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- 15 participants
- 7398 messages
Research Topic "Closed-loop systems for next-generation neuroprostheses"; Frontiers in Neuroprosthetics
by Paolo Bonifazi
Dear Colleagues,
I would like to draw your attention to our research topic “Closed-loop
systems for next-generation neuroprostheses” in Frontiers in
Neuroprosthetics.
http://journal.frontiersin.org/ResearchTopic/3581
Abstract deadline: 28th February 2015
Manuscript deadline: 30th September 2015
The topic description follows below.
Please do not hesitate to contact us for any question.
Best regards,
Paolo Bonifazi - on behalf of the Topic Editors *Timothée Levi, **Michela
Chiappalone and **Paolo Massobrio*
*Millions of people worldwide are affected by neurological disorders which
disrupt connections within the brain and between brain and body causing
impairments of primary functions and paralysis. Such a number is likely to
increase in the next years and current assistive technology is limited. The
response to such disabilities, offered by the neuroscience community, is
given by Brain-Machine Interfaces (BMIs) and Neuroprostheses. *
*Such a field of research is highly multidisciplinary, since it involves
very different and disperse scientific communities, making it fundamental
to create connections and to join research efforts. Indeed, to design
neuroprosthetic devices, six main research topics are involved: interfacing
of neural systems at different levels of architectural complexity (from in
vitro neuronal ensembles up to the human brain), bio-artificial interfaces
for stimulation and recording, innovative signal processing tools for
coding and decoding of neural activity, biomimetic artificial neural
networks and neural network modeling. In order to develop functional
communication with the nervous system and create a new generation of
neuroprostheses, studying closed-loop systems is mandatory. The
bi-directional communication between living neurons and artificial devices
is the main final goal of those studies. However, closed-loop systems are
still rare in the literature, mostly due to the required multidisciplinary
effort. Therefore through this research topic, we intend to encourage an
active discussion among neurobiologists, electrophysiologists,
bioengineers, computational neuroscientists and neuromorphic engineers. *
*The overall goal of this research topic is to present the results and
stimulate/promote the discussion about the design of a novel generation of
neuroprostheses aimed at recovering impaired/damaged neural networks. In
this Research Topic, we welcome submissions highlighting the latest results
in neuroprosthetics but also covering the six major topics introduced
above. Review articles about closed-loop systems and neuroprostheses are
strongly encouraged. Indeed, the intrinsic multidisciplinary nature of the
proposed topic, from which we expect to receive contributions from
different specialists, will help the scientific community to converge to
new ideas and solutions to treat invalidating neuronal disabilities.*
====================
Paolo Bonifazi, PhD
Italy-Israel Initiative on Integrative Network Neuroscience
P.I. of the BRAINBOW project - http://www.brainbowproject.eu
School of Physics and Astronomy
Tel Aviv University, 69978 Tel Aviv, Israel
Jan. 25, 2015
New paper on Cortico-striatal plasticity in PLoS Biology
by Kevin Gurney
This paper integrates several levels of description - from the synaptic,
through systems modelling, to behaviour.
Gurney, K.N., Humphries, M.D., Redgrave, P., 2015. A New Framework for
Cortico-Striatal Plasticity: Behavioural Theory Meets In Vitro Data at the
Reinforcement-Action Interface. PLoS biology 13, e1002034.
doi:10.1371/journal.pbio.1002034
Operant learning requires that reinforcement signals interact with action
representations at a suitable neural interface. Much evidence suggests that
this occurs when phasic dopamine, acting as a reinforcement prediction
error, gates plasticity at cortico-striatal synapses, and thereby changes
the future likelihood of selecting the action(s) coded by striatal neurons.
But this hypothesis faces serious challenges. First, cortico-striatal
plasticity is inexplicably complex, depending on spike timing, dopamine
level, and dopamine receptor type. Second, there is a credit assignment
problem—action selection signals occur long before the consequent dopamine
reinforcement signal. Third, the two types of striatal output neuron have
apparently opposite effects on action selection. Whether these factors rule
out the interface hypothesis and how they interact to produce reinforcement
learning is unknown. We present a computational framework that addresses
these challenges. We first predict the expected activity changes over an
operant task for both types of action-coding striatal neuron, and show they
co-operate to promote action selection in learning and compete to promote
action suppression in extinction. Separately, we derive a complete model of
dopamine and spike-timing dependent cortico-striatal plasticity from in
vitro data. We then show this model produces the predicted activity changes
necessary for learning and extinction in an operant task, a remarkable
convergence of a bottom-up data-driven plasticity model with the top-down
behavioural requirements of learning theory. Moreover, we show the complex
dependencies of cortico-striatal plasticity are not only sufficient but
necessary for learning and extinction. Validating the model, we show it can
account for behavioural data describing extinction, renewal, and
reacquisition, and replicate in vitro experimental data on cortico-striatal
plasticity. By bridging the levels between the single synapse and
behaviour, our model shows how striatum acts as the action-reinforcement
interface.
