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- 7402 messages
ICANN 2023 - Call for Participation
by Sebastian Otte
32nd International Conference on Artificial Neural Networks
ICANN 2023
https://e-nns.org/icann2023
!!! EARLY BIRD REGISTRATION ENDS ON JULY 25 !!!
Conference Dates: 26th to 29th of September 2023
=======================================================================
The International Conference on Artificial Neural Networks (ICANN) is
the annual flagship conference of the European Neural Network Society
(ENNS). In 2023 the School of Engineering of Democritus University of
Thrace, Greece, will organize ICANN 2023. This will be held at Astoria
Capsis Hotel at Heraklion city, Crete, Greece from 26th to 29th of
September 2023.
The conference will be organized as a HYBRID event.
CONFERENCE TOPICS
ICANN 2023 is a conference featuring tracks in Brain Inspired Computing,
Machine Learning, and Artificial Neural Networks, with strong
cross-disciplinary interactions and applications. A non-exhaustive list
of topics includes:
Machine Learning:
Deep Learning, Neural Network Theory, Neural Network Models, Graphical
Models, Bayesian Networks, Kernel Methods, Generative Models,
Information Theoretic Learning, Reinforcement Learning, Relational
Learning, Dynamical Models, Recurrent Networks, Ethics of AI
Brain Inspired Computing:
Cognitive Models, Computational Neuroscience, Self-Organization, Neural
Control and Planning, Hybrid Neural-Symbolic Architectures, Neural
Dynamics, Cognitive Neuroscience, Brain Informatics, Perception and
Action, Spiking Neural Networks
Neural Applications for:
Bioinformatics, Biomedicine, Intelligent Robotics, Neurorobotics,
Language Processing, Speech Processing, Image Processing, Sensor Fusion,
Pattern Recognition, Data Mining, Neural Agents, Brain-Computer
Interaction, Neuromorphic Computing and Edge AI, Evolutionary Neural
Networks
SPECIAL SESSIONS
ICANN 2023 will host three special sessions:
- Neurorobotics (track NRR 2023)
- Recent Advances in Spiking Neural Networks (track ARNN 2023)
- The challenge of errors, stability, robustness, and accuracy in deep
neural networks (track ESRA in DNN 2023)
BEST PAPER AWARDS
ENNS will sponsor a maximum of four best paper awards. All awards will
be presented during the final ceremony.
TRAVEL GRANTS
The European Neural Network Society sponsors a number of Student Travel
Grants covering part of the costs for attending ICANN. Details are
provided on the conference website.
ORGANIZATION
General Chairs
Iliadis Lazaros, Democritus University of Thrace, Greece
Plamen Angelov, Lancaster University, UK
Program Chairs
Antonios Papaleonidas, Democritus University of Thrace, Greece
Elias Pimenidis, UWE Bristol, UK
Chrisina Jayne, Teesside University, UK
Honorary Chairs
Stefan Wermter, University of Hamburg, Germany
Vera Kurkova, Czech Academy of Sciences, Czech Republic
Nikola Kasabov, Auckland University of Technology, New Zealand
Organizing Chairs
Antonios Papaleonidas, Democritus University of Thrace, Greece
Anastasios Panagiotis Psathas, Democritus University of Thrace, Greece
George Magoulas, University of London, Birkbeck College, UK
Haralambos Mouratidis, University of Essex, UK
Award Chairs
Stefan Wermter, University of Hamburg, Germany
Chukiong Loo, University of Malaysia, Malaysia
Communication Chairs
Sebastian Otte, University of Tübingen, Germany
Anastasios Panagiotis Psathas, Democritus University of Thrace, Greece
July 23, 2023
Mathematical Bridges for the Brain: Krembil Computational Neuroscience Symposium (October 2--3, 2023; Toronto, Canada)
by De Pitta, Maurizio
Dear colleagues,
Please mark your calendars for this fall's Krembil Computational Neuroscience Hub Symposium on "Mathematical Bridges for the Brain: Theory and Practice in Neural Health and Disease," which will happen on October 2--3, 2023, hosted by the Krembil Research Center in Toronto, Canada.
