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- 15 participants
- 7398 messages
Researcher (Joint Position with NYU CNS), Center for Computational Neuroscience
by Serena Fuccillo
Researcher (Joint Position with NYU CNS), Center for Computational
Neuroscience
The Center for Neural Science (https://www.cns.nyu.edu/) at New York
University (NYU), jointly with the Center for Computational Neuroscience
(CCN) at the Flatiron Institute of the Simons Foundation, invites
applications for an open rank joint position, with a preference for junior
or mid-career candidates. We seek exceptional candidates that use
computational frameworks and methods to develop concepts, models, and tools
for understanding brain function. Areas of interest include sensory
representation and perception, memory, decision-making, adaptation and
learning, and motor control.
During the academic year 2021-2022, the position will initially be a
full-time position at NYU. Beginning academic year 2022-2023, the position
will become a joint appointment between NYU and CCN, with the appointee
spending half time in each location (both in lower Manhattan). The NYU
position is a tenure-line faculty position at the Assistant, Associate, or
full Professor level depending on the candidate’s background and
experience. The holder of an Assistant level appointment will be
considered for promotion to a tenured Associate professorship according to
NYU's standard policies and procedures. The corresponding position at CCN
may be Associate or Full Research Scientist, or Group Leader, again
depending on candidate experience. The initial appointment is for three
years, and is renewable, subject to satisfactory progress in research.
A Ph.D. in a relevant field, such as neuroscience, engineering, physics or
applied mathematics, is required. The responsibilities for this joint
position include but are not limited to: establishing a research program
with a significant computational component; participating in the
international neuroscience research community; teaching at the
undergraduate and graduate levels at NYU; contributing to the scientific
culture and activities at the Flatiron Institute by collaborating with
other researchers, hiring and supervising junior researchers, and assisting
with the organization of CCN-related conferences, workshops, group seminars
and summer programs.
Review of applications will begin 28 March 2021.
Important: in order to be considered for this joint appointment, candidates
must submit their application in two places:
To NYU at: https://apply.interfolio.com/83845
To CCN at:
https://simonsfoundation.wd1.myworkdayjobs.com/en-US/simonsfoundationcareer…
Application materials should include a brief cover letter, a statement
describing current and planned research and teaching activities, a
curriculum vitae including a list of publications, and names and contact
information for three references.
Because diversity and inclusion are an important part of the NYU mission,
candidates should include a paragraph in their cover letter indicating how
diversity and inclusion figure into their past, present, and future
teaching, research, and community engagement. (Additional information can
be found here:
http://as.nyu.edu/departments/facultydiversity/recruitment/diversity-statem…
).
All applications will be reviewed by a joint committee consisting of
members from CNS and CCN.
MINIMUM QUALIFICATIONS
Education
A successful candidate will have a Ph.D. in neuroscience, physics,
engineering, applied mathematics or a related discipline. One or more years
of postdoctoral research experience is desirable.
Experience
-
Demonstrated abilities in establishing a neuroscience-related research
program, embracing the opportunities offered by a joint position between
NYU CNS and CCN. The research program must include a significant
computational component.
-
A record of excellence in scientific publication.
-
Ability to teach effectively at both the undergraduate and the graduate
level.
-
Strong oral and written communication skills, supporting collaboration
and cooperation across traditional disciplinary boundaries.
-
Knowledge of software development and dissemination, either for
scientific simulation, model fitting, experimental design, or analysis of
modern high-throughput experimental data acquisition, is desirable.
About NYU
More information about NYU Center for Neural Science can be found at
https://as.nyu.edu/content/nyu-as/as/departments/cns.html. The Faculty of
Arts and Science at NYU is at the heart of a leading research university
that spans the globe. We seek scholars of the highest caliber, who embody
the diversity of the United States as well as the global society in which
we live. We strongly encourage applications from women, racial and ethnic
minorities, and other individuals who are under-represented in the
profession, across color, creed, race, ethnic and national origin, physical
ability, gender and sexual identity, or any other legally protected basis.
