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April 2016
- 71 participants
- 78 messages
Call for Abstracts at NTS Conference, Deadline April 29, 2016
by Camille Grigsby-Rocca
Dear Colleagues,
The Scientific Committee of Neuromodulation: The Science Conference is pleased to announce an extension to the conference Call for Abstracts, now due April 29, 2016, for our upcoming neuroscience summit, slated for May 25-29, 2016 in San Francisco.
Submissions are open for the Neurovations Awards for Best Posters in Neuromodulation at NTS Conference, for abstracts presenting original basic or clinical scientific research or updates in brain/computer/machine interfacing, biomedical engineering, neuroscience and neuromodulation. See the Abstract Submission Guidelines here<http://ntsconference.com/neurovations-award/>.
The top three posters from all specialties including brain/computer/maching interfacing, bioengineering, neuromodulation and neuroscience will win an award for scientific excellence, which will be presented on the final day of the conference. Prizes to the top three posters selected will be awarded in amounts of $3000, $2000, and $1000, respectively.
All posters must be attended by a registered attendee of the conference.
View the program at ntsconference.com<http://ntsconference.com/> - conference co-chairs Elliot Krames, MD, Eric Grigsby, MD, MBA and Peter Staats, MD, with the support of the Conference Scientific Committee have designed five days of world-class scientific content. The program includes lectures and Q&A panels, led by over 60 of the world's preeminent scientists in brain/computer/machine interfacing, neuromodulation, optogenetics, bioengineering, functional electrical stimulation (FES), spinal cord stimulation (SCS), and more.
Early registration rates are available through April 21.
Discounted lodging rates at the Hyatt Regency Embarcadero, San Francisco, are available until April 29.
Abstracts will be accepted through April 29.
CME credits are available, with 18.50 AMA PRA Category 1 Credits(tm).
VIEW THE FULL PROGRAM HERE<http://ntsconference.com/wp-content/uploads/2015/04/NTS_agenda_040516.pdf>.
________________________________
This activity has been planned and implemented in accordance with the accreditation requirements and policies of the Accreditation Council for Continuing Medical Education (ACCME) through joint providership of SpectrumCare and Neurovations Education. SpectrumCare is accredited by the ACCME to provide continuing medical education for physicians.
SpectrumCare designates this live activity for a maximum of 18.5 AMA PRA Category 1 Credits(tm). Physicians should claim only the credit commensurate with the extent of their participation in the
activity.
________________________________
SCIENTIFIC COMMITTEE
Elliot Krames, MD
Past President INS, Founding Editor of Neuromodulation
Eric Grigsby, MD, MBA
CEO, Neurovations Clinical Research and Education
Founder, Napa Pain Institute, the SpectrumCare Group
Peter Staats, MD
Premier Pain Centers, Past President, NANS
Joe Pancrazio, PhD
Associate Provost and Professor of Biomedical Engineering at University of Texas at Dallas
Hunter Peckham, PhD
Professor Biomedical Engineering, Case Western Reserve University
Dominique Durand, PhD
El Lindseth Professor of Biomedical Engineering, Case Western Reserve Universtiy
Magdy Hassouna, MD, PhD
Department of Urology, University of Toronto
Ali Rezai, MD
Director, OSU Neuroscience Program, Stanley and Jodi Ross Chair in Neuromodulation, Associate Dean of Neurosciences, Professor of Neurosurgery and Neuroscience
Robert Gross, MD, PhD
Professor, Departments of Neurosurgery, Neurology, Biomedical Engineering, and Neuroscience,Director, Functional, Stereotactic & Epilepsy Surgery Division
Tony Yaksh, PhD
Distinguished Professor in Anesthesiology and Pharmacology and Vice Chairman for Research in Anesthesiology(1988-present), Co-director of the Pain and Symptom Management Core of the UCSD Regional Cancer Center
Chad Bouton, MS
Division Leader, Neurotechnology and Analytics, The Feinstein Institute for Medical Research, Managing Director, Center for Bioelectronic Medicine
Simon Thomson, MD
Past President, INS
Bengt Linderoth, MD, PhD
Professor of Neurosurgery, retired, Karolinska Institute
Robert Foreman, PhD
George Lynn Cross Research Professor, University of Oklahoma, Dept of Physiology, retired
Michael DeJongste, MD, PhD
Faculty of Medical Sciences, Dept of Cardiology, University of Groningen
Jiande Chen, PhD
Professor of Medicine and Professor of Biomedical Engineering, Johns Hopkins University
April 15, 2016
Deadline April 30 for Berkeley summer course in mining and modeling of neuroscience data
by Friedrich Sommer
Just a reminder: The application deadline for the Berkeley course in mining and modeling of neuroscience data, held July 11-22, 2016 is April 30 midnight.