The Symposium has been thoughtfully crafted to showcase cutting-edge computational approaches that bridge across various brain scales, ranging from cellular to systems neuroscience, with a particular focus on translational and clinical applications. By bringing together prominent experts from the intersection of mathematics, engineering, clinical, and experimental neurosciences, we aim to delve into the depths of the latest computational methods in understanding brain pathophysiology.
Speakers include:
Emery Brown (Harvard/MIT)
Maurizio De Pitta (Krembil / Basque Center for Applied Mathematics)
Brent Doiron (UChicago)
Salvador Dura-Bernal (SUNY)
Lorraine Kalia (Krembil, UHN)
Rahul Krishnan (UToronto)
Milad Lankarany (Krembil/UToronto)
Jérémie Lefebvre (UOttawa/Krembil)
Wilten Nicola (UCalgary)
Annabelle Singer (Georgia Tech/Emory)
In keeping with the long-standing tradition of the KCNhub, the Symposium is not just a platform for academic exchange; it also presents a wonderful opportunity for networking and forging connections with fellow computational neuroscientists and digital medicine enthusiasts
Please visit the Eventbrite site for further details on the program and registration
https://www.eventbrite.ca/e/krembil-computational-neuroscience-kcn-symposiu…
Due to the limited number of seats available, registration is free but mandatory.
Looking forward to seeing you in Toronto this fall.
On behalf of the Organizing Committee.
Maurizio De Pitta
-----
Maurizio DE PITTA
Principal Investigator
Neuron-Glia Interactions Lab (NGILab)
Krembil Research Institute, 4KD-509
60 Leonard Ave, Toronto, ON M5T 0S8, CA
+1.416.603.5800 ext. 3290
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July 23, 2023
Neuronal data scientist position
by Nikolas Karalis
If you are a data scientist, programmer, or engineer, with a keen interest
in helping to understand the brain, consider joining our team Neuronal
Circuits & Brain Dynamics <http://neuronaldynamics.eu/> at the Paris Brain
Institute <https://institutducerveau-icm.org/en/> (ICM).
We study the principles of neuronal circuit organization and brain
dynamics.
Our work focuses on unraveling the fascinating mysteries of how the brain
generates internal states and how neuromodulators, such as dopamine and
serotonin, influence neuronal activity and communication between brain
regions during behavior.
To achieve our goals, we perform large-scale recordings from thousands of
neurons simultaneously using multimodal recordings, including
electrophysiological or optical imaging approaches. We employ
state-of-the-art techniques, including behavioral, optogenetic, imaging,
electrophysiological, and genetic approaches in mice to record and
manipulate the brain activity during behavior.
Using this unprecedented data, we will be able to understand information
flow in the brain in ways that would be unimaginable only a few years ago.
However, the scale and complexity of this data provide major challenges and
unique opportunities.
We are looking for computationally-orientated researchers to join our team
as temporary or permanent staff members, to help us develop methods to
interact and analyze our multi-dimensional neurophysiological and
behavioral data, and to develop innovative analysis approaches and
efficient processing pipelines, to accelerate the progress of our research
on our path to understanding the brain.
As a data analyst in our group, you will interact closely with
experimentalists and contribute crucially to the research.
Our team values diversity and welcomes researchers from all backgrounds and
profiles.
If your profile aligns with our research needs, we encourage you to get in
touch with us.
Profile
- Outstanding analytical and quantitative skills
- Interest in neuronal dynamics and computation, behavior, and neural
circuits
- Ability to analyze multi-dimensional and multi-modal data
- PhD or MSc in neuroscience, data science, computer science, applied
mathematics, physics, or equivalent combination of degree and experience
- Experience with computational statistics, data modeling and analysis,
signal processing, and modern machine-learning methods
- Solid programming skills and ability to write high-quality, reusable
code in Python or Matlab
- Experience with software development (e.g., version control, unit
testing, databases) is preferable
Main responsibilities
- Organize data management pipeline
- Analyze neurophysiological and behavioral data
- Develop analysis methods and software tools to facilitate the analysis
of multi-modal and multi-dimensional neurophysiological data
- Implement cutting-edge data science approaches (statistical,
computational, and ML) for complex neuroscience problems
- Create robust and efficient data pipelines to extract, transform, and
visualize data
- Develop, test, and implement scientific software (e.g., for
reproducible analysis pipelines and data storage)
- Interact with experimentalists to design experiments and implement
analyses
- Analyze current technologies, algorithms, models, and methods
- As part of your role, you will have the opportunity to collaborate
with other teams, attend trainings, mentor students, have independent
projects, and present at major relevant conferences (Cosyne, NeurIPS)
*We offer* competitive compensation and benefits within an interactive,
interdisciplinary working environment, where cutting-edge science thrives
and a dynamic, international research community awaits.
