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June 2018
- 40 participants
- 41 messages
Bernstein Conference 2018 in Berlin: Registration is open
by Alexandra Stein
BERNSTEIN CONFERENCE 2018 in Berlin
Registration is open!
Please register here: www.bernstein-network.de/en/bernstein-conference/2018/registration<http://www.bernstein-network.de/en/bernstein-conference/2018/registration>
Early registration deadline: July 19, 2018
ABSTRACT SUBMISSION:
For the details on abstract submission please visit: www.bernstein-network.de/de/bernstein-conference/2018/abstracts<http://www.bernstein-network.de/de/bernstein-conference/2018/abstracts>
Deadline for abstracts aimed as contributed talks and posters: June 21, 2018
Deadline for abstracts aimed as posters only: July 17, 2018
****************************************************************************
Satellite Workshops: www.bernstein-network.de/en/bernstein-conference/2018/satellite-workshops<http://www.bernstein-network.de/en/bernstein-conference/2018/satellite-work…>
Main Conference: www.bernstein-network.de/en/bernstein-conference/2018<http://www.bernstein-network.de/en/bernstein-conference/2018>
PhD Symposium: www.bernstein-network.de/en/bernstein-conference/2018/phd-symposium<http://www.bernstein-network.de/en/bernstein-conference/2018/phd-symposium>
****************************************************************************
The Bernstein Conference is the largest annual Computational Neuroscience Conference in Europe and now regularly attracts around 500 international participants.
This year, the Conference will take place in Berlin from September 26-28, 2018. In addition, there will be a series of pre-conference satellite workshops on September 25-26, 2018. The Bernstein Conference is a single-track conference, covering all aspects of Computational Neuroscience and Neurotechnology. Sessions for poster presentations are an integral part of the conference. The goal of the satellite workshops is to provide an informal forum for the discussion of timely research questions and challenges.
For more information on the conference, please visit: www.bernstein-conference.de<http://www.bernstein-conference.de>
CONFERENCE DATE AND VENUE:
Satellite Workshops: September 25-26, 2018
Venue: Technische Universität Berlin (TU Berlin), Marchstrasse 23, 10587 Berlin (10 min. walk to Bernstein Main Conference venue)
Main Conference: September 26-28, 2018
Venue: Technische Universität Berlin (TU Berlin) Main Building, Strasse des 17. Juni 135, 10623 Berlin
PhD Symposium: September 28-29, 2018
Venue: Bernstein Center for Computational Neuroscience Berlin, Philippstraße 13, Haus 6, 10115 Berlin
NEW THIS YEAR:
Postdoc Meeting:
September 25, start 7:00 pm
Venue: Technische Universität Berlin (TU Berlin), Marchstrasse 23, 10587 Berlin (in the same building as the Satellite Workshops)
This event is an informal get-together for post-docs. It is an opportunity to get to know each other, foster collaborations, exchange experiences and ideas. No preparation required, but if you have an idea or a particular topic you want to discuss with your peers, bring it along. Drinks and snacks will be provided.
PhD Social Event:
September 25, start 8:00 pm
Venue: depends on the number of participants
Warm-up for PhD Symposium
ACCOMMODATION AND HOTEL RESERVATION:
We strongly recommend early room booking!
The number of available accommodation is limited!
We arranged for room contingents in a variety of hotels that you may book by yourself by email or
phone. Please follow the instructions at our Accommodations Website (www.bernstein-network.de/en/bernstein-conference/2018/hotels<http://www.bernstein-network.de/en/bernstein-conference/2018/hotels>).
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).
We are looking forward to welcoming you in Berlin!
Conference Chair: Andreas Herz
Conference Host: Henning Sprekeler
Program Chair: Gilles Laurent
Program Vice Chair: Susanne Schreiber
Workshop Chair: Jakob Macke
Workshop Vice Chair: Tatjana Tchumatchenko
Technical Organization: Bernstein Coordination Site (BCOS):
Alexandra Stein, Kerstin Schwarzwaelder
BERNSTEIN CONFERENCE 2018 in Berlin
Registration is open!
