Postdoctoral, Engineer and Research Prof. track positions in signal processing and machine learning in healthcare
Multiple postdoc and/or engineering positions are available, starting immediately and continuing over the next six months.
The successful candidates will apply machine learning to temporal data captured in a clinical or ambulatory setting to solve some of the most pressing problems in healthcare including Alzheimer's disease, critical care, mental health, and global health.
Aside from strong machine learning skills, other helpful experience could include: mHealth systems, signal processing, experience with wearables, unwearables, machine learning, cloud computing and edge computing applied to disease and health. Programming in Python, Java, Swift and/or Matlab would be useful. Familiarity with Google Cloud, AWS or Azure also useful.
I'm looking for talented candidates at any (postdoc) stage of career, including assistant professor level (research track or tenure track). Positions are for multiple years and are likely to lead to strong industrial or academic tracks. Previous students and postdocs have graduated to postdoc/faculty positions at MIT, Oxford, Technion, Google, and multiple start-ups / SMEs.
The research group you will be joining is focused on signal processing and machine learning applied to large physiological data streams comprising 10 PhD students, 3 postdocs, 5 professional engineers and one research professor. We have a start-up atmosphere, in newly renovated spaces (on all three campuses) with access to large volumes of clinical data to work on cutting edge applications. We collaborate with some of the world's top tech giants and best clinicians. For example:
https://youtu.be/L1VVanSXZV4?t=2650
The position will be based on three campuses in Atlanta, GA USA: Emory central, Emory Executive Park, and the new high performance 'Big Data/ML' Coda Building at Georgia Institute of Techology, reflecting the highly interdisciplinary nature of the research. For more information on the tech (and film) industry boom in Atlanta, see the following articles:
https://www.americaninno.com/atlanta/from-the-community-atlanta/why-atlanta-is-the-next-great-tech-hub/
https://www.bizjournals.com/atlanta/news/2017/03/28/forbes-atlanta-no-3-u-s-city-poised-to-become.html
http://digsouth.com/2017/06/13/how-atlanta-became-a-startup-boomtown/
Separate tenure track positions are also available:
https://faculty-emory.icims.com/jobs/15754/assistant-professor--tt----signal--processing-%26-machine-learning/job?mobile=false&width=1150&height=500&bga=true&needsRedirect=false&jan1offset=-300&jun1offset=-240
Email me on gari AT gatech.edu and cc bmi-admin AT emory.edu with questions and CV + career aspirations + current situation (e.g. when you graduate, finish current job etc) and to set up a time to chat and find out more.
✔️ @ApplyTime
Multiple postdoc and/or engineering positions are available, starting immediately and continuing over the next six months.
The successful candidates will apply machine learning to temporal data captured in a clinical or ambulatory setting to solve some of the most pressing problems in healthcare including Alzheimer's disease, critical care, mental health, and global health.
Aside from strong machine learning skills, other helpful experience could include: mHealth systems, signal processing, experience with wearables, unwearables, machine learning, cloud computing and edge computing applied to disease and health. Programming in Python, Java, Swift and/or Matlab would be useful. Familiarity with Google Cloud, AWS or Azure also useful.
I'm looking for talented candidates at any (postdoc) stage of career, including assistant professor level (research track or tenure track). Positions are for multiple years and are likely to lead to strong industrial or academic tracks. Previous students and postdocs have graduated to postdoc/faculty positions at MIT, Oxford, Technion, Google, and multiple start-ups / SMEs.
The research group you will be joining is focused on signal processing and machine learning applied to large physiological data streams comprising 10 PhD students, 3 postdocs, 5 professional engineers and one research professor. We have a start-up atmosphere, in newly renovated spaces (on all three campuses) with access to large volumes of clinical data to work on cutting edge applications. We collaborate with some of the world's top tech giants and best clinicians. For example:
https://youtu.be/L1VVanSXZV4?t=2650
The position will be based on three campuses in Atlanta, GA USA: Emory central, Emory Executive Park, and the new high performance 'Big Data/ML' Coda Building at Georgia Institute of Techology, reflecting the highly interdisciplinary nature of the research. For more information on the tech (and film) industry boom in Atlanta, see the following articles:
https://www.americaninno.com/atlanta/from-the-community-atlanta/why-atlanta-is-the-next-great-tech-hub/
https://www.bizjournals.com/atlanta/news/2017/03/28/forbes-atlanta-no-3-u-s-city-poised-to-become.html
http://digsouth.com/2017/06/13/how-atlanta-became-a-startup-boomtown/
Separate tenure track positions are also available:
https://faculty-emory.icims.com/jobs/15754/assistant-professor--tt----signal--processing-%26-machine-learning/job?mobile=false&width=1150&height=500&bga=true&needsRedirect=false&jan1offset=-300&jun1offset=-240
Email me on gari AT gatech.edu and cc bmi-admin AT emory.edu with questions and CV + career aspirations + current situation (e.g. when you graduate, finish current job etc) and to set up a time to chat and find out more.
✔️ @ApplyTime
Postdoc Position in Computational Social Science - NUS
National University of Singapore (NUS) invites applications for a Research Fellow in computational social science. We are looking for an outstanding scientist to provide creative solutions that close the gap between consumer behaviour and engineering. This research focuses on data analysis for electric power grids. The goal is to develop new regulatory policies that improve the resilience of networks in a liberalized electricity market environment. The Fellow will work with researchers and Ph.D. students from various background, including electrical engineering, applied physics, and computer science.