Call for applications:
We invite applicants to the 2016 summer course in
"Mining and modeling of neuroscience data" to be held July 11-22, 2016 at UC Berkeley.
A description of the course is below and also at:
http://crcns.org/course
Berkeley summer course in mining and modeling of neuroscience data.
July 11-22, 2016
Redwood Center for Theoretical Neuroscience, UC Berkeley
Organizers: Fritz Sommer, Bruno Olshausen &
Jeff Teeters (HWNI, UC Berkeley)
Scope
This course is for students and researchers with backgrounds in mathematics and computational sciences who are interested in applying their skills toward problems in neuroscience. It will introduce the major open questions of neuroscience and teach state-of–the-art techniques for analyzing and modeling neuroscience data sets. The course is designed for students at the graduate level and researchers with background in a quantitative field such as engineering, mathematics, physics or computer science who may or may not have a specific neuroscience background. The goal of this summer course is to help researchers find new exciting research areas and at the same time to strengthen quantitative expertise in the field of neuroscience. The course is sponsored by the National Institute of Health, the National Science Foundation from a grant supporting activities at the data sharing repository CRCNS.org, and the Helen Wills Neuroscience Institute at UC Berkeley.
Format
The course is “hands on” in that it will include exercises in how to use and modify existing software tools and apply them to data sets, such as those available in the CRCNS.org repository.
Course Instructors
Robert Kass, Carnegie Mellon University, Pittsburgh
Maneesh Sahani, Gatsby Unit, University College London
Odelia Schwartz, University of Miami
Frederic Theunissen, University of California Berkeley
Joshua Vogelstein, Johns Hopkins University
Course Moderators
Fritz Sommer and Jeff Teeters, Redwood Center for Theoretical Neuroscience.
Speakers
To complement the main course instruction there will be lectures in the evenings by local Berkeley and UCSF neuroscientists presenting their research using quantitative approaches.
Requirements
Applicants should be familiar with linear algebra, probability, differential and integral calculus and have some experience using MatLab and Python. Each student should bring a laptop with both MatLab and Python installed.
Cost
There is no cost to attend. Non-local attendees will be reimbursed for economy travel expenses (up to a maximum, probably about $500) and also for qualifying food expenses if receipts are provided.
Housing
Rooms in a nearby hotel will be provided for those attendees who need accommodations.
Food
Breakfast and some dinners will be provided to all participants as a group. Non-local attendees can purchase food at local stores or restaurants and be reimbursed.
How to apply
To apply, submit the online form linked from: http://crcns.org/course. A curriculum vitae and a letter of recommendation are required. The course is limited to 25 students.
Deadlines
Applications must be received by the end of April. Notifications of acceptance will be given by May 15.
Questions
Questions about the course can be sent to course [at] crcns.org.
