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- 29 participants
- 7414 messages
Computational Neuroscience Job at the Krembil Research Institute
by Frances Skinner
https://www.recruitingsite.com/csbsites/uhncareers/JobDescription.asp?SiteI… <https://www.recruitingsite.com/csbsites/uhncareers/JobDescription.asp?SiteI…>
Job Posting #8045761
Position: Computational Neuroscience Research Scientist
Site: Krembil Research Institute/Toronto Western Hospital
Department: Research
Reports to: Director
Status: Permanent Full-time
The Krembil Research Institute at the University Health Network in Toronto Canada invites applicants to apply for a Scientist position in the area of Computational Neuroscience.
The ideal candidate will have a PhD in a relevant field, research expertise and experience in mathematical and computational modeling, and research interests that complement those of the Institute in neurobiology and neurodegeneration. Candidates whose research interests encompasses cellular, micro/macro circuits and/or large scale brain models, and who have collaborative experimental experience are especially encouraged. The successful candidate will have the ability to establish an independent, well-funded program and will be eligible for appointment at the appropriate level within the University of Toronto.
The Krembil is one the principal research institutes of the University Health Network of academic teaching hospitals associated with the University of Toronto; the Krembil is also one of the largest research institutes in Canada focusing on human neurological disease from both a basic science and clinical research perspective. The University Health Network (UHN) is Canada's largest academic medical centre, comprising four major teaching hospitals.
Qualified applicants must attach their letter of interest, research plan, resume PDF format to the online application and complete some initial screening questions. The search committee will begin to review applications in September with a potential start date in Winter 2018.
Posted Date: June 22, 2017 Closing Date: Until filled
UHN thanks all applicants, however, only those selected for an interview will be contacted.
UHN is a respectful, caring, and inclusive workplace. We are committed to championing accessibility, diversity and equal opportunity. Requests for accommodation can be made at any stage of the recruitment process providing the applicant has met the Bona-fide requirements for the open position. Applicants need to make their requirements known when contacted.
July 6, 2017
Summer school on Advanced Computational Neuroscience, Germany
by Alexander Schmidt
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
Advanced COMPUTATIONAL NEUROSCIENCE Summer School in Göttingen, Germany
“Neural circuit theories for primate cognition”
September 02nd - 10th, 2017
*REGISTRATION **DEADLINE *Ju**ly**2**3**, 201**7****
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
Please, feel free to distribute this email to students and postdocs
potentially interested in the school.
The aCNS school within the Advanced Computational Neuroscience School in
the Emotion-Cognition-Link-Series is a *9**-day intensive course* in
*mathematical and computational neuroscience*. It offers an intensive
pedagogy of advanced mathematical and computational tools to students
working in computational neuroscience and already familiar with its
interdisciplinary nature and is designed to qualify young researchers to
push the frontiers of the field.
The following researchers are in charge of the 4 two-day theoretical
blocks and 4 evening lectures:
* Nicolas Brunel <https://galton.uchicago.edu/%7Enbrunel/>, /University
of Chicago/, Chicago, USA
* Alexander Gail <https://www.uni-goettingen.de/en/57950.html>, /German
Primate Center/, Göttingen, Germany
* Raoul Memmesheimer <https://memmesheimer.net/>, /University of Bonn/,
Bonn, Germany
* John Beggs <http://www.indiana.edu/%7Eiubphys/faculty/jmbeggs.shtml>,
/University of //Indiana/, Bloomington, USA
* Julia Fischer
<http://www.dpz.eu/en/unit/cognitive-ethology/about-us.html>, /German
Primate Center/, Göttingen, Germany
* Eckart Altenmüller
<https://www.immm.hmtm-hannover.de/en/institute/people/eckart-altenmueller/>,
/University for Music and Theater/, Hanover, Germany
* Annekathrin Schacht <http://www.uni-goettingen.de/en/356202.html>,
/University of Göttingen/, Göttingen, Germany
* Georg Martius <https://is.tuebingen.mpg.de/person/gmartius>,
/M//PI//for Intelligent Systems/, Tübingen, Germany
The consecutive two day thematic blocks are dedicated to mathematical
approaches to circuit dynamics. Each lecturer will give a self-contained
introduction to a particular set of theoretical tools in a block of two
morning lectures. In the afternoon, participants will work on problem
sets designed to develop proficiency in both the mathematical and
computational tools learned earlier that day. An additional set of
evening ‘easy’ lectures will give the opportunity to discuss significant
advances in the field.