This position can start immediately. The appointment will be 18 months and can be extended up to 36 months. Please email your resume, and one relevant published article to jpeng @ nus.edu.sg
✔️ @ApplyTime
National University of Singapore (NUS) invites applications for a Research Fellow in computational social science. We are looking for an outstanding scientist to provide creative solutions that close the gap between consumer behaviour and engineering. This research focuses on data analysis for electric power grids. The goal is to develop new regulatory policies that improve the resilience of networks in a liberalized electricity market environment. The Fellow will work with researchers and Ph.D. students from various background, including electrical engineering, applied physics, and computer science.
This position can start immediately. The appointment will be 18 months and can be extended up to 36 months. Please email your resume, and one relevant published article to jpeng @ nus.edu.sg
✔️ @ApplyTime
PhD Scholarship Position in Odontological Science Restorative Treatment or Extraction of First Permanent Molars with Severe Molar Incisor Hypomineralization
Job assignments
General information about third-cycle studies: The PhD education in Odontological Science corresponds to studies of 240 credits in total. The studies are equivalent to four year full-time and lead to a Degree of Doctor. The studies comprise carrying out a scientific project and completing at least 30 credits of courses at third-cycle level. The doctoral student must also write a scientific compilation thesis or monograph corresponding to at least 120 credits. For more information about third-cycle studies at Sahlgrenska Academy, see https://medarbetarportalen.gu.se/sahlgrenskaakademin/forskarutbildning/?languageId=100001&skipSSOCheck=true
Project: The first permanent molar often exhibits regions with hypomineralized enamel when erupted. One or more of the teeth may be affected. The condition is called Molar-Incisor Hypomineralization (MIH) [Weerheijm et al. 2001] and is common in child populations (2.4 - 40.2%) [Jälevik 2010]. Clinically, the porous, hypomineralized areas appear as white-yellow to brownish demarcated opaque spots. In these areas, the enamel is insufficiently mineralized to varying degrees and can break apart [Jälevik & Norén 2000]. The affected teeth create problems for the child as well as for the dentist. The teeth can be very painful, e.g., when brushing teeth, ingesting cold drinks or ice cream. The teeth with severely damaged enamel are in need of repair shortly after eruption due to disintegrated enamel and subsequent caries [Leppäniemi et al 2006, Jälevik & Klingberg 2002, Espelid et al. 2009]. As a consequence of repeated painful treatments, the children show more treatment problems and dental fear and anxiety [Jälevik & Klingberg 2002]. In cases of widespread disintegration, disturbing hypersensitivity and/or increasing dental fear and anxiety, extraction may be a treatment option.
More Info
✔️ @ApplyTime
Job assignments
General information about third-cycle studies: The PhD education in Odontological Science corresponds to studies of 240 credits in total. The studies are equivalent to four year full-time and lead to a Degree of Doctor. The studies comprise carrying out a scientific project and completing at least 30 credits of courses at third-cycle level. The doctoral student must also write a scientific compilation thesis or monograph corresponding to at least 120 credits. For more information about third-cycle studies at Sahlgrenska Academy, see https://medarbetarportalen.gu.se/sahlgrenskaakademin/forskarutbildning/?languageId=100001&skipSSOCheck=true
Project: The first permanent molar often exhibits regions with hypomineralized enamel when erupted. One or more of the teeth may be affected. The condition is called Molar-Incisor Hypomineralization (MIH) [Weerheijm et al. 2001] and is common in child populations (2.4 - 40.2%) [Jälevik 2010]. Clinically, the porous, hypomineralized areas appear as white-yellow to brownish demarcated opaque spots. In these areas, the enamel is insufficiently mineralized to varying degrees and can break apart [Jälevik & Norén 2000]. The affected teeth create problems for the child as well as for the dentist. The teeth can be very painful, e.g., when brushing teeth, ingesting cold drinks or ice cream. The teeth with severely damaged enamel are in need of repair shortly after eruption due to disintegrated enamel and subsequent caries [Leppäniemi et al 2006, Jälevik & Klingberg 2002, Espelid et al. 2009]. As a consequence of repeated painful treatments, the children show more treatment problems and dental fear and anxiety [Jälevik & Klingberg 2002]. In cases of widespread disintegration, disturbing hypersensitivity and/or increasing dental fear and anxiety, extraction may be a treatment option.
More Info
✔️ @ApplyTime
PhD position Implementing smart energy grids in Europe and beyond (V39.3625)
Within this EU project, your focus will be on four inter-connected topics:
You will contribute to ongoing research on Responsible Innovation, focusing on issues that occur in the practical implementation of innovations in the private sector.
You will analyze the role of local energy communities in the transition towards new (smart) energy systems; including questions of engagement and co-creation.
You will critically evaluate the socio-technical aspects that emerge with the development and implementation of MUSE grids/technologies; including the development of indicators for measuring these aspects.
You will explore and identify finance and business models/approaches relevant to Responsible Innovations.