Topics covered (subject to change):
Basic approaches:
- The problem of neural coding
- Spike trains, point processes, and firing rate
- Statistical thinking in neuroscience
- Theory of model fitting / regularization / hypothesis testing
- Overview of stimulus-response function models
- Theory of model fitting / regularization / hypothesis testing
- Bayesian methods
- Spike sorting
- Estimation of stimulus-response functionals: regression methods, spike-triggered covariance,
- Variance analysis of neural response
- Estimation of SNR. Coherence
Information theoretic approaches:
- Information transmission rates
- Scene statistics approaches and neural modeling
Techniques for analyzing multiple-electrode and optical neural recordings:
- Event sorting in electrophysiology and optical imaging
- Optophysiology cell detection
- Sparse coding/ICA methods, vanilla and methods including statistical models of nonlinear dependencies
- Methods for assessing functional connectivity
- Statistical issues in network identification
- Low-dimensional latent dynamical structure in network activity–Gaussian process factor analysis/newer methods
Analyzing structural data:
- Histology cell detection
- Statistical connectomics
Neuroinformatics topics:
- Petascale data storage, exploration, parsing and analysis
- Introduction into Neurodata Without Borders data format for Neurophysiology
April 13, 2016
Postdoctoral position: computational neuroscience in NYU
by Chen, Zhe
Dear colleagues,
Applications are now being accepted for a postdoctoral fellow position to combine computational and experimental techniques to study neural mechanisms of thalamus-neocortical circuits using healthy or diseased rodent models (1-4). The applicant will work closely with Dr. Zhe (Sage) Chen and Dr. Mike Halassa at the New York University School of Medicine, with cross-disciplinary training in computational and systems neuroscience, including rodent behavior and electrophysiology. The applicant will have great opportunities to interact with a large and growing neuroscience community at the NYU campus, including the Neuroscience Institute (http://neuroscience.med.nyu.edu<http://neuroscience.med.nyu.edu/>), Center for Neural Science (http://www.cns.nyu.edu<http://www.cns.nyu.edu/>), Department of Neuroscience & Physiology (http://neuro-physio.med.nyu.edu<http://neuro-physio.med.nyu.edu/>), and Department of Psychiatry (http://psych.med.nyu.edu<http://psych.med.nyu.edu/>). NYU Neuroscience community is also surrounded by other institutions in the greater New York metropolitan area (such as Columbia, Cornell, Rockefeller and Mount Sinai). The postdoc position is available immediately, and will be renewable depending on performance.
Applications must have a PhD degree in Neuroscience, Engineering (Biomedical or Electrical), Statistics, Physics or a related discipline. The desired applicant is expected to be highly motivated and work independently as well as cooperatively with other colleagues in all research projects. Ability to learn new techniques and resolve new research challenges is essential. Strong experiences in large-scale computational (biophysical and statistical) modeling of neural circuits are desired. Previous training in some but not necessary all areas, such as animal behavior and optogenetics, in vivo neural recordings at the system levels, are preferred. Research experience with multi-electrode recordings of rodent neural circuits is a plus.
To apply, please send an email along with (i) CV (with a complete list of publications); (ii) a cover letter describing research accomplishments and interests; (iii) the names and contact information of two to three references to: Dr. Zhe (Sage) Chen (zhe.chen3(a)nyumc.org<mailto:zhe.chen3@nyumc.org>) or Dr. Mike Halassa (Michael.halassa(a)nyumc.org<mailto:Michael.halassa@nyumc.org>) with a subject line “Postdoc application”.
Best
Zhe (Sage) Chen
Related references:
1. Halassa, M.M., Chen, Z., Wimmer, R.D., Brunetti, P.M., Zhao, S., Zikopoulos, B., Wang, F., Brown, E.N., Wilson, M.A. (2014) State-dependent architecture of thalamic reticular sub-networks. Cell, 158: 808-824.
2. Chen, Z., Wimmer, R.D., Wilson, M.A., Halassa, M.M. (2015) Thalamic circuit mechanisms link sensory processing in sleep and attention. Front. Neural Circuits, 9:83.
3. Wimmer, R.D., Schmitt, L.I., Davidson, T.J., Nakajima, M., Deisseroth, K.,Halassa, M.M. (2015) Thalamic control of sensory selection in divided attention. Nature, 526: 705–709, DOI: 10.1038/nature15398.
4. Wells, M.F., Wimmer, R.D., Schmitt, L.I., Feng, G., Halassa, M.M. (2016) Thalamic reticular impairment underlies attention deficit in Ptchd1Y/- mice. Nature, 532: 58-63, DOI: 10.1038/nature17427.
------------------------------------------------------------
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=================================
April 13, 2016
CFP- Frontiers Research Topic: Cortico-striato-nigro-thalamo-cortical Modeling for Understanding Motor Function and Neurodegenerative Disease
by Zheng
To whom it may concern:
In collaboration with Frontiers in Computational Neuroscience, we are
organizing a Research Topic titled
"Cortico-striato-nigro-thalamo-cortical Modeling for Understanding Motor
Function and Neurodegenerative Disease”, hosted by Pengsheng Zheng,
James Kozloski, Timothy Rumbell, George V. Rebec. As host editor, I
would like to encourage you to contribute to this topic. Please find
more information about Research Topics below, including the publishing
fees that apply. You can also visit the homepage we have created on the
Frontiers website, which defines the focus of the topic, and where all
published articles will appear.