--
Kevin Gurney, PhD, FSB
Professor of Computational Neuroscience
Adaptive Behaviour Research Group
Department of Psychology, University of Sheffield, S10 2TP, UK
<http://www.shef.ac.uk/%7Eabrg/>
http://abrg.group.shef.ac.uk/people/kevin/
-------------
"Email is a wonderful thing for people whose role in life is to be on top
of things. But not for me; my role is to [get to] the bottom of things.
What I do takes long hours of studying and uninterruptible concentration."
Donald Knuth: Professor Emeritus of the Art of Computer Programming at
Stanford University, and winner of the 1974 Turing Award.
Jan. 23, 2015
3rd Baltic-Nordic Summer School on Neuroinformatics (BNNI 2015)
by Toomas Kirt
2nd call:
3rd Baltic-Nordic Summer School on Neuroinformatics (BNNI 2015)
Multiscale computational neuroscience: Neurons, networks and systems
Place: University of Tartu, Tartu, Estonia
Time: June 15-18, 2015
More information and registration at http://neuro.cs.ut.ee/bnni2015/
Important dates:
21 February 2015 Application deadline
13 March 2015 Acceptance notification
15-18 June 2015 Summer School
The BNNI 2015 is focused on computational multiscale modelling of brain functions at
the cellular, network and systems levels. The course will also cover data sources,
measurements and analysis of neural activity.
Target audience
Advanced master students, doctoral students and postdoctoral researchers, both
theoreticians and experimentalists, who would like to get an introduction to
neuroinformatics and computational neuroscience.
Faculty includes
Gaute Einevoll, Norwegian University of Life Sciences, Aas, Norway
Bruce Graham, University of Stirling, United Kingdom
Sean Hill, the École Polytechnique Fédérale de Lausanne, Switzerland
Henrik Lindén, University of Copenhagen, Denmark
Marja-Leena Linne, Tampere University of Technology, Finland,
Claudio Mirasso, Universitat de les Illes Balears, Palma de Mallorca, Spain
Arnd Roth, University College London, UK
Ausra Saudargiene, Vytautas Magnus University, Kaunas, Lithuania
Raul Vicente, University of Tartu, Estonia
Michael Wibral, Brain Imaging Center, Goethe University, Frankfurt, Germany
Daniel Wójcik, Nencki Institute of Experimental Biology, Warsaw, Poland
and others to be named.
Venue
The course will be held in the University of Tartu, Faculty of Mathematics and
Computer Science - Juhan Liivi 2, Tartu 50409, Estonia.
Practical arrangements
There is a small tuition fee of 100 euros. The sponsor will provide teaching, meals
and coffee during the course. The participants are expected to cover their travel
and health insurance expenses (small financial support is available for those
without funding).
The course is supported by International Neuroinformatics Coordinating Facility and
University of Tartu.
We are looking forward to welcome you at the BNNI 2015 in Tartu, Estonia!
Jan. 23, 2015
postdoc positions - Gatsby Computational Neuroscience Unit
by Peter Latham
The Gatsby Computational Neuroscience Unit invites applications for one or
more postdoctoral training fellowships in theoretical neuroscience,
including population coding, learning, neural neural dynamics, the
interpretation of neural data, perceptual processing, and neuromodulation.
The position is available for an initial period of two years, and may be
renewed to a maximum of three years.
The closing date for applications is 15 March, 2015. Interviews will be
held in May 2015.
To find out more about the job, and to apply, see
http://www.gatsby.ucl.ac.uk/vacancies/TN%20Postdoc2015.html
For further details of our research, see
http://www.gatsby.ucl.ac.uk/research.html
Jan. 23, 2015
MSc program in Neural Systems and Computation - University of Zurich and ETH Zurich
by Michael Pfeiffer
We are inviting applications for the MSc program in Neural Systems and
Computation, an interdisciplinary program offered as a Joint Master
Program by the University of Zurich and ETH Zurich, Switzerland. The
program offers a theoretical and laboratory training in neural
computation and systems neuroscience. It offers hands-on knowledge of
data gathering, analysis and scientific presentation. Students join an
international and interdisciplinary research community with expertise in
neuroinformatics, advanced experimental techniques and neuromorphic
engineering. Further information can be found on our homepage
http://www.nsc.uzh.ch.