The course takes place at the Department of Nonlinear Dynamics of the
Max-Planck Institute for Dynamics and Self-Organization, Göttingen.
Registration fee is 200 €. Course language is English. Housing is
provided by the school. Travel grants can be applied for.
*Only 15 participants will accepted. We invite applicants to apply by
filling out the application form at:*
*www.bccn-goettingen.de* <http://www.bccn-goettingen.de/events/cns-course>
*and have their reference letters submitted by *July 23, 2017*.*
Best regards and looking forward to seeing you in Göttingen,
B. Feulner, D. Regel, A. Schmidt and J. Wilting (local committee, PhD
students)
on behalf of the course directors
Prof. F. Wolf and Prof. A. Schacht
July 6, 2017
New Book: The Rewiring Brain
by Arjen van Ooyen
Dear colleagues,
We would like to draw your attention to our recently published book:
*The Rewiring Brain: A Computational Approach to Structural Plasticity in
the Adult Brain*, van Ooyen, A, and Butz-Ostendorf, M, eds, Academic Press,
June 2017.
For more information (preview) and to order the book, go to
https://www.elsevier.com/books/the-rewiring-brain/van-
ooyen/978-0-12-803784-3
Also see https://anvooyen.home.xs4all.nl/papers/TheRewiringBrain.html
*Description*
The adult brain is not as hard-wired as traditionally thought. By modifying
their small- or large-scale morphology, neurons can make new synaptic
connections or break existing ones (structural plasticity). Structural
changes accompany memory formation and learning, and are induced by
neurogenesis, neurodegeneration and brain injury such as stroke.
Exploring the role of structural plasticity in the brain can be greatly
assisted by mathematical and computational models, as they enable us to
bridge the gap between system-level dynamics and lower level cellular and
molecular processes. However, most traditional neural network models have
fixed neuronal morphologies and a static connectivity pattern, with
plasticity merely arising from changes in the strength of existing synapses
(synaptic plasticity). In *The Rewiring Brain*, the editors bring together,
for the first time, contemporary modeling studies that investigate the
implications of structural plasticity for brain function and pathology.
Starting with an experimental background on structural plasticity in the
adult brain, the book covers computational studies on homeostatic
structural plasticity, the impact of structural plasticity on cognition and
cortical connectivity, the interaction between synaptic and structural
plasticity, neurogenesis-related structural plasticity, and structural
plasticity in neurological disorders.
Structural plasticity adds a whole new dimension to brain plasticity, and *The
Rewiring Brain* shows how computational approaches may help to gain a
better understanding of the full adaptive potential of the adult brain. The
book is written for both computational and experimental neuroscientists.
Key features:
· Reviews the current state of knowledge of structural plasticity in
the adult brain.
