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- 12 participants
- 7395 messages
CFP: Special Issue on Neurobiologically Inspired Robotics: Enhanced Autonomy Through Neuromorphic Cognition
by Jeff Krichmar
Dear Computational Neuroscientists,
I hope some of you will consider submitting to this special issue of Neural Networks (http://www.journals.elsevier.com/neural-networks/call-for-papers/special-is…)
Neurobiologically inspired robotics goes by many names: brain-based devices, cognitive robots, neurorobots, and neuromorphic robots, to name a few. The field has grown into an exciting area of research and engineering.
The common goal is twofold: Firstly, developing a system that demonstrates some level of cognitive ability can lead to a better understanding of the neural machinery that realizes cognitive function. The often used phrase, “understanding through building”, implies that one can get a deep understanding of a system by constructing physical artifacts that can operate in the real-world. In building and studying neurobiologically inspired robots, scientists must address theories of neuroscience that couple brain, body, and behavior. Secondly, the deep theoretical understanding of cognition, neurobiology and behavior obtained by constructing physical systems, could lead to a system that demonstrates capabilities commonly found in the animal kingdom, but rarely found in artificial systems, most notably their adaptive and flexible autonomous behavior. There have already been some successes that meet these goals. For example, navigation models based on the hippocampus are now deploy!
ed on robots that autonomously explore their environment. Machine image processing systems based on visual cortex have been used in a number of unsupervised recognition and perception applications. Robots designed to address impairments due to disorders such as Alzheimer’s disease, autism spectrum disorder, and attentional deficit disorders, are being used as therapeutic and diagnostic tools without the need for constant caretaker supervision.
Despite these successes, the field is still in its infancy and basic research is needed. In particular, we are interested in papers that describe: 1) How models of cognitive functions, such as attention, decision-making, learning and memory, perception, and social cognition can be constructed on physical robots. 2) How the neuromorphic devices, which are designed to run neural algorithms with low-power, can advance the construction of autonomous robotics. 3) How the theoretical and engineering lessons learned from constructing neurobiologically inspired robots can transfer to autonomous robots carrying out practical applications.
This Special Issue invites papers that address the three broad topics described above.
Topics of interest
• Adaptive behavior
• Active sensing
• Artificial empathy
• Cortical computing
• Developmental robotics
• Embodied Cognition
• Neuromorphic Engineering
• On-line learning and memory systems
• Prediction and planning
• Socially assistive robotics
Guest Editors
Jeffrey Krichmar, University of California, Irvine
Minoru Asada, Osaka University
Jorg Conradt, Technische Universitat München
Important Dates
Submission due: 1 Feb 2015
Acceptance notification: 1 Aug 2015
Expected publication: 1 Nov 2015
Submission instructions
Each paper for submission should be formatted according to the style and length limit of Neural Networks. Please refer complete Author Guidelines at http://www.elsevier.com/journals/neural-networks/0893-6080/guide-for-authors. Note that published papers and those currently under review by other journals or conferences are prohibited. A separate cover letter should be submitted that includes the paper title, the list of all authors and their affiliations, and information of the contact author. Each paper will be reviewed rigorously, and possibly in two rounds, i.e., minor/major revisions will undergo another round of review. Prospective authors are invited to submit their papers directly via the online submission system at http://ees.elsevier.com/neunet/. To ensure that all manuscripts are correctly included into the special issue described, it is important that all authors select “SI: Neurobiological Robotics” when they reach the "Article Type" step in the submission process.