Please register here: www.bernstein-network.de/en/bernstein-conference/2018/registration<http://www.bernstein-network.de/en/bernstein-conference/2018/registration>
Early registration deadline: July 19, 2018
ABSTRACT SUBMISSION:
For the details on abstract submission please visit: www.bernstein-network.de/de/bernstein-conference/2018/abstracts<http://www.bernstein-network.de/de/bernstein-conference/2018/abstracts>
Deadline for abstracts aimed as contributed talks and posters: June 21, 2018
Deadline for abstracts aimed as posters only: July 17, 2018
****************************************************************************
Satellite Workshops: www.bernstein-network.de/en/bernstein-conference/2018/satellite-workshops<http://www.bernstein-network.de/en/bernstein-conference/2018/satellite-work…>
Main Conference: www.bernstein-network.de/en/bernstein-conference/2018<http://www.bernstein-network.de/en/bernstein-conference/2018>
PhD Symposium: www.bernstein-network.de/en/bernstein-conference/2018/phd-symposium<http://www.bernstein-network.de/en/bernstein-conference/2018/phd-symposium>
****************************************************************************
The Bernstein Conference is the largest annual Computational Neuroscience Conference in Europe and now regularly attracts around 500 international participants.
This year, the Conference will take place in Berlin from September 26-28, 2018. In addition, there will be a series of pre-conference satellite workshops on September 25-26, 2018. The Bernstein Conference is a single-track conference, covering all aspects of Computational Neuroscience and Neurotechnology. Sessions for poster presentations are an integral part of the conference. The goal of the satellite workshops is to provide an informal forum for the discussion of timely research questions and challenges.
For more information on the conference, please visit: www.bernstein-conference.de<http://www.bernstein-conference.de>
CONFERENCE DATE AND VENUE:
Satellite Workshops: September 25-26, 2018
Venue: Technische Universität Berlin (TU Berlin), Marchstrasse 23, 10587 Berlin (10 min. walk to Bernstein Main Conference venue)
Main Conference: September 26-28, 2018
Venue: Technische Universität Berlin (TU Berlin) Main Building, Strasse des 17. Juni 135, 10623 Berlin
PhD Symposium: September 28-29, 2018
Venue: Bernstein Center for Computational Neuroscience Berlin, Philippstraße 13, Haus 6, 10115 Berlin
NEW THIS YEAR:
Postdoc Meeting:
September 25, start 7:00 pm
Venue: Technische Universität Berlin (TU Berlin), Marchstrasse 23, 10587 Berlin (in the same building as the Satellite Workshops)
This event is an informal get-together for post-docs. It is an opportunity to get to know each other, foster collaborations, exchange experiences and ideas. No preparation required, but if you have an idea or a particular topic you want to discuss with your peers, bring it along. Drinks and snacks will be provided.
PhD Social Event:
September 25, start 8:00 pm
Venue: depends on the number of participants
Warm-up for PhD Symposium
ACCOMMODATION AND HOTEL RESERVATION:
We strongly recommend early room booking!
The number of available accommodation is limited!
We arranged for room contingents in a variety of hotels that you may book by yourself by email or
phone. Please follow the instructions at our Accommodations Website (www.bernstein-network.de/en/bernstein-conference/2018/hotels<http://www.bernstein-network.de/en/bernstein-conference/2018/hotels>).
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).
We are looking forward to welcoming you in Berlin!