http://frontiersin.org/Computational_Neuroscience/researchtopics/Cortico-st…
Movement in the body is directly controlled by motor cortex, and also
determined by multiple subcortical structures, such as thalamus and the
basal ganglia (including striatum and dopamine neurons in the substantia
nigra). Many lines of evidence have suggested the
cortico-striato-nigro-thalamo-cortical circuitry plays a major role in
motor learning and control. This circuitry has also been investigated
for its causal role in the onset and progression of neurodegenerative
diseases. Neurodegenerative diseases are often associated with movement
disorders and neuronal dysfunction in degenerated brain structures, such
as the striatum in Huntington’s disease and dopaminergic neurons in the
substantia nigra pars compacta in Parkinson's disease. Degeneration
fundamentally changes the dynamics of local neuronal circuits, and these
changes then propagate through the structural connectome of whole brain
circuitry, eventually altering global brain dynamics. However, our
current understanding of these system dynamics in the
cortico-striato-nigro-thalamo-cortical circuitry remains rudimentary.
Hence, theoretical studies about critical system variables and
computational principles of this circuitry, constrained by recordings
throughout, will shed new light on causes of motor dysfunction and
neurodegenerative diseases.
This Research Topic of Frontiers in Computational Neuroscience aims to
bring together recent advances in theoretical modeling of
cortico-striato-nigro-thalamo-cortical network and experimental
observations. Topics of interest include, but are not limited to, local
brain circuit modeling, the functional role of neuronal plasticity in
the local and global circuit, global circuit interactions and
information exchange, new models validated by experimental observations,
and dynamic disease risk analysis through perturbation studies.
Best regards,
Pengsheng Zheng
zhengp(a)us.ibm.com <mailto:zhengp@us.ibm.com>
T.J. Watson Research Center
1101 Kitchawan Rd., 13-114A
Yorktown Heights, NY 10598
April 13, 2016
Summer School "Advanced Scientific Programming in Python" in Reading, UK, September 5--11, 2016
by Etienne B. Roesch
*Advanced Scientific Programming in Python*
a Summer School by the G-Node, and the Centre for Integrative Neuroscience
and Neurodynamics, School of Psychology and Clinical Language Sciences,
University of Reading, UK
Scientists spend more and more time writing, maintaining, and debugging
software. While techniques for doing this efficiently have evolved, only
few scientists have been trained to use them. As a result, instead of doing
their research, they spend far too much time writing deficient code and
reinventing the wheel. In this course we will present a selection of
advanced programming techniques and best practices which are standard in
the industry, but especially tailored to the needs of a programming
scientist. Lectures are devised to be interactive and to give the students
enough time to acquire direct hands-on experience with the materials.
Students will work in pairs throughout the school and will team up to
practice the newly learned skills in a real programming project — an
entertaining computer game.
We use the Python programming language for the entire course. Python works
as a simple programming language for beginners, but more importantly, it
also works great in scientific simulations and data analysis. We show how
clean language design, ease of extensibility, and the great wealth of open
source libraries for scientific computing and data visualization are
driving Python to become a standard tool for the programming scientist.
This school is targeted at Master or PhD students and Post-docs from all
areas of science. Competence in Python or in another language such as Java,
C/C++, MATLAB, or Mathematica is absolutely required. Basic knowledge of
Python and of a version control system such as git, subversion, mercurial,
or bazaar is assumed. Participants without any prior experience with Python
and/or git should work through the proposed introductory material before
the course.
We are striving hard to get a pool of students which is international and
gender-balanced.
You can apply online: https://python.g-node.org
*Application deadline: 23:59 UTC, May 15, 2016. Be sure to read the FAQ
before applying. *
Participation is for free, i.e. no fee is charged! Participants however
should take care of travel, living, and accommodation expenses by
themselves. Travel grants may be available.