Jeff Krichmar
Department of Cognitive Sciences
2328 Social & Behavioral Sciences Gateway
University of California, Irvine
Irvine, CA 92697-5100
jkrichma(a)uci.edu
http://www.socsci.uci.edu/~jkrichma
Jan. 2, 2015
ICDL-EpiRob 2015 CFP
by Benjamin Rosman
========================================================
Call for Papers, Tutorials and Thematic Workshops
New Conference Feature: BABYBOT CHALLENGE
IEEE ICDL-EPIROB 2015
The Fifth Joint IEEE International Conference on Development and
Learning and on Epigenetic Robotics
Brown University, Providence, Rhode Island, USA
August 13-16, 2015
http://www.icdl-epirob.org/
== Conference description
The past decade has seen the emergence of a new scientific field that
studies how intelligent biological and
artificial systems develop sensorimotor, cognitive, emotional and
social abilities, over extended periods of time,
through dynamic interactions with their physical and social
environments. This field lies at the intersection
of a number of scientific and engineering disciplines including
Neuroscience, Developmental Psychology,
Developmental Linguistics, Cognitive Science, Computational
Neuroscience, Artificial Intelligence, Machine
Learning, and Robotics. Various terms have been associated with this
new field such as Autonomous Mental
Development, Epigenetic Robotics, Developmental Robotics, etc., and
several scientific meetings have been
established. The two most prominent conference series of this field,
the International Conference on
Development and Learning (ICDL) and the International Conference on
Epigenetic Robotics (EpiRob), are now
joining forces for the fifth time and invite submissions for a joint
conference in 2015, to explore and
extend the interdisciplinary boundaries of this field.
== BABYBOT CHALLENGE -- CASH PRIZES FOR THE TOP SUBMISSIONS
We are excited to announce a new ICDL-EpiRob conference feature: the
BABYBOT CHALLENGE. The
goal of the challenge is to use the tools of developmental robotics to
replicate and extend the key findings
from one of three selected human-infant studies. Please visit
www.icdl-epirob.org in the coming weeks for the
full announcement, including the three target studies, details on the
submission process, and a description
of how the winning submissions will be judged and selected.
== Keynote speakers (confirmed)
Prof. Dare Baldwin, Dept. of Psychology, University of Oregon, USA
Prof. Kerstin Dautenhahn, School of Computer Science, University of
Hertfordshire, UK
== Call for Submissions
We invite submissions for this exciting window into the future of
developmental sciences. Submissions which
establish novel links between brain, behavior and computation are
particularly encouraged.
== Topics of interest include (but are not limited to):
* the development of perceptual, motor, cognitive, emotional, social,
and communication skills in biological
systems and robots;
* embodiment;
* general principles of development and learning;
* interaction of nature and nurture;
* sensitive/critical periods;
* developmental stages;
* grounding of knowledge and development of representations;
* architectures for cognitive development and open-ended learning;
* neural plasticity;
* statistical learning;
* reward and value systems;
* intrinsic motivations, exploration and play;
* interaction of development and evolution;
* use of robots in applied settings such as autism therapy;
* epistemological foundations and philosophical issues.
Any of the topics above can be simultaneously studied from the
neuroscience, psychology or modeling/robotic
point of view.
== Submissions will be accepted in several formats:
1. Full six-page paper submissions: Accepted papers will be included in
the conference proceedings and will
be selected for either an oral presentation or a featured poster
presentation. Featured posters will have
a 1 minute "teaser" presentation as part of the main conference
session and will be showcased in the
poster sessions. Maximum two-extra pages can be acceptable for a
publication fee of $100 per page.
2. Two-page poster abstract submissions: To encourage discussion of
late-breaking results or for work that
is not sufficiently mature for a full paper, we will accept 2-page
abstracts. These submissions will NOT
be included in the conference proceedings. Accepted abstracts will
be presented during poster sessions.
3. Tutorials and workshops: We invite experts in different areas to
organize either a tutorial or a workshop
to be held on the first day of the conference. Tutorials are meant
to provide insights into specific
topics as well as overviews that will inform the interdisciplinary
audience about the state-of-the-art in
child development, neuroscience, robotics, or any of the other
disciplines represented at the conference.
A workshop is an opportunity to present a topic cumulatively.
Workshops can be half- or full-day in
duration including oral presentations as well as posters. Submission
format: two pages including title,
list of speakers, concept and target audience.
All submissions will be peer reviewed.
Submission website through paperplaza at: http://ras.papercept.net
== Important dates
March 9, 2015, paper submission deadline
May 15, 2015, author notification
July 1, 2015, final version (camera ready) due
August 13th-16th, 2015, conference
== Program committee
General Chairs:
Matthew Schlesinger (Southern Illinois Univ.)