We offer a specialized full-time Masters program open to students with a
Bachelor’s degree in the following disciplines: neurosciences,
information technology, electrical engineering, biology, physics,
computer sciences, chemistry, mathematics, and
mechanical/chemical/control engineering. The core courses (all offered
in English) provide a common foundation for students with different
educational backgrounds, and cover the following:
1. Systems Neurosciences
2. Neural Computation and Theoretical Neuroscience
3. Neurotechnologies and Neuromorphic Engineering
The application deadline for students starting in Fall Semester 2015 is
*February 15th 2015*. Details about the application process and required
documents can be found here: http://www.nsc.uzh.ch/?page_id=10
The program is affiliated with the Mathematics and Natural Sciences
Faculty (MNF) at the University of Zurich (UZH) and the Information
Technology and Electrical Engineering Department (D-ITET) of the ETH
Zurich. All applications are handled by the University of Zurich.
Application documents should be sent by email to nsc(a)ini.uzh.ch.
Michael Pfeiffer
--
=========================================
Dr. Michael Pfeiffer
Postdoc, Program coordinator NSC
Institute of Neuroinformatics
University of Zurich and ETH Zurich
Winterthurerstrasse 190
CH-8057 Zurich, Switzerland
Tel. +41 44 635 30 45
Fax +41 44 635 30 53
pfeiffer (at) ini.phys.ethz.ch
http://www.ini.uzh.ch/~pfeiffer/
=========================================
Jan. 22, 2015
[journals] CFP: IEEE ToH Issue on Active Touch Sensing
by yon
The other guest editors and I are very excited to present this special issue. We hope you will consider contributing.
Best,
Yon Visell
Call for Papers
IEEE Transactions on Haptics
Special Issue on Active Touch Sensing in Robots, Humans, and Other Animals
Submission deadline: April 1 2015
First decision to authors: June 1 2015
Complete Details: http://re-touch-lab.com/ieee-toh-issue
Guest Editors:
Yon Visell, Drexel University
Vincent Hayward, Université Pierre et Marie Curie
Mitra Hartmann, Northwestern University
Nathan Lepora, University of Bristol
Topical Summary:
This special issue addresses the challenges posed by actively sensing and interacting with the world through the sense of touch, whether the latter is implemented through a technological or biological system. Active touch sensing is recovering information about the world by ‘touching’ rather than ‘being touched’ – by interpreting signals from sensors whose motion is deliberately controlled to facilitate information gain.
The scope of this issue includes both biological and technological systems for active touch sensing, and implications for haptics. This issue will consider electronic systems for active touch sensing that are biologically inspired systems, in addition to other inherently active approaches to touch sensing.
Biological systems for active touch sensing are highly capable, and, by comparison, the field of robotic touch sensing is in its infancy. The former demonstrate many valuable concepts for active touch sensing that are being intensively investigated. They have also illustrated ways that active touch sensing is enabled through specialized sensory transduction channels, biomechanics, structural morphology, behavioral, and control strategies that are implemented by biological systems, and through other advantages that they achieve, including robustness, adaptability, and power efficiency. Similar challenges must be overcome if technological systems are to one day achieve comparable levels of sensorimotor performance to biological systems.
Specific topics of interest include:
- The design of electronic or biological systems for active touch sensing, their principles of operation (electronic, biological, mechanical) and performance.
- Biomechanical aspects of active touch sensing.
- Relations between active touch sensing and behavior, especially motor activity.
- Sensory information processing and sensorimotor control strategies in humans, animals, or robots related to active touch sensing, including behavioral, physiological or neuroscience investigations, and neural control.
- Learning by active touch.
- Applications to the design of haptic interfaces.
Authors should specifically include a discussion of how their results shed light on fundamental aspects of active touch sensing rather than assuming that this can be inferred from context.
Submission process:
Visit http://www.computer.org/toh to view formatting requirements, and submit your paper at https://mc.manuscriptcentral.com/th-cs. When uploading your paper please select the appropriate special issue title under the category “Manuscript Type.”
_________________________________________________________
Yon Visell, PhD
Assistant Professor
Drexel University | Electrical and Computer Engineering
Philadelphia, USA
www.re-touch-lab.com
Office: +1 215 571 4507
Mobile: +1 267 800 8960
_________________________________________________________
Jan. 22, 2015
Master program in Computational Neuroscience and Neuroinformatics@Newcastle University
by Marcus Kaiser
Dear all,
our one-year master degree program in Computational Neuroscience
and Neuroinformatics at Newcastle University is now accepting student
applications. The course focuses on handling brain connectivity datasets,
analyzing electrophysiological recordings, and simulating neural activity
and development. Neuroinformatics is one of the strategic areas of
neuroscience research within Newcastle University (see overview at
http://neuroinformatics.ncl.ac.uk/ ).
