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- 17 participants
- 7400 messages
NEURON course at 2014 SFN Meeting
by Ted Carnevale
Using NEURON to Model Cells and Networks
Satellite Symposium, Society for Neuroscience Meeting
9 AM - 5 PM on Friday, November 14, 2014
Speakers include Ted Carnevale, Bill Lytton, and Gordon Shepherd
This course emphasizes practical issues that are key to the most
productive use of NEURON, an advanced simulation environment for
realistic modeling of biological neurons and neural circuits. Through
lectures and live computer demonstrations, we will address topics that
include the following:
Partial list of topics that will be covered:
* Efficient design and implementation of models of neurons and networks.
* Constructing and managing models with NEURON's GUI, hoc, and Python.
* Using the built-in variable-order variable-timestep integrator for
improved speed and accuracy.
* Parallelizing models of cells and networks to take advantage
of multicore PCs and Macs, workstation clusters, and parallel
supercomputers.
* Expanding NEURON's repertoire of biophysical mechanisms,
including an introduction to using the new RxD feature
to implement models that involve reactive diffusion.
* Databases for empirically-based modeling.
Each registrant will receive a comprehensive set of notes.
Registration is limited to 25 individuals on a first-come,
first-serve basis. The registration deadline is Friday,
October 31, 2014. NO on-site registration will be accepted.
For more information and the online registration form, see
http://www.neuron.yale.edu/neuron/static/courses/dc2014/dc2014.html
--Ted
July 14, 2014
PhD open positions on event-driven robotics
by Chiara Bartolozzi
There are few PhD positions with scholarship for developing event-driven sensors and computation for the humanoid robot iCub at the Italian Institute of Technology. The call, application form and tips on the documentation to send are at the following link: http://www.iit.it/en/openings/phd-calls/2030-phd-course-topic-information.h…
1. Event-driven vision sensors for humanoid robots
Tutors: Chiara Bartolozzi
Department: iCub Facility (Istituto Italiano di Tecnologia)
http://www.iit.it/en/research/departments/icub-facility.html
Description: Carrying out real-world tasks robustly and efficiently is one of the major challenges of robotics. Biology clearly outperforms artificial computing and robotic systems in terms of appropriateness of the behavioural response, robustness to interference and noise, adaptation to ever changing environmental conditions, or energy efficiency. All these properties arise from the characteristics of the radically different style of sensing and computation used by the biological brain.
In conventional robots, sensory information is available in a sequence of static frames and high dynamics can be sensed only by increasing the sampling rate. Unfortunately the available bandwidth limits the amount of information that can be transmitted forcing a compromise between resolution and speed.
The goal of the proposed theme is the development of bio-inspired event-driven artificial vision sensors that will be mounted and validated on the humanoid robot iCub. The goal is to convey to the robot the most informative signal that it can use to robustly interact with the world.
The research will focus on the design of mixed-mode analog/digital circuits for photo-transduction and focal-plane processing. Different architectures and circuits will be considered for the pixel design, evaluating the trade-off between complexity (and fill-in factor) and sensor pre-processing capabilities. Additionally, ad hoc digital asynchronous logic circuits and interfaces based on the "Address Event Representation" protocol will be developed for optimally interfacing the sensor with the robot.
Requirements: degree in Electronic Engineering, Physics (or equivalent) and background in Analog and/or Digital Circuit Design, possibly on FPGA programming (VHDL, Verilog). High motivation to work on a robotic platform.
Reference: C. Posch, D. Matolin, and R. Wohlgenannt, "A QVGA 143 dB Dynamic Range Frame-Free PWM Image Sensor With Lossless Pixel-Level Video Compression and Time-Domain CDS," IEEE J Solid-State Circuits, vol. 46, no. 1, pp. 259-275, Jan. 2011
Contacts: chiara.bartolozzi(a)iit.it<mailto:chiara.bartolozzi@iit.it>
2. Building the neuromorphic iCub
Tutors: Chiara Bartolozzi
Department: iCub Facility (Istituto Italiano di Tecnologia)
http://www.iit.it/en/research/departments/icub-facility.html
Description: Carrying out real-world tasks robustly and efficiently is one of the major challenges of robotics. Biology clearly outperforms artificial computing and robotic systems in terms of appropriateness of the behavioural response, robustness to interference and noise, adaptation to ever changing environmental conditions, or energy efficiency. All these properties arise from the characteristics of the radically different style of sensing and computation used by the biological brain.