Dima Amso (Brown Univ.)
Bridge Chairs:
Jeffrey Krichmar (UC Irvine)
Bertram Malle (Brown University)
Program Chairs:
Anne Warlaumount (UC Merced)
Clemént Moulin-Frier (INRIA)
Publications Chairs:
Lisa Meeden (Swarthmore College)
Publicity Chairs:
Lola Cañamero (Univ. of Hertfordshire)
Matthias Rolf (Osaka University)
Benjamin Rosman (Univ. of the Witwatersrand)
Local chairs:
David Sobel (Brown University)
Thomas Serre (Brown University)
Finance chairs:
Clayton Morrison (University of Arizona)
--
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Jan. 2, 2015
NEURAL COMPUTATION - January 1, 2015
by Terry Sejnowski
Editorial
Neural Computation was founded with the goal of providing a home for the
best research in computational approaches to understanding brain function.
With this issue Neural Computation is now all electronic
(color illustrations are free) and also has a broader scope.
The goal of the BRAIN Initiative, announced by President Obama on April 2, 2013,
is to accelerate progress in understanding basic principles of brain function
by developing innovative neurotechnologies. The BRAIN 2025 report on the BRAIN
Initiative highlighted Theory, Modeling, Computation and Statistics (TMCS)
as essential to this goal (http://www.braininitiative.nih.gov/2025/index.htm)
The neurotechniques developed by the BRAIN Initiative will scale up the acquisition
of data by three orders of magnitude in the next decade. Every area of neuroscience,
from molecular to systems, can benefit from advanced computational techniques to analyze,
model, and interpret these data, serving as the foundation for conceptual advances
in brain theories.
Neural Computation is uniquely positioned at the crossroads between Neuroscience
and TMCS and welcomes the submission of original papers from all areas of TMCS,
including:
* Advanced experimental design
* Analysis of chemical sensor data
* Connectomic reconstructions
* Analysis of multielectrode and optical recordings
* Genetic data for cell identity
* Analysis of behavioral data
* Multiscale models
* Analysis of molecular mechanisms
* Neuroinformatics
* Analysis of brain imaging data
* Neuromorphic engineering
* Principles of neural coding, computation, circuit dynamics, and plasticity
* Theories of brain function
An expanded editorial board will guide Neural Computation in this broader arena:
http://www.mitpressjournals.org/page/editorial/neco
As the US BRAIN Initiative and the European Human Brain Project continue to expand,
and as other countries launch new brain programs, Neural Computation will be
central in integrating these international efforts.
Terry Sejnowski
-----
Neural Computation - Volume 27, Number 1 - January 1, 2015
Available online for download now:
http://www.mitpressjournals.org/toc/neco/27/1
-----
Article
Spike Train SIMilarity Space (SSIMS): A Framework for Single Neuron
and Ensemble Data Analysis
Carlos E. Vargas-Irwin, David M. Brandman, Jonas B. Zimmermann,
John P. Donoghue, Michael J. Black
Note
Optimizing the Representation of Orientation Preference Maps in Visual Cortex
Nicholas J. Hughes, Geoffrey J. Goodhill
Letters
Topological Sparse Learning of Dynamic Form Patterns
T. Guthier, V. Willert, J. Eggert
Dynamics of Gamma Bursts in Local Field Potentials
Priscilla E. Greenwood, Mark D. McDonnell, Lawrence M. Ward
Spatiotemporal Conditional Inference and Hypothesis Tests
for Neural Ensemble Spiking Precision
Matthew T. Harrison, Asohan Amarasingham, Wilson Truccolo
Toward a Multisubject Analysis of Neural Connectivity
C. J. Oates, L. Costa, T. E. Nichols