Partners of the MUSE Grids project will demonstrate and research the functioning of the technologies in two demo-sites, one situated in Belgium, the other in Italy. In order to facilitate comparison and learning, the MUSE Grids project also foresees the implementation of selected technologies in a non-European context, namely India. Your work will thus go beyond a purely European focus and will explore local energy communities and emerging socio-technical aspects of MUSE grids in Europe and in India. With your work you will contribute to a growing body of work on responsible innovation in the private sector context.
More Info
✔️ @ApplyTime
Within this EU project, your focus will be on four inter-connected topics:
You will contribute to ongoing research on Responsible Innovation, focusing on issues that occur in the practical implementation of innovations in the private sector.
You will analyze the role of local energy communities in the transition towards new (smart) energy systems; including questions of engagement and co-creation.
You will critically evaluate the socio-technical aspects that emerge with the development and implementation of MUSE grids/technologies; including the development of indicators for measuring these aspects.
You will explore and identify finance and business models/approaches relevant to Responsible Innovations.
Partners of the MUSE Grids project will demonstrate and research the functioning of the technologies in two demo-sites, one situated in Belgium, the other in Italy. In order to facilitate comparison and learning, the MUSE Grids project also foresees the implementation of selected technologies in a non-European context, namely India. Your work will thus go beyond a purely European focus and will explore local energy communities and emerging socio-technical aspects of MUSE grids in Europe and in India. With your work you will contribute to a growing body of work on responsible innovation in the private sector context.
More Info
✔️ @ApplyTime
PhD position: Impact of energy transition on voltage quality (V36.3623)
Voltage quality in each network is influenced by several aspects, including the load and generation mixtures and operating profiles as well as the network structure. In the recent years, and years to come, power systems are undergoing an “energy transition” – with the increase of renewable generation as one of the most significant aspects. Renewable generation is very often inverter-interfaced (with the exception of hydro generators), and behaves differently in comparison with conventional (directly coupled synchronous) generators.
The main question of this PhD project is: what is the expected influence of the reduction of conventional generation on the quality of voltage supply in the Netherlands? This question can further be divided into sub-questions:
Frequency and propagation of voltage dips,
Slow voltage variations, rapid voltage changes, flicker, waveform distortion and unbalance,
Influence of network contingencies (e.g. N-2), methodology for calculating the short-circuit levels,
Influence of fault-ride through characteristics of inverter-interfaced generators
Mitigation methods for possible problems
Considerations for adapting existing regulation (connection requirements, device requirements etc.).
More Info
✔️ @ApplyTime
Voltage quality in each network is influenced by several aspects, including the load and generation mixtures and operating profiles as well as the network structure. In the recent years, and years to come, power systems are undergoing an “energy transition” – with the increase of renewable generation as one of the most significant aspects. Renewable generation is very often inverter-interfaced (with the exception of hydro generators), and behaves differently in comparison with conventional (directly coupled synchronous) generators.
The main question of this PhD project is: what is the expected influence of the reduction of conventional generation on the quality of voltage supply in the Netherlands? This question can further be divided into sub-questions:
Frequency and propagation of voltage dips,
Slow voltage variations, rapid voltage changes, flicker, waveform distortion and unbalance,
Influence of network contingencies (e.g. N-2), methodology for calculating the short-circuit levels,
Influence of fault-ride through characteristics of inverter-interfaced generators
Mitigation methods for possible problems
Considerations for adapting existing regulation (connection requirements, device requirements etc.).
More Info
✔️ @ApplyTime
PhD or MPhil - High temperature thermodynamics & phase equilibria for metallurgical, recycling & advanced materials industries
The School of Chemical Engineering is an international leader in the chemical engineering field and has an excellent reputation, built over many decades at The University of Queensland. We deliver quality programs and leadership in chemical engineering education, research and development, and expert consulting to support the process industries. Undergraduate teaching within the School focuses on the disciplines of chemical, biological, environmental and metallurgical engineering and postgraduate programs are available in growing fields including water, sustainable energy and petroleum engineering. For more Information about the Centre, please visit: www.uq.edu.au/chemeng
The Pyrometallurgy Innovation Centre at The University of Queensland has an outstanding international reputation for the high quality of research output. The Centre undertakes fundamental and applied research, funded through competitive Government grants and by world-wide consortia of leading international metallurgical, recycling and advanced materials (including Li batteris) industrial companies. We are seeking enthusiastic candidates interested in cutting edge fundamental as well as applied research in the field of high temperature process metallurgy, metal extraction, recycling and advanced materials manufacturing. The research involves advanced experimental studies integrated with thermodynamic modelling. The research outcomes are essential for modern knowledge-based circular economy including recovery of valuable metals, recycling of electronics and batteries, reduction of energy consumption, CO2 emissions and overall environmental footprint of developed society.