In conventional robots, sensory information is available in a sequence of static snapshots and high dynamics can be sensed only by increasing the sampling rate. Unfortunately the available bandwidth limits the amount of information that can be transmitted forcing a compromise between resolution and speed.
The goal of the proposed theme is the integration of event-driven sensors and computing platforms on the humanoid robot iCub. The goal is to convey to the robot the most informative signal that it can use to robustly interact with the world and provide adequate computing platforms such as the SpiNNaker system.
The research will focus on the development of the infrastructure for optimally interfacing event-driven hardware modules based on the Address Event Representation protocol on the iCub.
Requirements: degree in Electronic Engineering, Physics (or equivalent) and background on FPGA programming (VHDL, Verilog). High motivation to work on a robotic platform.
Reference: C. Bartolozzi, F. Rea, C. Clercq, M. Hofstätter, D. B. Fasnacht, G. Indiveri, and G. Metta, "Embedded neuromorphic vision for humanoid robots," in IEEE Computer Society Conference on Computer Vision and Pattern Recognition Workshops (CVPRW), 2011, pp. 129-135
Contacts: chiara.bartolozzi(a)iit.it<mailto:chiara.bartolozzi@iit.it>
3. Event-driven vision for the iCub
Tutors: Chiara Bartolozzi, Lorenzo Natale
Department: iCub Facility (Istituto Italiano di Tecnologia)
http://www.iit.it/en/research/departments/icub-facility.html
Description: Interacting with a dynamical environment is one of the major challenges of robotics. Biology clearly outperforms robotic systems when acting in real scenarios in terms of appropriateness of the behavioural response, robustness to interference and noise, adaptation to ever changing environmental conditions, and energy efficiency. All these properties arise from the characteristics of the radically different style of sensing and computation used by the biological brain.
In conventional robots, sensory information is available in a sequence of static snapshots and high dynamics can be sensed only by increasing the sampling rate. However the available bandwidth limits the amount of information that can be transmitted forcing a compromise between resolution and speed. Event-driven vision sensors transmit information as soon as a change occurs in their visual field, achieving incredibly high temporal resolution, coupled with extremely low data rate and automatic segmentation of significant events.
The proposed theme aims at the exploitation of highly dynamical information from event-driven sensors for robust interaction of the humanoid robot iCub with moving objects. The goal is to develop new techniques for the recognition and prediction of trajectories of moving targets including humans and objects and plan for precise reaching movements, by exploiting the high temporal resolution and compressive signal encoding of event-driven vision sensors mounted on the iCub.
The research will focus on the development of the infrastructure for handling event-driven sensory data and of event-driven vision algorithms for motion estimation as well as algorithms for trajectory prediction. Real time behaviour will be achieved by using compressive event driven computation and on-board processing on FPGA.
Requirements: degree in Computer Science or Engineering (or equivalent) and background in Computer Vision and/or Machine Learning. High motivation to work on a robotic platform and good computer and FPGA programming skills
Reference: Benosman, R.; Clercq, C.; Lagorce, X.; Sio-Hoi Ieng; Bartolozzi, C., "Event-Based Visual Flow," Neural Networks and Learning Systems, IEEE Transactions on , vol.25, no.2, pp.407,417, Feb. 2014, doi: 10.1109/TNNLS.2013.2273537
Contacts: chiara.bartolozzi(a)iit.it<mailto:chiara.bartolozzi@iit.it> , lorenzo.natale(a)iit.it<mailto:lorenzo.natale@iit.it>
4. New techniques for vision-assisted speech processing for the iCub
Tutors: Chiara Bartolozzi, Leonardo Badino
Department: iCub Facility (Istituto Italiano di Tecnologia)
http://www.iit.it/en/research/departments/icub-facility.html
Description: Robust speech detection in realistic environments for human robot interaction is still a challenging task. Vision is currently used for improving speech recognition in noisy acoustic environments, however, the temporal content of the visual information is severely limited by the temporal discretization of the frame-based acquisition. Event-driven vision sensors transmit information as soon as a change occurs in their visual field, achieving incredibly high temporal resolution, coupled with extremely low data rate and automatic segmentation of significant events.