· Gives a comprehensive overview of computational studies on
structural plasticity
· Provides insights into the potential driving forces of structural
plasticity and the functional implications of structural plasticity for
learning and memory
· Serves as inspiration for developing novel treatment strategies for
stimulating functional repair after brain damage
*Book Contents*
Editorial
*Arjen van Ooyen and Markus Butz-Ostendorf*
Section I. Experimental background
1. Structural plasticity and cortical connectivity
*Vassilis Kehayas and Anthony Holtmaat*
2. Structural plasticity induced by adult neurogenesis
*Gregory W. Kirschen, Kurt A. Sailor, and Shaoyu Ge*
3. Structural neural plasticity during stroke recovery
*Kimberly Gerrow and Craig E. Brown*
4. Is lesion-induced synaptic rewiring driven by activity homeostasis?
*Markus Butz-Ostendorf and Arjen van Ooyen*
Section II. Homeostatic structural plasticity
5. Network formation through activity-dependent neurite outgrowth: a review
of a simple model of homeostatic structural plasticity
*Arjen van Ooyen*
6. Clustered arrangement of inhibitory neurons can lead to oscillatory
dynamics in a model of activity-dependent structural plasticity
*Rosanna C. Barnard, Istvan Z. Kiss, Simon F. Farmer, and Luc Berthouze*
7. A detailed model of homeostatic structural plasticity based on dendritic
spine and axonal bouton dynamic
*s**Markus Butz-Ostendorf and Arjen van Ooyen*
8. Critical periods emerge from homeostatic structural plasticity in a
full-scale model of the developing cortical column
*Sebastian Rinke, Mikael Naveau, Felix Wolf and Markus Butz-Ostendorf*
9. Lesion-induced dendritic remodeling as a new mechanism of homeostatic
structural plasticity in the adult brain
*Steffen Platschek, Hermann Cuntz, Thomas Deller, and Peter Jedlicka*
Section III. Structural plasticity and connectivity
10. The role of structural plasticity in producing nonrandom neural
connectivity
*Paul Miller*
11. Structural plasticity and the generation of bidirectional connectivity
*Daniel Miner, Felix Z. Hoffmann, Florence Kleberg, and Jochen Triesch*
12. Spike timing-dependent structural plasticity of multicontact synaptic
connections
*Moritz Deger*
13. Selection of synaptic connections by wiring plasticity for robust
learning by synaptic weight plasticity
*Naoki Hiratani and Tomoki Fukai*
Section IV. Structural plasticity and learning and memory
14. Within a spine's reach
*Will DeBello and Karen Zito*
15. Impact of structural plasticity on memory capacity
*Panagiotis Bozelos and Panayiota Poirazi*
16. Long-term information storage by the interaction of synaptic and
structural plasticity
*Michael Fauth, Florentin Wörgötter, and Christian Tetzlaff*
17. Impact of structural plasticity on memory formation and decline
*Andreas Knoblauch*
Section V. Neurogenesis-related structural plasticity
18. Adult neurogenesis and synaptic rewiring in the hippocampal dentate
gyrus
*Arjen van Ooyen, Gertraud Teuchert-Noodt, Keren Grafen, and Markus
Butz-Ostendorf*
19. Modifications in network structure and excitability may drive
differential activity dependent integration of granule cells into dentate
gyrus circuits during normal and pathological adult neurogenesis
*Quinton Skilling, James Roach, Alison L. Althaus, Geoffrey G. Murphy,
Leonard Sander, and Michal Zochowski*
20. Computational perspectives on adult neurogenesis
*Kristofor D. Carlson, Fredrick Rothganger, and James B. Aimone*
21. Restricted boltzmann machine models of hippocampal coding and
neurogenesis
*Rory Finnegan, Mark Shaw, and Suzanna Becker*
Section VI. Structural plasticity and pathology
22. Modeling the impact of lesions in the brain
*Sol Lim, Frances Hutchings, and Marcus Kaiser*
23. Network models of epilepsy-related pathological structural and
functional alterations in the dentate gyrus
*Ivan Raikov, Mark Plitt, and Ivan Soltesz*
24. Computational models of stroke recovery
*Vittorio Sanguineti*
25. Neural plasticity in human brain connectivity: the effects of deep
brain stimulation
*Tim J. van Hartevelt, Henrique M. Fernandes, Angus B. A. Stevner, Gustavo
Deco, and Morten L. Kringelbach*
July 6, 2017
CFP - HAI 2017 Workshop: Representation Learning for Human and Robot Cognition
by Amir Aly
CALL FOR PAPERS
**Apologies for cross posting **
The full day workshop:
"*Representation Learning for Human and Robot Cognition*"
In conjunction with the *5th International Conference on Human-Agent
Interaction* *- Bielefeld - Germany - October *
*17th, 2017*
*Webpage: **http://cognitive-mirroring.org/en/events/hai2017_workshop/*
<http://cognitive-mirroring.org/en/events/hai2017_workshop/>
*I. Aim and Scope *Creating intelligent and interactive robots has been
subject to extensive research studies. They are rapidly moving to the
center of human environments so that they collaborate with human users in
different applications, which requires high-level cognitive functions so as
to allow them to understand and learn from human behavior. To this end, an
important challenge that attracts much attention in cognitive science and
artificial intelligence, is the “Symbol Emergence” problem, which
investigates the bottom-up development of symbols through social
interaction. This research line employs representation learning based
models for understanding language and action in a developmentally plausible
manner so as to make robots able to behave appropriately on their own. This
could open the door to robots to understand syntactic formalisms and
semantic references of human speech, and to associate language knowledge to
perceptual knowledge so as to successfully collaborate with human users in
space.
