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- 28 participants
- 7413 messages
[journals] CfP : Special Issue on Continual Unsupervised Sensorimotor Learning
by Nguyen, Sao Mai
Dear Colleagues,
IEEE Transactions on Cognitive and Developmental Systems is currently
running a Special Issue entitled " Continual Unsupervised Sensorimotor
Learning" :
http://projects.au.dk/socialrobotics/news-events/show/artikel/special-issue…
We would like to invite you to prepare a research article or a
comprehensive review to be published in
this special issue.
AIM AND SCOPE
Although machine learning algorithms continue to improve at a rapid
pace enabling technologies and products such as autonomous driving
cars and sophisticated image and speech recognition, it is often
forgotten that these applications represent tailored solutions to
specific tasks. Thus it is not clear if or how these autonomous
systems can pave the road to general purpose machines envisioned by
many.
The pursuit for higher levels of autonomy and versatility in robotics
is arguably lead by two main factors. Firstly, as we push robots out
of the labs and productions lines, it becomes increasingly difficult
to design for all possible scenarios that a particular robot might
encounter. Secondly, the cost of designing, manufacturing, and
maintaining such systems becomes prohibitive.
As the algorithms for learning single tasks in restricted environments
are improving, new challenges have gained relevance in order to get
more autonomous artificial systems. These challenges include
multi-task learning, multimodal sensorimotor learning and lifelong
adaptation to injury, growth and ageing. Addressing these challenges
promise higher levels of autonomy and versatility of future robots.
This special issue on Continual Unsupervised Sensorimotor Learning is
primarily concerned with the developmental processes involved in
unsupervised sensorimotor learning in a life-long perspective, and in
particular the emergence of representations of action and perception
in humans and artificial agents in continual learning. These processes
include action-perception cycle, active perception, continual
sensory-motor learning, environmental-driven scaffolding, and
intrinsic motivation.
The special issue will highlight behavioural and neural data, and
cognitive and developmental approaches to research in the areas of
robotics, computer science, psychology, neuroscience, etc.
Contributions might focus on mathematical and computational models to
improve robot performance and/or attempt to unveil the underlying
mechanisms that lead to continual adaptation to changing environment
or embodiment and continual learning in open-ended environments.
Contributions from multiple disciplines including cognitive systems,
cognitive robotics, developmental and epigenetic robotics, autonomous
and evolutionary robotics, social structures, multi-agent and
artificial life systems, computational neuroscience, and developmental
psychology, on theoretical, computational, application-oriented, and
experimental studies as well as reviews in these areas are welcome.
THEMES
This special issue aims to report state-of-the-art approaches and
recent advances on Continual Unsupervised Sensorimotor Learning with a
cross-disciplinary perspective. Topics relevant to this special issue
include but are not limited to:
Emergence of representations via continual interaction
Continual sensory-motor learning
Action-perception cycle
Active perception
Environmental-driven scaffolding
Intrinsic motivation
Neural substrates, neural circuits and neural plasticity
Human and animal behaviour experiments and models
Reinforcement learning and deep reinforcement learning for life-long learning
Multisensory robot learning
Multimodal sensorimotor learning
Affordance learning
Prediction learning
SUBMISSION
Manuscripts should be prepared according to the “Information for
Authors” of the journal found at
http://cis.ieee.org/component/content/article/7/131-ieee-transactions-on-au….
Submissions must be done through the IEEE TCDS Manuscript center:
https://mc.manuscriptcentral.com/tcds-ieee.
During the submission process, please select the category “SI:
Continual Unsupervised Sensorimotor Learning”.