NYU affirms the value of differing perspectives on the world as we strive
to build the strongest possible university with the widest reach. To learn
more about the FAS commitment to diversity, equality and inclusion, please
read here. (
http://as.nyu.edu/content/nyu-as/as/administrative-resources/office/dean/di…
<http://as.nyu.edu/administrative-resources/office/dean/diversity-initiative…>).
EOE/Affirmative Action/Minorities/Females/Vet/Disabled/Sexual
Orientation/Gender Identity.
About the Flatiron Institute
The Flatiron Institute (https://www.simonsfoundation.org/flatiron) is a
major, new internal scientific unit of the Simons Foundation. It consists
of five Centers – Astrophysics, Quantum Physics, Mathematics, Biology, and
Neuroscience) each focused on the computational aspects of a particular
area of basic science. It aims to generate original scientific discoveries,
along with new computational infrastructure supporting and enabling such
discoveries by the community at large.
The newly formed Center for Computational Neuroscience aims to develop
models, principles and conceptual frameworks that deepen our knowledge of
brain function — both in health and in disease. CCN takes a “systems"
neuroscience approach, building models that are motivated by fundamental
principles, that are constrained by properties of neural circuits and
responses, and that provide insights into perception, cognition and
behavior. This cross-disciplinary approach not only leads to the design of
new model-driven scientific experiments, but also encapsulates current
functional descriptions of the brain that can spur the development of new
engineered computational systems, especially in the realm of machine
learning.
Simons Foundation Diversity Commitment
Many of the greatest ideas and discoveries come from a diverse mix of
minds, backgrounds and experiences, and we are committed to cultivating an
inclusive work environment. The Simons Foundation actively seeks a diverse
applicant pool and encourages candidates of all backgrounds to apply. We
provide equal opportunities to all employees and applicants for employment
without regard to race, religion, color, age, sex, national origin, sexual
orientation, gender identity, genetic disposition, neurodiversity,
disability, veteran status, or any other protected category under federal,
state and local law.
Warm Regards,
*Serena Fuccillo*
Coordinator, Center Administration
Center for Computational Neuroscience
*FLATIRON INSTITUTE*
162 Fifth Avenue, 3rd Floor
New York, NY 10010
March 5, 2021
Postdoc in machine learning at EPFL (Lausanne, Switzerland)
by Milekovic Tomislav
Postdoc position in the lab of Prof. Gregoire Courtine at EPFL (Lausanne, Switzerland)
Machine learning techniques to develop and enhance clinical treatments based on electrical stimulation of the spinal cord
Location:
The laboratory of Prof. Gregoire Courtine at the Swiss Federal Institute of Technology (EPFL) in Lausanne, Switzerland, is looking to fill a fully funded postdoc position. The qualified candidate will benefit from joining a very dynamic and multidisciplinary group working at the interface of computational neuroscience, neuroengineering, prosthetics and biology. EPFL provides state-of-the-art facilities and is one of the leading technical universities worldwide. Postdoc salaries at EPFL rank the highest in the world.
Opportunity:
The offered position will be based at the Defitech Center for interventional Neurotherapies (NeuroRestore) - a research and innovation center joining EPFL’s lab of Prof. Gregoire Courtine and the University Hospital of Lausanne (CHUV) lab of Prof. Jocelyne Bloch. NeuroRestore conceives, develops and applies medical therapies aimed to restore neurological functions. To this end, NeuroRestore integrates implantable neurotechnologies with innovative treatments developed through rigorous preclinical and clinical studies. By working with our network of vibrant high-tech start-ups and established medical technology companies, NeuroRestore is committed to validate our medical therapy concepts. The overarching goal of NeuroRestore is to see our medical therapies used every day in hospitals and rehabilitation clinics worldwide.