If you would like to know more, visit our website: neuronaldynamics.eu and read
about our team's mission and values
<https://www.neuronaldynamics.eu/team/mission-values>.
*Why join our team*
- We are a young and vibrant group of scientists, fueled by curiosity and
passion for understanding the brain. We work as a team and use or
invent cutting-edge neurotechnologies to answer fundamental questions in
neuroscience.
- Our team is committed to the training, mentorship, and career
development of the next generation of neuroscientists. To achieve that,
we foster an inclusive and supportive environment, where we can learn
and advance science while having fun in the process.
- Our work is multi-disciplinary, and so is our team. Irrespective of
your background and project, our research environment will expose you to a
diverse range of experimental and computational aspects of systems and
circuits neuroscience. We thus encourage everyone to apply, especially
those from underrepresented minorities.
- Working in our team will provide you with invaluable experience across
all stages of research, as well as publishing and communicating research
results.
- Our team is affiliated with Inserm <https://www.inserm.fr/> and is
located in the Paris Brain Institute (ICM)
<https://institutducerveau-icm.org/>.
- Our vibrant community at the ICM and throughout Paris promotes broad
collaboration and learning opportunities.
*How to apply*
If you are eager to join our vibrant research community and contribute to
groundbreaking discoveries, we warmly welcome your application. The
position is available immediately, with the potential for a permanent
contract based on performance.
Please send a statement of your past work and future research interests,
your CV, and contact information for 1-3 references to the address:
contact(a)neuronaldynamics.eu
--
Nikolas Karalis
Neuronal Circuits & Brain Dynamics Lab <http://neuronaldynamics.eu/> -
Paris Brain Institute
July 23, 2023
Research technician position
by Nikolas Karalis
We are seeking a passionate and dedicated research technician to join our
team Neuronal Circuits & Brain Dynamics <http://neuronaldynamics.eu/> at
the Paris Brain Institute <https://institutducerveau-icm.org/en/> (ICM).
Our work focuses on unraveling the fascinating mysteries of how the brain
generates internal states and how neuromodulators, such as dopamine and
serotonin, influence neuronal activity during behavior. To achieve our
goals, we employ state-of-the-art techniques, including behavioral,
optogenetic, imaging, electrophysiological, and genetic approaches in mice.
*Profile*
- We are searching for a science enthusiast who recognizes the
importance of the foundational work that keeps a lab thriving.
- Responsibility, attention to detail, and high motivation.
- Exceptional organizational and communication skills are a must.
- As a valuable team member, you will tackle lab-related issues
independently, fostering a friendly and dedicated work environment.
- Your record-keeping and computer skills will be essential, as will
your fluency in English. Fluency in French is a plus.
- While prior experience in specific neuroscience techniques (such as
stereotaxic surgeries, behavior, and histology) is advantageous, it is not
mandatory, as training will be provided.
- However, candidates should have completed relevant technical training
or hold a university degree in biological sciences (or equivalent).
- Applicants with an M.Sc. or Ph.D. are encouraged to apply.
- A desire to learn new techniques and apply them with high standards,
coupled with a strong work ethic and reliability, will be crucial.
- Experience in neuroscience techniques such as stereotaxic surgeries,
behavioral experimentation, and histological processing is highly desired.
*Main Responsibilities*
- As a research technician, you are at the epicenter of our research
activities and you will serve as a point of reference of the lab know-how
across generations of lab members.
