PhD student - From brain circuits of threat to neurofeedback in humans

KNAW (Nederlandse Akademie van Wetenschappen)

Amsterdam

On-site

EUR 36,000 - 45,000

Full time

4 days ago
Be an early applicant
Application generator

Don’t send a generic resume — generate a resume and cover letter tailored to this exact role.

Get past ATS filters

Benefits offered by this job

Travel allowance
ABP pension

Job summary

The Netherlands Institute for Neuroscience in Amsterdam, jointly with Maastricht UMC+, seeks a PhD student to investigate how brain circuits govern threat and stress and to develop neurofeedback approaches in humans.

You will first study mouse defensive behaviors and circuit regulation, using TRAP2, viral tracing, optogenetics, and fiber photometry, then translate findings to humans with 7T fMRI and real-time neurofeedback paradigms.

Qualifications

  • Master's degree in neuroscience or closely related field.
  • Strong interest in neural circuits and behavior.
  • Experience with interdisciplinary collaboration and English proficiency.

Responsibilities

  • Work on mouse models to identify brain regions regulating defensive behavior.
  • Apply TRAP2, viral tracing, optogenetics, fiber photometry and data analysis.
  • Translate findings to humans with 7T fMRI and real-time neurofeedback development.
  • Collaborate across neuroscience and clinical psychiatry teams; communicate results.

Skills

Neural circuits
Behavioral analysis
Data analysis
English proficiency
Collaborative work

Education

Master's degree in neuroscience

Tools

TRAP2
7T MRI
Real-time fMRI
Viral tracing

Job description

The Netherlands Institute for Neuroscience and Maastricht University Medical Center are looking for an enthusiastic and ambitious PhD student - From brain circuits of threat to neurofeedback in humans to join a collaborative translational neuroscience project investigating how the brain controls responses to threat and stress. The project is part of a new programme aimed at strengthening the connection between fundamental neuroscience and clinical psychiatry.

Maladaptive responses to threat are an important feature of psychiatric conditions such as anxiety disorders, PTSD and depression. In this project, we will identify brain regions that can regulate threat responses and investigate whether these regions can ultimately be targeted using real-time fMRI neurofeedback.

The project provides a unique opportunity to work across the boundary between fundamental systems neuroscience and human translational neuroscience.

  • Location: Amsterdam
  • Minimum hours per week: 38
  • Contract duration: first 1 year, total 4 years
What will you do

You will first work at the Netherlands Institute for Neuroscience (NIN) in Amsterdam, in the laboratory of Prof. Alexander Heimel. Using mouse models of innate defensive behavior, you will identify a brain region that can regulate defensive behavior. You will use state-of-the-art approaches including behavioral analysis of innate defensive responses, activity-dependent neuronal tagging using TRAP2, viral and monosynaptic rabies tracing, optogenetic manipulation of neural circuits, fiber photometry and quantitative analysis of neural and behavioral data.

In the second part of the project, you will work with Prof. David Linden and colleagues at Maastricht UMC+, translating the circuit identified in mice to humans. You will use 7T fMRI to translate the findings from the first part and develop a real-time fMRI neurofeedback paradigm through which participants learn to regulate the identified brain region.

The ultimate aim is to develop a biologically grounded approach to neurofeedback in which targets are selected because they have a demonstrated causal role in controlling threat circuitry. The work may provide a foundation for future neurofeedback interventions in patients with stress-related psychiatric disorders.

What will you contribute

We are looking for a candidate who:

  • has, or will soon obtain, a master's degree in neuroscience, biomedical sciences, medicine, psychology, cognitive neuroscience, or a related discipline
  • has a strong interest in how neural circuits generate behavior
  • is enthusiastic about working at the interface between animal and human neuroscience
  • is interested in learning a broad range of experimental and computational techniques
  • enjoys quantitative analysis and has or is willing to develop data-analysis skills
  • wants to interact with psychiatrists and clinical psychologists to develop new paradigms
  • has good communication skills and enjoys working collaboratively
  • has a good command of spoken and written English

Experience with animal behavior, optogenetics, viral approaches, microscopy, programming/data analysis, MRI or human experimental research would be an advantage, but we do not expect applicants to already have expertise in all these areas. More important is a strong scientific curiosity and willingness to learn techniques from both animal systems neuroscience and human neuroimaging.

Because part of the project involves experimental work with mice, the candidate should be comfortable working with laboratory animals.

What we offer

You will join two complementary and highly interactive research environments. At the Netherlands Institute for Neuroscience, you will receive training in causal circuit neuroscience and the neural mechanisms underlying innate behavior. At Maastricht UMC+, you will gain expertise in human neuroimaging, high-field 7T MRI and real-time neurofeedback within a clinical neuroscience environment. The project includes regular interaction with both research groups and joint supervision throughout the PhD.