IMPORTANT DATES
6th January 2019 – Paper submission deadline
15th March 2019 – Notification for authors
31st May 2019 – Deadline revised papers submission
30th June 2019 – Final notification for authors
31st July 2019 – Deadline for camera-ready versions
September 2019 – Expected publication date
More information on Continual Unsupervised Sensorimotor Learning
http://projects.au.dk/socialrobotics/news-events/show/artikel/special-issue…
GUEST EDITORS
Nicolás Navarro-Gerrero
Aarhus University, Aarhus, Denmark nng(a)eng.au.dk
Sao Mai Nguyen
IMT Atlantique, Francenguyensmai(a)gmail.com
Erhan Öztop
Özyeğin University, Turkeyerhan.oztop(a)ozyegin.edu.tr
Junpei Zhong
National Institute of Advanced Industrial Science and Technology
(AIST), Japanjoni.zhong(a)aist.go.jp
----
Nguyen Sao Mai
nguyensmai(a)gmail.com
Researcher in Cognitive Developmental Robotics
http://nguyensmai.free.fr
Oct. 23, 2018
Computational Neuroscience Software Developer / Research Associate Position
by Stephanie Jones
Conducting interviews at SFN for a Brown University Computational Neuroscience Position
Applications are invited for a research software developer / research associate position in the lab of Dr. Stephanie Jones at Brown University in Providence, RI. The level of the hire depends on experience. Our group combines human electrophysiological recordings and computational neural modeling techniques to study the mechanisms and meaning of brain dynamics in health and disease. We collaborate extensively with animal electrophysiologists and clinicians to develop data constrained models that are translationally relevant. The software developer / research associate will work with a team of researchers at Brown, Mass General Hospital, and Yale, to help develop a new software tool for circuit level investigation of human magneto- and electro-encephalography (MEG/EEG) signals: Human Neocortical Neurosolver, HNN (https://hnn.brown.edu) <https://hnn.brown.edu)>. The goal of this software is to provide the community with a user friendly tool to develop and test hypotheses on the circuit origin of their data. The hired candidate will help support and expand HNN’s capabilities, including software development and working with researchers to apply HNN to specific neuroscience questions. Duties will also include development of tutorials, online resources, and participation in workshops aimed at training the community in the use and applicability of HNN.
Candidates should have a Bachelor’s, Master’s, or PhD in computer science, neuroscience, biomedical engineering, and/or related field. Strong Python programming skills are required, and experience with neural modeling, particularly NEURON, is preferred. Familiarity with MEG/EEG analysis methods and/or non-invasive brain stimulation is also beneficial. Candidates should be able to work in a dynamic, interdisciplinary, and fun work environment.
Interested candidates should send a cv and a brief description of qualifications and research interests to the Jones lab manager Dylan_S_Daniels(a)brown.edu <mailto:Dylan_S_Daniels@brown.edu>.
*******************************************
Stephanie R. Jones, PhD
Associate Professor
Brown University
Department of Neuroscience
Stephanie_Jones(a)Brown.edu
https://blogs.brown.edu/joneslab/ <https://blogs.brown.edu/joneslab/>
Human Neocortical Neurosolver
https://hnn.brown.edu <https://hnn.brown.edu/>
Oct. 22, 2018
Postdoctoral researchers - computational modeling, EEG, TMS
by Stephanie Jones
Conducting interviews at SFN for a Brown University Human Imaging & Computational Neuroscience Position
Applications are invited for a postdoctoral position in the lab of Dr. Stephanie Jones at Brown University. Our group combines human electrophysiological recordings and computational neural modeling techniques to study the mechanisms and meaning of brain dynamics in health in disease. We collaborate extensively with animal electrophysiologists and clinicians to develop data constrained models that are translationally relevant. We are expanding our research efforts to including non-invasive brain stimulation. A postdoctoral position is available to integrate simultaneous human EEG and transcranial magnetic stimulation (TMS) in humans, with computational neural modeling developments. The postdoctoral researcher will help expand our new software tool Human Neocortical Neurosolver (https://hnn.brown.edu) <https://hnn.brown.edu)> for circuit level interpretation of EEG/MEG signals to include TMS studies. She/he will also help with the design, implementation and analysis of our TMS/EEG experiments.
Candidates should have a PhD in neuroscience, computational neuroscience, computer science, applied mathematics, biomedical engineering, and/or related field. Strong quantitative and programming skills are required. The ideal candidate would have experience in computational neuroscience methods applied to human EEG and brain stimulation data. However, experience in all areas is not required. Candidates should be able to work in a dynamic, interdisciplinary and fun work environment.
Interested candidates should send a cv and a brief description of qualifications and research interests to the Jones lab manager Dylan_S_Daniels(a)brown.edu <mailto:Dylan_S_Daniels@brown.edu>.
*******************************************
Stephanie R. Jones, PhD
Associate Professor
Brown University
Department of Neuroscience
Stephanie_Jones(a)Brown.edu
https://blogs.brown.edu/joneslab/ <https://blogs.brown.edu/joneslab/>
Human Neocortical Neurosolver
https://hnn.brown.edu <https://hnn.brown.edu/>
Oct. 22, 2018
Postdoc at Harvard in computational neuroscience
by Blum, Kenneth I.