The goal of the proposed theme is the exploitation of highly dynamical information from event-driven vision sensors for robust speech processing for the humanoid robot iCub. The goal is to extract visual features and cues from the stream of visual events that are related to speech production landmarks and exploit them for further improving speech recognition.
The research will focus on the development of the infrastructure for handling event-driven sensory data and of novel algorithms for extraction of visual features from event-driven cameras.
Requirements: degree in Computer Science or Engineering (or equivalent) and background in Auditory Processing and/or Machine Learning. High motivation to work on a robotic platform and good computer and FPGA programming skills.
Reference: G. Potamianos, C. Neti, G. Gravier, A. Garg, and A.W.Senior in Proceedings of the IEEE Vol. 91 No. 9 September 2003 pp. 1306-1326
Benosman, R.; Clercq, C.; Lagorce, X.; Sio-Hoi Ieng; Bartolozzi, C., "Event-Based Visual Flow," Neural Networks and Learning Systems, IEEE Transactions on , vol.25, no.2, pp.407,417, Feb. 2014, doi: 10.1109/TNNLS.2013.2273537
Contacts: chiara.bartolozzi(a)iit.it<mailto:chiara.bartolozzi@iit.it> , leonardo.badino(a)iit.it<mailto:leonardo.badino@iit.it>
Chiara Bartolozzi
Researcher
Istituto Italiano di Tecnologia
Via Morego, 30
16163 Genoa, Italy
Ph: +39 010 7178-1474
July 14, 2014
Two Postdoctoral Positions in Computational Modeling of Primate Motor Control
by Yaroslav Molkov
Two postdoctoral/research associate positions in computational neuroscience
for the duration of up to three years are available in the externally
funded project focusing on multiscale computational modeling of motor
control mechanisms, involving interactions between basal ganglia,
thalamus, cerebellum, cortex, and spinal cord in connection with realistic
simulation of pathological changes in motor control during Huntington’s
disease. This collaborative project is performed jointly by the groups of
Drs. Ilya Rybak (Dept. of Neurobiology and Anatomy, Drexel University,
Philadelphia, PA, USA) and Yaroslav Molkov (Dept. of Mathematical Science,
Indiana University – Purdue University, Indianapolis, IN, USA).
Applicants must have a PhD degree in Neuroscience, Applied Mathematics,
Physics, or a related discipline and have excellent C++ programming skills.
Previous experience in computational neuronal modeling is a plus.
Interested candidates are encouraged to contact Dr. Rybak (rybak(a)drexel.edu)
or Dr. Molkov (ymolkov(a)iupui.edu) by email. To apply, please send an email
along with (1) curriculum vitae; (2) a cover letter describing previous
research experience and interests; (3) the names and contact information of
three references.
Drs. Rybak and Molkov will be available to answer questions and discuss
this job opportunity
with potential candidates at the CNS’2014 meeting in Quebec City, Canada
(July 26-31).
=================================
Ilya A. Rybak, Ph.D.
Professor
Department of Neurobiology and Anatomy
Drexel University College of Medicine
2900 Queen Lane
Philadelphia, PA 19129, USA
Tel.: (215) 991-8596
FAX: (215) 843-9082
E-mail: rybak(a)drexel.edu
Yaroslav Molkov, Ph.D.