More Info
✔️ @ApplyTime
The School of Chemical Engineering is an international leader in the chemical engineering field and has an excellent reputation, built over many decades at The University of Queensland. We deliver quality programs and leadership in chemical engineering education, research and development, and expert consulting to support the process industries. Undergraduate teaching within the School focuses on the disciplines of chemical, biological, environmental and metallurgical engineering and postgraduate programs are available in growing fields including water, sustainable energy and petroleum engineering. For more Information about the Centre, please visit: www.uq.edu.au/chemeng
The Pyrometallurgy Innovation Centre at The University of Queensland has an outstanding international reputation for the high quality of research output. The Centre undertakes fundamental and applied research, funded through competitive Government grants and by world-wide consortia of leading international metallurgical, recycling and advanced materials (including Li batteris) industrial companies. We are seeking enthusiastic candidates interested in cutting edge fundamental as well as applied research in the field of high temperature process metallurgy, metal extraction, recycling and advanced materials manufacturing. The research involves advanced experimental studies integrated with thermodynamic modelling. The research outcomes are essential for modern knowledge-based circular economy including recovery of valuable metals, recycling of electronics and batteries, reduction of energy consumption, CO2 emissions and overall environmental footprint of developed society.
More Info
✔️ @ApplyTime
Biozentrum PhD Fellowships Program
The Biozentrum encourages talented, ambitious and highly motivated young scientists from all over the world to apply for the prestigious and sought after fellowships offered by the Biozentrum Basel International PhD Program. In contrast to many other PhD student programs that aim at a broad recruitment of many candidates, the “Biozentrum PhD Fellowships” are awarded on a competitive basis to a maximum of 10 successful candidates per open call. Recipients are offered a unique rotation-based selection of a research group of choice and a number of other incentives that foster the scientific excellence and the career prospects of these PhD candidates.
More Info
✔️ @ApplyTime
The Biozentrum encourages talented, ambitious and highly motivated young scientists from all over the world to apply for the prestigious and sought after fellowships offered by the Biozentrum Basel International PhD Program. In contrast to many other PhD student programs that aim at a broad recruitment of many candidates, the “Biozentrum PhD Fellowships” are awarded on a competitive basis to a maximum of 10 successful candidates per open call. Recipients are offered a unique rotation-based selection of a research group of choice and a number of other incentives that foster the scientific excellence and the career prospects of these PhD candidates.
More Info
✔️ @ApplyTime
Postdoc position - Design and control methods for adaptive structures, EPFL
Swiss Federal Institute of Technology (EPFL) | School of Architecture, Civil and Environmental Engineering (ENAC) | Applied Computing and Mechanics Laboratory (IMAC) | Station 18, CH-1015 Lausanne, Switzerland
The Applied Computing and Mechanics Laboratory (IMAC) invites applications for a Postdoc position in the field of design and control methods for adaptive structures.
Background Adaptive structures are equipped with sensors and actuators in order to counteract actively the effect of external actions. Structural adaptation is employed to redistribute the internal flow of forces through controlled shape changes so that the design is not governed by peak loads that occur very rarely. For this reason, adaptation enables a structure to operate closer to design limits in service. Previous work has shown that state-of-the-art adaptive design strategies [1, 2] can be employed to significantly reduce the energetic and material impact of structures, while improving structural performance, such as increasing the slenderness of tall buildings, spans of bridges and reducing the depth of roof systems [3, 4]. In addition, adaptation enables structures to improve their performance under loading through reusing experience (learning) [5, 6], performing diagnosis following damage and through adapting in the damaged state [7, 8]. For further information see www.gennarosenatore.com and IMAC.
More Info
✔️ @ApplyTime
Swiss Federal Institute of Technology (EPFL) | School of Architecture, Civil and Environmental Engineering (ENAC) | Applied Computing and Mechanics Laboratory (IMAC) | Station 18, CH-1015 Lausanne, Switzerland
The Applied Computing and Mechanics Laboratory (IMAC) invites applications for a Postdoc position in the field of design and control methods for adaptive structures.
Background Adaptive structures are equipped with sensors and actuators in order to counteract actively the effect of external actions. Structural adaptation is employed to redistribute the internal flow of forces through controlled shape changes so that the design is not governed by peak loads that occur very rarely. For this reason, adaptation enables a structure to operate closer to design limits in service. Previous work has shown that state-of-the-art adaptive design strategies [1, 2] can be employed to significantly reduce the energetic and material impact of structures, while improving structural performance, such as increasing the slenderness of tall buildings, spans of bridges and reducing the depth of roof systems [3, 4]. In addition, adaptation enables structures to improve their performance under loading through reusing experience (learning) [5, 6], performing diagnosis following damage and through adapting in the damaged state [7, 8]. For further information see www.gennarosenatore.com and IMAC.
More Info
✔️ @ApplyTime
Postdoc/ Fellowship Position in Law & Tech, ETHZ
The postdoc will have the opportunity to develop a course containing 14 distinct lectures in Spring 2020 that explore and showcase the legal implications of cutting-edge developments in engineering and the sciences. In the process, the postdoc/ fellow will forge ties with research groups, sit in lab meetings at different departments at ETH and explore the possibility of common research projects. The course will be a co-taught course, in which the postdoc/ fellow would have significant input and would also do some lecturing. Our offices are located in downtown Zurich, and the working language is English. The appointment will be for at least one year and up to three years (contingent on satisfactory performance) with a flexible starting date. Part-time appointments are also possible in order to accommodate the needs of highly competitive candidates. Salaries are internationally competitive, paid according to ETH standards .