The Swartz Program at Harvard University has an opening for a postdoctoral fellow in theoretical and computational neuroscience.
Based on a grant from the Swartz Foundation<https://urldefense.proofpoint.com/v2/url?u=http-3A__www.theswartzfoundation…>, Harvard University established the Swartz Program in Theoretical Neuroscience. The Swartz Program supports a program in computational neuroscience, to foster research collaborations between theorists and experimentalists.
Fellowships last for two years, and cover a stipend and support for travel to the annual Swartz meeting on computational neuroscience. Postdocs join a vibrant group of experimental and theoretical neuroscientists at Harvard's Center for Brain Science. Harvard's Swartz Program is led by its Director, Haim Sompolinsky.
The Center for Brain Science includes junior and senior faculty doing research on a wide variety of topics, including neural mechanisms of rodent learning, decision-making, and sex-specific and social behaviors; human motor control; behavioral and fMRI studies of human cognition; circuit mechanisms of learning and behavior in worms, larval flies, and larval zebrafish; circuit mechanisms of individual differences in flies and humans; rodent and fly olfaction; inhibitory circuit development; retinal circuits; and large-scale reconstruction of detailed brain circuitry.
Interested applicants should send a CV, statement of research interests, and arrange for three letters of reference to be sent to Haim Sompolinsky (haim(a)fiz.huji.ac.il<mailto:haim@fiz.huji.ac.il>), Kenneth Blum (kenneth_blum(a)harvard.edu<mailto:kenneth_blum@harvard.edu>), or our newest faculty member, Cengiz Pehlevan (cpehlevan(a)seas.harvard.edu<mailto:cpehlevan@seas.harvard.edu>; https://pehlevan.seas.harvard.edu/) Applications should have “Swartz Fellowship” in the subject line.
Harvard University is an equal opportunity employer and all qualified applicants will receive consideration for employment without regard to race, color, religion, sex, national origin, disability status, protected veteran status, gender identity, sexual orientation, pregnancy and pregnancy-related conditions, or any other characteristic protected by law.
Oct. 22, 2018
Postdoctoral position in machine learning, event-based computer vision and spiking neural networks
by sio
The Vision and Natural Computation group from the Vision Institute, Paris, France, (http://www.institut-vision.org/en/) seeks experienced
and outstanding applicants for a post-doctoral researcher in the fields of machine learning, event-based computer vision and spiking
neural networks.
The position is funded by the European Commission in the context of the European project ULPEC. The applicant will join the Vision and
Natural Computation group, led by Pr R. Benosman. The team is the leading group in neuromorphic event based computation and active member
of the international neuromorphic engineering community. It develops biology-inspired sensing and event-based technologies.
The selected candidat will be working on designing the architecture and topology of spiking neural networks for pattern learning and
recognition tasks, using the spike-based visual information provided by a neuromorphic camera. Spiking Timing Dependent Plasticity
and Reservoir Computing based models will be in particular implemented, taking into account of their hardware feasibility (according
to the performance and characteristics of ferroelectric memristors).
The position will open in January 2019. Interested applicants should submit a detailed curriculum vitae with brief paragraphs of research
interests, career goals and why you feel you are a good fit for the lab to " ryad.benosman at upmc.fr " and " sio-hoi.ieng at upmc.fr ". Please
do also mention in the email earliest date at which you can join.
S.H. ieng, PhD
Vision and natural computation group,
Vision institute.
University Paris Sorbonnes,
Oct. 22, 2018
PhD opportunities at the MCEN group at the Basque Center of Applied Mathematics (Bilbao, Spain)
by Maurizio De Pitta
Please share with your colleagues and anyone who could be interested.
The Group of Mathematical, Computational and Experimental Neuroscience
(MCEN; http://www.bcamath.org/en/research/lines/MCEN/description) at
the Basque Center of Applied Mathematics (BCAM;
http://www.bcamath.org/en/) in Bilbao (Spain) is seeking outstanding
PhD students to work on several projects at the intersection of
computational neuroscience, mathematical topology, biophysics and
translational science. PhD projects currently available include (but
are not limited to) :
(Track A)
1. Control and tracking stability boundaries of neurons in real time
via closed-loop computer- controlled electrophysiology. This will lead
to intelligent machine brain interfaces, such as deep brain
stimulators that can determine unstable states that lead to
pathological oscillations (like in epilepsy);
2. Multiscale modeling of the biomolecular machinery that controls the
various modes of neurotransmitter release for efficient synaptic
communication. This includes feedback processes, such as the
endocannabinoid system, that control the speed and frequency by which
synaptic neurotransmitters are released. This critical process is
thought to control pathological brain states;
(Track B)
3. Mathematical modeling and development of analytical tools to study
neuron-glial interactions (NGIs), from subcellular to network levels.
