong background in computational neuroscience/systems biology or in
electrical engineering with experience in bio-signal processing. Knowledge
in electrophysiology and/or EEG analysis would be an asset.
*Contract *The position will be opened March. 1st, 2024 (flexible). The
contract is for 3 years (flexible). The employer is the University of
Rennes. The competitive salary will be according to experience (2300 Euros
net, minimum). The candidate will also have access to the French system
benefits. Location in the city of Rennes, France. LTSI-Inserm laboratory,
University of Rennes. In addition, the hired person will have the
opportunity to actively collaborate with other groups involved in the
innov4epik RHU project (2024-2029), funded by the French National Research
Agency (ANR).
*Contact (please provide resume, cover letter and email of 2 references)*
Pascal Benquet (Prof Univ Rennes, LTSI, France) Email:
pascal.benquet(a)univ-rennes.fr
Fabrice Wendling (DR Inserm, LTSI, France) Email: fabrice.wendling(a)inserm.fr
Jan. 30, 2024
PLENA 2024 - Pucon Learning and AI Summit
by Prof Sonja Gruen
Dear Colleagues,
The Pucón Learning and AI (PLENA) Summit https://plena.cenia.cl is
taking place in the South
of South America, in Pucon, Chile this April 8 -12, 2024. Check Chile
out here
https://www.youtube.com/watch?v=RK3Ou8vq84Y and
https://www.youtube.com/watch?v=eSYpegYD4jc .
We invite you to explore the intersection of neuroscience and AI, with a
particular focus on
mechanisms of learning. PLENA is a small gathering of experts and
trainees that will provide a
platform for AI and experimental neuroscience researchers to delve into
the mechanisms of
learning at the cellular, systems, and behavioral levels.
Upon multiple requests we have set up a rolling application extending to
March 8th, 2024.
Secure your place by applying as soon as possible. We will be selecting on a
first-come-first-serve basis until we have reached our capacity of 120
researchers and trainees.
Register here: https://plena.cenia.cl/registration/
See our spectacular and diverse lineup of speakers here:
https://plena.cenia.cl/speakers/
We have also added a coordinated sequence of three workshops entitled
Bridging Scales from
Neural Activity to Learning Machines “from the detailed analysis of
neuronal activity to the
construction and simulation of full-scale models to the application of
abstract learning
machines”. Access is included with your registration.
Access is included with your registration.
See you in Chile!
PLENA Scientific Committee:
Roberto Araya (U. Montreal, Canada)
Christopher Pack (McGill University, Canada)
Pedro Maldonado (Universidad de Chile, Chile)
Markus Diesmann (Jülich Research Center, Germany)
We thank our sponsors, partners and affiliated institutions
--
Prof. Dr. Sonja Gruen, Director
Inst of Neuroscience and Medicine (INM-6/-10) Tel +49-2461-61-4748 (secr)
Computational and Systems Neuroscience & tel +49-2461-61-9301 (lab)
Institute for Advanced Simulation (IAS-6) Mob +49-175-2972436
Jülich Research Centre and JARA Institute I
Jülich, Germany
Theoretical Systems Neurobiology
RWTH Aachen University, Aachen, Germany
www.csn.fz-juelich.de
elephant.readthedocs.io
Jan. 30, 2024
Computational neuroscience PhD position in the Mejias lab at Amsterdam
by Jorge Mejias
Dear all,
The Mejias lab and the Cognitive and Systems Neuroscience Group at the
University of Amsterdam are seeking a highly qualified and motivated
candidate for a PhD position in Computational Neuroscience. The position
falls under the Horizon Health Europe Consortium grant “Virtual Brain Twins
for Personalized Treatment of Psychiatric Disorders”. This Consortium
constitutes a large collaboration between different European institutions,
aiming to develop personalized brain simulation software (“virtual brain
twins”) to improve the diagnosis and treatment of schizophrenia.