Conference Chair: Andreas Herz
Conference Host: Henning Sprekeler
Program Chair: Gilles Laurent
Program Vice Chair: Susanne Schreiber
Workshop Chair: Jakob Macke
Workshop Vice Chair: Tatjana Tchumatchenko
Technical Organization: Bernstein Coordination Site (BCOS):
Alexandra Stein, Kerstin Schwarzwaelder
--
Dr. Alexandra Stein
Head of Bernstein Coordination Site
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 9583
mobile: (+49) 0151 67114645
mail: a.stein(a)fz-juelich.de<mailto:a.stein@fz-juelich.de>
web: www.bernstein-network.de<http://www.bernstein-network.de>
Twitter: NNCN_Germany
YouTube: Bernstein TV
Facebook: Bernstein Network Computational Neuroscience, Germany
LinkedIn: Bernstein Network Computational Neuroscience, Germany
------------------------------------------------------------------------------------------------
------------------------------------------------------------------------------------------------
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
------------------------------------------------------------------------------------------------
------------------------------------------------------------------------------------------------
June 14, 2018
Postdoc in systems or computational neuroscience at Brandeis (Boston Area), ,
by Paul Miller
Postdoc in systems or computational neuroscience at Brandeis (Boston Area)
The Miller and Katz labs are looking for a postdoctoral researcher with
expertise in two or more of the following areas: electrophysiology,
optogenetics, animal behavior, data analysis, and/or computational
modeling. The postdoc will work on a collaborative project, which is
funded by the BRAIN initiative. The project’s goal is to uncover the
dynamics and neural circuitry underlying the ongoing consumption
decisions that occur when an animal is choosing between different tastes
or olfactory stimuli. The ideal candidate will be highly motivated,
bring relevant skills based on past experience, be willing and able to
develop new project-related skills, and be good at communicating with
others in both experimental and computational labs.
Any interested candidate should contact Paul Miller at
pmiller(a)brandeis.edu <mailto:pmiller@brandeis.edu>, indicating areas of
expertise and which areas of the project (in particular experiment
versus modeling) are of greatest interest. A C.V. and the names and
contact details of three faculty willing to provide recommendations
should accompany the application. The position is available as of now
and is open until a suitably qualified candidate is appointed.
The appointee will work in either the Katz Lab or Miller Lab at Brandeis
University in Waltham MA (in the Greater Boston Metro area), a liberal
arts college with a very strong research community, particularly in the
life sciences. Salary will be on the NIH scale (experience-dependent,
starting at $48 432).
Brandeis University has a strong institutional commitment to the
achievement of excellence and diversity.Women and underrepresented
minority candidates are encouraged to apply.Brandeis University is an
affirmative action/equal opportunity employer.All qualified applicants
will receive consideration for employment without regard to race, color,
religion, sex, sexual orientation, gender identity, national origin,
disability, age or protected veteran status.
June 13, 2018
3rd International MOBI Conference
by Daniel Ferris
11 - 14 JULY, 2018
3RD INTERNATIONAL MOBILE BRAIN/BODY IMAGING CONFERENCE
http://mobi2018.bpn.tu-berlin.de/
Berlin, Germany
______
Speakers
Diane Damiano
Chief of Functional & Applied Biomechanics NIH
Arthur Kramer
Professor of Psychology & Engineering, Northeastern University
Scott Makeig
Director Swartz Center for Computational Neuroscience
Klaus Gramann
Chair Biological Psychology and Neuroergonomics, Technical University Berlin
Dan Ferris
Robert W. Adenbaum Professor of Engineering Innovation, University of
Florida
Juliet King
Director Art Therapy, Indiana University School of Medicine
Stefan Debener
Chair of Neuropsychology, University of Oldenburg
John Foxe
Killian J. and Caroline F. Schmitt Chair in Neuroscience, University of
Rochester Medical center
Helen J. Huang
Professor, University of Central Florida
Jose Luis Contreras-Vidal
Hugh Roy and Lillie Cranz Cullen Distinguished Professor, University of
Houston
Thorsten Zander
CEO, Zander Laboratories B.V., Amsterdam, The Netehrlands
Peter Koenig
Chair Neurobiopsychology, University of Osnabrueck
Girija Kaimal
Professor Creative Arts Therapies, Drexel University
Tzyy-Ping Jung
Co-Director Center for Advanced Neurological Engineering, UCSD
Hirokazu Tanaka
Professor School of Information Science, Japan Advanced Institute of
Science and Technology
Paola Pinti
Research Associate Dept. of Medical Physics and Biomedical Engineering,