Focus is both on mechanisms of learning at synaptic level and how NGIs
could shape dynamics of cortical circuits in the healthy and diseased
brain (More info: https://goo.gl/pJXEYJ)
4. Study of early cellular pathological markers for Alzheimer’s
disease, with emphasis on neuron-glial interactions. The project is
part of a strategic collaboration between BCAM/MCEN and Achucarro –
the Basque Center for Neuroscience – and envisages a close
collaboration with Dr. Carlos Matute’s group to test predictions from
theoretical models in mouse models of Alzheimer’s disease (see also:
https://goo.gl/Uifv2J)
A fully-funded PhD scholarship of 4+1 years may be offered on
competitive basis for ANY of the above projects (deadline : **Oct
29th, 2018**; 15:00 CET ; Info/Application : https://goo.gl/7CzNQr)
A fully-funded PhD scholarship of 3 years is currently available for
Project 4 ONLY (deadline : **Nov 6th, 2018**; 14:00 CET ; Info :
https://goo.gl/Uifv2J; Application website : https://goo.gl/z72RzC)
Candidates that are interested in any of the above topics, or would
like to pursue a PhD in mathematical neuroscience are welcome to
contact Drs. Serafim Rodrigues (Track A ; Webpage :
https://goo.gl/tP9PBt; contact : srodrigues(a)bcamath.org) and Maurizio
De Pittà (Track B ; Webpage : https://goo.gl/pJXEYJ; contact:
mdepitta(a)bcamath.org)
-----
Maurizio De Pitta'
Research Fellow
MCEN -- Group of Mathematical, Computational and Experimental Neuroscience
BCAM -- Basque Center of Applied Mathematics
https://sites.google.com/site/mauriziodepitta/home
Oct. 22, 2018
PhD Studentship at the University of Exeter: Building a model of the HypothalamicPituitary-Gonadal (HPG) axis
by Tsaneva-Atanasova, Krasimira
Building a model of the HypothalamicPituitary-Gonadal (HPG) axis, BBSRC SWBio, PhD in Mathematics studentship (Funded) Ref: 3285
About the award
Supervisors
Lead Supervisor
Professor Krasimira Tsaneva-Atanasov<http://emps.exeter.ac.uk/mathematics/staff/kt298>a, Department of Mathematics, College of Engineering, Mathematics and Physical Sciences, University of Exeter
Additional Supervisors
Professor Craig McArdle<http://www.bristol.ac.uk/clinical-sciences/people/craig-a-mcardle/index.html>, University of Bristol
Dr Margaritis Voliotis<http://emps.exeter.ac.uk/mathematics/staff/mv286>, University of Exeter
Location: University of Exeter, Streatham Campus, Exeter EX4 4QJ
The SWBio DTP<http://www.bris.ac.uk/swbio/> is one of the 12 Doctoral Training Partnerships funded by the BBSRC to provide PhD training in areas of their strategic relevance. The SWBio DTP is a consortium comprising the Universities of Bristol (lead), Bath, Cardiff, Exeter, and Rothamsted Research. Together, these institutions present a distinctive cadre of bioscience research staff and students with established international, national and regional networks and widely recognised research excellence.
The award:
There are over 30 (including up to 5 CASE studentships) fully-funded 4 year studentships* available to start in September 2019 across a wide range of biosicence academic disciplines.
This project is one of a number that are in competition for funding from the South West Biosciences Doctoral Training Partnership (SWBio DTP)<http://www.bristol.ac.uk/swbio/>. Up to 6 fully-funded studentships are being offered to start in September 2019 at the University of Exeter.
Project Description:
Gonadotropin-releasing hormone (GnRH) is secreted from hypothalamic neurones to control secretion of the
gonadotropin hormones LH and FSH form the anterior pituitary, and thereby mediates central control of
reproduction. It secretes in pulses and its effects are dependent on pulse characteristics (particularly
pulse frequency). One of the most important recent discoveries in the field of reproduction is that of the
KNDy system. This is a peptidergic neuronal oscillator that drives pulsatile GnRH secretion. It also
mediates feedback effects of gonadal steroid hormones that are essential for key reproductive processes such
as the timing of puberty and seasonal breeding (i.e. in farm animals) and the fine-tuning of gonadotropin secretion across the ovarian cycle. All of these components (hypothalamic pulse generator/pituitary pulse
decoder/gonads) are absolutely essential for human reproduction so it is perhaps not surprising that all three
are sites for therapeutic intervention, just as perturbation of any of them can cause infertility in disease states.