Close interactions with experimental and clinical researchers are a key
component of the course and the dissertation research project. Ongoing
research areas in Newcastle include neuroimaging, psychophysics, systems
neuroscience (visual, auditory, and motor system), aging,
neurorehabilitation, brain rhythms, brain-machine interfaces, neurochips,
and connectomics (http://www.ncl.ac.uk/ion ). Newcastle University hosts
around 100 principal investigators in the neurosciences.
You can find out more about the program and how to apply at
http://www.ncl.ac.uk/computing/study/postgrad/taught/5199/
*COURSE OUTLINE*
The MSc in Computational Neuroscience and Neuroinformatics is a full-time,
one-year advanced masters course designed for students who have a good
degree in the biological sciences or the physical sciences (computer
science, mathematics, physics, engineering). It provides the specialist
skills in core Neuroinformatics courses (such as computing and biology)
with a significant focus on the development of research skills. The program
aims to equip its graduates with the necessary skills to contribute to
biologically realistic simulations of neural activity and development that
are rapidly becoming the key focus of Neuroinformatics research. Prior
experience with computers or computer programming is not required. The
program is ideal for students aiming for careers in industry or academia.
The course is based in the School of Computing Science and taught jointly
by the Schools of Computing Science, Mathematics and Statistics, Biology,
Cell and Molecular Biosciences and The Institute of Human Genetics. In
addition, there are strong links with the Institute of Neuroscience and
graduates of this master program might either apply for PhD studies at the
School of Computing Science or for the Wellcome Trust 4-year PhD program in
Systems Neuroscience (http://www.ncl.ac.uk/ion/study/wellcome/ ).
*WHY STUDY AT NEWCASTLE?*
The MSc in Neuroinformatics is a truly interdisciplinary degree and
provides the dual skills necessary to establish a rewarding career in this
research area. The Newcastle program has a research focus on data
management, network analysis (e.g. Kaiser, Neuroimage, 2011), and
simulation, whilst delivering sound training and an introduction to
research in computation and statistics, including exciting new areas such
as e-science and cloud computing.
Newcastle is among the pioneers of the field in the UK and hosted the £4m
EPSRC-funded CARMEN project for managing and processing electrophysiology
data. It also leads the development of simulations of optogenetic
stimulation effects on human brain tissue as part of the £10m
EPSRC/Wellcome Trust-funded CANDO project (http://www.cando.ac.uk/)
Newcastle has strong links with the International Neuroinformatics
Coordinating Facility (INCF). Currently, members of the faculty lead the
data-sharing special interest group and the UK special interest groups in
image-based Neuroinformatics and brain connectivity as well as in
neurally-inspired engineering.
*COURSE CONTENT*
Semester 1 contains modules to build the basic grounding in, and
understanding of, Neuroinformatics theory and applications, together with
necessary computational and numeric understanding to undertake more
specialist modules next semester. Training in mathematics and statistics is
also provided. Semester 2 introduces modules that focus heavily on
introducing subject-specific research skills and includes three option
slots for choosing modules. A major part of the Newcastle MSc in
Computational Neuroscience and Neuroinformatics is a research project that
will occupy approximately six months. This project may be associated with
staff in any of the Schools mentioned above, thus providing a wide range of
exciting areas in which the newly learnt Neuroinformatics skills can be
deployed.
*HOW TO APPLY*
Applications for this program are now being accepted. You can apply online
using the electronic application system with the degree identifier 5199F.
Please check http://www.ncl.ac.uk/computing/study/postgrad/taught/5199/ for
more information.
Best,
Marcus
--
Marcus Kaiser, Ph.D.
Associate Professor (Reader) in Neuroinformatics
Interdisciplinary Computing and Complex Biosystems (ICOS) Research Group
School of Computing Science
Newcastle University
Claremont Tower
Newcastle upon Tyne NE1 7RU, UK
Lab website:
http://www.dynamic-connectome.org/
Neuroinformatics@Newcastle:
http://neuroinformatics.ncl.ac.uk/
Jan. 22, 2015
[meetings] Living Machines IV: Second Call for Papers, Satellite Events and Sponsors
by Nathan F Lepora
______________________________________________________________
Second Call for Papers, Satellite Events and Sponsors
Living Machines IV: The 4th International Conference on Biomimetic and
Biohybrid Systems
27th to 31st July 2015
http://csnetwork.eu/livingmachines
To be hosted at the
La Pedrera
Barcelona, Spain
In association with the Universitat Pompeu Fabra
Accepted papers will be published in
Springer Lecturer Notes in Artificial Intelligence
Submission deadline March 16th, 2015
______________________________________________________________
ABOUT LIVING MACHINES 2015
The development of future real-world technologies will depend strongly
on our understanding and harnessing of the principles underlying
living systems and the flow of communication signals between living
and artificial systems.