University College London
Edmund Wascher
Chair of Ergonomics, Leibnitz Research Center for Working Environments and
Human Factors
Janna Protzak
Postdoctoral Researcher, Technische Universitaet Berlin
Tim Mullen
CEO Qusp
Hasan Ayaz
Professor School of Biomedical Engineering, Science and Health Systems,
Drexel University
Julia Kline
Senior Researcher Fitbit, San Francisco
Guy Cheron
Director Laboratory of Neurophysiology and Movement Biomechanics,
Université Libre de Bruxelles
Eduardo Macagno
Professor Biological Sciences, University of California San Diego
Tal Shafir
Research Fellow, The Emili Sagol Creative Arts Therapies Research Center,
University of Haifa
Guido Orgs
Lecturer, Department of Psychology, Goldsmiths, University of London
Grainne McLoughlin
Associate Professor, Cognitive Neuroscience, King’s College London
Chin-Teng Lin
Director, Computational Intelligence and Brain Computer Interfaces,
University of Technology Sydney
Martin Seeber
Research Scientist, Functional Brain Mapping Lab, University of Geneva
Stephanie Scott
Researcher, Brain-Computer Interface Laboratory, Colorado State University
Lewis Chuang
Group leader, Max Planck Institute for Biological Cybernetics
Christer Ahlström
Researcher, The Swedish National Road and Transport Research Institute
Sha Xin Wei
Director School of Arts, Media + Engineering, Arizona State University
Pierfilippo De Sanctis
Professor Albert Einstein College New York
Conny Kranczioch
Research Scientist, Department of Psychology, University Oldenburg
Simon Ladouce
Impact Fellow, Department of Psychology, University of Stirling
Angus Hunter
Professor, Health and Sport Science, University of Stirling
Hanna Poikonen
Faculty of Medicine, University of Helsinki
John Iversen
Research Scientist, University of California San Diego
Agnieszka Wykowska
Social Cognition in Human-Robot Interaction, Istituto Italiano di
Tecnologia, Genua
Elsa Kirchner
Robotics Lab, University of Bremen
Andreas Mierau
Exercise & Sport Science, LUNEX International University of Health,
Luxembourg
Nadja Schott
Professor, Institute of Sport and Exercise Sciences
--
Daniel P. Ferris, Ph.D.
Editor-In-Chief, IEEE-TNSRE
editortnsre(a)gmail.com
June 13, 2018
PhD position in neuromorphic engineering - Toulouse, France
by Timothée Masquelier
Beating Roger Federer:
Modeling visual learning and expertise through a bioinspired neural network
embedded in an electronic device
Goal: PhD grant.
When: starting from September 2018 (date may be flexible to some extent)
Topic: How do expert tennis players, like Roger Federer for example,
predict if a ball will bounce in or out the field to decide if it should be
played or not? After thousands of trajectory presentations, best champions
have developed extraordinary skills in such a task, but little is known on
how the visual system turns selective to spatiotemporal properties of the
visual stimulus (e.g., 3D position, velocity and acceleration) and learns
how to make an efficient use of it.
The goal of the project is to build an embedded system – based on FPGA
circuits and ARM processor – an artificial neural network which would
replicate – and perhaps beat – the visual and anticipatory performances of
these expert players.
To achieve this goal successfully, we will develop a bio-inspired neural
network, based on some of the key properties of human vision: the Smart
NeuroCam (GST company) will be used to reproduce the retina functioning. It
triggers its message under the form of spikes, in an asynchronous way
(without any concept of frame per second), responding to spatial or
temporal changes in the pattern of illumination. Several kinds of
pre-processing filters can be implemented in VHDL language directly in the
FPGA circuits, and the output is then sent to a neural network. The
artificial network will learn to use this message, applying a simple
learning rule, the Spike-Timing-Dependent Plasticity (STDP). This rule
allows each neuron to become selective to a particular property of the
stimulus, completely autonomously and with no supervision. Several layers
will be built to allow perceiving more and more complex properties of the
visual scene. Once the network will be established, its performances will
be assessed in different conditions of learning and compared to those of
the best tennis players.
The project is funded by a French National Research Agency (ANR), involving
two sites and several researchers:
− Robin Baurès, Benoit Cottereau, Timothée Masquelier and Simon Thorpe,
CerCo, Toulouse.
− Michel Paindavoine, GST, Dijon.
Where: The candidate will be based at CerCo, Toulouse (France), and will
make the interface with the two sites, with regular trips. The
computational neuroscience part will be done at Toulouse, and electronic
part at Dijon.