We are convinced that mathematical and statistical approaches are required to fully understand such a complex system. To this end we have already generated a sophisticated mathematical model of the neuronal oscillator that we have trained on wetlab. data and are now using to explore possible mechanisms for modulation by gonadal steroids. Similarly, we have developed a mathematical model for the decoding of pulse dynamics by pituitary gonadotropes and have used this to explore cell-cell variability in responses to GnRH and its impact on information transfer. We now plan to take a similar approach to modelling effects of gonadotropin hormones on gonadal function, where we will have to introduce population dynamics as an additional feature (i.e. growth of granulosa cells before ovulation and formation of luteal cells thereafter). We then plan to simplify these sub-system models so that the components can be assembled into a meaningful model of the entire hypothalamo-pituitary-gonadal system.
In this project the student will learn:
• Mathematical modelling of the hypothalamic pulse generator, the pituitary pulse decoder and the effects of LH and FSH on gonadal cells.
• Numerical optimisation by performing parameter fitting and sensitivity analysis using combination of available experimental data sets to parametrise and validate model components.
• Simplification of the sub-system models (as informed by sensitivity analysis) and again, training on system wet-lab data.
• Computational methods that allow the generation of testable model predictions regarding the reproductive
system and its components across the lifespan.
Eligibility
To be eligible for a fully-funded studentship, you must meet both the academic and residence criteria.
For UK/EU nationals who meet the residency requirements outlined by the BBSRC, the studentship will cover funding for 4 years (48 months) as follows. These awards might be available to part-time students, but only in exceptional circumstances. It is recommended you speak to the lead supervisor prior to submitting an application.
• a stipend at the standard Research Council UK rate; currently £14,777 per annum for 2018-2019
• research and training costs
• tuition fees (at the standard Research Councils UK rate)
• additional funds to support fieldwork, conferences and a 3-month internship
Please refer to the regulations<http://www.legislation.gov.uk/uksi/2007/779/pdfs/uksi_20070779_en.pdf> or Annex 1 of the Research Council Training Grant Guide<https://www.ukri.org/files/legacy/publications/rcuk-training-grant-guide-pd…> to confirm that you meet the residence criteria for a fully-funded studentship. Any further queries in relation to residency must be directed to the institution that you are applying to.
Entry requirements
Applicants should have obtained, or be about to obtain, a First or Upper Second Class UK Honours degree, or the equivalent qualifications gained outside the UK, in an appropriate area of science or technology. Applicants with a Lower Second Class degree will be considered if they also have Masters degree or have significant relevant non-academic experience.
In addition, due to the strong mathematical component of the taught course in the first year and the quantitative emphasis in our projects, a minimum of a grade B in A-level Maths or an equivalent qualification or experience is required.
If English is not your first language you will need to have achieved at least 6.5 in IELTS and no less than 6.5 in any section by the start of the project. Alternative tests may be acceptable, please see http://www.bristol.ac.uk/study/language-requirements/profile-c/.
Students from EU countries who do not meet the residency requirements may still be eligible for a fees-only award but no stipend. Applicants who are classed as International for tuition fee purposes are not eligible for funding.
Please refer to the regulations<http://www.legislation.gov.uk/uksi/2007/779/pdfs/uksi_20070779_en.pdf> or Annex 1 of the Research Council Training Grant Guide<https://www.ukri.org/files/legacy/publications/rcuk-training-grant-guide-pd…> to confirm that you meet the residence criteria for a fully-funded studentship.
The four universities have a very limited number of fully-funded 4 year studentships that EU nationals who do not meet the residency requirements would be eligible for. Please contact us for for more information.
How to apply
Apply now
Please be aware you will be asked to upload the following documents:
* CV
* Letter of application outlining your academic interests, prior research experience and reasons for wishing to undertake the project. Please indicate your preferred project choice if applying for multiple BBSRC SWBio DTP projects.
* Transcript(s) giving full details of subjects studied and grades/marks obtained. This should be an interim transcript if you are still studying.