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✔️ @ApplyTime
The postdoc will have the opportunity to develop a course containing 14 distinct lectures in Spring 2020 that explore and showcase the legal implications of cutting-edge developments in engineering and the sciences. In the process, the postdoc/ fellow will forge ties with research groups, sit in lab meetings at different departments at ETH and explore the possibility of common research projects. The course will be a co-taught course, in which the postdoc/ fellow would have significant input and would also do some lecturing. Our offices are located in downtown Zurich, and the working language is English. The appointment will be for at least one year and up to three years (contingent on satisfactory performance) with a flexible starting date. Part-time appointments are also possible in order to accommodate the needs of highly competitive candidates. Salaries are internationally competitive, paid according to ETH standards .
More Info
✔️ @ApplyTime
laweconbusiness.ethz.ch
Postdoc / Fellowship Position in Law & Tech
Dear all,
To be a member of this channel you are not obliged to share these positions with others. But, to keep the channel alive, we need to grow. So, if you would like to receive new positions to make your future, let's try to grow together.
We would really appreciate if you could share those positions that you yourself do not want to apply for.
Best regards,
Your @ApplyTime Team
To be a member of this channel you are not obliged to share these positions with others. But, to keep the channel alive, we need to grow. So, if you would like to receive new positions to make your future, let's try to grow together.
We would really appreciate if you could share those positions that you yourself do not want to apply for.
Best regards,
Your @ApplyTime Team
Postdoctoral Position Available in Bonding and Attunement in Neuropsychiatric Disorders Lab at University of California, San Francisco
Hello all,
We are recruiting a motived and talented individual for a postdoctoral position available in the Bonding and Attunement in Neuropsychiatric Disorders (BAND) Lab that is jointly affiliated with the University of California, San Francisco (UCSF) and the San Francisco VA Medical Center. Our work incorporated various behavioral, physiological, technological, and psychopharmacological techniques to better understand the mechanisms of social connection in healthy individuals and social deficits in patient populations such as post-traumatic stress disorder, alcohol use disorder, and schizophrenia. Furthermore, our work also involves developing and testing novel treatments for those social deficits. More information about the work in the lab can be found here: http://woolleylab.ucsf.edu/. The successful candidate may conduct behavioral and physiological research involving human individual, dyadic, and group cohesion, psychobiological synchrony, and socially relevant pharmacological interventions in these clinical populations. Specifically, the candidate will contribute heavily to the design and execution of several research protocols; review and monitor behavioral assessments, psychophysiological data acquisition and analysis. The successful candidate may conduct behavioral and physiological research involving human individual, dyadic, and group cohesion, psychobiological synchrony, and socially relevant pharmacological interventions in these clinical populations. Specifically, the candidate will contribute heavily to the design and execution of several research protocols; review and monitor behavioral assessments, psychophysiological data acquisition and analysis; and preparation of manuscripts for publication. The successful candidate must demonstrate independence and responsibility and show a serious drive for research.
Minimum Requirements:
Ph.D required in the field of psychology, neuroscience, or a related field
Strong expertise in quantitative statistical analysis Strong expertise in quantitative statistical analysis
Evidence of research productivity
Experience with psycho- or neurophysiological recording, behavioral experimentation, analysis Experience with psycho- or neurophysiological recording, behavioral experimentation, analysis tools and technical hardware/software experience
Ability to work under minimal supervision
Ability to train research assistants
Desirable Qualifications:
Programming experience with Python, Matlab Programming experience with Python, Matlab, etc. and statistical software programs (e.g. R, SPSS)
Previous research experience
To Apply:
Please send your CV, cover letter, and contact information for two references to bandlab@ucsf.edu
Thank you!
Lisa Lin
Lisa Lin
Lab Manager
Bonding and Attunement in Neuropsychiatric Disorders (BAND) Lab
San Francisco VA Medical Center (SFVAMC)
University of California, San Francisco (UCSF)
Office. 415-221-4810 ext. 2-3318
lisa.lin@ucsf.edu
✔️ @ApplyTime
Hello all,
We are recruiting a motived and talented individual for a postdoctoral position available in the Bonding and Attunement in Neuropsychiatric Disorders (BAND) Lab that is jointly affiliated with the University of California, San Francisco (UCSF) and the San Francisco VA Medical Center. Our work incorporated various behavioral, physiological, technological, and psychopharmacological techniques to better understand the mechanisms of social connection in healthy individuals and social deficits in patient populations such as post-traumatic stress disorder, alcohol use disorder, and schizophrenia. Furthermore, our work also involves developing and testing novel treatments for those social deficits. More information about the work in the lab can be found here: http://woolleylab.ucsf.edu/. The successful candidate may conduct behavioral and physiological research involving human individual, dyadic, and group cohesion, psychobiological synchrony, and socially relevant pharmacological interventions in these clinical populations. Specifically, the candidate will contribute heavily to the design and execution of several research protocols; review and monitor behavioral assessments, psychophysiological data acquisition and analysis. The successful candidate may conduct behavioral and physiological research involving human individual, dyadic, and group cohesion, psychobiological synchrony, and socially relevant pharmacological interventions in these clinical populations. Specifically, the candidate will contribute heavily to the design and execution of several research protocols; review and monitor behavioral assessments, psychophysiological data acquisition and analysis; and preparation of manuscripts for publication. The successful candidate must demonstrate independence and responsibility and show a serious drive for research.
