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- 7443 messages
Open position in Juelich, Germany: Koordinator Software Development
by Martina Reske
Das Forschungszentrum Jülich betreibt interdisziplinäre Spitzenforschung und stellt sich drängenden Fragen der Gegenwart. Es leistet Beiträge zur Lösung großer gesellschaftlicher Herausforderungen in den Bereichen Energie und Umwelt sowie Information und Gehirn. Mit mehr als 5.500 Mitarbeiterinnen und Mitarbeitern gehört es als Mitglied der Helmholtz-Gemeinschaft zu den großen interdisziplinären Forschungszentren Europas. Das Supercomputing Centre, als Standort eines der leistungsfähigsten Rechner, übernimmt eine führende Rolle in der europäischen Exascale Strategie. Das Institut für Neurowissenschaften und Medizin (INM) erforscht im Rahmen des Programms “Decoding the Human Brain” die Organisation des menschlichen Gehirns auf seinen verschiedenen räumlichen und zeitlichen Skalen. Die moderne neurowissenschaftliche Grundlagenforschung erfordert Modellierung und Simulation auf Hochleistungsrechnern, um der Komplexität des Gehirns zu begegnen und Einsicht in seine Arbeitsweise zu gewinnen. Das entstehende Wissen ermöglicht dann die Translation in die klinische Anwendung, um neurologische und mentale Erkrankungen besser zu verstehen, zu diagnostizieren und zu therapieren – Aufgaben, die in einer älter werdenden Gesellschaft von höchster Bedeutung sind. Darüber hinaus werden aber auch Impulse für neue Rechnergenerationen und deren Betrieb gegeben. Das INM-6, Computational and Systems Neuroscience, erstellt mathematische Modelle der Dynamik und Funktion neuronaler Schaltkreise. Dazu gehören die modellgetriebene Analyse der Aktivität und Struktur des Gehirns sowie die Simulation biologisch realistischer Modelle. Die Entwicklung entsprechender Simulationstechnologie und Analysewerkzeuge ist eine wesentliche Komponente der Forschung. Das INM-6 entwickelt zusammen mit seinen Partnern in einem Open Source Ansatz den führenden Code für Simulationen auf der Gehirnskala mit der Auflösung von Nervenzellen (NEST), ist gleichzeitig Teil des Institute of Advanced Simulation (IAS-6, Theoretical Neuroscience) und beherbergt die Coordination Site (BCOS) des nationalen Bernstein Network Computational Neuroscience.
Verstärken Sie diesen Bereich als Koordinator Software Entwicklung (w/m)
Ihre Aufgaben:
* Koordination der Roadmap und der Releases der Simulations-Software NEST
* regelmäßige Vorbereitung von und Teilnahme an Koordinierungstreffen und Videokonferenzen zusammen mit oder in Vertretung der Institutsleitung
* direkte Betreuung von Wissenschaftlerinnen/Wissenschaftlern und Doktorandinnen/Doktoranden in Bezug auf Software-Entwicklung
* Erstellen von Projektberichten und Anträgen
* Repräsentation der Simulations-Software auf internationalen Tagungen
* Beteiligung an der Weiterentwicklung von Programmen zur Analyse neuronaler Vielkanaldaten
* Vertretung des Koordinators Wissenschaftliches Rechnen
Ihr Profil:
* ein abgeschlossenes Hochschulstudium der Informatik, Mathematik oder Physik
* tiefe Kenntnisse/Erfahrungen in C und C++, Python sowie parallelem und verteiltem Rechnen
* Fähigkeit und Bereitschaft zu eigenverantwortlichem Handeln, Führungsfähigkeit
* Fähigkeit und Bereitschaft selbstständig Projektberichte abzufassen
* Erfahrung im Projekt- und Qualitätsmanagement
* neurowissenschaftliche Grundkenntnisse, insbesondere neuronaler Dynamik sind von Vorteil
* sicheres Auftreten und Kommunikationsvermögen sowie ausgeprägte Fähigkeit zur kooperativen Zusammenarbeit in einer interdisziplinären Arbeitsumgebung
* hohe soziale Kompetenz und Fähigkeit zur kooperativen Zusammenarbeit im Team
* Bereitschaft zu Reisen
* strukturierte und systematische Arbeitsweise