Description:
Therapies based on epidural electrical stimulation (EES) of the spinal cord can restore the ability to walk to people paralyzed by spinal cord injury, and alleviate gait deficits of people with Parkinson’s disease. EES does this by recruiting sensory axons within dorsal spinal roots that enter the spinal cord between the vertebrae to increase the activation of the spinal motor pools that, in turn, move the muscles. Yet, the efficacy of the EES-based therapies relies on synchronizing users’ movement intentions with the spatiotemporal stimulation protocols that reliably and accurately generate paralyzed movements. Due to the large state space of all the stimulation parameters (location, amplitude, frequency, etc.) efficacy of the therapy depends on the fast and accurate initialization of the stimulation protocols. As the patients use the stimulation, small movements of the array, as well as changes in spine position due to users’ posture can reduce the usability of the stimulation. Stimulation efficacy can be enhanced by dynamically adjusting the stimulation protocols to changes to the way how to users’ spinal cord reacts to stimulation. Finally, the functional use of the stimulation largely depends on the accurate timing of stimulation delivery. Machine learning approaches that infer users’ intentions based on behavioral, physiological or neural recordings can vastly improve the synchronization between intended and therapy-supported movements and, therefore, play a critical role in achieving functional recovery of patients. While the current medical devices mostly support block-based stimulation protocols that remain constant for hundreds of milliseconds, upcoming devices will enable changes of stimulation at a millisecond resolution, thus opening a new field for machine learning approaches that exploit these capabilities.
The successful candidate will work to develop, implement and apply machine learning algorithms and approaches to enhance EES-based therapies. Specifically, he will:
* Design the mapping procedures for the generation of transfer functions that relate the continuously-controlled stimulation to the evoked muscle activity.
* Develop algorithms that automatically adjust these transfer functions as the interaction between patients and their EES-based therapy evolves.
* Implement machine learning techniques that utilize users’ behavioral, physiological and neural signals to continuously synchronize the delivery of stimulation with the users’ movement intentions.
* Lead the team that develops machine learning methods to initialize and adjust block-based EES protocols.
* Assist and oversee the development and implementation of machine learning methods that use inference of discrete motor events to synchronize block-based EES protocols with the users’ intentions.
By integrating well-equipped and expertly staffed rodent, non-human primate and clinical research facilities, NeuroRestore provides an ideal substrate for rapidly developing, integrating and clinically validating cutting-edge machine learning concepts within medical therapies, with the capacity to push successfully proven concepts into the technology transition phase. The successful candidate will have access to these animal platforms and will work within the framework of multiple NeuroRestore clinical trials with people with spinal cord injury and Parkinson’s disease. They will benefit from the possibility of validating their concepts in animal experiments and implementing them within the therapies being tested in the clinical trials.
Prerequisites:
· Doctoral degree (PhD)
· Proficiency in Python, Matlab and C++
· Strong background in quantitative data analysis
· Experience with applying multiple machine learning techniques to behavioral, physiological, biological and/or neural datasets
· Good written and verbal skills in English
Contact:
Applications including a CV and a cover letter describing your background and interest should be sent to tomislav.milekovic(a)epfl.ch<mailto:tomislav.milekovic@epfl.ch>. Informal inquiries are welcome.
March 5, 2021
INCF Assembly 2021: abstract submission open!
by Helena Ledmyr
Join us virtually for the 2021 INCF Assembly on April 19-27, with an
exciting program <https://neuroinformatics.incf.org/2021/program> covering
different aspects of FAIR neuroscience! Abstract submission
<https://neuroinformatics.incf.org/abstract-submission> is open until March
31, and registration <https://neuroinformatics.incf.org/2021/registration>
will open in late March.
Members of INCF enjoy heavily discounted registration fees, which are
already lowered due to the meeting being virtual this year. You can sign up
for membership and see the other benefits here
<https://www.incf.org/join-incf/individuals> - one year costs 20 USD for
students and postdocs, and 50 USD for regular members.
The INCF Assembly 2021 aims to provide the neuroscience community with
approaches that can be used today to implement the FAIR principles in their
research. It also aims to provide tool developers and infrastructure
providers with an opportunity to interact with the user community and to
interact with other practitioners to advance the field of neuroinformatics.