Tasks:
− Matlab (or Python) based simulations of numerical filters. These filters
will be applied to the image processing from which spikes are generated and
then sent to feed the neural network and STDP learning mechanism.
− VHDL coding to implement these numerical filters into the FPGA circuits
of the cameras
− C/C++ coding of the neural network and STDP mechanism that should work on
an embedded ARM processor system
− Experimental tests that will allow evaluating the performance of the
whole system, from spikes generation to visual properties learning of the
embedded system, to predict tennis ball’s trajectories
Required skills:
− Strong knowledge on electronic, and openness to computational
neurosciences
− Knowledge in signal-image processing, and artificial neural network
− Interest for multidisciplinary research
− Ability to turn smoothly autonomous, once the road has been set
− Ability to be at the interface of two scientific fields and two working
areas
− Programming with Matlab and/or Python for simulating the neural network
− Programming in VHDL language for FPGA circuits
− Programming in C/C++ language for porting the algorithms on ARM
microprocessors
− French is not a requirement if fluent in English, but willingness to
learn would be beneficial
Citizenship Eligibility: For security / defense reasons, an evaluation will
be made of the candidates before any possible acceptation.
Relevant publications for the project:
− Masquelier, T., Guyonneau, R. & Thorpe S.J. (2009). Competitive
STDP-Based Spike Pattern Learning. Neural Comput, 21(5),1259-1276.
− Masquelier, T. & Thorpe, S.J. (2007). Unsupervised learning of visual
features through spike timing dependent plasticity. PLoS Comput Biol,
3(2):e31.
− Cottereau, B.R., McKee, S.P. & Norcia, A.M. (2014). Dynamics and cortical
distribution of neural responses to 2D and 3D motion in human. Journal of
Neurophysiology 111(3), 533-543.
− SmartNeuroCam de GST : https://gsensing.eu/fr/category/sections/products
Contact:
Robin Baurès, PhD
Associate Professor
CerCo, Université Toulouse 3, CNRS
CHU Purpan, Pavillon Baudot
31059 Toulouse Cedex 9 – France
Office phone: 0033 (0)5 62 74 62 15
Email : robin.baures(a)cnrs.fr
Pr Michel Paindavoine
GlobalSensing Technologies
14, rue Pierre de Coubertin
21000 Dijon
email : michel.paindavoine(a)gsensing.eu
--
Timothée Masquelier - timothee.masquelier(a)cnrs.fr -
http://cerco.ups-tlse.fr/~masquelier/
June 12, 2018
POSTDOCTORAL POSITION AT THE UNIVERSITY OF ROCHESTER
by Tatiana Pasternak
POSTDOCTORAL POSITION IN THE NEUROSCIENCE OF PERCEPTUAL DECISIONS
Postdoctoral position to study cortical circuitry underlying memory-guided perceptual decisions is available immediately in the laboratory of Dr. Tatiana Pasternak. Experimental approaches include extracellular multi-electrode recordings and inactivation of spiking and LFP activity from prefrontal and extrastriate visual cortical regions of non-human primates during complex behavioral tasks. An important component of the work is a collaboration involving computational modeling aimed at mechanisms underlying maintenance and utilization of visual information in decision-making.
Preference will be given to candidates with strong quantitative background with experience in the analysis of physiological data and extracellular recordings. Applicants with strong background in related disciplines of systems neuroscience and/or computer science & engineering are welcome to apply. Experience with MATLAB/Python programming and proficient knowledge of the English language are required.
The University of Rochester offers a stimulating research environment and excellent opportunities for interactions and training in cognitive neuroscience and visual science. Interested applicants should send CV and names/contact information of three references to Dr. Pasternak. Please include a cover letter detailing your current research activities, expertise and the reasons for your interest in this position.
****************************************
Tatiana Pasternak, Ph.D.