Another interesting approach to study representation learning is “Cognitive
Mirroring”, which refers to artificial systems that could make cognitive
processes observable, such as the models that could learn concepts of
objects, actions, and/or emotions from humans through interaction. A key
idea of this approach is that robots learn individual characteristics of
human cognition rather than acquiring a general representation of
cognition. In this way, the characteristics of human cognition become
observable and can be measured as modifications in model parameters, which
is difficult to verify through neuroscience studies only.
In this workshop, we invite researchers in artificial intelligence,
cognitive science, cognitive robotics, and neuroscience to share their
knowledge and research findings on representation learning, and to engage
in cutting-edge discussions with other experienced researchers so as to
help promoting this research line in the Human-Agent Interaction (HAI)
community.
*II. Keynote Speakers *
1. *Beata Joanna Grzyb *– Radboud University – The Netherlands
2. *Thomas Hermann*– Bielefeld University – Germany
3. *Tetsuya Ogata *– Waseda University – Japan
4. *Erhan Oztop *– Ozyegin Universiy – Turkey
5. * Stefan Wermter *– University of Hamburg – Germany
*III. Submission *
1. For paper submission, use the following EasyChair web link: *Paper
Submission <https://easychair.org/conferences/?conf=rlhrc2017>*.
2. Use the ACM SIGCHI format: *ACM SIGCHI Templates
<http://www.sigchi.org/publications/chipubform>*.
3. Submitted papers should be limited to 2-4 pages maximum.
The primary list of topics covers the following points (but not limited
to):
- Computational model for high-level cognitive capabilities
- Predictive learning from sensorimotor information
- Multimodal interaction and concept formulation
- Human-robot communication and collaboration based on machine learning
- Learning supported by external trainers by demonstration and imitation
- Bayesian modeling
- Learning with hierarchical and deep architectures
- Interactive reinforcement learning
* IV. Important Dates *
1. Paper submission: *01-September-2017*
2. Notification of acceptance: *15-September-2017*
3. Camera-ready version: *30-September-2017*
4. Workshop: *17-October-2017*
*V. Organizers *
1. *Takato Horii *– Osaka University – Japan
2. *Amir Aly *– Ritsumeikan University – Japan
3. *Yukie Nagai *– National Institute of Information and
Communications Technology – Japan
4. * Takayuki Nagai *– The University of Electro-Communications – Japan
--
*Amir Aly, Ph.D.*
Senior Researcher
Emergent Systems Laboratory
College of Information Science and Engineering
Ritsumeikan University
1-1-1 Noji Higashi, Kusatsu, Shiga 525-8577
Japan
July 5, 2017
TECHNE AHRC Funded PhD Studentship: "Using Depth of Field to Guide Attention and Convey Narrative Structure"
by Durant, Szonya
TECHNE AHRC Funded PhD Studentship: "Using Depth of Field to Guide Attention and Convey Narrative Structure"
Royal Holloway, University of London - The Department of Psychology and the Department of Media Arts
Qualification type:
PhD
Location:
London, Egham
Funding for:
UK Students, EU Students
Funding amount:
£16,553 plus fees at Home/EU rate.