The 2021 INCF Assembly will address topics around FAIR neuroscience such
as:
-
FAIR approaches for neuroscience in general, neuroimaging,
electrophysiology, and computational neuroscience
-
Electrophysiology and computational neuroscience
-
Data science
-
Showcase of tools and infrastructures
-
Open innovation and intellectual property
-
Information about ongoing work in INCF councils and committees
-
Funders and publishers roundtable
-
Workshops on developing standards and a roadmap for FAIR neuroscience
The INCF Assembly is the only international meeting that focuses on
providing researchers with hands-on training experiences and enabling
interaction with software developers and infrastructure providers.
We hope to see you online in April!
-----------------------------
Helena Ledmyr, PhD
*Director*
*Development and Communications*
International Neuroinformatics Coordinating Facility Secretariat
Karolinska Institutet. Nobels väg 15A, SE-171 77 Stockholm. Sweden
Email: helena.ledmyr(a)incf.org
Phone: +46 8 524 870 35
incf.org
neuroinformatics.incf.org
March 4, 2021
INCF/OCNS Software WG: Dev session on GeNN (9th March)
by Ankur Sinha
Hello everyone,
Apologies for the cross-posts.
The INCF/OCNS Software Working Group (WG)[1] is happy to announce the
next "Dev session" on GeNN[2] where James Knight and Thomas Nowotny will
introduce the software and then discuss its *development* pipeline.
The session will be held on March 9 at 1700 UTC. Zoom link:
https://universityofsussex.zoom.us/j/97956408800?pwd=by9yVnhCZTJlenY0bVI4OE…
The aim of these sessions is to stimulate discussion of the development
practices and tools used by different teams to improve the software we
use while also improving our knowledge of these practices and tools.
We also hope to encourage more users of these tools to contribute to
their development to ensure their longevity.
The abstract of the session is below:
-----
Large-scale numerical simulations of brain circuit models are important
for identifying hypotheses on brain functions and testing their
consistency and plausibility. Similarly, spiking neural networks are
also gaining traction in machine learning with the promise that
neuromorphic hardware will eventually make them much more energy
efficient than classical ANNs. In this dev session, we will present the
GeNN (GPU-enhanced Neuronal Networks) framework [1], which aims to
facilitate the use of graphics accelerators for computational models of
large-scale spiking neuronal networks to address the challenge of
efficient simulations. GeNN is an open source library that generates
code to accelerate the execution of network simulations on NVIDIA GPUs
through a flexible and extensible interface, which does not require
in-depth technical knowledge from the users. GeNN was originally
developed as a pure C++ and CUDA library but, subsequently, we have
added a Python interface and OpenCL backend. The Python interface has
enabled us to develop a PyNN [2] frontend and we are also working on a
Keras-inspired frontend for spike-based machine learning [3].
In the session we will briefly cover the history and basic philosophy of
GeNN and show some simple examples of how it is used and how it works
inside. We will then talk in more depth about its development with a
focus on testing for GPU dependent software and some of the further
developments such as Brian2GeNN [4].
[1] https://github.com/genn-team/genn
[2] https://github.com/genn-team/pynn_genn
[3] https://github.com/genn-team/ml_genn
[4] https://github.com/brian-team/brian2genn
-----
If you develop software for neuroscience, we would love to hear about
your development pipeline. Please get in touch with the Software WG
either on INCF's Neurostars platform[4] or on our GitHub repository[5].
The WG is a community based group that is open to everyone at all levels
of their careers (academic or otherwise). Please introduce yourself to
the community on our channels to get involved.