*Date & Location *
September 5—11, 2016. Reading, UK
*Program *
- Best Programming Practices
• Best practices for scientific programming
• Version control with git and how to contribute to open source projects
with GitHub
• Best practices in data visualization
- Software Carpentry
• Test-driven development
• Debugging with a debugger
• Profiling code
- Scientific Tools for Python
• Advanced NumPy
- Advanced Python
• Decorators
• Context managers
• Generators
- The Quest for Speed
• Writing parallel applications
• Interfacing to C with Cython
• Memory-bound problems and memory profiling
• Data containers: storage and fast access to large data
- Practical Software Development
• Group project
*Preliminary Faculty *
• Francesc Alted, freelance consultant, author of PyTables, Spain
• Pietro Berkes, Enthought Inc., Cambridge, UK
• Zbigniew Jędrzejewski-Szmek, Krasnow Institute, George Mason University,
Fairfax, VA, USA
• Eilif Muller, Blue Brain Project, École Polytechnique Fédérale de
Lausanne, Switzerland
• Juan Nunez-Iglesias, Victorian Life Sciences Computation Initiative,
University of Melbourne, Australia
• Rike-Benjamin Schuppner, Institute for Theoretical Biology,
Humboldt-Universität zu Berlin, Germany
• Bartosz Teleńczuk, European Institute for Theoretical Neuroscience, CNRS,
Paris, France
• Stéfan van der Walt, Berkeley Institute for Data Science, UC Berkeley,
CA, USA
• Nelle Varoquaux, Centre for Computational Biology Mines ParisTech,
Institut Curie, U900 INSERM, Paris, France
• Tiziano Zito, freelance consultant, Germany
*Organizers *
For the German Neuroinformatics Node of the INCF (G-Node) Germany:
• Tiziano Zito, freelance consultant, Germany
• Zbigniew Jędrzejewski-Szmek, Krasnow Institute, George Mason University,
Fairfax, USA
• Jakob Jordan, Institute of Neuroscience and Medicine (INM-6),
Forschungszentrum Jülich GmbH, Germany
For the Centre for Integrative Neuroscience and Neurodynamics, School of
Psychology and Clinical Language Sciences, University of Reading UK:
• Etienne Roesch, Centre for Integrative Neuroscience and Neurodynamics,
University of Reading, UK
*Website*: https://python.g-node.org
*Contact*: python-info(a)g-node.org
Kind regards,
Etienne
-----
Dr. Etienne B. Roesch
Lecturer in Cognitive Science
University of Reading
April 13, 2016
Early Career Research Fellowship in Systems Biology / Machine Learning for Food and Disease
by Steuber, Volker
Early Career Research Fellowship in Systems Biology / Machine Learning for Food and Disease
Closing date: 17 May 2016
Salary: £31,656 - £37,768 per annum depending on skills and experience.
The University of Hertfordshire is investing in its future research staff and infrastructure, and is in the process of transitioning the delivery of its research under six Themes: Food; Global Economy; Health and Wellbeing; Heritage, Cultures and Communities; Information and Security; Space. These will assist in the further development of research excellence and provide both increased external profile and internal focus for Hertfordshire’s research activities.
Six new Research Fellow posts are each offered for a five year term in the first instance. It is our expectation, however, that successful appointees will grow their research activities to become permanent academic staff members by the end of that period.
Further particulars for the ECRF in Systems Biology / Machine Learning for Food and Disease
Qualifications required: You must have a first degree in a science, such as biology, computer science, mathematics or a relevant subject, and a doctoral degree in bioinformatics, machine learning, quantitative genetics or a related subject area. Experience in systems biology, big data science or genomics will be particularly relevant.
Research focus and environment: This Fellowship will focus on emerging methods in biocomputation that generate and exploit large data sets of biological information available from genomics, transcriptomics, proteomics and metabolomics to better understand mechanisms of host resistance/immunity and/or resistance breakdown. The Fellow will generate an improved understanding of relevant biological systems to develop specific strategies to combat infectious diseases caused by plant, animal or human pathogens. This Fellowship will be supported by existing collaborations between colleagues in Schools of Life & Medical Sciences (Kukol, Stotz, Barling, Fitt) and Computer Science (Steuber). The Fellow is expected to use the University’s high performance computer cluster.
Experience and skills required for the post
(i) Considerable experience with big data analysis and machine learning, including working knowledge of scripting languages like Perl, Python and/or R;
(ii) Knowledge of genomic research techniques, such as next-generation sequencing, proteomics and/or metabolic profiling;
(iii) Practical experience with the application of numerical analysis and/or mathematical models to biological datasets, for example in genomics or quantitative genetics;
(iv) Evidence of original research published in high impact journals.