Closes:
1st August 2017
Supervisors: Dr Szonya Durant (Dept. of Psychology) and Mr Adam Ganz (Dept. of Media Arts).
Applications are invited for a National Productivity Investment Fund PhD studentship funded by the Arts and Humanities Research Council starting in October 2017. The studentship includes a stipend of £16,553 (plus fees at home/EU rates) for three years. There is an additional NPIF £550 per year to facilitate engagement with the Partner, and students can apply for an additional six months stipend to engage in extended development activities such as work placements.
As a TECHNE student, the person selected will have full access to the TECHNE Doctoral Training Partnership development activities and networking opportunities, joining a cohort of about 50 students per year from across seven universities in London and the south-east. See www.techne.ac.uk<http://www.techne.ac.uk/>. TECHNE students can apply for additional funding to support individual or group training and development activities.
This interdisciplinary PhD project draws on the fields of sensory neuroscience, in particular, the experimental study of eye movements and film and media studies, and in particular the study of visual perception, narrative comprehension, and affective response in relation to film editing. The novelty of the proposed interdisciplinary approach promises to yield original insights that will expand the knowledge and understanding in both disciplines. It expands the new discipline of psychocinematics by looking at how audiences perceive (and thus how filmmakers can use) a new element of film grammar - the ability to vary depth of field within in a shot which has been developed by our industrial partner Cinefade.
The primary PhD supervisor is based in the Department of Psychology, which has an active and expanding postgraduate research community, is well-equipped for research. It was ranked 6th out of 82 UK Psychology Departments in the 2014 Research Excellence Framework (REF), with 93% of our research classified as world-leading or internationally excellent. Research in the department spans a breadth of topics across psychological sciences and neuroscience and is supported by excellent facilities - further information on the research environment can be found here<https://www.royalholloway.ac.uk/psychology/home.aspx>. The second supervisor is based in the Media Arts Department, a top 10 REF department led by award-winning world-class experts and leading industry practitioners, which provides a professional working environment for the development of media practice skills and creativity. Both departments are situated on our beautiful Egham campus close to London.
Applicants should ideally hold, or be predicted to achieve, a first class undergraduate degree or equivalent in Psychology, Media Arts, or related disciplines (minimum requirement: 2.1). An MSc in a psychology- or cinematography-related subject is desirable but not essential. The ideal candidate will have strong skills in experimental design and statistical analysis, and some experience of lens-based media, film editing, computer programming, and eye tracking would be advantageous. The project will involve a 6 months placement working with CineFade Ltd which will involve trips to various UK locations to meetings with their clients.
Applicants must meet the RCUK residency requirements as described in paragraphs 43-46 of the 'Conditions of Research Council Training Grants<http://www.rcuk.ac.uk/documents/documents/termsconditionstraininggrants-pdf/>' and comply with conditions set out in the AHRC Training Grant Funding Guide<http://www.ahrc.ac.uk/skills/phdstudents/currentawardholders/>.
Informal enquiries about the project should be directed to szonya.durant(a)rhul.ac.uk<mailto:szonya.durant@rhul.ac.uk> or adam.ganz(a)rhul.ac.uk<mailto:adam.ganz@rhul.ac.uk>.
Full details on how to make an application are shown on our Departmental Website<https://www.royalholloway.ac.uk/psychology/prospectivestudents/postgraduate…> (select "tab 2 - Research Council UK Funded Studentships") and in the College Webpages<https://www.royalholloway.ac.uk/studyhere/researchdegrees/applying/applicat…>.
For further details on the application process please contact Sharon Clutterbuck (psyoffice(a)rhul.ac.uk<mailto:psyoffice@rhul.ac.uk>).
Closing date: 5pm on Tuesday 1st August 2017.
Interview dates: 7-18 August (can be flexible around existing commitments).