- As a hands-on research technician, your primary responsibilities will
include organizing the laboratory, maintaining basic lab infrastructure,
performing routine tasks, regularly updating lab databases, ensuring the
lab runs efficiently, and contributing to the team's research efforts.
- Collaborating closely with the team, you will contribute to ongoing
research projects and you will conduct behavioral and optogenetic
experiments, carry out stereotaxic surgeries, and handle histological
processing, including tissue slicing, immunostaining, and fluorescent
microscopy.
- You will be responsible for learning, developing, and passing on
Standard Operating Procedures (SOPs) for the techniques utilized in our lab.
- Additionally, in coordination with the head of the animal facility,
you will supervise and ensure adherence to animal welfare guidelines, as
well as maintain project permits and annual reports.
- This role provides the opportunity to lead and participate in research
projects to the extent of your desire.
*We offer* competitive compensation and benefits within an interactive,
interdisciplinary working environment, where cutting-edge science thrives
and a dynamic, international research community awaits. As part of your
role, you will receive extensive training in traditional and cutting-edge
neuroscience techniques related to mice.
If you are eager to join our vibrant research community and contribute to
groundbreaking discoveries, we warmly welcome your application. The
position is available immediately, with the potential for a permanent
contract based on performance.
If you would like to know more, visit our website: neuronaldynamics.eu and read
about our team's mission and values
<https://www.neuronaldynamics.eu/team/mission-values>.
*Why join our team*
- We are a young and vibrant group of scientists, fueled by curiosity and
passion for understanding the brain.
- We work as a team and use or invent cutting-edge neurotechnologies to
answer fundamental questions in neuroscience.
- Our team is committed to the training, mentorship, and career
development of the next generation of neuroscientists. To achieve that,
we foster an inclusive and supportive environment, where we can learn
and advance science while having fun in the process.
- Our work is multi-disciplinary, and so is our team. Irrespective of
your background and project, our research environment will expose you to a
diverse range of experimental and computational aspects of systems and
circuits neuroscience. We thus encourage everyone to apply, especially
those from underrepresented minorities.
- Our team is affiliated with Inserm <https://www.inserm.fr/> and is
located in the Paris Brain Institute (ICM)
<https://institutducerveau-icm.org/>, where we have access to
state-of-the-art facilities and resources.
- Our vibrant community at the ICM and throughout Paris promotes broad
collaboration and learning opportunities.
*How to apply*
If you are eager to join our vibrant research community and contribute to
groundbreaking discoveries, we warmly welcome your application. The
position is available immediately, with the potential for a permanent
contract based on performance.
Please send a statement of your past work and interests, your CV, and
contact information for 1-3 references to the address:
contact(a)neuronaldynamics.eu
--
Nikolas Karalis
Neuronal Circuits & Brain Dynamics Lab <http://neuronaldynamics.eu/> -
Paris Brain Institute
July 23, 2023
Postdoctoral researcher position
by Nikolas Karalis
We invite applications for postdoctoral researchers to join our team Neuronal
Circuits & Brain Dynamics <http://neuronaldynamics.eu/> at the Paris Brain
Institute <https://institutducerveau-icm.org/en/> (ICM) to study the
principles of neuronal circuit organization and brain dynamics.
If you are an ambitious and driven researcher, interested in experimental
or computational systems and circuits neuroscience, and seeking an
environment that fosters intellectual and professional growth, we invite
you to consider joining our team. Together, we'll make a lasting impact on
science and pave the way for your successful research career.
Our team values diversity and welcomes researchers from all backgrounds and
profiles.
If your project ideas align with our research focus, we encourage you to get
in touch with us.
*Research Topics*
We are interested in how neuronal circuits are organized and how the
collective action of neurons gives rise to the emergent complex brain
dynamics and behavior.
We focus on how neurochemicals and bodily signals influence the brain.