Biomimetics is the development of novel technologies through the
distillation of principles from the study of biological systems. The
investigation of biomimetic systems can serve two complementary goals.
First, a suitably designed and configured biomimetic artefact can be
used to test theories about the natural system of interest. Second,
biomimetic technologies can provide useful, elegant and efficient
solutions to unsolved challenges in science and engineering. Biohybrid
systems are formed by combining at least one biological component—an
existing living system—and at least one artificial, newly-engineered
component. By passing information in one or both directions, such a
system forms a new hybrid bio-artificial entity. The following are
some examples:
• Biomimetic robots and their component technologies (sensors,
actuators, processors) that can intelligently interact with their
environments.
• Active biomimetic materials and structures that self-organize
and self-repair.
• Biomimetic computers—neuromimetic emulations of the
physiological basis for intelligent behaviour.
• Biohybrid brain-machine interfaces and neural implants.
• Artificial organs and body-parts including sensory organ-chip
hybrids and intelligent prostheses.
• Organism-level biohybrids such as robot-animal or robot-human systems.
ACTIVITIES
The main conference will take the form of a three-day single-track
oral and poster presentation programme, 29th to 31st July 2015, hosted
at the La Pedrera, Barcelona, Spain.
The conference programme will include five plenary lectures from
leading international researchers in biomimetic and biohybrid systems,
and the demonstrations of state-of-the-art living machine technologies
The full conference will be preceded by up to two days of Satellite
Events hosted by the Universitat Pompeu Fabra in Barcelona.
SUBMITTING TO LIVING MACHINES 2015
We invite both full papers and extended abstracts in areas related to
the conference themes. All contributions will be refereed and
accepted papers will appear in the Living Machines 2015 proceedings
which we expect to be published in the Springer-Verlag LNAI Series.
Full papers (up to12 pages) are invited from researchers at any stage
in their career but should present significant findings and advances
in biomimetic or biohybid research; more preliminary work would be
better suited to extended abstract submission (minimum 4 pages).
Further details of submission formats will be circulated in an updated
CfP and will be posted on the conference web-site.
Full papers will be accepted for either oral presentation (single
track) or poster presentation. Extended abstracts will be accepted for
poster presentation only.
Authors of the best full papers will be invited to submitted extended
versions of their paper for publication in a special issue of
Bioinspiration and Biomimetics.
Satellite events
Active researchers in biomimetic and biohybrid systems are invited to
propose topics for 1-day or 2-day tutorials, symposia or workshops on
related themes to be held 27-28th July at Universitat Pompeu Fabra.
Events can be scheduled on either the 27th or the 28th or across both
days. Attendance at satellite events will attract a small fee intended
to cover the costs of the meeting. There is a lot of flexibility
about the content, organisation, and budgeting for these events.
Please contact us if you are interested in organising a satellite
event!
EXPECTED DEADLINES
March 16th, 2015 Paper submission deadline
May 1st, 2015 Notification of acceptance
May 22nd, 2015 Camera ready copy
July 27-31 2015 Conference
SPONSORSHIP
Living Machines 2015 is sponsored by the Convergent Science Network
(CSN) for Biomimetics and Neurotechnology. CSN is an EU FP7 Future
Emerging Technologies Co-ordination Activity that also organises two
highly successful workshop series: the Barcelona Summer School on
Brain, Technology and Cognition (http://bcbt.upf.edu/bcbt12/) and the
Capocaccia Neuromorphic Cognitive Engineering Workshop.
The 2015 Living Machines conference will also be hosted and sponsored
by the Universitat Pompeu Fabra.
Call for Sponsors. Other organisations wishing to sponsor the
conference in any way and gain the corresponding benefits by promoting
themselves and their products to through conference publications, the
conference web-site, and conference publicity are encouraged to
contact the conference organisers to discuss the terms of sponsorship
and necessary arrangements. We offer a number of attractive and
good-value packages to potential sponsors.
ABOUT THE VENUE
Living Machines 2015 returns to the venue of our first conference at
the beautiful biomimetic building La Pedrera (Casa Mila)
(https://www.lapedrera.com/en/home) designed by renown modernist
architect Antoni Gaudi. Attendees at the conference will get a free
ticket to visit this historic building in the centre the Barcelona.
Workshops will be held at the Poblenou Campus of Universitat Pompeu
Fabra, close to hotel and restaurant area of the Diagonal and Ramblas
de Poblenou and a short walk from Barcelona’s famous beaches.