Using Multilayer Perceptron Computation to Discover Ideal
Insect Olfactory Receptor Combinations in the Mosquito and
Fruit Fly for an Efficient Electronic Nose
Luqman R. Bachtiar, Charles P. Unsworth, Richard D. Newcomb
Graph Degree Sequence Solely Determines the Expected Hopfield Network
Pattern Stability
Daniel Berend, Shlomi Dolev, Ariel Hanemann
Efficient Training of Convolutional Deep Belief Networks in the
Frequency Domain for Application to High-Resolution 2D and 3D Images
Tom Brosch, Roger Tam
Conditional Density Estimation with Dimensionality Reduction via
Squared-Loss Conditional Entropy Minimization
Voot Tangkaratt, Ning Xie, Masashi Sugiyama
------------
ON-LINE -- http://www.mitpressjournals.org/neuralcomp
SUBSCRIPTIONS - 2015 - VOLUME 27 - 12 ISSUES
Student/Retired $75
Individual $134
Institution $1,075
MIT Press Journals, One Rogers Street, Cambridge, MA 02142-1209
Tel: (617) 253-2889 FAX: (617) 577-1545 journals-cs(a)mit.edu
------------
Dec. 30, 2014
Call for Papers: IEEE IJCNN'2015 Special Session on: "Emerging Methodologies for Big Data Integration"
by Dr Amir Hussain
CALL FOR PAPERS
IEEE IJCNN 2015 Special Session on
*"*Emerging Methodologies for Big Data Integration*"*
July 12 - 17, 2015, Killarney, Ireland (
http://www.ijcnn.org/ )
**********************************************************
IMPORTANT DATES
Paper submission: January 15th, 2015
Paper Decision notification: March 15th, 2015
Camera-ready submission: April 15th, 2015
Conference Dates: July 12 - 17th, 2015
***********************************************************
Over the years, huge quantities of data have been generated by large-scale
scientific experiments (biomedical, “omic”, imaging, astronomical, etc.),
big industrial companies and on the web. One of the main characteristics of
such Big Data is that they are multi-view, i.e. there are multiple sources
(in the “omics” sciences, experiments related to mRNA, miRNA etc.), relate
the same patterns (in this case patients) or multi-domain (in biomedical
applications for examples, “omics, imaging and clinical data).
As a consequence, new methodologies based on neural networks, machine and
statistical learning, computation Intelligence and others, have been
proposed to integrate these kinds of big data and to elicit relevant
information to infer novel models and correlations.
The aim of the special session is to solicit new approaches to real world
scientific and industrial big data integration, as well as applications of
above mentioned Big Data methodologies.
*Topics**
Papers must present original work or review the state-of-the-art in the
following non-exhaustive list of topics:
Multi-view learning
Multi-view clustering
data fusion
data integration
multi-view data applications
multi domain data applications
THE DEADLINE FOR THE PAPER SUBMISSION TO THE SPECIAL SESSION IS THE SAME OF
IJCNN 2015, January 15th 2015.
All the submissions will be peer-reviewed with the same criteria used for
other contributed papers.
Perspective authors will submit their papers through the IJCNN2015
conference submission system at http://www.ijcnn.org/
Please make sure to select the Special Session "Emerging Methodologies for
Big Data Integration " from the "S. SPECIAL SESSION TOPICS" name in the
"Main Research topic" dropdown list;
Templates and instructions for authors will be provided on the IJCNN
webpage http://www.ijcnn.org/
All papers submitted to the special sessions will be subject to the same
peer-review procedure as regular papers, accepted papers will be published
in the conference proceedings.