Szonya Durant
Department of Psychology
Royal Holloway, University of London
Egham
TW20 0EX
01784 276522
July 5, 2017
Bernstein Conference 2017 in Göttingen - early room booking strongly recommended !
by Kerstin Schwarzwaelder
Dear colleagues,
Please let me remind you that the number of available accommodation for the Bernstein Conference 2017 in Göttingen is very limited due to several concurrent events. Thus, we strongly recommend early room booking!
Many Hotels in Göttingen are already booked out for that week! The local organizers of the Bernstein Conference arranged for room contingents in a variety of hotels that you may book by yourself by email or phone.
Please follow the instructions at the Accommodations Website (www.nncn.de/de/bernstein-conference/2017/venue/accommodation<http://www.nncn.de/de/bernstein-conference/2017/venue/accommodation>). We would like to emphasize that these room contingents will be held open up to different expiration dates depending on the hotel (or until they are filled). Many expiration dates were already mid of June 2017. We strongly encourage participants to share rooms and to book rooms as a group. We emphasize that it will be very difficult to book accommodation beyond the expiration dates.
Please find a list of the hotels at the Accommodations Website of the Bernstein Conference.
Dates of the Bernstein Conference 2017:
**************************************************************
Satellite Workshops September 12-13, 2017
Main Conference September 13-15, 2017
PhD Symposium September 12 & 15, 2017
**************************************************************
Venue of the Bernstein Conference 2017:
**************************************************************
The Central Lecture Hall (Zentrales Hörsaal Gebäude, ZHG)
Platz der Göttinger Sieben 5
37073 Göttingen, Germany
**************************************************************
Website of the Bernstein Conference 2017:
**************************************************************
www.bernstein-conference.de<http://www.bernstein-conference.de>
**************************************************************
Best regards,
Kerstin Schwarzwälder
--
Dr. Kerstin Schwarzwälder
Scientific Coordination / Management Officer
Please note: Our email addresses have changed. Please use k.schwarzwaelder(a)fz-juelich.de<mailto:k.schwarzwaelder@fz-juelich.de>
Bernstein Network Computational Neuroscience | Bernstein Coordination Site (BCOS)
Branch Office of the Forschungszentrum Jülich
at the University of Freiburg
Hansastr. 9A | 79104 Freiburg, Germany
phone: (+49) 0761 203 9589
mail: k.schwarzwaelder(a)fz-juelich.de<mailto:k.schwarzwaelder@fz-juelich.de>
web: www.nncn.de<http://www.nncn.de>
Twitter: NNCN_Germany<https://twitter.com/NNCN_Germany>
YouTube: Bernstein TV<https://www.youtube.com/user/BernsteinNetwork>
Facebook: Bernstein Network Computational Neuroscience, Germany<https://www.facebook.com/BernsteinNetwork/>
LinkedIn: Bernstein Network Computational Neuroscience, Germany<https://www.linkedin.com/company/bernstein-network-computational-neuroscien…>
<https://www.linkedin.com/company/bernstein-network-computational-neuroscien…>
------------------------------------------------------------------------------------------------
------------------------------------------------------------------------------------------------
Forschungszentrum Juelich GmbH
52425 Juelich
Sitz der Gesellschaft: Juelich
Eingetragen im Handelsregister des Amtsgerichts Dueren Nr. HR B 3498
Vorsitzender des Aufsichtsrats: MinDir Dr. Karl Eugen Huthmacher
Geschaeftsfuehrung: Prof. Dr.-Ing. Wolfgang Marquardt (Vorsitzender),
Karsten Beneke (stellv. Vorsitzender), Prof. Dr.-Ing. Harald Bolt,
Prof. Dr. Sebastian M. Schmidt
------------------------------------------------------------------------------------------------
------------------------------------------------------------------------------------------------
July 4, 2017
Research positions in Neuromorphic computing in Singapore
by Yansong Chua
Multiple scientist and engineer positions are open for a 4-year
neuromorphic program in Singapore, at the Institute for Infocomm Research
(I2R), A*STAR. The program is a multi-disciplinary effort, that straddles
across the hardware (neuromorphic chip with RRAM, on-chip learning),
middleware (emulator) and software (learning algorithms), and we aim to
develop a demonstrating application system at end of the program. The
program hence presents an unique research opportunity for candidates hoping
to build a complete neuromorphic learning system. We are now in the early
stages of the program and are actively recruiting talented scientists who
would be excited to work on any aspects of the program (hardware,
middleware, software and system integration). Multiple top-ranked
universities and research institutes in Singapore (NUS, NTU, IME, IHPC,
I2R) are working on the program.