Organising Committee:
Paul Verschure, Universitat Pompeu Fabra (Co-chair)
Tony Prescott, University of Sheffield (Co-chair)
Stuart Wilson, University of Sheffield (Program Chair)
Anna Mura, Universitat Pompeu Fabra (Communications, Local Organiser)
Nathan Lepora, University of Bristol (Communications)
Carme Buisan University Pompeu Fabra (Treasurer)[AM1]
Jan. 22, 2015
Deadline Extension: INFOCOMP 2015 and EMPIRICAL MODELING 2015 || June 21 - 26, 2015 - Brussels, Belgium
by Cristina Pascual
INVITATION:
=================
The submission deadline is extended to February 11, 2015.
Please consider to contribute to and/or forward to the appropriate groups the following opportunity to submit and publish original scientific results to:
- INFOCOMP 2015, The Fifth International Conference on Advanced Communications and Computation
- EMPIRICAL MODELING 2015, The International Symposium on Empirical Modeling
Authors of selected papers will be invited to submit extended article versions to one of the IARIA Journals: http://www.iariajournals.org
=================
============== INFOCOMP 2015 | EMPIRICAL MODELING 2015 | Call for Papers ===============
CALL FOR PAPERS, TUTORIALS, PANELS
INFOCOMP 2015, The Fifth International Conference on Advanced Communications and Computation
General page: http://www.iaria.org/conferences2015/INFOCOMP15.html
Submission page: http://www.iaria.org/conferences2015/SubmitINFOCOMP15.html
EMPIRICAL MODELING 2015, The International Symposium on Empirical Modeling
General page: http://www.iaria.org/conferences2015/EMPIRICALMODELING.html
Submission page: http://www.iaria.org/conferences2015/EMPIRICALMODELING.html#SubmitAPaper
Events schedule: June 21 - 26, 2015 - Brussels, Belgium
Contributions:
- regular papers [in the proceedings, digital library]
- short papers (work in progress) [in the proceedings, digital library]
- ideas: two pages [in the proceedings, digital library]
- extended abstracts: two pages [in the proceedings, digital library]
- posters: two pages [in the proceedings, digital library]
- posters: slide only [slide-deck posted at www.iaria.org]
- presentations: slide only [slide-deck posted at www.iaria.org]
- demos: two pages [posted at www.iaria.org]
- doctoral forum submissions: [in the proceedings, digital library]
Proposals for:
- mini-symposia: see http://www.iaria.org/symposium.html
- workshops: see http://www.iaria.org/workshop.html
- tutorials: [slide-deck posed on www.iaria.org]
- panels: [slide-deck posed on www.iaria.org]
Submission deadline: February 11, 2015
Sponsored by IARIA, www.iaria.org
Extended versions of selected papers will be published in IARIA Journals: http://www.iariajournals.org
Print proceedings will be available via Curran Associates, Inc.: http://www.proceedings.com/9769.html
Articles will be archived in the free access ThinkMind Digital Library: http://www.thinkmind.org
The topics suggested by the conference can be discussed in term of concepts, state of the art, research, standards, implementations, running experiments, applications, and industrial case studies. Authors are invited to submit complete unpublished papers, which are not under review in any other conference or journal in the following, but not limited to, topic areas.
All tracks are open to both research and industry contributions, in terms of Regular papers, Posters, Work in progress, Technical/marketing/business presentations, Demos, Tutorials, and Panels.
Before submission, please check and comply with the editorial rules: http://www.iaria.org/editorialrules.html
INFOCOMP 2015 Topics (for topics and submission details: see CfP on the site)
Call for Papers: http://www.iaria.org/conferences2015/CfPINFOCOMP15.html
============================================================
Large scale and fast computation
Developments in information and computing systems; Grid computing; Cloud computing; Pervasive / ubiquitous computing; Services computing and Opportunistic computing; High Performance Computing (HPC); Fast data processing; Real-time processing; Fast switching and routing protocols; Parallelization of algorithms and applications; Energy-efficient High Performance Computing; Large scale data visualization; Tools for parallelization; Highly performance codes; Optimization; Innovative architectures; Distributed systems, dynamical systems; Future architectures, integrated systems, beyond cloud, reaching exaflop; Supercomputing architectures, operation, and management; Petascale, Exascale; Big data, dCache; HPC centers, data centers; Benchmarking; Green500, Graph500, Top500; Service provisioning; Green computing, cooling techniques
Programming models
Programming languages and parallel algorithms; Message Passing Interface (MPI), OpenMP; Massively Parallel Processing, Symmetric Multi-Processing; PGAS, GASPI, CAF (Co-array Fortran), UPC (Unified Parallel C); X10, Chapel, CUDA, OpenCL, OpenACC, OpenHMPP, Lime, OmpSs, OpenStream; Parallel Virtual Machine (PVM); Programming paradigms; Manycore, multicore; CPU, GPU, FPGA, accelerators; Chip design, architectures, and programming; Fault tolerance, troubleshooting, debugging; High end issues, latency, concurrency