The project is funded for four years. The first two years will primarily focus on circuit discovery and causal experiments in mice, followed by human circuit validation and neurofeedback experiments during years three and four. Some travel or/and movement allowance is budgeted for making the collaboration between Amsterdam and Maastricht smooth.

You will have opportunities to present your work at international conferences, collaborate with researchers across neuroscience, psychiatry and neuroimaging, and develop a profile as a genuinely cross-species translational neuroscientist.

Research environment

The project is a collaboration between the group of Prof. Alexander Heimel at the Netherlands Institute for Neuroscience in Amsterdam and the group of Prof. David Linden at Maastricht UMC.

The Heimel group investigates the neural circuits that transform sensory information and internal state into behavior, with particular expertise in visual and innate behaviors, circuit tracing and causal manipulation in mice.

The Maastricht team has extensive expertise in fMRI neurofeedback, high-field imaging and clinical neuroscience, including subcortical neurofeedback targets. The project will also involve interaction with researchers experienced in real-time and 7T fMRI.

About the Netherlands Institute for Neuroscience

The Netherlands Institute for Neuroscience is a leading fundamental neuroscience research institute, in the international and progressive city of Amsterdam. It provides a critical mass of scientists (spanning more than 27 nationalities) and neuroscience facilities, in a highly interactive, dynamic, multi-cultural environment, with English as the working language.

Terms of employment

Depending on education and experience the minimum salary is € 3.204 and the maximum salary is € 4.051 gross per month for a full-time appointment (scale P cao Nederlandse Universiteiten/KNAW). This is exclusive of 8% vacation allowance, 8.3% year-end bonus, travel allowance, internet allowance, home working allowance and pension accrual with ABP.

The KNAW offers its staff an excellent package of secondary benefits. A package that meets the different needs of employees depending on their stage of life, lifestyle or career ambitions. For example, by working an extra two hours a week, it is possible to increase the number of days off from 29 to 41 days a year (with full-time employment).

Applying for a Certificate of Good Conduct can be part of the employment procedure.

Get your free, confidential resume review.

or drag and drop your file here.

Similar jobs

Similar jobs worth comparing

PhD student - From brain circuits of threat to neurofeedback in humans
PhD student - From brain circuits of threat to neurofeedback in humans

Royal Netherlands Academy of Arts and Sciences (KNAW) • Netherlands

Hybrid
EUR 36,000 - 45,000
PhD student - Traumatic Brain Injury
PhD student - Traumatic Brain Injury

KNAW (Nederlandse Akademie van Wetenschappen) • Amsterdam

On-site
EUR 36,000 - 45,000
International environment for research
Mentoring and training opportunities
Personal growth opportunities
+2
PhD Candidate \"When Vascular Clearance Fails: Can Brain Networks Be Restored?\"
PhD Candidate \"When Vascular Clearance Fails: Can Brain Networks Be Restored?\"

University of Amsterdam (UvA) • Netherlands

On-site
EUR 34,000 - 46,000
PhD: Threat Circuits & Real-Time fMRI Neurofeedback
PhD: Threat Circuits & Real-Time fMRI Neurofeedback

KNAW (Nederlandse Akademie van Wetenschappen) • Amsterdam

On-site
EUR 36,000 - 45,000
Travel allowance
ABP pension
PhD in Translational Neuroscience: Threat Regulation
PhD in Translational Neuroscience: Threat Regulation

Royal Netherlands Academy of Arts and Sciences (KNAW) • Netherlands

Hybrid
EUR 36,000 - 45,000
PhD student cerebellar morphology
PhD student cerebellar morphology

KNAW (Nederlandse Akademie van Wetenschappen) • Amsterdam

On-site
EUR 36,000 - 45,000
ABP pension
Travel allowance
Home working allowance
+1
PhD position EEG and Neurobiological Markers
PhD position EEG and Neurobiological Markers

University of Groningen • Netherlands

On-site
EUR 30,000 - 36,000
232 vacation hours/year
8.3% end-of-year bonus
8% holiday allowance
+1
PhD position in understanding cellular mechanisms driving traumatic brain injury-associated dementia
PhD position in understanding cellular mechanisms driving traumatic brain injury-associated dementia

University of Amsterdam (UvA) • Netherlands

On-site
EUR 36,000 - 45,000
PhD Position in \"Modifying Synapses to Mitigate Alzheimer's Disease\"
PhD Position in \"Modifying Synapses to Mitigate Alzheimer's Disease\"

Uva • Amsterdam

Hybrid
EUR 38,000 - 49,000
ABP pension contribution
Housing support for relocation
PhD training and courses
PhD position Data Science
PhD position Data Science

RUG • Groningen

On-site
EUR 36,000 - 45,000