* Two academic referees - see information below about references.
* If you are not a national of a majority English-speaking country you will need to submit evidence of your proficiency in English (see entry requirements above)
The closing date for applications is midnight on Monday, 3 December 2018. Interviews will be held at the University of Exeter on 7 and 8 of February 2019.
Reference information
You will be asked to name 2 referees as part of the application process, however we will not expect receipt of references until the shortlisting stage. Your referees should not be from the prospective supervisory team.
If you are shortlisted for interview, please ensure that you two academic referees email their references to the pgrenquiries(a)exeter.ac.uk<mailto:pgrenquiries@exeter.ac.uk>, 7 days prior to the interview dates. Please note that we will not be contacting referees to request references, you must arrange for them to be submitted to us by the deadline.
References should be submitted by your referees to us directly in the form of a letter. Referees must email their references to us from their institutional email accounts. We cannot accept references from personal/private email accounts, unless it is a scanned document on institutional headed paper and signed by the referee.
If you have any general enquiries about the application process please email pgrenquiries(a)exeter.ac.uk<mailto:pgrenquiries@exeter.ac.uk>.
Project-specific queries should be directed to the primary supervisor.
Selection process:
Please note, the studentship selection process will take place in two stages:
1. The project supervisors will consider your application and may invite you to visit for an informal interview. You can apply for more than one BBSRC SWBio DTP project, although supervisors may take into account your interest and commitment to their particular project. If you apply for multiple projects, please indicate your preferred project choice in your letter of application. Each application for an individual project will be considered separately by the project supervisors.
2. After closure of applications, each supervisory team will then nominate their preferred applicant. A shortlist will be selected from these nominations and shortlisted applicants will be invited for interview on a selection day at the University of Bristol. Please note that nomination by a project supervisor therefore does not guarantee the award of a studentship.
Data Protection
During the application process, the University may need to make certain disclosures of your personal data to third parties to be able to administer your application, carry out interviews and select candidates. These are not limited to, but may include disclosures to:
* the selection panel and/or management board or equivalent of the relevant programme,
which is likely to include staff from one or more other HEIs;
* administrative staff at one or more other HEIs participating in the relevant programme.
Such disclosures will always be kept to the minimum amount of personal data required for the specific purpose. Your sensitive personal data (relating to disability and race/ethnicity) will not be disclosed without your explicit consent.
Summary
Application deadline: 3rd December 2018
Value: Tuition fees and an annual stipend allowance at Research Council rates, currently £14,777 per year for 2018-19
Duration of award: per year
Contact: PGR Recruitment Office pgrenquiries(a)exeter.ac.uk<mailto:pgrenquiries@exeter.ac.uk>
Oct. 22, 2018
Open Master, PhD and Postdoc positions at the "Theory of Neural Dynamics" at the MPI for Brain Research
by Tatjana Tchumatchenko
Dear friends and colleagues, I would appreciate if you could spread the
word among your Students and Postdocs.
My group "Theory of Neural Dynamics" at the MPI for Brain Research is
looking
for Master Students, PhD Students and Postdocs
Master Students, PhD Students or Postdocs interested in understanding
how neuronal networks work, how they respond to stimuli and what role
connectivity and single neuron dynamics play for the activity of the
brain. Though the focus of my research is on the theory side, my lab has
close ties to experimentally oriented labs and Master projects could
include both theory and experiments. We are looking for bright and
hard-working students with a life-science or quantitative background
(physics, math, biology etc).
When applying please attach CV (with a publication record) and a current
copy of academic transcripts.
For more information, please contact Dr. Tatjana Tchumatchenko
via email tatjana.tchumatchenko(a)brain.mpg.de
https://brain.mpg.de/research/theory-of-neural-dynamics-group.html
www.tchumatchenko.de
Oct. 20, 2018
Tenure Track Job at Emory University in Neural Circuit Mechanisms of Behavior
by Jaeger, Dieter
The Department of Biology in the Emory College of Arts and Science in Atlanta, GA, USA, is seeking applications for a tenure-track faculty position at the assistant or associate professor level in experimental and computational neuroscience. A strong computational neuroscience group at Emory is anchored in the Department of Biology (http://www.biology.emory.edu) and is grounded in experimental preparations and neurobiological questions about the mechanisms underlying behavior and learning. We anticipate a hire focused on innovative approaches to understanding the function of brain circuits in a behavioral context. Such approaches may include optogenetics, cellular imaging, high-density electrophysiology, network simulations, or other cutting-edge neuroscientific methods. The ability to link theory and data analysis to experimental design in order to develop more predictive models of neural activity and behavior is critical.