[1] https://ocns.github.io/SoftwareWG/pages/about.html
[2] http://genn-team.github.io/genn/
[3] https://ocns.github.io/SoftwareWG/2021/02/26/dev-session-james-knight-thoma…
[4] https://neurostars.org/t/ocns-infrastructure-software-tools-sig-meet-and-gr…
[5] https://github.com/OCNS/SoftwareWG/discussions/12
On behalf of the WG,
--
Thanks,
Regards,
Ankur Sinha (He / Him / His)
Research Fellow at the Silver Lab | http://silverlab.org/
Department of Neuroscience, Physiology, & Pharmacology
University College London, London, UK
Time zone: Europe/London
March 4, 2021
Postdoc Opening on Information Dynamics inferred from in vivo electrophysiological recordings
by BATTAGLIA Demian
We are looking for a postdoctoral scholar to work at the interface between theoretical and experimental neuroscience in a cooperation between the groups of Christophe Bernard and Demian Battaglia at the Institute for Systems Neuroscience (INS) of Aix-Marseille University.
The project will involve using information theoretical and machine learning tools and other computationally-intensive data analysis approaches on electrophysiological recordings of unit and LFP activity in rodents. In a recent series of works, we have been characterizing dynamics of "Information Processing states" and primitive processing operations of storage and sharing by individual hippocampal and cortical neurons in anesthesia, in both control and epileptic rodents (Clawson et al., Science Advances 2019; Pedreschi et al., Network Neuroscience 2020; Clawson et al., biorXiV 2021). We plan now to generalize these analyses to behavioral and very long sleep recordings, especially in relation to how circadian rhythms affect neural system function (Debsky et al., Science Advances 2020; Brancati et al., PNAS, in press) and performance. Indeed, although it is known that circadian rhythms drive all organ functions, including the brain, it is little known how the architecture of information processing by neuronal ensembles is affected by such rhythms.
The ideal candidate will have a background in computational or theoretical neuroscience, physics or theoretical computer science. Familiarity with information theory concepts, previous experience in the analysis of large neuroscience datasets (e.g. multichannel recordings, unit or LFP data...) or the modelling of spiking neural circuits is a plus.
The candidate will work with researchers performing in vivo recordings in control and epileptic animals (Christophe Bernard, Pascale Quilichini...) and theoreticians (Demian Battaglia, Viktor Jirsa...) at the Institute of Systems Neuroscience in Marseille. Interactions are possible also with other French labs (e.g. University of Strasbourg) and with clinicians. If interested, the candidate will also be offered the possibility to learn in vivo electrophysiology.
Aix-Marseille University is a large, international university with a rich and diverse Neuroscience community, in the vibrant multicultural city of Marseille with magnificent natural surroundings and excellent high-speed train and flight connections to major cities in Europe.
The position has no mandatory teaching or administrative duties. Excellent (written and oral) communication skills in English are required. The maximum duration is three years.
Candidates should send a CV, a statement of research experience and interests, expected date of availability, and the contact information for three references to
christophe.bernard(a)inserm.fr and demian.battaglia(a)univ-amu.fr
Application review will proceed until the position is filled.
References
Clawson, W., Vicente, A.F., Ferraris, M., Bernard, C., Battaglia, D., Quilichini, P.P., 2019. Computing hubs in the hippocampus and cortex. Sci Adv 5, eaax4843. doi:10.1126/sciadv.aax4843
Pedreschi, N., Bernard, C., Clawson, W., Quilichini, P., Barrat, A., Battaglia, D., 2020. Dynamic core-periphery structure of information sharing networks in entorhinal cortex and hippocampus. Netw Neurosci 4, 946–975. doi:10.1162/netn_a_00142
Clawson, W., Madec, T., Ghestem, A., Quilichini, P.P., Battaglia, D., Bernard, C., 2021. Disordered information processing dynamics in experimental epilepsy. bioRxiv. doi:10.1101/2021.02.11.430768
Debski, K.J., et al.... , Bernard, C., 2020. The circadian dynamics of the hippocampal transcriptome and proteome is altered in experimental temporal lobe epilepsy. Sci Adv 6. doi:10.1126/sciadv.aat5979
Demian Battaglia
CNRS researcher - Institute for Systems Neuroscience (INS)
Theoretical Neuroscience Group - Aix-Marseille Université
& Visiting fellow - University of Strasbourg
Institute for Advanced Studies (USIAS)
@Laboratory for Cognitive and Adaptive Neurosciences (LNCA)
March 4, 2021
Comp Neuro PhD Position at Moreno-Bote lab, Barcelona
by Ruben Moreno Bote
*PhD Position in*
*Computational Neuroscience, Ruben Moreno-Bote Lab *
*Center for Brain and Cognition, University Pompeu Fabra, Barcelona, Spain*
1 fully funded PhD position is available in the group of Theoretical and
Cognitive Neuroscience of Ruben Moreno-Bote in the Center for Brain and
Cognition at the University Pompeu Fabra, Barcelona, Spain.