Research expectations
The Fellow is expected to develop a collaborative research program with our academic partners. We envisage that the Research Fellow will become a permanent staff member, supported by funding from successful research grant applications and developing new areas of teaching, especially at the post-graduate level. To ensure this, the two Schools will provide career training for the Fellow. The Fellow will have established collaborations with companies and successfully obtained co-funded industry-government projects. The Fellow will continue to publish high-impact papers and be leading an internationally recognised research team.
Description of the Schools: The Early Career Research Fellow will work with and receive support from the School of Life and Medical Sciences and the School of Computer Science. The successful candidate can build on the strengths of both Schools and may combine experiment-based empirical research with data-based analysis.
Within the School of Life and Medical Sciences (http://www.herts.ac.uk/apply/schools-of-study/life-and-medical-sciences/res…) the Centre for Agriculture, Food and Environmental Management (CAFEM) is a research and teaching collaboration with the Royal Veterinary College, Rothamsted Research and Oaklands College. The Fellow will work with researchers in CAFEM who have experience with systems biology applicable to crop protection, combining experimental field and lab research with computational modelling. Within the School of Computer Science, research in the Biocomputation Research Group (http://biocomputation.herts.ac.uk/) involves development of computational models to study biological systems and application of biologically-inspired machine learning algorithms for the analysis of "real-world" data. Members of the Biocomputation Group analyse and simulate computational models at different levels of complexity and collaborate closely with leading experimentalists in the UK and abroad.
Informal enquiries are encouraged and should be made to Professor Bruce Fitt, Professor of Plant Pathology, email: b.fitt(a)herts.ac.uk / Tel + 44 (0)1707 284751 or Dr Volker Steuber, Reader in Biocomputation and Head of the Biocomputation Research Group, email: v.steuber(a)herts.ac.uk / Tel: +44 (0)1707 284350.
Applications should be made through http://www.herts.ac.uk/contact-us/jobs-and-vacancies/research-vacancies, job reference 013457.
April 13, 2016
Advances in Neuroinformatics and INCF Nodes WS in Japan, May 28-29 - Abstract submission closes April 18
by Malin Sandström
Dear neuroinformatics community members,
would you like to stay up to date on recent neuroinformatics developments
in Asia? Are you looking for new collaborators in Japan and/or Asia and the
Pacific region?
There is one week left to submit abstracts for the combined INCF Nodes
Workshop and Japan Node AINI (Advances in Neuroinformatics) on *May 28-29*.
The location is RIKEN's Wako campus, located in west Tokyo. The two
meetings are integrated, with joint demo and poster sessions held on both
days.
The theme of AINI 2016 is "Integration of multidimensional neuroscience“,
with keynotes by Maryann Martone, Thomas Wachtler, Jun'ichi Tsujii and
Teiichi Furuichi. The INCF Nodes Workshop will be a scientific networking
event with a special focus session on Asian and Pacific neuroinformatics,
which has invited speakers from Australia, China, Japan, Korea, and
Malaysia. The full program is available here:
http://www.neuroinf.jp/aini2016/program.html
*Registration is free of charge*, and open until May 20, while the *abstract
submission is open until April 18*. An abstract will be 1/2 page in A4
size, and you may add one figure separately.
Best regards on behalf of all organizers,
Malin Sandström
--
Malin Sandström, PhD
Community Engagement Officer
malin.sandstrom(a)incf.org
International Neuroinformatics Coordinating Facility
Karolinska Institutet
Nobels väg 15 A
SE-171 77 Stockholm
Sweden
http://www.incf.org
April 13, 2016
Third call for posters/registration: Sixth International Symposium on Biology of Decision-Making (SBDM), 25-27 May 2016 @ Paris, France
by Mehdi Khamassi
[Please accept our apologies if you get multiple copies of this message]
Dear colleagues,
Deadlines are approaching concerning submission to/registration for the
Sixth International Symposium on Biology of Decision Making (SBDM),
which will take place in Paris on May 25-27th 2016.
The full program can be seen here:
http://sbdm2016.isir.upmc.fr/view.php/SBDM2016_Program_Titles.pdf
If you want to attend SBDM 2016, please fill in the registration form at
http://sbdm2016.isir.upmc.fr and then follow the instructions received
by email.