The main objective of this PhD project is to develop a biologically
realistic computational model of the human brain, and use it to study
alterations in brain activity associated with schizophrenia. Such model
will make use of local neural mass models (developed by our Consortium
partners) to simulate multiple brain areas, and will bring them together
using structural connectivity data from human subjects. The model will be
then used to explore the effects of schizophrenia-related alterations in
brain dynamics and function, and to derive patient-specific virtual brain
simulations to improve diagnosis and explore treatments in collaboration
with clinical Consortium partners.
The project will be supervised by Dr. Jorge Mejias, principal investigator
in computational neuroscience and leader of the Dutch component of the
Consortium, and by Prof. Dr. Cyriel Pennartz, head of the Cognitive and
Systems Neuroscience Group. You will closely collaborate with other
Consortium members, particularly with the team of Prof. Viktor Jirsa at
Aix-Marseille University, and will also benefit from interactions with
local colleagues including other theoretical, computational and
experimental neuroscientists at the Cognitive and Systems Neuroscience
Group.
We are looking for candidates with:
• a Master's Degree in computational neuroscience or closely related
field, with a focus on modeling biological neural systems. Alternatively, a
Master Degree in Physics, Mathematics, Computational Science or a closely
related field, and a clear background or affinity for brain modeling;
• strong quantitative and analytical skills, including calculus, linear
algebra, differential equations, dynamical systems, stochastic processes
and complex systems;
• strong computational/programming skills (preferably with Python),
including numerical methods for differential equations, machine learning
and data analysis;
• a keen, demonstrated interest in neuroscience research;
• experience with computational neuroscience modeling projects, with
virtual brain simulation engines (e.g. TVB), and/or with high performance
computers is considered an advantage;
• ability to read and understand relevant neuroscientific, cognitive and
clinical literature and use experimental data to build models;
• ability to communicate effectively in English, within a
multidisciplinary team and in an international context;
We offer a temporary contract for 38 hours per week for the duration of 4
years, which will culminate in the defense of your PhD thesis. We will also
draft an educational plan that includes attendance of courses and
(international) meetings, and you will also assist in teaching and other
activities in the lab. The gross monthly salary will range from €2,770 in
the first year to €3,539 in the last year, based on a full-time appointment
(38 hours per week). Additionally, you will receive every year an 8%
holiday allowance and 8.3% end-of-year bonus. A favourable tax agreement,
the ‘30% ruling’, may apply to non-Dutch applicants, effectively increasing
their net salary.
The lab is located in the state-of-the-art facilities of the Science Park
at the University of Amsterdam, a top research university with a strong
focus on cognition and brain research, and it has good communications with
other academic and research centers in the city. As one of the most vibrant
cities in Europe, Amsterdam has a rich historical and cultural heritage
that includes the UNESCO World Heritage city center and canals, dozens of
world-class museums and restaurants, and an exciting nightlife. The city
promotes a healthy lifestyle with fantastic work-life balance, plenty of
outdoor life, parks and recreational areas, an excellent bicycle path
networks and an expat-friendly environment.
The application deadline is February 25, 2024. Candidates may apply by
following this link:
https://vacatures.uva.nl/UvA/job/PhD-position-in-Computational-Neuroscience…
Best,
Jorge Mejias
--
Jorge F. Mejias, PhD
Assistant Professor
Cognitive and Systems Neuroscience
Swammerdam Institute for Life Sciences
University of Amsterdam, 1098XH Amsterdam
The Netherlands
www.ugr.es/~jmejias
Jan. 30, 2024
Computational Neuroscience Ph.D. position with FONTOLAN, GUTKIN and KHAZIPOV labs @INMED Marseille
by Lorenzo Fontolan
Ph.D. funding is available through the Alan Turing Centre for Living
Systems to work with the *Fontolan* lab in collaboration with the *Khazipov
*lab in Marseille and the *Gutkin* lab in Paris.
The candidate will develop a *neuronal network model of the early Sharp
Waves in the neonatal rodent hippocampus*.