* überdurchschnittliches mündliches und schriftliches Kommunikationsvermögen in deutscher und englischer Sprache
Unser Angebot:
* Integration in ein interdisziplinäres und internationales Institut
* Arbeit in einem kreativen Team mit internationaler Perspektive
* Zugang zu modernsten Supercomputern und neuromorpher Hardware
* die Möglichkeit, Design-Entscheidungen in einem großen Software-Projekt wesentlich mitzubestimmen und zu prägen
* enge Zusammenarbeit mit dem Jülich Supercomputing Centre (JSC) und seiner Exascale Strategie insbesondere dem Simulation Laboratory Neuroscience
* hohe Sichtbarkeit durch Vertretung der Institutsleitung bei internationalen Projekttreffen
* Beteiligung an Publikationen in der Spitzenforschung zur Simulationstechnologie
* Arbeit auf Weltniveau an der Grenze zwischen Neurowissenschaft und Technologie an den komplexesten bekannten Systemen
* ein grüner wachsender Campus mit den besten weltweit verfügbaren wissenschaftlichen Einrichtungen, nahe den kulturellen Zentren Köln, Düsseldorf und Aachen
* eine zunächst auf 2 Jahre befristete Stelle mit der Möglichkeit einer längerfristigen Perspektive
* Vergütung und Sozialleistungen nach dem Tarifvertrag des öffentlichen Dienstes (TVöD-Bund)
Das Forschungszentrum Jülich möchte mehr Mitarbeiterinnen in diesem Bereich beschäftigen. Wir sind daher an der Bewerbung von Frauen besonders interessiert. Bewerbungen schwerbehinderter Menschen sind uns willkommen.
Wir freuen uns auf Ihre Bewerbung, möglichst über unser Online-Bewerbungssystemhttp://www.fz-juelich.de/SharedDocs/Stellenangebote/_common/dna/2015-126-DE-INM-6.html?nn=363560 bis zum 07.07.15 unter Angabe der Kennziffer 2015-126.
--
Dr. Martina Reske
Scientific Coordinator
Institute of Neuroscience and Medicine (INM-6)
Computational and Systems Neuroscience &
Institute for Advanced Simulation (IAS-6)
Theoretical Neuroscience
Jülich Research Centre and JARA
Jülich, Germany
Work +49.2461.611916
Work Cell +49.151.26156918
Fax +49.2461.619460
www.csn.fz-juelich.de<http://www.csn.fz-juelich.de>
------------------------------------------------------------------------------------------------
------------------------------------------------------------------------------------------------
Forschungszentrum Juelich GmbH
52425 Juelich
Sitz der Gesellschaft: Juelich
Eingetragen im Handelsregister des Amtsgerichts Dueren Nr. HR B 3498
Vorsitzender des Aufsichtsrats: MinDir Dr. Karl Eugen Huthmacher
Geschaeftsfuehrung: Prof. Dr.-Ing. Wolfgang Marquardt (Vorsitzender),
Karsten Beneke (stellv. Vorsitzender), Prof. Dr.-Ing. Harald Bolt,
Prof. Dr. Sebastian M. Schmidt
------------------------------------------------------------------------------------------------
------------------------------------------------------------------------------------------------
June 17, 2015
Postdoctoral Position in Computational Neuroscience at IUPUI
by Yaroslav Molkov
A postdoctoral/research associate position in computational neuroscience
for the duration of up to two years is available in the externally funded
project focusing on multiscale computational modeling of motor control
mechanisms, involving interactions between basal ganglia, thalamus,
cerebellum, cortex, and spinal cord in connection with realistic simulation
of pathological changes in motor control during Huntington’s disease. This
collaborative project is performed jointly by the groups of Drs. Ilya Rybak
(Dept. of Neurobiology and Anatomy, Drexel University, Philadelphia, PA,
USA) and Yaroslav Molkov (Dept. of Mathematical Science, Indiana University
– Purdue University, Indianapolis, IN, USA).
Applicants must have a PhD degree in Neuroscience, Applied Mathematics,
Physics, or a related discipline, a strong research record, and excellent
C++ programming skills. Previous experience in computational neuronal
modeling is a plus.