Minimum Requirements:
Ph.D required in the field of psychology, neuroscience, or a related field
Strong expertise in quantitative statistical analysis Strong expertise in quantitative statistical analysis
Evidence of research productivity
Experience with psycho- or neurophysiological recording, behavioral experimentation, analysis Experience with psycho- or neurophysiological recording, behavioral experimentation, analysis tools and technical hardware/software experience
Ability to work under minimal supervision
Ability to train research assistants
Desirable Qualifications:
Programming experience with Python, Matlab Programming experience with Python, Matlab, etc. and statistical software programs (e.g. R, SPSS)
Previous research experience
To Apply:
Please send your CV, cover letter, and contact information for two references to bandlab@ucsf.edu
Thank you!
Lisa Lin
Lisa Lin
Lab Manager
Bonding and Attunement in Neuropsychiatric Disorders (BAND) Lab
San Francisco VA Medical Center (SFVAMC)
University of California, San Francisco (UCSF)
Office. 415-221-4810 ext. 2-3318
lisa.lin@ucsf.edu
✔️ @ApplyTime
Postdoctoral Position on Multiview Learning, University of Saint-Etienne, France
A post-doctoral position on multiview learning is available in the Machine Learning/Data Intelligence team of the Hubert Curien lab at the University of Saint-Etienne, France.
Research topics of interest include but are not limited to:
-theoretical frameworks,
-representation learning approaches,
-deep learning approaches,
-transfer learning,
-optimal transport,
-development of new algorithmic approaches,
-dealing missing views.
The position is for one year (with possibility to extend it to 2 years).
The expected salary is 2193 euros NET per month (gross salary: 2,727 euros), including health care.
More information and the application procedure available on this page:
https: //perso.univ-st-etienne. en / me63854h / misc / offer_post_do c_lives.html
Contacts:
{emilie.morvant, ievgen.redko, has maury.habrard}@univ-st-etienne .com
✔️ @ApplyTime
A post-doctoral position on multiview learning is available in the Machine Learning/Data Intelligence team of the Hubert Curien lab at the University of Saint-Etienne, France.
Research topics of interest include but are not limited to:
-theoretical frameworks,
-representation learning approaches,
-deep learning approaches,
-transfer learning,
-optimal transport,
-development of new algorithmic approaches,
-dealing missing views.
The position is for one year (with possibility to extend it to 2 years).
The expected salary is 2193 euros NET per month (gross salary: 2,727 euros), including health care.
More information and the application procedure available on this page:
https: //perso.univ-st-etienne. en / me63854h / misc / offer_post_do c_lives.html
Contacts:
{emilie.morvant, ievgen.redko, has maury.habrard}@univ-st-etienne .com
✔️ @ApplyTime
Postdoctoral position in computational neuroimaging in the area of health neuroscience, Carnegie Mellon University
The Cognitive Axon (CoAx) Lab at Carnegie Mellon University (www.cognitiveaxon.com) has an open postdoctoral position in computational neuroimaging in the area of health neuroscience to work on a set of projects combining machinelearning with large-sampled, high-resolution brain imaging datasets in order to build predictive neuromarkers of cardiovascular disease and other health outcomes. This project is part of an NIH-funded Program Project Grant (P01) with researchers in the MachineLearning) has an open postdoctoral position in computational neuroimaging in the area of health neuroscience to work on a set of projects combining machine learning with large-sampled, high-resolution brain imaging datasets in order to build predictive neuromarkers of cardiovascular disease and other health outcomes. This project is part of an NIH-funded Program Project Grant (P01) with researchers in the Machine Learning Department at CMU and the Departments of Psychology and Medicine at the University of Pittsburgh.
Strong applicants will have:
• Established experience in analyzing neuroimaging data (e.g., fMRI, EEG, diffusion MRI) and/or machine learning• Established experience in analyzing neuroimaging data (e.g., fMRI, EEG, diffusion MRI) and/or machine learning.
• Experience with statistical/scientific programming languages (expertise in Python, Matlab• Experience with statistical/scientific programming languages (expertise in Python, Matlab, and/or R preferred).
• Topical expertise in statistical and computational approaches (e.g., regression, clustering, signal processing).
• Demonstrated ability to complete projects as evidenced by first-author publications.
• Strong organizational, interpersonal, and communication skills that will ensure multidisciplinary collaboration across labs
This position is fully funded for three years with a possible extension for an additional two years.
To apply, please submit a CV, cover letter, and a list of three references to Timothy Verstynen (timothyv@andrew.cmu.edu). The cover letter should include a summary of the candidate’s research interests to date and a statement of future research interests.
✔️ @ApplyTime
The Cognitive Axon (CoAx) Lab at Carnegie Mellon University (www.cognitiveaxon.com) has an open postdoctoral position in computational neuroimaging in the area of health neuroscience to work on a set of projects combining machinelearning with large-sampled, high-resolution brain imaging datasets in order to build predictive neuromarkers of cardiovascular disease and other health outcomes. This project is part of an NIH-funded Program Project Grant (P01) with researchers in the MachineLearning) has an open postdoctoral position in computational neuroimaging in the area of health neuroscience to work on a set of projects combining machine learning with large-sampled, high-resolution brain imaging datasets in order to build predictive neuromarkers of cardiovascular disease and other health outcomes. This project is part of an NIH-funded Program Project Grant (P01) with researchers in the Machine Learning Department at CMU and the Departments of Psychology and Medicine at the University of Pittsburgh.