Professor
Del Monte Institute for Neuroscience
Departments of Neuroscience,
Brain & Cognitive Science,
Biomedical Engineering, and
Center for Visual Science
University of Rochester
https://www.urmc.rochester.edu/labs/pasternak.aspx <https://www.urmc.rochester.edu/labs/pasternak.aspx>
June 11, 2018
IBRO Simons Computational Neuroscience Imbizo 2019 - call for applications
by Antrobus, Alexander
The IBRO-Simons computational neuroscience imbizo is a summer school in computational neuroscience and machine learning, hosted each January in Cape Town, South Africa.
The event is generously sponsored by the International Brain Research Organisation (IBRO) and the Simons Foundation (Simons).
"Imbizo" is an isiXhosa word, meaning "A gathering to share knowledge". The aim of the isiCNI is exactly this: to create an environment in which young African and international students can explore computational neuroscience together, forming strong friendships in the process.
Three weeks of intensive lectures, tutorials, projects and fun!
When and where?
January 6th - 27th 2019
Cape Town, South Africa
TO APPLY: https://imbizo.africa<https://imbizo.africa/>
[http://isicni.gatsby.ucl.ac.uk/img/Africagrey_trans_small.png]<https://imbizo.africa/>
imbizo.africa - #isiCNI2019<https://imbizo.africa/>
imbizo.africa
The IBRO-Simons Computational Neuroscience Imbizo: a computational neuroscience school in Cape Town, South Africa
Faculty for 2019 include:
Dora Angelaki (Bayor College, Houston)
Demba Ba (Harvard Uni, Boston)
Sophie Denève (ENS, Paris)
Adrienne Fairhall (Univ of Washington, Seattle)
Peter Latham (Univ College London)
Timothy Lillicrap (Google Deepmind, London)
Joseph Raimondo (Univ of Cape Town)
Athanassia Papoutsi (IMBB-FORTH, Hellas)
Srikanth Ramaswami (EPFL, Lausanne)
Blake Richards (Univ Toronto)
Andrew Trevelyan (Newcastle Univ., Newcastle)
Misha Tsodyks (Weizmann Inst., Rehovot)
Tim Vogels (Oxford)
Byron Yu (Carnegie Mellon Univ, Pittsburgh)
Who
should apply?
The Imbizo is designed to introduce students with backgrounds in analytic fields (computer science, statistics, physics, mathematics, engineering, etc.) to the field of computational neuroscience. It will also benefit advanced experimental biologists who would like to learn more computational skills. It also provides an opportunity for students already working in computational neuroscience to do 3 weeks of intensive, focused work in a different sub-topic of the field.
Students should generally be at Masters/early PhD level, and have completed at least a 2nd-year university level course in computer science, statistics, physics or mathematics. Some coding experience will also be helpful.
More advanced level students (post-Docs, early career PIs) may also be accepted if they can motivate how the courses at the Imbizo could help their career. Well motivated, exceptional undergraduates will also be considered.
African students are especially encouraged to apply.
What does it cost?
The attendance fee for the isiCNI2019 is EUR 1,100.00.
Thanks to our generous sponsors, significant bursaries are available to subsidise and waiver student fees, and provide some travel bursaries. Funding will be allocated according to need and merit. Please be sure to complete the relevant section of the application.
For more information, please visit https://imbizo.africa<https://imbizo.africa/>
[http://isicni.gatsby.ucl.ac.uk/img/Africagrey_trans_small.png]<https://imbizo.africa/>
imbizo.africa - #isiCNI2019<https://imbizo.africa/>
imbizo.africa
The IBRO-Simons Computational Neuroscience Imbizo: a computational neuroscience school in Cape Town, South Africa
Or contact isicn.imbizo[AT]gmail.com
Thanks and regards
IBRO-Simons Computational Neuroscience Committee 2019
June 11, 2018
postdoctoral position in computational neuroscience at the IIT - Italy
by Stefano Panzeri
A postdoctoral position is currently available at the Istituto Italiano di
Tecnologia, within the new Center for Human Technologies in Genoa, Italy.
The research will be jointly supervised by Stefano Panzeri (
https://www.iit.it/people/stefano-panzeri) and Cristina Becchio (
https://www.iit.it/it/people/cristina-becchio)
The aim of this project is to investigate, using both neural network models
and the mathematical analysis of behavioral, psychophysical and
neuroimaging data from cognitive experiments, how motor variability affects
action observation and prediction in both typically developing individuals
and individuals with autism.