Further information about IJCNN 2015 can be fond at http://www.ijcnn.org/
and about the special session at
http://neuronelab.unisa.it/emerging-methodologies-for-big-data-integration/
***********************************************************
**Organizers**
- Amir Hussain
Professor of Computing Science and founding Director of the Cognitive
Signal-Image Processing and Control Systems Research (COSIPRA) Laboratory,
University of Stirling, UK (E-mail: ahu(a)cs.stir.ac.uk
http://cs.stir.ac.uk/~ahu)
- Giovanni Montana
Professor and Chair in Biostatistics and Bioinformatics, Biomedical
Engineering Department, King’s College, London, UK
- Francesco Carlo Morabito
Professor and Chair of the Neurolab, Dipartimento DICEAM, Università
Mediterranea di Reggio Calabria, Italy
- Roberto TAGLIAFERRI
Professor and Chair of the Neuronelab, Dipartimento di Informatica,
Università di Salerno, Italy
**Technical Program Committee (being continuously updated)**
Elia Mario Biganzoli, Università di Milano, Italy
Erik Cambria, NTU, Singapore
Ciro Donalek, Caltech, CA, USA
Anna Esposito, Seconda Università di Napoli, Italy
Marcos Faundez-Zanuy, Escola Universitaria Politecnica de Mataro
(Tecnocampus), Spain
Alexander Gelbukh, National Polytechnic Institute, Mexico
Dario Greco, FIOH, Finland
Newton Howard, MIT Media Lab, USA
Pietro Liò, University of Cambridge, UK
Bin Luo, Anhui University, China
Mufti Mahmud, Antwerp University, Belgium
Riccardo Rizzo, CNR, Italy
Jingpeng Li, University of Stirling, UK
Domenico Ursino, Università Mediterranea di Reggio Calabria, Italy
Alfredo Vellido, Universidad Politécnica de Cataluña, Spain
Pierangelo Veltri, Università "Magna Graecia" di Catanzaro, Italy
Jonathan Wu, University of Windsor, Canada
Yunqing Xia, Tsinghua University, China
Kang Li, Queen's University, Belfast, UK
Dongbing Gu, Essex University, UK
Vincent C. Müller, Anatolia College/ACT, Greece & Oxford University, UK
Dongbin Zhao, Chinese Academy of Sciences, Beijing, China
***********************************************************
--
The University of Stirling has been ranked in the top 12 of UK universities for graduate employment*.
94% of our 2012 graduates were in work and/or further study within six months of graduation.
*The Telegraph
The University of Stirling is a charity registered in Scotland, number SC 011159.
Dec. 28, 2014
Teaching Computational Neuroscience
by Érdi Péter
A multiple book review:
http://arxiv.org/abs/1412.5909
Péter Érdi
http://people.kzoo.edu/~perdi/
Dec. 28, 2014
UC Santa Barbara Postdoc fellowship announcement
by John Hajda
SAGE JUNIOR FELLOW PROGRAM, SAGE CENTER FOR THE STUDY OF MIND,
UNIVERSITY OF CALIFORNIA, SANTA BARBARA
Job number JPF00417
Four postdoctoral positions will be available beginning on September 1,
2015. This is a three-year fellowship, and the competition is open to
all qualified candidates regardless of institutional affiliation.
The SAGE Center Junior Fellowship Program, established in 2011, fosters
interdisciplinary research in the study of brain-mind interaction at the
postdoctoral level. We are seeking a group of highly collaborative,
interacting fellows who are willing to take different approaches to
shared conceptual challenges. Qualified applicants should be able and
will be encouraged to utilize the UCSB Brain Imaging Center
(http://www.bic.ucsb.edu/) The Center supports the new PRISMA (3T)
Siemens magnet as well as MRI compatible high density
electroencephalography hardware. Center funding will be available for
imaging studies.
In addition to developing research programs in close collaboration with
individual faculty, Junior Fellows will enjoy special privileges,
including access to visiting SAGE Scholars and attendance at regular
group meetings to collaborate and share information about the role of
psychology, cognitive neuroscience, economics, political science,
anthropology, biology, physics, engineering, the arts, philosophy and
other disciplines on the study of brain, mind and behavior. To be
eligible for the Junior Fellows program, a candidate must have been
awarded a doctoral degree or foreign equivalent within the past five years.
Proposed research topics must be related to brain-mind interaction.
Interdisciplinary approaches are encouraged. We will strive to create a
team based on common interests of the top applicants.
To apply, please submit:
1. A complete CV, published article and three letters of recommendation
2. A statement of your research interests and a description of how those
interests complement the goals of the SAGE Center.
For primary consideration, apply by February 1, 2015, although we will
accept applications until the positions are filled. Please submit your
application at https://recruit.ap.ucsb.edu/apply/JPF00417. Inquiries
about your application may be directed to
juniorfellows(a)sagecenter.ucsb.edu; include your last name in the subject
line of all correspondence.