- We study how the simultaneous release of neuromodulators
<https://www.neuronaldynamics.eu/research/research-topics/neuromodulators>
influences
the activity of neurons and the coordination of brain regions
- We also study how bodily signals, such as breathing
<https://www.neuronaldynamics.eu/research/research-topics/breathing>,
serve as fundamental elements of the oscillatory circuit architecture
- We employ our approach to study the brain dynamics during behavior and
sleep
<https://www.neuronaldynamics.eu/research/research-topics/sleep-memory-conso…>
and
their involvement in the transformation of fleeting experiences into
long-term memories
To answer these fundamental questions about the nature and function of the
brain, we combine a range of cutting-edge neurotechnologies
<https://www.neuronaldynamics.eu/research/techniques> that enable us to
observe and control the activity of the brain. We aim to identify and
explore the fundamental principles of neural circuit organization and apply
our understanding for the improvement of the human condition.
Pure experimental, as well as computational/theoretical, or hybrid projects
are available, depending on your interest and skills.
*Profile*
We are particularly interested in researchers with one or more of the
following:
- Background in neuroscience, physics, mathematics, computer science, or
biology
- Experience with rodent neuroscience
- *Experience with in vivo* or slice electrophysiology, or 1P/2P imaging
- Experience with behavioral experimentation
Quantitative spirit and proficiency in data analysis and programming
are essential
for success in our lab.
We strongly encourage applications from individuals that have been
traditionally underrepresented in the sciences.
*Opportunities*
As a postdoctoral researcher in our group:
- You will be an integral part of shaping our research direction and
team culture. You will engage in exciting and meaningful research and will
have access to all the tools necessary to push the boundaries of scientific
exploration, with our cutting-edge techniques and state-of-the-art
facilities.
- You will have the opportunity to mentor graduate and master's
students. This role enhances your leadership and communication skills while
you contribute to the growth of the next generation of scientists. By
guiding and collaborating with these aspiring researchers, you contribute
to the collective knowledge and expertise of the team. Mentoring fosters a
supportive and enriching atmosphere that reduces the mental strain of
working alone on a project, as you can share ideas, problem-solve together,
and gain fresh perspectives.
- You will have ample opportunities to develop vital skills for your
future academic career, such as mentoring, grant writing, presenting your
work, publishing papers, and leading projects to completion. In parallel,
you will gain invaluable first-hand experience in setting up and managing a
young research team.
- We encourage participation in conferences and workshops, where you can
present your research findings to the wider scientific community.
*Why join our team*
- We are a young and vibrant group of scientists, fueled by curiosity and
passion for understanding the brain. We work as a team and use or
invent cutting-edge neurotechnologies to answer fundamental questions in
neuroscience.
- Our team is committed to the training, mentorship, and career
development of the next generation of neuroscientists. To achieve that,
we foster an inclusive and supportive environment, where we can learn
and advance science while having fun in the process.
- Our work is multi-disciplinary, and so is our team. Irrespective of
your background and project, our research environment will expose you to a
diverse range of experimental and computational aspects of systems and
circuits neuroscience. We thus encourage everyone to apply, especially
those from underrepresented minorities.
- Working in our team will provide you with invaluable experience across
all stages of research and you will have the opportunity to engage in
experiment design and execution, method development, software design,
and data analysis, as well as publishing and communicating research
results.
- Our team is affiliated with Inserm <https://www.inserm.fr/> and is
located in the Paris Brain Institute (ICM)
<https://institutducerveau-icm.org/>, where we have access to
state-of-the-art facilities and resources.
- Our vibrant community at the ICM and throughout Paris promotes broad
collaboration and learning opportunities.
If you would like to know more, visit our website: neuronaldynamics.eu and read
about our team's mission and values
<https://www.neuronaldynamics.eu/team/mission-values>.
*How to apply*
If you are eager to join our vibrant research community and contribute to
groundbreaking discoveries, we warmly welcome your application.
Please send a statement of your past work and future research interests,
your CV, and contact information for 1-3 references to the address:
contact(a)neuronaldynamics.eu
--
Nikolas Karalis
Neuronal Circuits & Brain Dynamics Lab <http://neuronaldynamics.eu/> -
Paris Brain Institute
July 23, 2023
OHBM 2023 Educational Course on Whole-Brain Models
by Taha Morshedzadeh
Whole-brain, Connectome-based Models of Brain Dynamics: From Principles to
Applications
OHBM 2023
Montréal, Canada
Do you want to learn how to model the human brain as a complex network of
interacting regions? Do you want to discover how network science can help
you understand the brain's structure, function, and dynamics? If so, join
us for this Educational Course on Whole-Brain Network Modelling: Concepts,
Methods, and Applications, part of the OHBM 29th Annual Meeting.