More details on the project:
https://centuri-livingsystems.org/phd2024-18/
Information about the selection process:
https://centuri-livingsystems.org/recruitment/
*Deadline February 15*
--
*Desired profile*
The Ph.D. student should hold a Master’s degree in *physics/applied
mathematics/electrical engineering/computational neuroscience*. Basic
skills in modelling of neural/biological systems can be of additional
advantage. Of high importance are: i) the ability to work in an
interdisciplinary environment, ii) the willingness to dig into the
biological intricacies of neural circuits, and iii) to combine analytical
and numerical approaches that incorporate experimental data.
*Project description*
*During development, neuronal networks display peculiar patterns of
activity, directly involved in the formation of neuronal circuits. Early
Sharp Waves (eSPWs) are the predominant structured activity pattern in the
developing entorhinalhippocampal network of neonatal rodents, which is
thought to be essential for the formation of the connections between the
entorhinal cortex (EC) and the hippocampus. Considerable amount of data on
cellular, synaptic and network aspects of EC-driven eSPWs in the neonatal
hippocampus has been accumulated recently in the Khazipov team at INMED,
yet the generative mechanisms of eSPWs remain elusive. One of the central
hypotheses involves the different modes of operation of the early vs late
EC-hippocampal network, which is enabled by delated development of
GABAergic inhibition and large temporal integration window of excitatory
inputs from EC or other hippocampal subnetworks. The aim of this project is
to identify the generative mechanism of eSPWs by developing a biologically
accurate circuit model of EC-driven eSPWs based on recent data, and
formulate specific predictions that will be experimentally tested in the
Khazipov lab.*
*Objectives*
- Construct a comprehensive circuit model of the EC-hippocampal network
incorporating cellular, synaptic, and population data to simulate network
activity during development, and particularly the genesis of eSPWs.
- Identify the key network components of the EC-hippocampal circuit in
the generation of eSPW via model predictions.
- Test the different hypotheses regarding the generative role of
developing EC-hippocampus connectivity in eSPW onset, considering the role
of delayed GABAergic inhibition and temporal integration windows of network
inputs.
*References*
- Leinekugel X, Khazipov R, Cannon R, Hirase H, Ben Ari Y, Buzsaki G.
(2002) Correlated bursts of activity in the neonatal hippocampus in vivo.
Science 296(5575):2049-52
- Valeeva G, Janackova S, Nasretdinov A, Rychkova V, Makarov R, Holmes
GL, Khazipov R, Lenck-Santini PP. (2019) Emergence of Coordinated Activity
in the Developing Entorhinal-Hippocampal Network. Cereb Cortex 29(2):906-20.
- Fontolan L, Hyafil A, Krupa M, Gutkin B. (2013) Analytical insights on
theta-gamma coupled neural oscillators. J Math. Neuroscience 3(1):16.
- Finkelstein A, Fontolan L, Economo MN, et al. Attractor dynamics gate
cortical information flow during decisionmaking. Nat Neurosci 24, 843–850
(2021). https://doi.org/10.1038/s41593-021-00840-6
- Romagnoni A, Colonnese, M, Touboul J and Gutkin B (2020) Progressive
Alignment of Inhibitory and Excitatory Delay May Drive a Rapid
Developmental Switch in Cortical Network Dynamics, J. Neurophys,
123(5):1583-1599. Doi: 10.1152/jn.00402.2019--
Lorenzo Fontolan
--
Group Leader
*Turing Centre for Living Systems (CENTURI) Institut de Neurobiologie de la
Méditerranée & Centre de Physique Théorique Université Aix-Marseille,
France*
*https://www.inmed.fr/neural-computation-and-dynamics
<https://www.inmed.fr/neural-computation-and-dynamics>*
*https://centuri-livingsystems.org/l-fontolan/
<https://centuri-livingsystems.org/l-fontolan/>*
Jan. 30, 2024