The laboratories of the two supervisors offer a wide range of
interdisciplinary expertise in computational and cognitive neuroscience,
including advanced analysis, neural analyses techniques, neural network
modeling, motion tracking, psychophysics and neuroimaging techniques. The
laboratories offer a thriving, well-funded research environment with
extensive international collaborations and ample opportunities for advanced
training and personal scientific growth.
We seek candidates holding a PhD in a numerate or neuroscientific
scientific discipline, with a solid computational background and a keen
interest in neuroscience and cognition. The ideal candidate is a highly
motivated and creative individual who wants to work in a dynamic,
multi-disciplinary research environment and is willing to interact with
both experimental and theoretical cognitive neuroscientists.
The formal deadline for applications is *July 9**th** 2018*. However,
interested candidates are advised to contact informally Stefano Panzeri (
stefano.panzeri(a)iit.it) *as soon as possible*.
The formal application should be sent by email to *jobpost.75446(a)iit.it*
<jobpost.75446(a)iit.it>, *quoting “One post-doctoral position at the
interface between Computational and Cognitive Neuroscience - CB 75446 CB
75447” in the subject*.
The formal application should contain the CV, a brief statement of research
interests, and names and email addresses of 2 referees.
Please see the following link for further details:
https://www.iit.it/careers/openings/opening/767-one-post-doctoral-position-…
Yours truly
Stefano Panzeri
June 11, 2018
An Electrodynamic Theory of the Brain
by Patirniche, Dinu
Dear Colleagues,
What is a meter?
If you say a unit length, you are correct. However, the meter is not
just any unit of length, but one that is relevant for you as a human.
Mature humans are around 1.70m high, and walk comfortably at 1m/s. But
why do we use the meter at all, when it comes to expressing events and
distances encountered in the brain?
A commonly held biophysical dogma says that magnetic interactions
occurring among neighboring compartments of biological tissues, such as
for example the different neurons in a brain, can be ignored. The
typical argument used to give credit to all biophysical theories rooted
in electrostatic is related to the observation that the vast majority of
all electrical events within living tissues propagate are incredibly low
speeds. Thus, since action potentials (APs), that is, sharp fluctuations
of the electric field, are seen to propagate at speeds between 1 and 100
m/s, any dynamic induction phenomena arising due to the presence of such
an event is apriorily excluded. And indeed, with meter-long sensors
there is hardly any significant electrodynamics signals to be recorded.
However, acknowledging that the AP is playing a decisive role in the
chemical transmission cycle, we could express the AP's speed in units
that are relevant to this process. Since the dendritic spine is an
integral part of the chemical transmission machinery, we could introduce
a new unit of length and call it the "dendritic-spine-head" to mean 1
micro-meter, or 10^-6 m. Thus, referring to the spine as an observer of
the AP, this event propagates at 1,000,000 "dendritic-spine-heads"/s.
From the perspective of a spine, the production of such an event is
anything but a stationary phenomenon, appearing necessary to consider
what an electrodynamic theory might say about the interactions between
an incoming electrical pulse and a fixed spine.
In following this route, I came to the conclusion that all biological
organisms can be easily decomposed into a finite set of disjoint, and
electrically insulated volumes, that appear to function as a set of
nested highly-exotic electromagnetic antennae. If this view can be
maintained, understanding brains as room-temperature quantum computers,
and life as a globally coherent state within some finite reach, is
inevitable.
I present this theory in a preprint entitled Dynamic Aspects of Finite
Architectures (http://doi.org/10.13140/RG.2.2.20815.79527) and invite
you to read, comment and share this manuscript.
Best regards,
Dinu Patirniche.
June 11, 2018
Ph.D. Computational Neuroscience @University of Padova
by suweis infn
Dear all,
call are open for Ph.D. position in Computational Neuroscience @ the Padova Neuroscience Center, University of Padova (http://pnc.unipd.it/phd-neuroscience/)
In particular we propose three different projects:
- The Critical Brain in Action (http://pnc.unipd.it/wp-content/uploads/2018/06/P19_Suweis.pdf)
- Controllability and Observability of Rat Brain Activity (http://pnc.unipd.it/wp-content/uploads/2018/06/P17_Vassanelli.pdf)
- Intrinsic brain activity and sensory coding in the rodent whisker somatosensory system (http://pnc.unipd.it/wp-content/uploads/2018/06/P18_Vassanelli.pdf)
The deadline for the application is 26 June 2018.