Assistant Professor
Indiana University - Purdue University Indianapolis
Department of Mathematical Sciences
402 N. Blackford St, LD 270, Indianapolis, IN 46202
Office: LD 224U
Phone: (317) 274-6934
Fax: (317) 274-3460
Email: ymolkov(a)iupui.edu
July 13, 2014
Job offer in Juelich, Germany - IT-Solutions Architect (f/m)
by Martina Reske
The Institute of Neuroscience and Medicine (INM) investigates the structure and function of the brain. The department INM-6 is conducting research in the field of Computational and Systems Neuroscience with currently four work groups and one Helmholtz Young Investigator Group (www.csn.fz-juelich.de<http://www.csn.fz-juelich.de>). The Ju?lich Supercomputing Centre (JSC) as part of the Institute for Advanced Simulation (IAS) offers high performance computing resources for scientific and technical applications which are among the most powerful in Europe and worldwide. The Simulation Lab Neuroscience at JSC is dedicated to enabling and supporting the Computational Neuroscience community in leveraging these resources for their research.
These institutes are jointly looking for an
IT-Solutions Architect (f/m)
Your Job:
* Design and development of web solutions
* Implementation of web sites on the basis of open source solutions (e.g., WordPress/MediaWiki)
* Integration of own and third-party components into the web sites
* Writing of scripts/programs (e.g. in Python) in a neuroscience environment
* Interaction with scientists to find the optimal solution for different situations
* Proactive updates and creation of content for web sites in the field of neuroscientific simulation software
* Creation of documentation of simulation of software in collaboration with scientists
* The successful candidate will work half-time for INM-6 and the Simulation Lab Neuroscience at JSC, respectively.
Your Profile:
* Completed training in mathematical-technical software development or Bachelor in the area of Computer Science or comparable qualification
* Very good knowledge of the relevant web technologies: PHP, MySQL, (X)HTML, JavaScript, CSS
* Experience with the administration of web servers under Linux (LAMP) Experience with a common content management system (e.g., WordPress, MediaWiki, Typo3)
* Good knowledge of shell and scripting languages like bash and Python
* Fluently spoken and written English
* Background in neuroscience or another natural science would be a plus
* Interest in working with an interdisciplinary team of researchers with highest scientific standards
Our Offer:
* A diverse range of activities in a creative, interdisciplinary, international team
* Forschungszentrum Jülich offers an excellent scientific research infrastructure on a green campus close to Cologne, Düsseldorf and Aachen
* Salary and social benefits in conformity with the provisions of the Collective Agreement for the Civil Service (TVöD).
Forschungszentrum Jülich aims to employ more women in this area and therefore particulary welcomes applications from women. We also welcome applications from disabled persons.
We look forward to receiving your application, preferably online via our online recruitment system (see here: http://www.fz-juelich.de/SharedDocs/Stellenangebote/_common/dna/2014-115-EN…) quoting the reference number 2014-115.
Martina Reske
--
Dr. Martina Reske
Scientific Coordinator
Institute of Neuroscience and Medicine (INM-6)
Computational and Systems Neuroscience &
Institute for Advanced Simulation (IAS-6)
Theoretical Neuroscience
Jülich Research Centre and JARA
Jülich, Germany
Work +49.2461.611916
Work Cell +49.151.26156918
Fax +49.2461.619460
www.csn.fz-juelich.de<http://www.csn.fz-juelich.de>
------------------------------------------------------------------------------------------------
------------------------------------------------------------------------------------------------
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 11, 2014
Job announcement
by Quel
[sorry for cross-posting]
On the behalf of Hospital Israelita Albert Einstein,
*Open position for Professor of Neurosciences in Sao Paulo, Brazil.*
A full time endowed position for “Professor of Neurosciences” is available
at the Brain Institute at the Albert Einstein Institute for Research and
Education (InCe – IIEPAE), São Paulo, Brazil. We seek an outstanding senior
researcher as a professor of the Institute.
Job description
The main goals include the development of research in neuroscience
involving ageing processes in the brain and methods to promote healthy
ageing. Additional focus includes study of neurodegenerative diseases.