Networks/systems communications
Cross-layer design and optimization; Cyber-physical systems and networks; Data centers, virtualization, and cloud networks; Delay/disruption tolerant networks; Future Internet broadband services; Software Defined Networks (SDN); Fast networks / InfiniBand architectures for future interactive multicore applications; Sensor networks and embedded systems; Ad hoc mobile networks; Access technologies; P2P networks; Optical networks; Cellular and broadband wireless networks; Mobility models and mobile networks; Multicast, broadcast and anycast; Multimedia protocols and networking; Software defined radio and cognitive radio networking; Content-based network service; Certification, public key infrastructures, data integrity; Privacy and anonymity
Networks/systems measurement, control and management
Networks/systems measurement, simulation and emulation; Network-, system-, and application-management; Congestion control and capacity planning; Dynamic spectrum management; Addressing and location management; Quality of Service (QoS) and Quality of Experience (QoE); Quality of Data (QoD) and Quality of Context (QoC); e-Commerce, accounting, pricing and billing; Highly parallel file systems, Lustre, GPFS; Interconnects, high speed ethernet; Use of distributed compute and storage resources; Energy-aware mechanisms for control and management; Configuration, reuse of software components; Resource allocation and management; Denial of service mitigation and prevention; System and data security; Communication visualization
Advanced applications
Scientific, theoretical, methodological, practical, and technical contributions; Advanced scientific computing; Simulation and modelling (scientific applications, engineering, industry); Mathematical and numerical algorithms and methods; Computer science and geoinformatics; e-Energy, geosciences, prospection, exploration, oil and gas; Mobility and logistic services; Geoscientific Information Systems (GIS); Remote sensing and satellite imaging; Cartography, hydrology; Climatology and environmental sciences; Molecular dynamics simulation; Genetic algorithms; Physics and chemistry applications; Medicine, genetics, epidemiology, medical geology; Multi-dimensional data visualization; Search engines and scientific discovery; Online social networking; Vehicular, underground and underwater networks and applications; Scientific data processing; Computation frameworks and tools; Mathematica, SAGE, Maple, Matlab, Scilab, Gromacs, ANSYS, Fluent, etc.); Database applications and develop!
ment; Information and database syst
ems; Education, e-Learning, and e-Science; ICT business evaluation and management; Legal informatics, Open Access, Science / Copyright, Patents; Earth and planetary sciences; Archaeology, cultural heritage; Knowledge discovery, documentation, and classification; Data intensive computing, data science; Methdodology and case studies regarding computing and communication scenarios; Small and Medium Enterprises (SME) applications; Computer Aided Engineering (CAE) applications
Evaluation context
Energy-aware and energy-efficient networks; Implementation and experimental testbeds; Traffic measurement and traffic patterns; Characterization of topology dynamics; Access and biometric technologies, performance, and cost prediction; Web services and performance; Performance measurement and benchmarking; Energy-aware and energy-efficient High Performance Computing; Usability studies; Social and ethic consequences with biometry and data security; Standards, benchmarks, protocols
Biometry, security, access technologies, algorithms, and applications
Technologies and advances in biometric algorithms and interfaces (gait, electrocardiography, iris, image, fingerprint, palm veins, multi-modality); Biometric systems; Integration of biometrics with other technologies; Challenge response; Simplified enrollment; NFC support, spoofing, and countermeasures; Single sign on (SSO); Adaptive trust; Template protection (protection of reference data); Large and scalable biometric systems using cloud services; Deployed solutions and applications; Experience reports and systems; Description in physical and logical access control; information system access, immigration and border control, law enforcement, entertainment, finance, life science, healthcare, forensics); Distributed and mobile devices; Public Key Infrastructures; Digital Forensics; Quantum cryptography theory and application for commercial usage; topology of information (braid group approach)
EMPIRICAL MODELING 2015 Topics (for topics and submission details: see CfP on the site)
CfP: http://www.iaria.org/conferences2015/EMPIRICALMODELING.html#CallForPapers
==========================
Empirical Modeling principles
Empirical Modeling applications (finance, health, online gaming, drugs design, environment, climate, buildings, urbanity, mobility, demography, oil and gas production, marketing, finance, etc.)