We are looking for excellent candidates with Physics, Mathematics or
Machine Learning background interested in developing theory for the brain
and mind. Knowledge of Computational Neuroscience or Neuroscience would be
ideal, but it is not necessary.
The candidate will develop state of the art theory and models of cognition
and intelligence by using neural networks, reinforcement learning, machine
learning, data analysis and multielectrode neural data. The main research
topic of our lab is decision-making, from a multidisciplinary angle.
The candidate will benefit from the stimulating environment of Barcelona
area in Theoretical and Systems Neuroscience and will have the opportunity
of enjoying a lively city. Our lab
(https://www.upf.edu/web/tcn)
forms part of a larger network of neuroscience labs in Barcelona.
Financial support is provided by HHMI, ICREA and the Spanish MINECO.
APPLICATION: A full CV in pdf format and an extract of grades for degree
and master studies should be sent to the following address:
ruben.moreno(a)upf.edu
DEADLINE: until the position is filled
STARTING DATE: any time between September 2021 and January 2022
--
Rubén Moreno Bote
Serra Húnter & ICREA Academia Professor
Center for Brain and Cognition &
Dept. of Information and Communications Technologies
University Pompeu Fabra
Campus Ciutadella
c\ Ramon Trias Fargas, 25-27
Mercè Rodoreda building, 3th floor (room 24.331)
08005 Barcelona, Spain
https://www.upf.edu/web/tcn
https://twitter.com/morenobote <https://twitter.com/morenobote?lang=ca>
March 4, 2021
research fellow: open and reproducible science core facility
by Jochem Rieger
We have an open research fellow position (salary at post-doctoral level)
for 3+2 years at the Neuroimaging Unit of Uni Oldenburg for the
development of tools and infrastructure for open data data and
reproducible science based on the BIDS standard. The position
complemented by a full time technician position for support. The
announcement is below. Please contact me if you have questions.
The application deadline is March 12th
We are looking forward to applications,
Jochem
*Scientific Research Associate m/f/d*
*(Salary level E13 TVL, 100%)*
**
for the development of acquisition, storage and processing pipelines for
open and reproducible science building on the BIDS standard.
In a newly funded project we aim to implement data storage and
processing pipelines for open and reproducible science based on the BIDS
standard. The successful candidate is expected to actively contribute to
the implementation of neuroscience data acquisition, storage, and
reproducible analysis pipelines building on the BIDS standard at the
University of Oldenburg, to contribute to community efforts and
dissemination. Candidates are expected to have an academic university
degree (Master or equivalent) in the field of informatics, engineering,
neuroscience or psychology and have shown their ability to perform
excellent scientific work, e.g. demonstrated by an excellent publication
record. Prior experience with the BIDS standard as well as its
programming, experience with neuroimaging techniques and data analysis
(especially fMRI or MEG/EEG) and fluency in English is required.
Experience with open science tools and databases, other
neurophysiological modalities, as well as knowlegde of German are desirable.
The position is embedded in a DFG Core Facility grant and is availableas
soon as possibleuntil30^th of September^.2023 (with the possibility to
extend another two years after successful project evaluation). The
position is suitable for part-time work.