Michael S. Gazzaniga, Ph.D.
Director, SAGE Center for the Study of Mind
University of California, Santa Barbara
http://www.sagecenter.ucsb.edu/
http://www.psych.ucsb.edu/~gazzanig/
The department is especially interested in candidates who can contribute
to the diversity and excellence of the academic community through
research, teaching and service. The University of California is an Equal
Opportunity/Affirmative Action employer. All qualified applicants will
receive consideration for employment without regard to race, color,
religion, sex, national origin, or any other characteristic protected by
law including protected Veterans and individuals with disabilities.
--
John Hajda, Ph.D.
Associate Director
Sage Center for the Study of the Mind
Department of Psychological and Brain Sciences
University of California, Santa Barbara
Santa Barbara, CA 93106-9660
Phone 805-893-4460
Fax 805-893-3228
hajda(a)sagecenter.ucsb.edu
http://www.sagecenter.ucsb.edu/
Dec. 23, 2014
New Brain Computation Paper
by MICHAEL FORREST
A new paper that some may find interesting:
Forrest MD (2014) The sodium-potassium pump is an information processing element in brain computation. Frontiers in Physiology. 5:472. doi: 10.3389/fphys.2014.00472
FREELY available at:
http://journal.frontiersin.org/Journal/10.3389/fphys.2014.00472/full
Dec. 23, 2014
[Call for applications] *Graduate Programs in Computational Neuroscience* in Berlin; MSc and PhD; 7 PhD scholarships; deadline March 15, 2015
by Robert Martin
[Apologies for cross-posting]
*Doctoral* and *Master Program* "Computational Neuroscience"
at the Bernstein Center for Computational Neuroscience Berlin
in Berlin, Germany
Application deadline: *March 15, 2015*
Begin of courses: October 2015
Internet: www.computational-neuroscience-berlin.de
_Doctoral Program_
The Bernstein Center for Computational Neuroscience Berlin and the TU
Berlin invite applications for *7 fellowships* of the Research Training
Group "Sensory Computation in Neural Systems" (GRK 1589/2,
https://www.eecs.tu-berlin.de/grk_15891/menue/sensory_computation_in_neural…)
The *scientific program* of the research training group combines
techniques and concepts from machine learning, computational
neuroscience, and systems neurobiology in order to specifically address
sensory computation. Doctoral candidates will work on interdisciplinary
projects investigating the mechanisms of neural computation, address the
processes underlying perception on different scales and different levels
of abstraction, and develop new theories of computation hand in hand
with well-controlled experiments in order to put functional hypotheses
to the test.
The training group offers structured supervision complemented by a
teaching and training program. Each student will be supervised by two
investigators with complementary expertise and will be associated with
the Bernstein Center for Computational Neuroscience Berlin
(https://www.bccn-berlin.de/) a leading research center dedicated to the
theoretical study of neural processing.
Candidates are expected to hold a Masters degree (or equivalent) in a
relevant subject (e.g., neuroscience, cognitive science, computer
science, physics, mathematics, etc.) and have the required advanced
mathematical background.
Candidates selected in the first application step will be invited for
lab visits and an interview, expected to take place in June 2015. The
*fellowships of 1468 €/month* - with additional children allowances if
applicable---will be granted for up to three years.
_Master's Program_
The tuition-free Master program in Computational Neuroscience offers *15
places* per year, has a duration of 2 years and is fully taught in English.
The *curriculum* is subdivided into ten modules, whose content includes
theoretical neuroscience, programming, machine learning, cognitive
neuroscience, acquisition, modelling, and computational analysis of
neural data, with a strong focus on a complementary theoretical and
experimental training. Three lab rotations and a Master's thesis are
accomplished in the second year. The aim of the program is to provide
the students with an interdisciplinary education and an early contact to
the neurocomputational research environment.
*Requirements* BSc or equivalent degree in a relevant subject (typically
in the natural sciences, in an engineering discipline, in cognitive
science, or in mathematics), certificate of English proficiency, proof
of sufficient mathematical knowledge (at least 24 ECTS credit points).