Interested candidate can contact me suweis(a)pd.infn.it
Please forward this message to collaborators and students.
Thanks
Samir Suweis
- - - - - - - - - - - - - - - - - - - - - - - - - - - - -
Samir Suweis, Ph.D.
https://impactstory.org/u/SamirSuweis <https://impactstory.org/u/SamirSuweis>
@SamirSuweis
Research Scientist (RTDa)
LIPh Lab, Physics Department,
University of Padova
Tel: +39 049 827 72 51
www.pd.infn.it/~maritan/people/Samir/samir.html
June 10, 2018
Post-doctoral research scientist position for psychophysics in audio-visual virtual reality
by Seeber, Bernhard
Dear List,
we are inviting applications for a post-doctoral research scientist to join our team for research on psychoacoustics in complex audio-visual virtual environments. Main responsibilities are:
- Development of novel techniques for and auditory experiments in interactive audio-visual virtual reality
- Development of analysis methods for behavioral responses and statistical analysis of the results
- Research on binaural hearing and auditory scene analysis with normal hearing listeners
- Publication in English-language scientific journals and presentations at conferences
- Supervision of student projects, assistance with teaching and with raising external funding.
The position is full time and will start at the earliest convenient date.
Qualifications:
- Successfully completed doctoral degree (PhD) in one of the following areas: psychoacoustics, audio technology, virtual reality, acoustics, multimodal interaction, signal processing, or a related area
- Knowledge and experience desirable in designing and analyzing psychophysical experiments, models of the auditory system, virtual acoustics, audio signal processing, machine learning, auditory scene analysis, binaural hearing, speech perception and speech tests
- Very good programming skills in Matlab, Python, or C/C++
- Excellent written and oral communication skills as well as experience with scientific publications
- Interest in basic research and the development of technical systems in virtual reality
- Flexibility and good interpersonal skills
- Interest in supervising students, helping with teaching, and raising external funds.
We offer...
you the opportunity to join a dynamic, interdisciplinary team, to work with up-to-date technical equipment including an anechoic chamber hosting an audio-visual virtual reality system, and to learn about the latest methods in hearing research. As part of the DFG collaborative research center "Hearing acoustics: Perceptual principles, Algorithms and Applications" you will work closely with our project partners at the University of Oldenburg. Our close interaction with the Bernstein Centre for Computational Neuroscience Munich (www.bccn-munich.de) the Munich School of BioEngineering (www.bioengineering.tum.de) the Graduate School of Systemic Neurosciences (www.gsn.uni-muenchen.de) the Hearing Research Network Munich, our extensive cooperation with industry and with scientific partners, and the numerous courses offered at TUM create an attractive environment with excellent perspectives for personal development. Please see www.aip.ei.tum.de for further information.
Employment is according to the state employees salary scheme (TV-L/E13) and is initially for 1 year with the option for extension to 4 years. Women are explicitly encouraged to apply. Severely handicapped persons will be favored if they are equally qualified. In principle, the position could also be filled part-time.
Munich - the city famous for the Oktoberfest, high-end cars and its unique location to the Alps - is a bustling, international and interesting place to live which offers a wide range of opportunities to engage in cultural and leisurely activities - from opera to skiing.
Interested?
I look forward to answering your questions on the phone (+49 89 289 28282) or by email. Please send your expressive application preferably by email no later than 30 June 2018 to:
Prof. Dr.-Ing. Bernhard Seeber
Professorship for Audio Information Processing Technical University of Munich Arcisstrasse 21
80333 Munich
Germany
Email: aip(a)ei.tum.de.
The job advertisement can also be found at: https://portal.mytum.de/jobs/wissenschaftler/NewsArticle_20180608_072800
Kind regards,
Bernhard
June 8, 2018