The deadline for poster submission is: April 30th 2016. The deadline for
registration is: May 15th 2016. Registration fees (170 euros) include
lunches, coffee breaks and social event.
Please circulate widely and encourage your colleagues and team members
to attend.
Best regards
The SBDM organizing committee
------------------------------------------------------------------------------------------------
SIXTH INTERNATIONAL SYMPOSIUM ON BIOLOGY OF DECISION MAKING (SBDM 2016)
May 25-27, 2016, Paris, France
Institut du Cerveau et de la Moelle Epinière, Hôpital La Pitié
Salpêtrière, Paris, France.
& Ecole Normale Supérieure, Paris, France.
& Université Pierre et Marie Curie, Paris, France.
http://sbdm2016.isir.upmc.fr
------------------------------------------------------------------------------------------------
PRESENTATION:
The Sixth International Symposium on Biology of Decision Making will
take place on May 25-27, 2016 at the Institut du Cerveau et de la Moelle
Epinière, Paris, France, with a satellite day at Ecole Normale
Supérieure, Paris, France. The objective of this three day symposium is
to gather people from different research fields with different
approaches (economics, ethology, psychiatry, neural and computational
approaches) to decision-making. The symposium will be a single-track,
will last for 3 days and will include 6 sessions:
(#1) Cost of control, fatigue and decision-making;
(#2) Emotion, stress and decision-making;
(#3) Dynamics of decision-making;
(#4) Decision-making across primates;
(#5) Confidence, mood and decision-making;
(#6) Learning, memory and decision-making.
CONFIRMED SPEAKERS:
Sébastien Bouret (CNRS - ICM, France)
Michael Chee (Duke-NUS Medical School, Singapore)
Anastasia Christakou (University of Reading, UK)
Anne Churchland (Cold Spring Harbor Laboratory, USA)
Stanislas Dehaene (Collège de France - INSERM - CEA, France)
Adele Diederich (Jacobs University, Germany)
Tobias H. Donner (University of Amsterdam, The Netherlands)
Valérie Dufour (CNRS, France)
Shelly Flagel (University of Michigan, USA)
Steve Fleming (University College London, UK)
Birte U. Forstmann (University of Amsterdam, The Netherlands)
Julie Grèzes (CNRS - Ecole Normale Supérieure, France)
Cendri Hutcherson (University of Toronto, Canada)
Veronika Job (University of Zurich, Switzerland)
Mehdi Khamassi (CNRS - Université Pierre et Marie Curie, France)
Pascal Mamassian (Ecole Normale Supérieure - CNRS, France)
Florent Meyniel (Collège de France - INSERM - CEA, France)
Randall O'Reilly (University of Colorado Boulder, USA)
Mathias Pessiglione (INSERM - ICM, France)
Jonathan Pillow (Princeton University, USA)
Timothy J. Pleskac (Max Planck Institute, Germany)
Alexandra G. Rosati (Harvard University, USA)
Robb Rutledge (University College London, UK)
Jérôme Sallet (University of Oxford, UK)
Carmen Sandi (Ecole Polytechnique Fédérale de Lausanne, Switzerland)
Daniela Schiller (Mount Sinaï University, USA)
Amitai Shenhav (Princeton University, USA)
Mark Sheskin (Yale University, USA)
Hiromu Tanimoto (Tohoku University, Japan)
Angela J. Yu (University of California San Diego, USA)
Alexandre Zenon (Université Catholique de Louvain, Belgium)
IMPORTANT DATES:
April 30, 2016 Deadline for Poster Submission
May 7, 2016 Notification of Poster Acceptance
May 15, 2016 Deadline for Registration
May 25-27, 2016 Symposium Venue
ORGANIZING COMMITTEE:
Thomas Boraud (CNRS - IMN, Bordeaux, France)
Kenji Doya (OIST, Okinawa, Japan)
Mehdi Khamassi (CNRS - UPMC, Paris, France)
Etienne Koechlin (CNRS - ENS, Paris, France)
Mathias Pessiglione (ICM - INSERM, Paris, France)
CONTACT INFORMATION :
Website, registration, poster submission and detailed program:
http://sbdm2016.isir.upmc.fr
Contact: sbdm2016 [ at ] isir.upmc.fr / sbdm2016-registration [ at ]
isir.upmc.fr
--
Mehdi Khamassi, PhD
Tenured research scientist (CR1 CNRS)
Institute of Intelligent Systems and Robotics
Université Pierre et Marie Curie - BC 173
4 place Jussieu, 75005 Paris, France
tel: + 33 1 44 27 28 85
fax: +33 1 44 27 51 45
cell: +33 6 50 76 44 92
email: mehdi.khamassi(a)upmc.fr
http://people.isir.upmc.fr/khamassi
April 12, 2016
Structural-functional brain modules: PhD position at BioCruces Institute, Bilbao, Spain
by Paolo Bonifazi
Within the Computational Neuroimaging group of Prof. Jesus Cortes at the
BioCruces Health Research Institute (Bilbao, Spain), we are looking for a
PhD student to develop and carry on a project aimed at identifying
brain-connectivity biomarkers/descriptors(predictors) for brain
pathologies/functional states.