This course will introduce you to the principles and methods of whole-brain
network modelling, a cutting-edge approach that combines data from
structural and functional neuroimaging, systems and cognitive neuroscience,
dynamical systems and network science, neurology and psychiatry,
computational neuroscience, and machine learning. You will learn how to use
network models to simulate the brain's activity, explore its emergent
properties, and test hypotheses about its mechanisms and disorders, and to
lastly build subject-specific models that could be used for personalized
mental health care.
In the hands-on sessions, you will also have the opportunity to model
electroencephalography (EEG), magnetoencephalography (MEG), and blood
oxygen level dependent (BOLD) data, in projects that are designed to
address ongoing critical research questions in computational neuroscience.
You will be guided through the material by the instructors and the TAs in
learning and performing the modelling and analysis tasks.
This course is designed for researchers who have some background in
neuroimaging and computational neuroscience, but who want to extend their
knowledge and skills in whole-brain network modelling. It will also be
useful for anyone who is curious about this exciting and rapidly growing
field. Register now and join us for this Educational Course on Whole-Brain
Network Modelling: Concepts, Methods, and Applications:
https://griffithslab.github.io/OHBM-whole-brain-modelling-course/
Time: Saturday, Jul 22: 8:00 AM - 5:00 PM
Organizers: Davide Momi, Joana Cabral, John Griffiths
Speakers: Viktor Jirsa, Joana Cabral, Sorenza Bastiaens, Michael
Breakspear, James Mac Shine, Laura Suárez, Borana Dollomaja, Leon
Stefanovski
Venue: Room #516DE - Palais des congrès de Montréal, Montréal, Canada.
29th Organization for Human Brain Mapping Conference (OHBM) Conference.
Registration: Directly through OHBM, more info at this link:
ww6.aievolution.com/hbm2301/index.cfm?do=ev.viewEv&ev=1192
July 21, 2023
Postdoc position Cluster for advanced study of collective behavior at University of Konstanz
by Ahmed Elhady
Dear Colleagues,
We are seeking a PostDoc with a quantitative background who has finished
(or about to finish) a doctoral degree in a quantitative field
preferably but not limited to physics. The candidate should show
enthusiasm for tackling theoretical foundations of behavior. The PostDoc
will join our interdisciplinary and international team studying social
foraging in animal groups. The researcher will be based in the
integrative biophysics group at the University of Konstanz and Max
Planck Institute of Animal Behavior, located in Konstanz, Germany.
The integrative biophysics group led by Dr. Ahmed Elhady is focused on
theoretical and computational understanding of mechanisms underlying
foraging. The group has an extensive network of local and international
collaborators. Through those collaborations, the PostDoc researcher will
have access to a large number of data sets depicting foraging behaviors
in locusts, rodents, non-human primates (marmosets) and human performing
similar social foraging tasks.
The PostDoc project can potentially address the following questions:
1. What are the quantitative foraging decision strategies employed by a
particular animal species during social foraging?
2. How does those decision strategies compare across animal species in a
quantitative evolutionary manner?
3. How did evolutionary processes quantitatively shape foraging behaviours?
4. How can one extend social foraging theory to account for different
group size and different spatial environmental constraints?