The position requires a record of scientific excellence and management
experience, as well as vision and motivation to lead and shape a team of
researchers. The candidate is expected to lead a strong, internationally
competitive research programme, attract external funding and promote an
interactive and synergistic research environment in order to develop
clinical neuroscience into a center of excellence in biological aspects of
ageing. Good communication skills are required to interact with a
multidisciplinary team of experienced neurologists, neurosurgeons,
scientists, engineers, physicists and psychologists.
*Required skills/Qualifications*
• Senior researcher with PhD
• Experience working as a leading researcher
• A strong track record of publications, ideally h-index > 20
Desired skills/Qualifications
• MD title
• Portuguese speaking
*Salary*
Salary is provided by a donation (equivalent to a top salary for a
physician in Brazil USD120,000.00 – 180,000.00 per year). The position is
renewable. The appointment is for 24 months at first.
*About Hospital Israelita Albert Einstein*
Hospital Israelita Albert Einstein ranks number one in Latin America, was
the first hospital outside of USA accredited by the Joint Commission
International and possesses a number of ISO certifications. The Brain
Institute-IIEPAE has a state-of-the art whole body 3T MR system equipped
with 32 channel head coil with protected time for research, integrated with
a 64 channel EEG-fMRI system. The facilities also include an fMRI
eye-tracking system, TMS and in house stimulus delivery systems for
advanced applications. Radiopharmacy laboratories for basic research and
clinical application, an experimental core facility with a cell culture
laboratory and genome sequencing and an AAALAC certified experimental
facility are also available. The institution also holds a postgraduate
programme in health sciences, recognized by the Brazilian Federal Agency
for Support and Evaluation of Graduate Education (CAPES), giving the
opportunity to supervise postdoc, PhD and master students.
*Apply for position:*
The position is open until 31st of July. The top 20 CV will be selected and
evaluated by a committee.
Please e-mail CV, NIH Biosketch, statement of research interests and
contact information of references to:
ince(a)einstein.br with “Professor of Neurosciences” in the subject line
Brain Institute - Albert Einstein Jewish Institute for Education and
Research
Hospital Israelita Albert Einstein – www.einstein.br
Phone: +55 11 2151-3727
Best regards,
Anna
*Anna Ringheim Cadete*
Coordinator - Brain Institute - IIEP
SBIB Hospital Albert Einstein
July 10, 2014
Job opening: 7 PhD positions in Dutch research consortium "Language in Interaction"
by Lorenz, C.M.
Seven PhD Positions in the Dutch Research Consortium 'Language in Interaction'
Closing date: 30 September 2014
For more information: http://www.languageininteraction.nl/jobs/id-2nd-phd-call-general.html
We are looking for highly motivated PhD candidates to enrich a unique consortium of researchers that aims to unravel the neurocognitive mechanisms of language at multiple levels. The goal is to understand both the universality and the variability of the human language faculty from genes to behaviour.
The Netherlands has an outstanding track record in the language sciences. This research consortium sponsored by a large grant from the Netherlands Organization for Scientific research (NWO) brings together many of the excellent research groups in the Netherlands with a research programme on the foundations of language. The research team consists of 43 Principal Investigators. In addition to the excellence in the domain of language and related relevant fields of cognition, our consortium provides state-of-the-art research facilities and a research team with ample experience in the complex research methods that will be invoked to address the scientific questions at the highest level of methodological sophistication. These include methods from genetics, neuroimaging, computational modelling, and patient-related research. This consortium realizes both quality and critical mass for studying human language at a scale not easily found anywhere else.
Currently, the consortium advertises seven PhD positions for a period of 4 years. Depending on the PhD position applied for, candidates will be appointed at one of the home institutions of the consortium. These positions provide the opportunity for conducting world-class research as a member of an interdisciplinary team.
Click for more information on the PhD positions and how to apply:
http://www.languageininteraction.nl/jobs/id-2nd-phd-call-general.html
July 10, 2014
Multiscale analysis of neural spike trains
by Reza Ramezan
Dear Colleagues,
I would like to highlight the following paper from our group published
in Statistics in Medicine (not a mainstream neuroscience journal).