Interested candidates are encouraged to contact Dr. Molkov (
ymolkov(a)iupui.edu) by email. To apply, please send an email along with (1)
curriculum vitae; (2) a cover letter describing previous research
experience and interests; (3) the names and contact information of three
references.
=================================
Yaroslav Molkov, Ph.D.
Assistant Professor
Indiana University - Purdue University at Indianapolis
Department of Mathematical Sciences
402 N. Blackford St, LD 270, Indianapolis, IN 46202
Office: LD 224U
Phone: (317) 274-6934
Fax: (317) 274-3460
Email: ymolkov(a)iupui.edu
June 17, 2015
Postdoctoral position in computational neuroscience
by Maxim Bazhenov
Applications are invited for post-doctoral research positions in the
laboratory of Dr. Maxim Bazhenov at the University of California,
Riverside to study role of sleep in memory and learning. This
computational neuroscience project involves close collaboration with
several experimental laboratories. The ultimate goal of this work is to
understand how the interaction among brain areas during different stages
of sleep leads to consolidation of memory for recent learning.
The successful candidate will be responsible for the design of the
anatomically realistic brain network models based on existing
experimental data. These models will be used to understand network
dynamics that are involved in the processes of memory consolidation, as
well as guide data analysis and produce novel experimental predictions.
Qualified applicants are expected to have experience in
computational/theoretical neuroscience and neural modeling. Programming
experience with C/C++ is required. Knowledge of PYTHON or MATLAB is a plus.
The University of California offers excellent benefits. Salary is based
on research experience. The initial appointment is for 1 year with a
possibility of extension. Applicants should send a brief statement of
research interests, a CV and the names of three references to Maxim
Bazhenov at maksim.bazhenov(a)ucr.edu
--
Maxim Bazhenov, Ph.D.
Professor, Cell Biology and Neuroscience
University of California
Riverside, CA 92521
Ph: 951-827-4370
http://biocluster.ucr.edu/~mbazhenov/
June 16, 2015
PhD in computational neuroscience, Zurich
by Jean-Pascal Pfister
Applications are invited for one PhD student position at the Institute of Neuroinformatics (ETHZ, UZH) in Zurich. The position is funded by the Swiss National Science Foundation grant entitled "Inference and Learning with Spiking Neurons". The PhD student will be supervised by Jean-Pascal Pfister in the Theoretical Neuroscience Group.
There are several lines of evidence indicating that the human brain performs near Bayesian optimal inference in a wide range of tasks, but it remains unclear how this inference can be implemented in the brain. The aim of the project is to determine how Bayesian inference and learning can be implemented at the level of neurons and synapses.
The Institute of Neuroinformatics in Zurich (which is a joint institute belonging to both the Swiss Federal Institute of Technology (ETHZ) and the University of Zurich) offers an ideal environment for studying Computational Neuroscience due to the presence of multiple theoretical and experimental labs.
The candidate should hold a Diplom/Master degree in Physics, Mathematics, Machine learning, Computational Neuroscience or a related field. He/she should have a very strong mathematical background, good programming skills and interests in theoretical neuroscience.
The position is offered for a period of three years, starting before the 1st of September 2015. Salary scale is provided by the Swiss National Science Foundation (www.snf.ch)
The applicant should submit (by email) a CV, a statement of research interests, 2 reference letters, marks obtained for the Diploma/Master, abstract of the Diploma/Master to Jean-Pascal Pfister (jpfister(a)ini.uzh.ch)
Deadline for application is 15th of July 2015 or until the position is filled.