For a glimpse of our research work , please check this talk given by the
group leader Ahmed Elhady : https://www.youtube.com/watch?v=bRNnsgka0d0
For questions about the position and / or research of the integrative
biophysics group, please do not hesitate to contact me via email :
ahmed.el-hady(a)uni-konstanz.de
The postdoc position will be embedded within the highly collaborative
environment of the cluster for advanced study of collective behavior at
the University of Konstanz. The expected starting date is 01/12/2023 and
deadline for application is 15/09/2023. For more information and
application , please visit the website
:https://stellen.uni-konstanz.de/jobposting/4418ec7f80f7b2371d7a0e963fab434a58c726cd0
All the best regards,
Ahmed
Dr. Ahmed Elhady
Group leader
Integrative biophysics group
Cluster for Advanced Study of Collective Behavior
Max Planck Institute of Animal Behavior
Universitätsstraße 10, 78464 Konstanz
Room ZT 907
Postbox 687
Tel.: +49 7531 88-4742
July 21, 2023
Registration open: FSL Course 2023 - Sept 11th-22nd
by Rezvan Farahibozorg
Dear all,
We are pleased to announce that registration is now open for FSL Course
2023, which will be held *fully online*, 11th - 22nd September 2023. You
can find details and registration info here:
https://open.win.ox.ac.uk/pages/fslcourse/website/
To strike a balance between broad accessibility and the benefits of
in-person interaction, the FSL Course intends to follow an approximately
alternating pattern of fully in-person and fully online courses. The only
option to attend the course in 2023 will be this online course.
Both new and existing users of FSL are welcome on the course, as it aims to
cover both basic and more advanced features of FSL. The course covers the
theory and practice of functional, structural, diffusion and resting state
brain image analysis, with recorded lectures and live practical sessions
where attendees learn how to carry out analysis for themselves on real
data, with access to experienced tutors available throughout each session.
To accommodate different time zones, there will be two parallel courses
repeating the same content. Each session will consist of a self-paced
practical, with guidance available from our expert tutors via Zoom (or
equivalent), and all FSL software and course data pre-installed and ready
to go on a cloud-enabled virtual desktop. All lectures will be pre-recorded
and available as video podcasts, and speakers will be available for
questions and discussions. You would need your own computer/laptop/tablet
that can do video conferencing and host the remote desktop client, as well
as a reasonable internet connection that is good enough for video
conferencing.
If your institute is at a low/middle income country, you will also be able
to request a discount, as instructed on the registration page.
We hope to see you at the course!
The FSL Course team
July 20, 2023
Computational Neuroscience Postdoc Positions
by Neymotin, Samuel (NKI)
Postdoctoral scientist positions are available at the Nathan Kline Institute (NKI) for Psychiatric Research (https://www.nki.rfmh.org<https://www.nki.rfmh.org/>) to work on computational neuroscience research funded by recently awarded NIH and DoD grants.
Our NIH-funded projects investigate the brain's dynamic circuit motifs underlying internal vs. external-oriented processes in the auditory and interconnected areas, using circuit modeling of the thalamocortical system. In this project, the postdoc will build data-driven biophysical models constrained by data collected from electrophysiology labs at NKI and Columbia (Noelle O’Connell, Charlie Schroeder, Dan Javitt) & The Feinstein Institutes for Medical Research (Stephan Bickel), and then use the models to predict optimal neuromodulation strategies for inducing/suppressing circuit patterns, testable in vivo. Related projects include investigating the origin of electrophysiology patterns observed in the auditory system of animal models of schizophrenia (biomarkers including mismatch negativity and altered oscillatory patterns), and using modeling to predict their circuit-level origins and potential treatments. Recent related publications (https://www.biorxiv.org/content/10.1101/2022.02.03.479036v2.abstract , https://www.eneuro.org/content/9/4/ENEURO.0281-21.2022.abstract , https://www.sciencedirect.com/science/article/pii/S0006322319318517)
Our DoD project involves developing computational models of the hippocampal and entorhinal cortex circuitry used in spatial navigation, higher level decision making circuits, and integrating the models with agents learning to solve navigation tasks using neurobiologically-inspired learning rules. This project includes mathematicians and robotics researchers at UTK and CMU. Recent related publications (https://www.frontiersin.org/articles/10.3389/fncom.2022.1017284/full , https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0265808)
Applicants should have a strong background in: multiscale modeling using NEURON/NetPyNE, Python software development, neural/electrophysiology data analysis, machine learning, and writing/presenting research.
To apply, email a CV and cover letter to Sam Neymotin (samnemo(a)gmail.com) The position requires presence at NKI (New York), with part telecommuting.