Empirically-derived analytic Models
Empirical Models for predictive analytics
Empirical Modeling for optimization
Empirical estimation of retention models
Empirical Model design and development challenges
Empirical data collection challenges
Richly structured Empirical Models
Verification and Validation of Empirical Models
Empirical evidence and Empirical discovery
Tools for Empirical Modeling
Languages and notations for Empirical Modeling
Programming aspects towards Empirical Modeling
Quality, Clarity, and Accuracy in Empirical Modeling
Empirical Modeling and statistical modeling approaches
Maintenance of Empirically derived Models
Cost-effectiveness of Empirical Models
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INFOCOMP 2015 Committee: http://www.iaria.org/conferences2015/ComINFOCOMP15.html
EMPIRICAL MODELING 2015 Committee: http://www.iaria.org/conferences2015/EMPIRICALMODELING.html#Committees
================
Jan. 22, 2015
Invitation to submit an original research article or review
by Fabio M Simoes de Souza
CALL FOR PAPERS
EUROPEAN JOURNAL OF BIOPHYSICS
ISSN: 2329-1745 (Print)
ISSN: 2329-1737 (Online)
SPECIAL ISSUE ON "RECENT ADVANCES IN MODELING CELLS, CELLULAR
COMPARTMENTS AND SIGNALING NETWORKS AS A TOOL TO UNDERSTAND THE NERVOUS
SYSTEM"
AIMS AND SCOPE:
In the last two decades, the progress in molecular biology and
associated areas promoted a large accumulation of structural and
molecular data about the nervous system. Almost simultaneously with
that, fields such as Computational Neuroscience and Systems Biology have
emerged with the aim to obtain a system-level understanding about the
nervous systems through the development of computational models based on
experimental data. Today, both fields are consolidated areas of research
and have given valuable contributions to our knowledge of processes such
as electrical integration, calcium dynamics, synaptic plasticity,
sensory transduction, pathologies, among many others. In this special
volume, we want to highlight some of the recent contributions of both
computational neuroscience and systems biology to Neuroscience
especially through the development and analysis of computational models
of cells, cellular compartments and signaling networks. These types of
models are powerful tools to investigate the physiological and molecular
dynamics of neurons with a large range of spatial and temporal
resolutions. Therefore, in this special volume, our intent is to select
bleeding edge contributions focused on the gather works that will cover
simulations of signaling networks and signal transduction solved
deterministically or stochastically; the interaction between signaling
networks and the regulation of ionic channels through covalent
modifications such as phosphorylation; the impact of neuronal geometries
on signaling networks and on cellular electrical integration. Thus, we
have the expectation that this special volume will be of interest to
both the people working in the fields on Computational Neuroscience and
Systems Biology, and to experimental biophysicists that will have the
opportunity to get an overall view of the main topics that have been
investigated with computational models of cells and signaling networks.
TOPICS OF INTEREST include (but are not limited to):
• Synaptic Plasticity
• Sensory Transduction
• Calcium Dynamics
• Electrical Integration
• Stochastic Processes
• Signaling pathways in 3D compartments
• Pathological Processes
• Software/Algorithms
SUBMISSION PROCESS
Enjoy a fast reviewing and publication process in an open access
journal! The manuscripts are published one by one in the special issue
once the manuscript has been accepted.
All manuscripts should be submitted via SciencePG online system or
through Lead Guest Editor that can help you to submit the manuscript.
You have to create an account and login in the system at:
http://www.sciencepublishinggroup.com/login.aspx
Step 1) Submit to Special Issue. Choose Recent Advances in Modeling
Cells, Cellular Compartments and Signaling Networks as a Tool to
Understand the Nervous System. Journal Title: European Jounral of
Biophysics.
Step 2) Fill in Manuscript Information
Step 3) Fill in Author(s) Information
Step 4) Fill in Reviewer(s) Information
Author guidelines can be found at:
http://www.sciencepublishinggroup.com/journal/papersubmission.aspx?journali…
IMPORTANT DATES
30 May, 2015: Submission of Manuscripts
July, 2015: Publication time
LEAD GUEST EDITOR
Prof. Dr. Fabio Marques Simoes de Souza,
Federal University of ABC, Sao Bernardo do Campo, SP, Brazil
Email: fabio.souza(a)ufabc.edu.br
GUEST EDITORS
Prof. Dr. Antonio C. Roque
University of Sao Paulo, Ribeirao Preto, SP, Brazil
Email: antonior(a)ffclrp.usp.br
Dr. Gabriela Antunes
University of Sao Paulo, Ribeirao Preto, SP, Brazil
Dr. Rodrigo F. Oliveira
Champalimaud Neuroscience Program, Lisbon, Portugal
Email: rodrigo.oliveira(a)neuro.fchampalimaud.org
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A PDF copy of the CFP is attached with this email for forwarding to
interested colleagues. The CFP is also also available at:
http://www.sciencepublishinggroup.com/specialissue/117002
For more information on Eur J Biophys, please see:
http://www.sciencepublishinggroup.com/journal/archive.aspx?journalid=117&is…
Jan. 21, 2015