Jean-Pascal Pfister
---------------------------------
Prof. Jean-Pascal Pfister
Theoretical Neuroscience Group
Institute of Neuroinformatics
University of Zurich and ETH Zurich
Winterthurerstrasse 190
8057 Zurich, Switzerland
www.ini.uzh.ch/~jpfister <http://www.ini.uzh.ch/~jpfister>
Tel: +41 44 635 30 79
June 16, 2015
PhD/Postdoc positions for neural processor project NPP
by Michael Pfeiffer
We have a number of available PhD and postdoc positions available now
for the Neuromorphic Processor Project (NPP). NPP is a 3 year project
that started 1 May 2015. NPP will develop theory, architectures, and
FPGA implementations targeting specific applications of deep neural
network technology in vision and audition. Deep learning has become the
state-of-the-art machine learning approach for sensory processing
applications, and this project aims towards real-time, low-power,
brain-inspired solutions targeted at full-custom SoC integration. A
particular aim of the NPP is to develop efficient data-driven deep
neural network architectures that can enable always-on operation on
battery-powered mobile devices in conjunction with event-driven sensors.
PhD and postdoc positions are available now in theory, hardware
architectures, and applications of these networks.
For the theory part of the project we are specifically looking for PhD
candidates with experience in deep neural networks and/or spiking neural
networks, or deep learning applications in vision and audition.
The project team includes academic partners in the USA, Canada, and
Spain. The project is coordinated by the Institute of Neuroinformatics
(INI) at the University of Zurich and ETH Zurich (www.ini.uzh.ch ). INI
is a joint institute of the University of Zurich and ETH Zurich and has
been cited in IEEE Spectrum and Scientific American as one of the
world’s leading organizations in the development of neuromorphic sensing
and computing technology. The lead NPP PI is Prof. Tobi Delbruck. Other
NPP PIs at INI are Dr. Shih-Chii Liu, Dr. Michael Pfeiffer, and Prof.
Giacomo Indiveri.
Please see
https://docs.google.com/document/d/1MLoZRAYu_--ZH2ORIoqLPLzJs2spXRM0kO2A2QZ…
for more details and information on how to apply.
Best regards,
Michael Pfeiffer, Tobi Delbruck, Shih-Chii Liu, and Giacomo Indiveri
--
=========================================
Dr. Michael Pfeiffer
Group leader, 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/
=========================================
June 15, 2015
4th Edition of Complex Systems Primer available
by Claudius Gros
Dear Colleagues,
It is a pleasure to announce the availability of the
4th edition of the textbook
Complex and Adaptive Dynamical Systems: A Primer
(Springer Complexity, Softcover)
ISBN: 978-3-319-16264-5 (Print) 978-3-319-16265-2 (Online)
by Claudius Gros
Complex and adaptive dynamical systems are ubiquitous and
the brain constitutes a prominent example. The goal of this
book is to provide a general entry point to complex and
dynamical systems based on network architectures.
-------------------------------------------------------
cover-text:
----------
This primer offers an introduction to the central concepts at
the basis of our modern understanding of complex and emergent
behavior, together with a detailed coverage of the mathematical
methods. All calculations are presented step by step and are
straightforward to follow.
This new forth edition is fully reorganized and comes with new
chapters, figures and exercises. The core of modern complex system
sciences are presented in the first chapters, covering network theory,
dynamical systems, bifurcation and catastrophe theory, chaos and
adaptive processes together with the principle of self-organization
in reaction-diffusion systems and social animals.
Modern information theoretical principles are treated in further
chapters, together with the concept of self-organized criticality,
gene regulation networks, hypercycles and coevolutionary avalanches,
synchronization phenomena, absorbing phase transitions and the
cognitive system approach to the brain. Technical course
prerequisites are the standard mathematical tools for an advanced
undergraduate course in the natural sciences or engineering. Each
chapter comes with exercises and suggestions for further reading,
with the solutions to the exercises being provided in the last
chapter.
-------------------------------------------------------
content:
--------
* Chapter 1: Graph Theory and Small-World Networks
* Chapter 2: Bifurcations and Chaos in Dynamical Systems
* Chapter 3: Dissipation, Noise and Adaptive Systems
* Chapter 4: Self Organization and Pattern Formation
* Chapter 5: Complexity and Information Theory
* Chapter 6: Cellular Automata and Self-Organized Criticality
* Chapter 7: Random Boolean Networks
* Chapter 8: Darwinian Evolution, Hypercycles and Game Theory
* Chapter 9: Synchronization Phenomena
* Chapter 10: Elements of Cognitive System Theory
* Chapter 11: Solutions to the exercises
-------------------------------------------------------
Sincerely,
Claudius Gros
*****************************************
*** Prof. Dr. Claudius Gros ***
*** +49 (0)69 798 47818 ***
*** http://itp.uni-frankfurt.de/~gros ***
*****************************************
-----------------------------------------------------------
--- Complex and Adaptive Dynamical Systems, A Primer ---
--- A graduate-level textbook, Springer (2008/10/13/15) ---
-----------------------------------------------------------
June 15, 2015
Interdisciplinary PhD Position in Computational Neuroscience of Vision: Active Efficient Coding (AEC)
by Jochen Triesch
Apologies for cross posting. Please forward to interested students.