________________________________
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July 19, 2023
CFP COMPLEX NETWORKS 2023 Menton Riviera France November 28 - 30, 2023
by Fabian Braesemann
12 th International Conference on Complex Networks & Their Applications
Menton Riviera<https://www.menton-riviera-merveilles.co.uk/>, France
November 28 - 30, 2023
COMPLEX NETWORKS 2023<https://complexnetworks.org/>
You are cordially invited to submit your contribution until September 02, 2023.
SPEAKERS
● Michael Bronstein<https://www.cs.ox.ac.uk/people/michael.bronstein/> University of Oxford UK
● Kathleen Carley<https://www.cylab.cmu.edu/directory/bios/carley-kathleen.html> Carnegie Mellon University USA
● Manlio De Domenico<https://manliodedomenico.com/> University of Padua Italy
● Danai Koutra<http://web.eecs.umich.edu/~dkoutra/> University of Michigan USA
● Romualdo Pastor-Satorras<http://www.fen.upc.edu/~romu/> Univ. Politècnica de Catalunya Spain
● Tao Zhou<https://scholar.google.com/citations?user=MXgWgmEAAAAJ&hl=en> USTC China
TUTORIALS
● Tiago de Paula Peixoto<https://skewed.de/tiago> CEU Vienna Austria
● Maria Liakata<https://www.turing.ac.uk/people/researchers/maria-liakata> Queen Mary University of London UK
PUBLICATION
Full papers (not previously published up to 12 pages) and Extended Abstracts (about published or unpublished research up to 4 pages) are welcome.
● Papers will be included in the conference proceedings edited by Springer
● Extended abstracts will be published in the Book of Abstracts (with ISBN)
Extended versions will be invited for publication in special issues of international journals:
o Applied Network Science<https://appliednetsci.springeropen.com/> edited by Springer
o Advances in Complex Systems<https://www.worldscientific.com/toc/acs/24/02> edited by World Scientific
o Complex Systems <https://www.complex-systems.com/about/>
o Entropy<https://www.mdpi.com/journal/entropy> edited by MDPI
o PLOS one<https://journals.plos.org/plosone/>
o Social Network Analysis and Mining<https://link.springer.com/journal/13278> edited by Springer
SUBMISSION
https://complexnetworks.org/submission/
TOPICS
Topics include, but are not limited to:
* Models of Complex Networks
* Structural Network Properties and Analysis
* Epidemics
* Community Structure
* Motifs
* Network Mining
* Network embedding
* Machine learning with graphs
* Dynamics and Evolution Patterns of Complex Networks
* Link Prediction
* Multilayer Networks
* Controllability
* Synchronization
* Visual Representation
* Large-scale Graph Analytics
* Social Reputation, Influence, and Trust
* Information Spreading in Social Media
* Rumour and Viral Marketing in Social Networks
* Recommendation Systems
* Financial and Economic Networks
* Mobility
* Biological and Technological Networks
* Mobile call Networks
* Bioinformatics
* Earth Sciences Applications
* Resilience and Robustness of Complex Networks
* Networks for Physical Infrastructures
* Networks, Smart Cities and Smart Grids
* Political networks
* Supply chain networks
* Complex networks and information systems
* Complex networks and CPS/IoT
* Graph signal processing
* Cognitive Network Science
* Network Medicine
* Network Neuroscience
* Quantifying success through network analysis
* Temporal and spatial networks
* Historical Networks
* Graph-Based Natural Language Processing
GENERAL CHAIRS
Hocine Cherifi (University of Burgundy, France)
Luis M. Rocha (Binghamton University, USA)
---
Dr Fabian Braesemann
Departmental Research Lecturer in AI & Work
Oxford Internet Institute
University of Oxford
Publicity Co-Chair
12th International Conference on Complex Networks & Their Applications
28 - 30 November, 2023, French Riviera, France
fabian.braesemann(a)oii.ox.ac.uk<mailto:fabian.braesemann@oii.ox.ac.uk>
+44 7731 700 704
Google Scholar<https://scholar.google.at/citations?user=L2AXGNwAAAAJ&hl=en> | LinkedIn<https://uk.linkedin.com/in/fabian-braesemann-210645138>
Oxford Internet Institute
University of Oxford
1 St Giles
Oxford, OX1 3JS
July 19, 2023