The Neuroimaging Unit hosts a state of the art MEG (Elekta Triux) and an
MRI (Siemens Prisma 3T) and is embedded in an excellent
interdisciplinary scientific environment with a strong research focus on
neurosensory, neurocognitive, and medical research.
The University of Oldenburg is dedicated to increase the percentage of
female employees in the field of science. Therefore, female candidates
are strongly encouraged to apply. In accordance to § 21 Section 3 NHG,
female candidates with equal qualifications will be preferentially
considered. Applicants with disabilities will be given preference in
case of equal qualification.
Please send your application including a cover letter, CV, list of
potential referees, links to recent publications and copies of
certificates for academic grades to Prof. Jochem Rieger, Department of
Psychology, University of Oldenburg, 26111 Oldenburg, Germany
(jochem.rieger(a)uol.de <mailto:jochem.rieger@uol.de>). Electronic
applications (*one*pdf file) are preferred. For inquiries please use the
same contact. The application deadline is*12^th of**March 2021*.
--
Prof. Dr. rer. nat. Jochem Rieger
Head of Applied Neurocognitive
Psychology
head of Neuroimaging Unit
Faculty VI
Carl-von-Ossietzky University
26111 Oldenburg
Germany
Phone: +49(0)4417984533
Fax: +49(0)4417983865
March 4, 2021
Announcing 3 NeuroML hackathon sessions at HARMONY 2021
by Padraig Gleeson
*[Apologies for cross-posting]*
**
**
*We will be running 3 online NeuroML <https://neuroml.org/> hackathon
sessions during the upcoming HARMONY 2021
<http://co.mbine.org/events/HARMONY_2021>meeting on 23-25th March. *
**
**
*The general theme of the sessions will be: Learn to build, visualise,
analyse and simulate your models using NeuroML.*
*
Why take part?
These hackathons will give members of the modelling community the chance to:
*
Get high level introductions to the NeuroML language and toolchain
*
Meet the NeuroML core development team and editors
*
Find out the latest information on which simulators/applications
support NeuroML
*
Open, discuss and work on issues related to converting your model to
NeuroML, or supporting NeuroML in your simulator
*
Learn how to share your models with the community
Times and dates
All sessions will be online and take place over 3 hours (9am-noon
Pacific; 12-3pm EST time; 4-7pm UK/UTC; 5-8pm CET, 9:30pm-12:30am IST;
note non-standard US/EU time differences that week). The broad focus of
each of the sessions (dependent on interests of attendees) is:
**Tues 23rd March: Introduction to NeuroML, general questions about usage
**Wed 24th March: Detailed cell/conductance based models (e.g.
converting channels to NeuroML)
**Thus 25th March: Abstract/point neuron networks including PyNN
interactions
Registration
To take part in the hackathon, please register at
http://co.mbine.org/events/HARMONY_2021
<http://co.mbine.org/events/HARMONY_2021>for the HARMONY meeting
(registration is free). You will get sent details to access the agenda
on https://harmony2021.sched.com, which will have links to the Zoom
sessions for each of the days.
Open an issue beforehand!
While it will be possible to raise and discuss new issues at the
hackathons, it will be easier to manage and plan work/discussions if you
open an issue with a description of the problem you are trying to
address at: https://github.com/NeuroML/NeuroML2/issues
<https://github.com/NeuroML/NeuroML2/issues>.
Slack
To aid communication with the community during (and after) the meeting,
we have a Slack channel for NeuroML related discussions. Please reply to
this mail for an invite.
We look forward to working with the community to drive further uptake of
NeuroML compliant models and tools!
*
-----------------------------------------------------
Padraig Gleeson
Room 321, Anatomy Building
Department of Neuroscience, Physiology& Pharmacology
University College London
Gower Street
London WC1E 6BT
United Kingdom
+44 207 679 3214
p.gleeson(a)ucl.ac.uk
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March 3, 2021
Two postdoctoral fellow positions in theoretical neuroscience
by Yoram Burak
The Burak Lab at the Hebrew University and the Moser lab at the Kavli
Institute for Systems Neuroscience (KISN) are seeking two postdoctoral
fellows in theoretical neuroscience, to take part in a joint ERC-funded
project. The project aims to identify how thousands of neurons in the
mammalian cortex interact with each other to achieve computational and
cognitive functions.