We have an open PhD student position in my lab (http://fias.uni-frankfurt.de/de/neuro/triesch) at the Frankfurt Institute for Advanced Studies (FIAS) in Frankfurt, Germany to explore the new area of active efficient coding (AEC), a recently formulated generalization of the efficient coding hypothesis to active perception.
The basic idea of AEC is that sensory systems learn to use their motor degrees of freedom to contribute to the efficient encoding of sensory signals. Along these lines, we have developed computational models for the self-calibration of active stereo and motion vision [1,2,3]. These models simultaneously learn a sensory representation with sparse coding approaches and controllers for their eye movements through reinforcement learning. Both learning components aim to maximize the overall coding efficiency of the system, which leads to fully self-calibrating sensory-motor loops for active stereo vision (dispartiy tuning and vergence control) and motion vision (motion tuning and pursuit movements). To the best of our knowledge, these models are the first ever to demonstrate how such self-calibration can emerge from a generic efficient coding objective. We have also validated the approach on robots such as the iCub (http://www.icub.org)
The work will be performed in a stimulating interdisciplinary environment with ample opportunities for collaboration with neuromorphic engineers, neuroscientists, roboticists, psychologists, and clinicians across the globe. Possible research directions include better understanding how and why such self-calibration can go awry in clinical conditions such as strabism and amblyopia, implementations on neuromorphic hardware and many others.
We are seeking an outstanding and highly motivated PhD student for this project. Applicants should have obtained a Masters degree (or equivalent) in Computational Neuroscience or a related field. The ideal candidate will have excellent programming skills (Matlab, Python, C/C++), very good analytic skills, and a broad knowledge of computational neuroscience, machine learning, computer vision, robotics, signal processing and statistics. Furthermore, specific expertise in visual neuroscience, information theory, sparse coding models, and reinforcement learning are desirable. Experience with programming Graphics Processing Units (GPUs) would be a plus. The position can be filled immediately.
The Frankfurt Institute for Advanced Studies is a research institution dedicated to fundamental theoretical research in various areas of science. It is embedded into Frankfurt's recently established natural science research campus. Frankfurt itself is the hub of one of the most vibrant metropolitan areas in Europe. It boasts a rich culture and arts community and repeatedly earns highest rankings in worldwide surveys of quality of living.
Applications should include a statement of research interests, CV and contact information for at least two references. Send applications to application(a)fias.uni-frankfurt.de. Review of applications will begin immediately.
[1] A Unified Model of the Joint Development of Disparity Selectivity and Vergence Control. Zhao Y, Rothkopf CA, Triesch J, Shi B. IEEE Int. Conf. on Development and Learning and Epigenetic Robotics (ICDL), 2012. (Paper of excellence award.)