Interested people can receive a free (electronic) copy upon request.
Kindest Regards,
Reza Ramezan
------------------------------------------------------------------------------------
*Multiscale analysis of neural spike trains*
<http://onlinelibrary.wiley.com/doi/10.1002/sim.5923/abstract>
Ramezan R, Marriott P, Chenouri S (2014)
*Summary:*
This paper studies the multiscale analysis of neural spike trains,
through both graphical and Poisson process approaches. We introduce the
interspike interval plot, which simultaneously visualizes
characteristics of neural spiking activity at different time scales.
Using an inhomogeneous Poisson process framework, we discuss multiscale
estimates of the intensity functions of spike trains. We also introduce
the windowing effect for two multiscale methods. Using quasi-likelihood,
we develop bootstrap confidence intervals for the multiscale intensity
function. We provide a cross-validation scheme, to choose the tuning
parameters, and study its unbiasedness. Studying the relationship
between the spike rate and the stimulus signal, we observe that
adjusting for the first spike latency is important in cross-validation.
We show, through examples, that the correlation between spike trains and
spike count variability can be multiscale phenomena. Furthermore, we
address the modeling of the periodicity of the spike trains caused by a
stimulus signal or by brain rhythms. Within the multiscale framework, we
introduce intensity functions for spike trains with multiplicative and
additive periodic components. Analyzing a dataset from the
retinogeniculate synapse, we compare the fit of these models with the
Bayesian adaptive regression splines method and discuss the limitations
of the methodology. Computational efficiency, which is usually a
challenge in the analysis of spike trains, is one of the highlights of
these new models. In an example, we show that the reconstruction quality
of a complex intensity function demonstrates the ability of the
multiscale methodology to crack the neural code.
*Keywords:
*inhomogeneous Poisson process; multiscale analysis; periodogram; almost
periodic intensity function; retinogeniculate synapse; spike train
--
Reza Ramezan
Department of Statistics and Actuarial Science
University of Waterloo
Waterloo, Ontario N2L 3G1
Canada
Office: M3 3018
Phone: (519) 888-4567, ext. 39358
E-mail: rramezan(a)uwaterloo.ca
Web: http://www.neuroinformatics.ca
July 9, 2014
2 PhD positions in Computational Neuroscience in Juelich, Germany
by Martina Reske
Dear community,
we are seeking two PhD candidates to support our team!
Project 1:
In the framework of the Klinische Forschergruppe (KFO) 219 "Basal
ganglia-cortex loops: Mechanisms of pathologic interactions and their
therapeutic modulation" we have an open PhD student position in work
package 9: "Mathematical modeling of development and suppression of
pathological activation in basal ganglia – cortex loops“.
This project focuses on the generation of pathological beta band
oscillations in basal ganglia and their susceptibility to suppression by
means of pharmacological challenges or deep brain stimulation.
Specifically, this projects aims to model dynamics in basal ganglia –
thalamus – cortex loops drawing on computational neuroscience approaches
and data deriving from other work packages within the research consortium.
We are seeking for a candidate with a master’s degree in physics,
mathematics or computer science. The candidate will develop microscopic
network models and will be supervised by the projects leaders,
particularly by a postdoctoral fellow supervising the entire work
package as well as Prof. Morrison. Programming expertise is appreciated.
The candidate will be primarily based at the Jülich Research Center to
foster interactions with theoretical neuroscientists. In addition, the
candidate is expected to work jointly with project partners at the
University Clinic of Cologne.
We offer a position in a creative and international team, themes ranging
from computational neuroscience to simulation technology. The Jülich
Research Center is one of the largest research centers in Germany, with
excellent scientific equipment, located on a green campus, and near the
cultural centers Köln, Düsseldorf, and Aachen.
The PhD position is available for 3 years, starting as soon as possible.