The project will rely on subjects/patients databases both acquired locally
at the Cruces University Hospital, or provided through external
regional/international collaborations or freely available on the web.
The core of the study is based on the structural-functional brain modules,
recently described in “A novel brain partition highlights the modular
skeleton shared by structure and function” (
http://www.nature.com/articles/srep10532) and identified by reconstructing
simultaneously on the same subjects brain connectivity networks, using
functional and diffusion MRI.
The PhD candidate will be also involved on a longitudinal multi-scale study
of epileptic networks combining MRI and electrophysiological recordings in
epileptic patients undergoing surgery. The project has been recently
approved within the RETOS Spanish governmental grants.
The PhD candidate will be closely supervised by Prof. J. M. Cortes (
http://www.jesuscortes.info/jesusweb/) and Dr. P. Bonifazi (
http://www.ikerbasque.net/paolo.bonifazi) and will work in close
collaboration with the MDs of Neurology, Neurophysiology and Neurosurgery
Division of the Cruces Hospital.
The contract will be up to 3/4 years, with a gross salary of € 20,600 per
year, with social security contributions and other recruitment costs paid
by the host research institute (BioCruces).
Deadline for application is May the 11th.
Candidates with a deep interest in Neuroscience or Complex Networks and
preferably with a solid background in Physics, Mathematics, Engineering or
Medicine, are invited to send a motivation letter and the names of two
referee to Dr. P. Bonifazi at paol.bonifazi(a)gmail.com.
We look forward your interest,
Yours
Paolo Bonifazi
April 12, 2016
PhD positions on Multiscale Modelling of the Neuromuscular System for Deep Brain Stimulation
by Olga Grant
Background
Deep Brain Stimulation (DBS) is an effective, safe and reversible method for treating the symptoms of Parkinson’s disease and other neurological disorders. It involves implanting electrodes in the brain to stimulate neurons responsible for symptoms including tremor, slowed movement and stiffness. Despite its success, the methods by which DBS works are not yet known and many questions remain to be answered in order to realize its full potential. Research within our group aims to improve our understanding of DBS and to identify new approaches for stimulation using computer models of networks of neurons within the brain and the neuromuscular system.
Applications are invited for two full time PhD positions focusing on
1) Development of computational models of the neuromuscular system and
2) Closed loop control of deep brain stimulation for Parkinson’s disease.
The start date for both projects will be September 2016
Who Should Apply
Applicants should have, or expect to obtain, a first or upper second class honours Bachelors or Masters degree in Electrical, Electronic or Biomedical Engineering (or a related discipline). Suitable candidates will have a strong interest in biomedical/neural engineering and neuroscience. Excellent analytical, computer programming and communications skills are essential.
Funding
This project is funded by a European Research Council (ERC) Consolidator Grant. Studentships cover tuition fees for EU applicants and a tax free stipend of €18,000 per year. An annual allowance is provided for research consumables and for conference attendance.
How to Apply
Please send a cover letter describing your experience and interest in this project (1 page max), CV, and academic transcripts to
Prof. Madeleine Lowery
UCD School of Electrical & Electronic Engineering
University College Dublin
Belfield,
Dublin 4
Ireland
E-mail: neuromuscular(a)ucd.ie <mailto:neuromuscular@ucd.ie>
Tel. +353 (1) 716 1911
____________________________________
Dr Olga M Grant
Research Project Manager
School of Electrical & Electronic Engineering
Tel +353 (1) 7161778
April 11, 2016