Strong applicants will have:
• Established experience in analyzing neuroimaging data (e.g., fMRI, EEG, diffusion MRI) and/or machine learning• Established experience in analyzing neuroimaging data (e.g., fMRI, EEG, diffusion MRI) and/or machine learning.
• Experience with statistical/scientific programming languages (expertise in Python, Matlab• Experience with statistical/scientific programming languages (expertise in Python, Matlab, and/or R preferred).
• Topical expertise in statistical and computational approaches (e.g., regression, clustering, signal processing).
• Demonstrated ability to complete projects as evidenced by first-author publications.
• Strong organizational, interpersonal, and communication skills that will ensure multidisciplinary collaboration across labs
This position is fully funded for three years with a possible extension for an additional two years.
To apply, please submit a CV, cover letter, and a list of three references to Timothy Verstynen (timothyv@andrew.cmu.edu). The cover letter should include a summary of the candidate’s research interests to date and a statement of future research interests.
✔️ @ApplyTime
Preyer Postdoctoral Scholar for Strengthening Families, University of North Carolina Chapel Hill, USA
Supervised by Dr. Rebecca Macy, the School of Social Work at the University of North Carolina at Chapel Hill is seeking an emerging scholar for a postdoctoral position to work with a team of faculty and students on research projects related to family, gender, and interpersonal violence (e.g., dating violence, domestic/partner violence, human trafficking, and/or sexual assault and violence). This postdoctoral scholar will support Macy and her team in: conducting literature reviews; conducting qualitative and quantitative data collection; developing grant applications; developing study designs, study protocols and IRB applications; qualitative and quantitative data management and analysis; and research and scholarly dissemination in scholarly as well as practitioner- and policy-based venues. This position will primarily focus on projects related to evaluating services for gender-based violence, developing interventions for elder abuse, and investigations of intimate partner homicide. While working with Macy and her team, the emerging scholar will also have opportunities to develop capacities, expertise, and skills for independent research.
Estimated Appointment Duration: 12-months with the potential of an additional 12-month renewal for a total of 24-months.
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Supervised by Dr. Rebecca Macy, the School of Social Work at the University of North Carolina at Chapel Hill is seeking an emerging scholar for a postdoctoral position to work with a team of faculty and students on research projects related to family, gender, and interpersonal violence (e.g., dating violence, domestic/partner violence, human trafficking, and/or sexual assault and violence). This postdoctoral scholar will support Macy and her team in: conducting literature reviews; conducting qualitative and quantitative data collection; developing grant applications; developing study designs, study protocols and IRB applications; qualitative and quantitative data management and analysis; and research and scholarly dissemination in scholarly as well as practitioner- and policy-based venues. This position will primarily focus on projects related to evaluating services for gender-based violence, developing interventions for elder abuse, and investigations of intimate partner homicide. While working with Macy and her team, the emerging scholar will also have opportunities to develop capacities, expertise, and skills for independent research.
Estimated Appointment Duration: 12-months with the potential of an additional 12-month renewal for a total of 24-months.
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PhD Scholarship in Frequency Combs in Linbo3 Waveguides
Project description
Third-cycle subject: Physics - specialization optics and photonics
The project concerns applied research in the field of integrated nonlinear optics in the framework of the European Network MICROCOMB, aiming at the demonstration of frequency comb generators based on quadratic nonlinearities. Frequency comb research is a Nobel prize winning area and frequency comb generators in compact integrated microresonators (microcombs) are now rapidly emerging as a disruptive technology with multi-disciplinary applications, which encompass metrology, ultrafast signal processing, astronomy, spectroscopy, quantum optics and soliton physics.
The goal of this project is to explore, through theory and experiments, the potential of quadratic optical nonlinearities for a novel class of microcomb devices. The project shall build upon the state-of-the-art nanophotonic platform developed at KTH for ultrahigh confinement and low loss waveguides in lithium niobate on insulator (LNOI) and investigate with it novel nonlinear effects and devices, to demonstrate on-chip microcombs operating with quadratic nonlinearities in the cascading regime.
Through the project, you will become an expert in LNOI nanophotonics, microcombs and nonlinear optics and receive high-quality training in a broad range of experimental techniques for photonic device characterization, fabrication and modelling. Furthermore you shall gain skills in research collaboration, mobility and innovation and take part in a rich programme of trans-national scientific exchanges and events withing the MICROCOMB network, involving leading industry and academic partners across Europe.
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Project description
Third-cycle subject: Physics - specialization optics and photonics
The project concerns applied research in the field of integrated nonlinear optics in the framework of the European Network MICROCOMB, aiming at the demonstration of frequency comb generators based on quadratic nonlinearities. Frequency comb research is a Nobel prize winning area and frequency comb generators in compact integrated microresonators (microcombs) are now rapidly emerging as a disruptive technology with multi-disciplinary applications, which encompass metrology, ultrafast signal processing, astronomy, spectroscopy, quantum optics and soliton physics.