Applications, including a motivation letter, CV, publication list,
copies of university certificates, and one reference letter should be
sent as a single PDF email attachment (max. 10MB) mentioning the
internal reference code KFO219-TP9 to should be sent to:
Dr. Martina Reske (m.reske(a)fz-juelich.de) – Scientific Coordinator
The call is open until the position has been filled.
Project 2:
Project title: Neural circuit mechanisms of reinforcement learning
Project description:
Reinforcement learning is considered to play a major role in
decision-making, and impairments in RL have been associated with various
neuropsychiatric disorders including addiction and depression. Since it
was found that the activity of midbrain dopamine (DA) neurons appears to
represent the reward prediction error, various brain regions in the
cerebral cortex and the basal ganglia have been shown to represent
several variables appeared in mathematical formulations of RL
algorithms. However, underlying mechanisms at the cellular and circuit
levels within and between each of those regions remain largely unknown.
In this project, we address this issue by developing and study neuronal
network models of learning from reward and punishment in the brain's
basal ganglia network.
The project will be carried out by the group Functional Neural Circuits
at the Institute for Neuroscience and Medicine (INM-6) and Institute for
Advanced Simulation (IAS-6) led by Prof. Abigail Morrison, together with
our Japanese collegues (Kenji Morita, University of Tokyo). The project
is supported by German Ministry of Science (BMBF) in the framework of
the German-Japan cooperation in Computational Neuroscience. The project
incorporates tools and methods from different fields, ranging from
neuroscience to physics and mathematical modeling to build large scale
simulations of neural networks. Supervision is provided by Prof. Abigail
Morrison and Dr. Jenia Jitsev, both having considerable experience in
neural network modeling, with focus on plasticity and learning.
We seek a highly motivated candidate with curiosity and persistence. A
preferable candidate will have background and strong Master degree in
either in neuroscience, physics, mathematics, biology, computer science
or a related field of natural science. The candidate should have
experience in basic software engineering techniques (minimal requirement
is ability to write clear well-structured code in either C++ or Python).
Furthermore, a solid basis in mathematical modelling (handling
differential equations, basics of stability analysis) is essential. The
most important requirement is the ability to learn new things and to
find ways to solve novel problems. The PhD position is available for 3
years, starting as soon as possible.
During the PhD, you will also have opportunity to visit conferences,
workshops, summer schools and labs of our partners in Tokyo and benefit
from their experience, too. You will be a part of a creative and young
team, rich with inspiration for the different state-of-the art topics in
experimental and theoretical neuroscience, and have the opportunity to
take part at the forefront of current neuroscientific research.
Research Center Jülich, Germany, is located on a green campus and hosts
excellent facilities, including the Jülich Supercomputing Center, and is
part of newly starting EU Human Brain Project, the largest
neuroscientific initiative to study the brain funded in Europe. Jülich
is close to large urban centers like Cologne, Aachen and Düsseldorf and
offers thus a rich cultural environment to spend time in.
Applications, including a motivation letter, a CV, copies of university
certificates, and one letter of reference should be sent as a single PDF
email attachment (max. 10MB) mentioning the internal reference code
BRDJ-PhD to:
Dr. Martina Reske (m.reske(a)fz-juelich.de) – Scientific Coordinator
The call is open until the position has been filled.
--
Dr. Martina Reske
Scientific Coordinator
Institute of Neuroscience and Medicine (INM-6)
Computational and Systems Neuroscience &
Institute for Advanced Simulation (IAS-6)
Theoretical Neuroscience
Jülich Research Centre and JARA
Jülich, Germany
Work +49.2461.611916
Work Cell +49.151.26156918
Fax +49.2461.619460
www.csn.fz-juelich.de
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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
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July 9, 2014
Call for Nominations: TANG Prize for Achievements in Psychology
by Christopher Honey
APPLICATIONS INVITED FOR INAUGURAL TANG PRIZE FOR ACHIEVEMENTS IN
PSYCHOLOGY – CALL FOR NOMINATIONS
The Department of Psychology at the University of Toronto is pleased to
announce the call for nominations for the 2014 inaugural TANG Prize for
Achievements in Psychology. As a Department at a public university, we
believe in furthering the science of Psychology in service of enhancing
human wellbeing. Applications are encouraged from
internationally-recognized scholars in Psychology or a closely-related
field who have shown creativity, and rigour in their approach and whose
record of achievement has left an indelible mark on the field. This award
has been made possible through generous support from the TANG Foundation.