http://ieeexplore.ieee.org/xpl/articleDetails.jsp?tp=&arnumber=6400876
[2] Robust active binocular vision through intrinsically motivated learning
L. Lonini, S. Forestier, C. Teulière, Y. Zhao, B. Shi, J. Triesch, frontiers in Neurorobotics, 2013.
http://journal.frontiersin.org/article/10.3389/fnbot.2013.00020/full
[3] Self-calibrating smooth pursuit through active efficient coding
C. Teulière, S. Forestier, L. Lonini, C. Zhang, Y. Zhao, B. Shi, J. Triesch, Robotics and Autonomous Systems, 2014
http://www.sciencedirect.com/science/article/pii/S0921889014002486
--
Prof. Dr. Jochen Triesch
Johanna Quandt Research Professor
Frankfurt Institute for Advanced Studies
http://fias.uni-frankfurt.de/~triesch/
Tel: +49 (0)69 798-47531
Fax: +49 (0)69 798-47611
June 14, 2015
CFP: The First International Workshop on Computational Models of the Visual Cortex (CMVC) as part of the BICT, New York, 3-5 Dec 2015
by George Azzopardi
Dear All,
We are pleased to announce The First International Workshop on Computational Models of the Visual Cortex (CMVC) as part of the BICT (Bio-inspired Information and Communication Technologies) conference, which will be held in New York City, New York, 3-5 December (http://bionetics.org/2015/show/home)
Background
Much has been advanced since the early works of the Nobel prize winners Hubel and Wiesel about the function of neurons in the primary visual cortex of cats’ brains. That work has been the source of inspiration of abundant neurophysiological studies to unveil the functionality of neurons in different areas of visual cortex. These experiments resulted in large amounts of data, which could then be used to design computational models to behave similarly to certain neurons in visual cortex. The contribution of such models is two-fold. They contribute to the better understanding of how visual information is processed in the brain, and they also contribute for the development of more robust algorithms in computer vision applications.
The aim of this workshop is to bring together recent development of computational modelling of the visual cortex of the brain:
Single cell modeling.
Hierarchy of visual cortex areas
Feedforward, feedback and inhibitory mechanisms.
The appearance of neuronal properties: sparsity and selectivity.
Circuitry: hierarchical representations and connections between layers.
Selecting where to look: saliency and attention.
Object recognition
Contour detection
Stereo
Learning
Important Dates
Full papers due: July 31, 2015
Authors Notified: August 31, 2015
Camera-ready due: September 30, 2015
Paper submission
We invite you to submit regular papers (up to 8 pages each), short papers (up to 4 pages each) or poster/demo papers (up to 2 pages each) in ACM's paper template. Up to two extra pages are allowed for each paper with extra page charges. See http://bionetics.org/2015/show/initial-submission for more details.
Paper Submission Only PDF format is acceptable. Papers must be submitted to EasyChair: https://easychair.org/conferences/?conf=cmvc2015
For more information about the CMVC workshop please visit: http://cmvc.bionetics.org/2015/show/home
Sincerely yours,
Antonio Rodriguez-Sanchez, PhD
George Azzopardi, PhD
Co-chairs of CMVC’2015
June 13, 2015
CFP: 3rd International Workshop on Smart Sensor Protocols and Algorithms (SSPA 2015) - Munich, Germany, October 5-7, 2015
by Sandra Sendra
[Please accept our apologies if you receive multiple copies of this email]
*********************** CFP *******************************
3rd International Workshop on Smart Sensor Protocols and Algorithms (SSPA 2015)
http://jlloret.webs.upv.es/sspa2015/
in conjunction with The 8th IFIP Wireless and Mobile Networking Conference (WMNC' 15)
Munich, Germany, October 5-7, 2015.
http://www.wmnc2015.com/
SCOPE:
Smart Sensor protocols and algorithms make use of several methods and techniques (such as machine learning techniques, decision making techniques, knowledge representation, network optimization, problem solution techniques, and so on), to establish communication between network devices. They can be used to perceive the network conditions, or the user behavior, in order to dynamically plan, adapt, decide, take the appropriate actions, and learn from the consequences of their actions. The algorithms can make use of the information gathered from the protocol in order to sense the environment, plan actions according to the input, take consciousness of what is happening in the environment, and take the appropriate decisions using a reasoning engine. Goals such as decide which scenario fits best its end-to-end purpose, or environment prediction, can be achieved with smart protocols and algorithms. Moreover, they could learn from the past and use this knowledge to improve future de!
cisions.
In this workshop, researchers are encouraged to submit papers focused on the design, development, analysis or optimization of smart sensor protocols or algorithms at any communication layer. Algorithms and protocols based on artificial intelligence techniques for network management, network monitoring, quality of service enhancement, performance optimization and network secure are included in the workshop.
This conference edition once again targets to gather researchers from academia and industrial sectors to present analytical research, simulations, practical results, position papers addressing the pros and cons of specific proposals, and advances in sensor protocols and algorithms. The topics suggested by the conference can be discussed in term of concepts, state of the art, standards, deployments, implementations, running experiments and applications.