Theory fellows taking part in the project will work on diverse theoretical
and computational questions, which involve approaches ranging from pure
theoretical modelling to analysis and interpretation of large scale neural
data. Computational tools involve methods from nonlinear dynamics, machine
learning, statistical physics, and information theory.
The two theory postdoctoral fellows will be based in Jerusalem, and are
expected to interact closely with members of both labs, both remotely and
during visits to the KISN in Trondheim. A generous budget will be available
for travel between Israel and Norway, for travel and participation in
scientific meetings, and for purchase of computing equipment.
We are looking for candidates with excellent demonstrated abilities in
theoretical research, strong intellectual curiosity and drive, a keen
interest in computational neuroscience, and an interest in relating theory
to experimental data.
A strong research record in theoretical neuroscience, theoretical physics,
mathematics, computer science, or a related field is required. Experience
with research related to machine learning, statistical physics, nonlinear
dynamics, information theory, or large-scale data analysis, as well as
prior familiarity with research in computational neuroscience are
advantageous.
*To apply:*
Please send the following information to
kiloneurons-positions(a)elsc.huji.ac.il in a single PDF file:
1. Curriculum vitae
2. List of publications
3. Brief statement of research interests
4. The names and contact details of three references
*Deadline*: For full consideration, applications must be received by March
31, 2021. After this date, if positions are not filled, applications will
be considered on a rolling basis.
___
Yoram Burak
Associate Professor
Racah Institute of Physics, and Edmond and Lily Safra Center for Brain
Sciences
The Hebrew University of Jerusalem
p: +972-2-6584523 w: https://www.buraklab.me/
a: Goodman Brain Sciences Bldg 2102, Safra Campus, Jerusalem 91904, Israel
March 3, 2021
IMRF (International Multisensory Research Forum) postponed to July 04-07 2022 in Ulm, Germany
by Marc Ernst
Dear participants of the IMRF,
Unfortunately, the COVID-19 pandemic situation is still affecting all our lives and the prediction for summer 2021 does not look like it will allow all of us travelling internationally without restrictions or holding a meeting in closed spaces with many people present. As many other conferences, we also considered moving to an online format for the International Multisensory Research Forum (IMRF) (https://cops.ifp.uni-ulm.de/imrf2020/ <https://cops.ifp.uni-ulm.de/imrf2020/>). However, we feel the community would not benefit as much as having a meeting in person. Therefore, with a heavy heart we decided once again (and hopefully for the last time) to postpone the „annual“ IMRF meeting. The new dates are July 04-07, 2022.
Abstract submission and registration will stay open. All abstracts already submitted will be further considered. However, you can of course log on and adapt your abstracts (or symposia) until the new deadline for abstract submission. We will announce the new deadlines in due time. The abstract submission and registration page can be found here <https://cops.ifp.uni-ulm.de/imrf2020/index.php/imrf-2020/registration-submi…>. Also registrations will stay valid in case you already registered. Otherwise new registration dates will be announced shortly.
Sorry for the inconvenience this third postponement may cause and thanks for your understanding.
Be safe and stay healthy!!!!
Best,
Mac Ernst on behalf of the IMRF Organizers.
---------------------------------------------------------
Prof. Dr. Marc Ernst
Appl. Cognitive Psychology
Faculty for Computer Science, Engineering, and Psychology
Ulm University
Albert-Einstein-Allee 43
89081 Ulm
room: 43.3.103
phone: +49-731-50 320 50
sekr: +49-731-50 320 51
fax: +49-731-50 320 59
mobile: +49-152-22 543 156
marc.ernst(a)uni-ulm.de <mailto:marc.ernst@uni-ulm.de>
March 3, 2021