The TANG Foundation is a charitable institution with the mandate to raise
awareness of the importance of psychological wellbeing in the world.
The recipient of the TANG Prize for Achievements in Psychology will be
awarded a cash prize of $100,000 CAD at a ceremony held on the University
of Toronto campus on November 12, 2014. During the campus visit, the
recipient will be asked to meet with University of Toronto students and to
hold a public lecture.
Applicants should outline in no more than two pages the ways in which they
have a major impact on the progress of psychology, anywhere in the world,
particularly in its application to the psychological wellbeing of humanity.
This application letter should highlight how the applicant has contributed
to the science, practice, or application of Psychology as it pertains to
the understanding, promotion, restoration, or application of psychological
methods, research, and techniques in addressing challenges related to
wellbeing at the individual or community level. In addition to this
application letter, applications should also include a current CV.
Nomination packages (application letter and CV) should be submitted
electronically in one email by August 15, 2014 to
tangprize(a)psych.utoronto.ca. Applicants should also ask three referees, who
must be internationally acknowledged experts in the field, to send
reference letters directly to the Department via email to
tangprize(a)psych.utoronto.ca by August 30, 2014. Up to three additional
supporting letters of endorsement from individuals who have been directly
impacted by the applicant’s scholarly work and/or who have knowledge of the
direct impact of the applicant’s scholarly work can be sent to the same
email address by August 30, 2014.
For more information on this award, about the Department of Psychology at
the University of Toronto, and the TANG Foundation, please visit
www.psych.utoronto.ca/tangprize.
July 8, 2014
Mini-Conference “The Many Faces of Computation” @ UCSD July 14 & 15
by Santamaria, Cookie
The BioCircuits Institute, Physical Chemistry and The Lindenberg Lab Group Present:
Mini-Conference: “The Many Faces of Computation”
http://www.kawai.phy.uab.edu/workshops/UCSD2014/
Organizers: Christian Van den Broeck and Katja Lindenberg
Contacts: Cookie Santamaria cookie(a)ucsd.edu<mailto:cookie@ucsd.edu> or Katja Lindenberg klindenberg(a)ucsd.edu<mailto:klindenberg@ucsd.edu>
July 14-15, 2014
University of California, San Diego
Urey Room 2102
Urey Hall<http://maps.ucsd.edu/mapping/viewer/default.htm?mkey=1&lc=open&km=open&rc=c…>
Monday July 14
9-10 a.m.
Welcome and light snacks
10-11 a.m.
Christian Van den Broeck “A short introduction to large deviations”
11 a.m.-12 noon
Raul Toral “Efficient sampling of phase space”
12 noon-2 p.m.
Lunch break and discussion time
2-3 p.m.
Alberto Imparato “Efficiency at maximum power in molecular motors”
3-4 p.m.
Ilkay Altintas “Workflow-driven science”
4-5 p.m.
Discussion time
Tuesday July 15
9-10 a.m.
Welcome and light snacks
10-11 a.m.
Emre Neftci “From VLSI spiking neurons to practical applications and cognition”
11 a.m.-12 noon
Michael Gilson ”Plumbing the depths of entropy and enthalphy in molecular recognition”
12 noon-2 p.m. Lunch break and discussion time
2-3 p.m.
Daniel Escaff “Down from systems of infinite to finite numbers of elements: Computational aspects of the analysis of resultant fluctuations”
3-4 p.m.
Tristan Webb “Utilizing purely functional parallel strategies for spiking neural network simulations”
4-5 p.m. Discussion time
July 7, 2014