TOPICS OF INTEREST:
Authors are invited to submit complete unpublished papers, which are not under review in any other conference or journal, including, but are not limited to, the following topic areas:
- Reasoning and learning techniques for sensing environment pollution
- Smart route prediction in vehicular sensor networks
- Smart data aggregation in vehicular sensor networks
- Smart multimedia network protocols and algorithms for WSNs
- Application layer, transport layer and network layer cognitive protocols
- Cognitive radio network protocols and algorithms
- Automatic protocols and algorithms for environment prediction
- Algorithms and protocols to predict data network states
- Intelligent synchronization techniques for sensor network protocols and algorithms
- Smart sensor protocols and algorithms for e-health
- Software applications for smart algorithms design and development in WSNs
- Dynamic protocols based on the perception of their performance
- Smart protocols and algorithms for Smartgrids
- Protocols and algorithms focused on building conclusions for taking the appropriate actions
- Smart Automatic and self-autonomous WSNs
- Artificial intelligence applied in protocols and algorithms for WSNs
- Smart security protocols and algorithms in WSNs
- Smart cryptographic algorithms for communication in WSNs
- Artificial intelligence applied to power efficiency and energy saving protocols and algorithms
- Smart routing and switching protocols and algorithms in WSNs
- Cognitive protocol and algorithm models for saving communication costs
- Any kind of intelligent technique applied to QoS, content delivery, network Monitoring and network mobility management
- Smart cooperative protocols and algorithms WSNs
- Problem recognition and problem solving protocols for WSNs
- Genetic algorithms, fuzzy logic and neural networks applied to WSNs
IMPORTANT DATES:
Submission deadline: 17th of July 2015
Author notification: 14th of August 2015
Camera-ready version: 27th of August 2015
Workshop Dates: 5-7th of October 2015
SUBMISSION GUIDELINES:
Authors are invited to submit original and unpublished papers. Papers presenting original and unpublished work are invited and will be evaluated based on originality, significance, technical soundness, and clarity of exposition.
All submissions should be written in English. Authors guidelines can be found at:
http://jlloret.webs.upv.es/sspa2015/cfp.html
The IEEE LaTeX and Microsoft Word templates, as well as related information, can be found at:
http://www.ieee.org/portal/pages/pubs/transactions/stylesheets.html.
Only PDF files will be accepted for the review process and all submissions must be done through EDAS. To submit a paper, please click on the following link:
https://edas.info/newPaper.php?c=19893&track=71089
SPECIAL ISSUES:
The extended version of selected papers will be invited to submit to a Special Issue on Smart Protocols and Algorithms in the International Journal Network Protocols and Algorithms (1943-3581). Network Protocols and Algorithms is an online international journal, peer-reviewed, indexed by many prestigious data bases and published by Macrothink Institute.
COMMITTEES:
General Chairs
Jaime Lloret Mauri, Universitat Polit�cnica Val�ncia, Spain
TPC Chairs
Miguel Garcia Pineda, Universidad de Valencia, Spain
Sandra Sendra, Unviversitat Politecnica de Valencia, Spain
Web Chair
Alejandro C�novas Solbes, Universitat Polit�cnica Val�ncia, Spain
June 13, 2015
Tentative program now available for IWSP7: Epilepsy Mechanisms, Models, Prediction & Control
by Levin Kuhlmann
The tentative full program of talks and events for the 7th International Workshop on Seizure Prediction (IWSP7: Epilepsy Mechanisms, Models, Prediction & Control; at Melbourne, Australia; 3-6 August 2015) is now available for download at the following link:
http://www.iwsp7.org/program/IWSP7_MEMBC15_Tentative_Program.pdf
At a glance, the first day on Monday August 3 will be an educational day, giving people an opportunity to learn more about epilepsy from the perspectives of the different disciplines of science, engineering & medicine. On the first night there will be a networking reception and the poster session. The next two days will involve a full schedule of talks with the conference dinner on the night of Tuesday August 4. On Thursday August 6 there will be an overlap day between IWSP7 and the Melbourne Epilepsy meeting (ME@MBC'15 - which brings together the best of Melbourne Epilepsy research). IWSP7 registrants will also have the option to freely participate in the ME@MBC'15 events including its second day on the morning of Friday August 7. A final full program for IWSP7 including abstracts will be available soon.