~~~
_For more information_ ...
... come and visit us on our *information day* on January 14, 2015, at 3
PM (sharp) at the BCCN Berlin:
https://www.bccn-berlin.de/Calendar/Events/event/?contentId=3667
... or browse:
www.computational-neuroscience-berlin.de
... or e-mail:
graduateprograms(a)bccn-berlin.de .
Best regards,
Robert Martin
--
Robert Martin, PhD
Teaching Coordinator
Bernstein Center for Computational Neuroscience
Humboldt-Universitaet zu Berlin
Philippstr. 13 House 6; 10115 Berlin; Germany
Phone/Fax +49 (0)30 2093 6773/6771
http://www.computational-neuroscience-berlin.de
GRK 1589/1, Sensory Computation in Neural Systems
Technische Universitaet Berlin
Sekretariat MAR 5-6; Marchstr. 23; 10587 Berlin
Phone/Fax +49 (0)30 314 72006/73121
http://www.eecs.tu-berlin.de/grk_15891/
Dec. 19, 2014
Advanced Scientific Programming in Python Summer School
by Emanuele Olivetti
Advanced Scientific Programming in Python
=========================================
a Summer School by the G-Node, the Bernstein Center for Computational
Neuroscience Munich and the Graduate School of Systemic Neurosciences
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, incorporating theoretical lectures and
practical exercises tailored to the needs of a programming scientist. New
skills will be tested in a real programming project: we will team up to
develop an entertaining scientific 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 is assumed. Participants without any prior experience with Python
should work through the proposed introductory materials before the course.
Date and Location
=================
August 31—September 5, 2015. Munich, Germany.
Preliminary Program
===================
Day 0 (Mon Aug 31) — Best Programming Practices
• Best Practices for Scientific Computing
• Version control with git and how to contribute to Open
Source with github
• Object-oriented programming & design patterns
Day 1 (Tue Sept 1) — Software Carpentry
• Test-driven development, unit testing & quality assurance
• Debugging, profiling and benchmarking techniques
• Advanced Python: generators, decorators, and context managers
Day 2 (Wed Sept 2) — Scientific Tools for Python
• Advanced NumPy
• The Quest for Speed (intro): Interfacing to C with Cython
• Contributing to Open Source Software/Programming in teams
Day 3 (Thu Sept 3) — The Quest for Speed
• Writing parallel applications in Python
• Python 3: why should I care
• Programming project
Day 4 (Fri Sept 4) — Efficient Memory Management
• When parallelization does not help:
the starving CPUs problem
• Programming project
Day 5 (Sat Sept 5) — Practical Software Development
• Programming project
• The Pelita Tournament
Every evening we will have the tutors' consultation hour: Tutors will
answer your questions and give suggestions for your own projects.
Applications
============
You can apply on-line athttps://python.g-node.org
Applications must be submitted before 23:59 UTC, March 31, 2015.
Notifications of acceptance will be sent by May 1, 2015.
No fee is charged but participants should take care of travel, living, and
accommodation expenses. Candidates will be selected on the basis of their
profile. Places are limited: acceptance rate is usually around 20%.