The successful candidate is anticipated to have a PhD in a relevant science or engineering field and postdoctoral experience in neuroscience-related research, and is expected to contribute to the Biology Department's teaching mission in the context of programs in quantitative theory and methods (http://quantitative.emory.edu) and neuroscience and behavioral biology (http://www.nbb.emory.edu) Interactions with experimentalists and theorists within Emory's rich, collaborative neuroscience community are encouraged.
Emory has more than 100 laboratories participating in graduate programs in Neuroscience (http://biomed.emory.edu/PROGRAM_SITES/NS/) and Biomedical Engineering (http://www.bme.emory.edu) and spanning Emory College (Biology, Psychology, Physics, Anthropology), School of Medicine, Yerkes National Primate Research Center and Georgia Institute of Technology. Emory College's Theory and Modeling of Living Systems initiative (http://livingtheory.emory.edu/) provides a broader community for interaction with theorists in the life science. Applications should include a cover letter, curriculum vitae, a research statement, a teaching statement and three reference letters. In a separate statement or in the cover letter, we also ask candidates to reflect on their efforts in mentoring and teaching students from diverse backgrounds. Applications and reference letters must be electronically uploaded through Interfolio at http://apply.interfolio.com/53691. Review of applications will begin Dec. 1, 2018. Applications received up to 30 days after, or until the positions are filled, will be given consideration. Emory University is an equal employment opportunity and affirmative action employer. Women, minorities, people with disabilities and veterans are strongly encouraged to apply.
Also - one or more members of the search committee will be available for brief (10-minute) informational meetings with potential candidates during the SfN conference in San Diego in November. Please contact Sam Sober at ssober(a)emory.edu<mailto:ssober@emory.edu>. Potential candidates do not need to have submitted an application to have one of these meetings, which are intended to help applicants learn about the position, department, and neuro community at Emory.
Dieter Jaeger, PhD
Professor
Department of Biology, Emory University
1510 Clifton Rd., Atlanta, GA 30322
404 727 8139, e-mail: djaeger(a)emory.edu<mailto:djaeger@emory.edu>
http://www.biology.emory.edu/research/Jaeger
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Oct. 19, 2018
PhD fellowships in computational neuroscience at the FMI in Basel, Switzerland
by Friedemann Zenke
The FMI PhD program now welcomes applications in computational neuroscience.
Submission deadline is the 16th of November 2018.
The FMI PhD program offers students the opportunity to carry out
cutting-edge research in a stimulating, highly international and
collaborative atmosphere. Affiliated with the Novartis Institutes for
BioMedical Research and the University of Basel in Switzerland, the FMI
provides interdisciplinary training and access to state-of-the-art
technology platforms and high-performance computing facilities.
Several research groups at the FMI offer exciting PhD projects for
students with a computational background. PhD students whose primary
interest is in computational neuroscience, will be able to join a new
group led by Friedemann Zenke which focuses on memory formation and
information processing in biologically inspired neural network models.
Students will have the opportunity to directly collaborate with
experimental groups in system neuroscience at the FMI
(https://www.fmi.ch/Research/Neurobiology/)
A wide range of theoretical and practical courses are available at both
the FMI and the University of Basel. After completion of their thesis
work, students are awarded a PhD from the University of Basel.
Candidates should be curious about the neural underpinnings of
computation and learning, have a strong analytical and quantitative
background, and hold a relevant first degree in, for instance, computer
science, engineering, mathematics, neuroscience, physics, psychology, or
statistics.
Funding is available regardless of current residence and nationality.
Applications should be submitted online via
https://www.fmi.ch/training/phd/apply/
Additional information
PhD program: https://www.fmi.ch/training/PhD/
Zenke group (from 2019): https://www.fmi.ch/research/groupleader/zenke.html
Neurobiology groups: https://www.fmi.ch/Research/Neurobiology/
For questions, please contact Elida Keller (fmiphdprogram(a)fmi.ch)
--
Friedemann Zenke, PhD
Sir Henry Wellcome Fellow
Centre for Neural Circuits and Behaviour
University of Oxford
Tinsley Building
Mansfield Road
Oxford
OX1 3SR
United Kingdom
https://fzenke.net
Oct. 19, 2018