The work package I am in-charge of is primarily involved in the design of
better algorithms for spiking neural networks. To this end, successful
candidates will conduct research in one or more of the following areas:
- Neuronal encoding: how to better encode external stimuli into spike based
representations to facilitate decoding with high fidelity and also better
learning performance (in terms of accuracy and power efficiency).
- Supervised learning: given that spiking neural networks are asynchronous
and sparse in their activities, the design of supervised learning
algorithms that can fully capitalize on these properties becomes critical.
- Mapping of state-of-art deep learning networks to spiking networks.
Neuromorphic learning algorithms are still solving fairly simple problems
compared to deep learning. For this, we would like to systematically borrow
from the deep learning community networks and learning algorithms that can
quickly boost the capabilities of spiking neural networks.
- Unsupervised learning. STDP is well suited for unsupervised learning in
spiking neural networks, and we would like to further advance STDP learning
in spiking neural networks (both theory and applications).
Preference will be given to candidates who can document knowledge in deep
learning, spiking neural networks or signal processing (with interest in
spiking neural networks).
Candidates must have a PhD (for scientists) or MS/BS (for engineers) in
computer science, computational neuroscience or related fields. Strong
programming and quantitative skills are highly desired. Candidates should
be proficient in spoken and written English.
The appointment will be for 3 years, and extended for another 1 year, after
review. Salaries are commensurate with internationally-competitive salaries
and benefits. The start date is flexible and applications will be
considered on a rolling basis until the positions are filled.
Other benefits include:
- Funding for international conferences and training courses
- Collaboration opportunities with an excellent network of international
scientists
Candidates please send your curriculum vitae, a statement of research
interests and three references to Dr. Yansong Chua (chuays(a)i2r.a-star.edu.sg
).
July 4, 2017
Computer scientist or Scientific programmer in the Department of Neural Systems and Coding
by Friedrich Kretschmer
Computer scientist or Scientific programmer
The Max Planck Institute for Brain Research
<https://www.mpg.de/151405/hirnforschung?section=all> in Frankfurt am
Main, Germany, is an innovative and growing research facility of the Max
Planck Society for the Advancement of Science.
The Department of Neural Systems and Coding
<https://brain.mpg.de/research/laurent-department.html> (Prof. Dr. Dr.
Gilles Laurent) is part of the interdisciplinary neuroscience campus in
Frankfurt/Riedberg where the new MPI building is located. Research in
the Department aims to understand the physiology of perception with an
experimental focus centered on neural computation, neuronal coding and
integration.
To support our international team of biologists, computer scientists and
physicists, we invite applications for a full time staff position
as Computer scientist or Scientific programmer, starting as soon as
possible, initially with a fixed-term contract for two years.
Your profile & our requirements
We seek a self-driven and interactive individual with the following
skill set:
* advanced programming skills and strong understanding of OOP concepts
* strong experience working with MATLAB or Python.
* proficient understanding of code versioning tools
* practical knowledge of best coding practices
* experience with management, storage and access of large datasets
* cross platform development for Windows, Mac OS X and Linux platforms.
Applicants should be familiar with a scientific environment. Knowledge
of computational neuroscience and practice in other programming
languages (C, C++, R), as well as computer vision, image processing,
object recognition, automatic processing and control of behavioral
experiments would be of advantage.
Candidates are expected to hold a degree in a quantitative field
involving computational work, such as computer science, physics, applied
math, electrical engineering or comparable research experience. Graduate
work at Masters or PhD level (science exposure) is a plus.