Prerequisites: You are supposed to know the basics of Python to participate
in the lectures
Preliminary Faculty
===================
• Francesc Alted, freelance developer, author of PyTables, Spain
• Pietro Berkes, Enthought Inc., UK
• Kathryn D. Huff, Department of Nuclear Engineering, University of
California - Berkeley, USA
• Zbigniew Jędrzejewski-Szmek, Krasnow Institute, George Mason
University, USA
• Eilif Muller, Blue Brain Project, École Polytechnique Fédérale de
Lausanne, Switzerland
• Rike-Benjamin Schuppner, Institute for Theoretical Biology,
Humboldt-Universität zu Berlin, Germany
• Nelle Varoquaux, Centre for Computational Biology Mines ParisTech,
Institut Curie, U900 INSERM, Paris, France
• Stéfan van der Walt, Applied Mathematics, Stellenbosch University,
South Africa
• Niko Wilbert, TNG Technology Consulting GmbH, Germany
• Tiziano Zito, Forschungszentrum Jülich GmbH, Germany
Organized by Tiziano Zito (head) and Zbigniew Jędrzejewski-Szmek for the
German Neuroinformatics Node of the INCF Germany, Christopher Roppelt for
the German Center for Vertigo and Balance Disorders (DSGZ) and the Graduate
School of Systemic Neurosciences (GSN) of the Ludwig-Maximilians-Universität
Munich Germany, Christoph Hartmann for the Frankfurt Institute for Advanced
Studies (FIAS) and International Max Planck Research School (IMPRS) for
Neural Circuits, Frankfurt Germany, and Jakob Jordan for the Institute of
Neuroscience and Medicine (INM-6) and Institute for Advanced Simulation
(IAS-6), Jülich Research Centre and JARA. Additional funding provided by the
Bernstein Center for Computational Neuroscience (BCCN) Munich.
Website:https://python.g-node.org
Contact:python-info@g-node.org
Dec. 19, 2014
Mathematical post-doc position on the relation of information and causation (Prof. Giulio Tononi)
by albantakis
A postdoctoral position is available at the center for sleep and
consciousness science in the laboratory of Dr. Giulio Tononi (University
of Wisconsin, Madison), to study the relation of information and
causation within the framework of the integrated information theory of
consciousness (Balduzzi & Tononi, 2008; Tononi, 2012).
Immediate funding is available for a range of projects related to
foundational questions regarding the ontological status of information,
and its relation to causation, emergence, adaptation, evolution, and
consciousness (see detailed scope of work below).
The successful candidate will work in the information integration theory
group at the center for sleep and consciousness science, which is
dedicated to a broad range of research problems focused on two
neurobiological problems -- the mechanisms and functions of sleep and
the neural substrates of consciousness.
Candidates are expected to have strong training in an analytically
rigorous discipline such as theoretical biology/neuroscience, physics,
mathematics, computer science, or engineering. We explicitly encourage
mathematicians to apply. Experience in information theory, complex
systems, and an interest in the philosophy of information/causation are
a plus. Programming experience is required (knowledge of MATLAB, Python,
and/or C++ is of advantage).
Appointments are renewable from year to year for up to 3 years, starting
as soon as possible or until the positions are filled. Post-doc salaries
correspond to the National Institutes of Health National Research
Service Award (NRSA) stipend schedule for postdoc trainees, based on
number of years of postdoctoral experience.
Candidates should send a CV, brief statement of previous research and
future research interests, and email addresses and phone numbers of
three references to: Giulio Tononi, gtononi(a)wisc.edu.
Oizumi M, Albantakis L, Tononi G (2014) From the Phenomenology to the
Mechanisms of Consciousness: Integrated Information Theory 3.0. /PLoS
Comput Biol/ 10:e1003588
Hoel, E. P., Albantakis, L., & Tononi, G. (2013). Quantifying causal
emergence shows that macro can beat micro. /PNAS/, /110/(49), 19790--19795.
Tononi G (2012) Integrated Information Theory of Consciousness: An
Updated Account. /Arch Ital Biol/ 150:56--90.
The scope of work will range from:
-theoretical development and computational implementation of the
notion of intrinsic causal information
-causal analysis, including the systematic use of perturbations,
counterfactuals, and irreducibility
-analysis of complex systems in terms their causal/informational
structure
-meaning (understanding and control) from the intrinsic perspective
of the system
-actual causation (causal explanation)
-examining similarities and differences between existing notions of
information and causation (Shannon information, algorithmic
information,...)
-defining emergence in terms of the spatio-temporal grain size at
which a system of elements achieves a maximum of causal power
-evolutionary/adaptive aspects of information/causation including
simulations based on small adaptive neural networks (animats), which
evolve and adapt to an environment that requires sensitivity to
context for survival
--
Larissa Albantakis, PhD
Department of Psychiatry
University of Wisconsin
6001 Research Park Blvd
Madison, WI 53719
Dec. 17, 2014