Don't forget to register for IWSP7 before the early bird deadline of 30th June 2015 and save! Go to www.iwsp7.org<http://www.iwsp7.org> to register.
More details on the conference are provided below.
The 7th International Workshop on Seizure Prediction (IWSP7: Epilepsy Mechanisms, Models, Prediction & Control) will bring together world leading epileptologists, engineers, physicists, mathematicians, neurosurgeons and neuroscientists to focus on epilepsy research in Melbourne Australia from 3-6 August 2015.
Invited Speakers
Catalina Alvarado-Rojas, Pontificia Universidad Javeriana, Colombia (Cross-frequency coupling and seizure prediction)
Samuel Berkovic, University of Melbourne, Australia (Genetics and individual-specific nature of epilepsy)
Sydney Cash, Massachusetts General Hospital, Harvard Medical School, USA (Cortical physiology and epilepsy)
Antonio Dourado, University of Coimbra, Portugal (Seizure Prediction and the EPILEPSIAE project)
Bin He, University of Minnesota, USA (EEG-based imaging to localise seizure and high frequency activity)
Louis Lemieux, University College London, UK (Multi-modal imaging of human epileptic zone and networks)
Liset Menendez de la Prida, Instituto Cajal - CSIC, Spain (Sources of functional heterogeneity in the cellular activity of hippocampal microcircuits in temporal lobe epilepsy)
Martha Morrell, Stanford University, Neuropace, USA (Responsive seizure control and its clinical implications)
Philippe Ryvlin, Lyon University, France (Vagal nerve stimulation and seizure prediction)
Bjoern Schelter, University of Aberdeen, UK (Recent advances in data-based modelling and their role in epilepsy research)
Steven Schiff, Penn State University, USA (Unification of spikes, seizures and spreading depression)
Piotr Suffczynski, University of Warsaw, Poland (Modelling of neuronal and ionic dynamics during ictogenesis)
John Terry, University of Exeter, UK (Modelling multiscale brain networks: seizure initiation, evolution and prediction)
Gregory Worrell, Mayo Clinic, USA (Forecasting epileptic seizures in dogs)
Abstract submission is now Closed.
Early bird registration: full: AU$465; Student/Early Career Researcher: AU$165.
Early bird registration deadline: 30th June 2015.
Standard registration: full: AU$565; Student/Early Career Researcher: AU$265.
44 generous travel stipends have been awarded to participants submitting the best abstracts as determined by the IWSP7 Scientific Advisory Board.
General topics covered: seizure prediction, detection and control; seizure mechanisms, animal models and human neurophysiology; neuroimaging of epilepsy/seizure localisation; computational modelling of epilepsy; epilepsy networks; high frequency oscillations; model-based estimation, statistical signal processing or control theory applied to epilepsy.
For information on the tentative conference program, and how to register visit: http://www.iwsp7.org
Please forward this notice to anyone that you think might be interested.
We would also like to draw your attention to two partner events:
Melbourne Epilepsy which brings together Melbourne's best epilepsy researchers and will overlap at the same venue with IWSP7 on August 6th, and finish by 1pm on August 7th. Attendance is free for IWSP7 registrants.
Swinburne Brain Imaging Symposium 2015: Principles and Applications of Magnetoencephalography is a meeting on MEG and neuroimaging occurring in Melbourne in the week preceding IWSP7 from June 29-30 2015. http://www.research.swinburne.edu.au/our-research/events/neuroimaging-sympo…
We look forward to seeing you at IWSP7!
On behalf of the local organizing committee
Levin Kuhlmann, PhD
David B. Grayden, PhD
Mark J. Cook, MD
Anthony N. Burkitt, PhD
Dean R. Freestone, PhD
Tatiana Kameneva, PhD
Alan Lai, PhD
Elma O'Sullivan-Greene, PhD
Andre Peterson, BSc (hons)
Email: organizingcommittee(a)iwsp7.org<mailto:organizingcommittee@iwsp7.org>
June 13, 2015