Our offer
We offer a competitive salary based on the collective wage agreement for
government service wWorkers (TVöD Bund) depending on qualifications and
professional experience as well as various fringe benefits in accordance
with public service provisions. You can expect an interesting,
responsible and varied job in a young, international and
interdisciplinary team.
Your application
The Max Planck Society is an equal opportunity employer and is striving
to increase the proportion of women in areas where they are
under-represented. It therefore expressly encourages female applicants.
The Max Planck Society is striving to employ more individuals with
disabilities. It therefore expressly encourages applicants with
disabilities.
Please submit your application (in English, single PDF file) by email
(HR(a)brain.mpg.de <mailto:HR@brain.mpg.de>) until *July 31, 2017* to
Max Planck Institute for Brain Research
-Human Resources-
Max-von-Laue-Str. 4
60438 Frankfurt am Main
Germany
July 3, 2017
Neuroinformatics 2017 in Kuala Lumpur!
by congress
Dear all,
It is high time to register for Neuroinformatics 2017, August 20-21, in
Kuala Lumpur!
See full program and speakers here:
*http://neuroinformatics2017.org/program/*
<http://neuroinformatics2017.org/program/>
*Register by July 15th to get early bird registration rates: *
*http://neuroinformatics2017.org/register/
<http://neuroinformatics2017.org/register/>*
The annual INCF Congress provides a meeting place for researchers in all
fields related to neuroinformatics. Join us for keynotes from top
neuroscientists, community sessions and poster- and demo sessions. This
meeting is especially useful for anyone who is developing neuroscience
tools and methods, working on better ways to handle neuroscience data, and
looking for cross-disciplinary collaborations.
*http://neuroinformatics2017.org/* <http://neuroinformatics2017.org/>
Please spread this information to anyone you feel might be interested in
attending!
*The International Neuroinformatics Coordinating Facility (INCF) is an
international non-profit organization devoted to advancing the field
of neuroinformatics and global collaborative brain research. Learn more
about INCF www.incf.org <http://www.incf.org/>*
*We look forward to seeing you in Kuala Lumpur!*
Best Regards
INCF Secretariat
July 3, 2017
PhD position in Theoretical Neuroscience/Nonlinear Dynamics - Ile De France (Paris)
by A. Torcini
More details here:
https://www.dropbox.com/s/nowtt4cb3d69xfi/project_phd.pdf?dl=0
Title of the PhD project: Exact Reduction of Multiscale Neural Dynamics
Goal: PhD grant without teaching duties, 3 years, fully funded, 1400
euros/month
(with teaching duties in french the salary can increase to 1600
euros/month)
When: starting from 1st October 2017
Keywords:
Dynamics of neural networks; Mean field analysis; Microscopic and Macroscopic
statistical analysis; Linear and nonlinear instabilities; Lyapunov exponents
Where:
The candidate will be based at the Universite' de Cergy-Pontoise,
Laboratoire de Physique Théorique et Modélisation in Cergy-Pontoise,
Ile de France (France)
under the supervision of Prof Alessandro Torcini and with the
co-supervision of Dr. E. Montbrió
at the Center for Brain and Cognition, Pompeu Fabra University
(Barcelona, Spain).
Required titles/skills:
- Master Title (M2) in Theoretical Physics or in Appled Mathematics
or in related subjects
- Strong knowlegde of statistical mechanics, nonlinear dynamics,
applied mathematics
- Strong ability to program in Fortran or in C language
- Knowledge in computational neuroscience
- Interest for multidisciplinary research
- Ability to turn smoothly autonomous, once the road has been set
- Programming with Matlab and/or Python
- French is not a requirement if fluent in English, but willingness
to learn would be beneficial
How to apply and more details can be downloaded here:
https://www.dropbox.com/s/nowtt4cb3d69xfi/project_phd.pdf?dl=0
Funding:
The project is funded by the Initiative of Excellence Paris Seine, within the
programme of the French Government "Investissemensts d'Avenir "
July 2, 2017