The goal of this project is to explore, through theory and experiments, the potential of quadratic optical nonlinearities for a novel class of microcomb devices. The project shall build upon the state-of-the-art nanophotonic platform developed at KTH for ultrahigh confinement and low loss waveguides in lithium niobate on insulator (LNOI) and investigate with it novel nonlinear effects and devices, to demonstrate on-chip microcombs operating with quadratic nonlinearities in the cascading regime.
Through the project, you will become an expert in LNOI nanophotonics, microcombs and nonlinear optics and receive high-quality training in a broad range of experimental techniques for photonic device characterization, fabrication and modelling. Furthermore you shall gain skills in research collaboration, mobility and innovation and take part in a rich programme of trans-national scientific exchanges and events withing the MICROCOMB network, involving leading industry and academic partners across Europe.
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KTH
Doctoral student in integrated frequency combs
På KTH blir du en del av en verksamhet som har en lång tradition av ledande forskning och utbildning. Hos oss får du möjlighet att ge liv åt dina idéer och samtidigt bidra till morgondagens samhälle.
Monash University has an opening postdoctoral fellowship position in molecular biology. The deadline to apply is January 03, 2019.
The Opportunity
Established through a joint venture between Monash University and the Victorian Government, the Australian Regenerative Medicine Institute (ARMI) builds on the University's existing strengths in biomedical research, and supports the critical infrastructure required to deliver the next generation of discoveries in regenerative medicine.
ARMI is located at one of the world's largest regenerative medicine and stem cell research centres, at the Clayton Campus. Its scientists have a focus on unravelling the basic mechanisms of the regenerative process, enabling doctors to prevent, halt and reverse damage to vital organs due to disease, injury or genetic conditions.
ARMI’s Mission is to address the unanswered questions with a multi‐centre, cross‐disciplinary and highly focused approach, for the development of innovative clinical protocols as well as the pursuit of rapid commercial transfer of its technologies related to regenerative medicine. A core element of the ARMI is the creating and supporting the scientific leaders of tomorrow through the Future Scientific Leaders Program based on the model at the world-renowned European Molecular Biology Laboratories (EMBL) established throughout Europe. The program facilitates collaboration between the scientific leaders of today and providing young scientists with the freedom to pursue discovery‐based research and position them to become the scientific leaders of tomorrow.
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The Opportunity
Established through a joint venture between Monash University and the Victorian Government, the Australian Regenerative Medicine Institute (ARMI) builds on the University's existing strengths in biomedical research, and supports the critical infrastructure required to deliver the next generation of discoveries in regenerative medicine.
ARMI is located at one of the world's largest regenerative medicine and stem cell research centres, at the Clayton Campus. Its scientists have a focus on unravelling the basic mechanisms of the regenerative process, enabling doctors to prevent, halt and reverse damage to vital organs due to disease, injury or genetic conditions.
ARMI’s Mission is to address the unanswered questions with a multi‐centre, cross‐disciplinary and highly focused approach, for the development of innovative clinical protocols as well as the pursuit of rapid commercial transfer of its technologies related to regenerative medicine. A core element of the ARMI is the creating and supporting the scientific leaders of tomorrow through the Future Scientific Leaders Program based on the model at the world-renowned European Molecular Biology Laboratories (EMBL) established throughout Europe. The program facilitates collaboration between the scientific leaders of today and providing young scientists with the freedom to pursue discovery‐based research and position them to become the scientific leaders of tomorrow.
More Info
✔️ @ApplyTime
Postdoc in Bacterial Protein Phosphorylation, Denmark
DTU Biosustain announces a vacancy in the Bacterial Signal Transduction group headed by Professor Ivan Mijakovic. We are a bacteriology laboratory, working with a broad range of topics. One major focus of our research is protein phosphorylation, a reversible post-translational modification which forms the basis of many signaling and regulatory mechanisms in the bacterial cell. We study bacterial cell factories, employing phosphorylation systems to improve their yield, and bacterial pathogens, to exploit phosphorylation systems as targets for development of new antibacterial drugs.
This particular position is related to a basic science project on protein phosphorylation in the bacterium Bacillus subtilis. The project will be related to the question how relatively few kinases in bacteria can control the phosphorylation state of a large number of substrate proteins. The experimental approach will entail mass spectrometry-based quantitative phosphoproteomics which will lead into functional characterization, both in vitro and in vivo, of select phosphoproteins.
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DTU Biosustain announces a vacancy in the Bacterial Signal Transduction group headed by Professor Ivan Mijakovic. We are a bacteriology laboratory, working with a broad range of topics. One major focus of our research is protein phosphorylation, a reversible post-translational modification which forms the basis of many signaling and regulatory mechanisms in the bacterial cell. We study bacterial cell factories, employing phosphorylation systems to improve their yield, and bacterial pathogens, to exploit phosphorylation systems as targets for development of new antibacterial drugs.
This particular position is related to a basic science project on protein phosphorylation in the bacterium Bacillus subtilis. The project will be related to the question how relatively few kinases in bacteria can control the phosphorylation state of a large number of substrate proteins. The experimental approach will entail mass spectrometry-based quantitative phosphoproteomics which will lead into functional characterization, both in vitro and in vivo, of select phosphoproteins.
More Info
✔️ @ApplyTime
https://www.dtu.dk
Postdoc in Bacterial Protein Phosphorylation