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Neural Interface Research Jobs in Oregon (NOW HIRING)

$35.71/hr

... interfaces, and AI/ML-driven signal processing to enable multiplexed, real-time detection of ... Implement and refine machine learning models, including neural networks and random forests, for ...

Senior Software Developer, AI Networking

OR · On-site +1

$54.50 - $72/hr

... interfaces in a fast-paced, evolving environment. What we need to see: B.Sc., M.Sc degree in ... This new model - where deep neural networks are trained to recognize patterns from massive amounts ...

Neural Interface Research information

What is neural interface research?

Neural interface research is the scientific study and development of technologies that connect the nervous system, particularly the brain, with external devices or computers. These interfaces, often called brain-computer interfaces (BCIs) or neural prosthetics, enable direct communication between neural tissue and electronic systems. The goal of this research is to restore lost sensory or motor functions, treat neurological disorders, or enhance human capabilities. Neural interface research is highly interdisciplinary, involving neuroscience, engineering, computer science, and medicine. Advances in this field have the potential to revolutionize healthcare and human-machine interaction.

What are the key skills and qualifications needed to thrive in neural interface research?

To thrive in Neural Interface Research, you need advanced knowledge in neuroscience, biomedical engineering, and signal processing, often supported by a graduate degree in a related field. Proficiency with programming languages (such as Python or MATLAB), neural data acquisition systems, and simulation tools is typically required. Exceptional problem-solving abilities, collaboration, and strong communication skills help researchers innovate and translate findings across multidisciplinary teams. These skills are crucial for developing cutting-edge neural technologies and ensuring rigorous, impactful scientific progress.

What are some common interdisciplinary challenges faced by professionals in neural interface research teams?

Neural Interface Research teams often bring together experts from neuroscience, engineering, computer science, and clinical backgrounds, which can lead to challenges in communication and aligning goals across disciplines. Collaborators may use different terminology or have varying expectations regarding project timelines and outcomes. Successful professionals in this field need to be proactive in fostering clear communication, demonstrating adaptability, and developing a basic understanding of adjacent fields to effectively contribute to collaborative projects. These interdisciplinary challenges ultimately offer valuable opportunities for personal growth and innovation.

What is the difference between Neural Interface Research vs Neural Engineering?

AspectNeural Interface ResearchNeural Engineering
Required CredentialsAdvanced degrees in neuroscience, biomedical engineering, or related fieldsSimilar credentials, often with additional focus on device design and implementation
Work EnvironmentResearch labs, universities, biotech companiesResearch labs, medical device companies, clinical settings
Industry UsageFocuses on developing and understanding neural interfacesDesigning, testing, and applying neural interface devices
Common Search IntentResearch methods, latest advancements, academic rolesProduct development, device engineering, clinical applications

Neural Interface Research primarily involves exploring and understanding neural interfaces through scientific investigation, while Neural Engineering focuses on designing and developing neural interface devices for practical use. Both roles require similar educational backgrounds but differ in their application and work environment.

What are popular job titles related to Neural Interface Research jobs in Oregon?

For Neural Interface Research jobs in Oregon, the most frequently searched job titles are:

$35.71/hr

Part-time

Re-posted 22 hours ago


Job description

Title: Summer ResearcherDepartment:Associate ProfessorReports To:Associate ProfessorPosition Summary:

The PRANA Lab at NJIT develops programmable, responsive, and adaptive microfluidic biosensing platforms for applications spanning point-of-care diagnostics, environmental monitoring, and defense. Our flagship systems-including the ESSENCE (Electrochemical Sensing System with Ionic-liquid-based Nanoporous Configurations for Environments) platform and the Porous Membrane Transducer (PMT)-leverage impedance spectroscopy, ionic liquid interfaces, and AI/ML-driven signal processing to enable multiplexed, real-time detection of chemical and biological analytes. We seek a hands-on Summer Researcher to contribute to advancing electrochemical gas sensing technology over a focused 10-week term, supporting innovative research in environmental monitoring and chemical detection.


Essential Functions:
  • Design, fabricate, and characterize electrochemical microfluidic gas sensing cells incorporating ionic liquid electrolytes.
  • Develop and optimize electrode materials, including indium tin oxide (ITO) and carbon-based electrodes, to enhance sensor sensitivity and selectivity.
  • Integrate porous membrane transducer architectures into portable, field-deployable sensing modules.
  • Conduct impedance spectroscopy and amperometric measurements for volatile organic compound (VOC) detection and quantification.
  • Implement and refine machine learning models, including neural networks and random forests, for multi-analyte classification and concentration prediction.
  • Develop signal drift correction protocols to improve long-term sensor stability under real-world operating conditions.
  • Integrate sensor data acquisition with embedded computing platforms to support autonomous, portable operation.
  • Design and execute experiments to evaluate sensor performance against established reference methods.
  • Document experimental procedures and results, prepare technical reports, and contribute to presentations.
  • Provide technical data and analytical results to support ongoing development of the ESSENCE-Air platform.
  • Collaborate with graduate and undergraduate students within the PRANA Lab.

Prerequisite Qualifications:
  • Ph.D. in Chemical Engineering, Materials Science, Electrical Engineering, Chemistry, or a related field.
  • Demonstrated hands-on experience with electrochemical sensing techniques, including impedance spectroscopy, cyclic voltammetry, and amperometry.
  • Experience designing and fabricating microfluidic devices.
  • Ability to work independently, troubleshoot technical challenges, and deliver results within established project timelines.
  • Excellent written and verbal communication skills in English.

Preferred Qualifications:
  • Experience with ionic liquid-based electrolyte systems for gas sensing applications.
  • Familiarity with AI/ML frameworks such as Python, scikit-learn, TensorFlow, or equivalent tools applied to chemical sensor data.
  • Experience developing portable or field-deployable analytical instrumentation.
  • Experience with impedance data analysis and equivalent circuit modeling.
  • Background in point-of-care diagnostics or environmental sensing applications.

Compensation: $35.71/hour

At the university's discretion, the education and experience prerequisites may be exempted where the candidate can demonstrate to the satisfaction of the university an equivalent combination of education and experience specifically preparing the candidate for success in the position.

Range:Hourly Employees

NJIT considers factors such as (but not limited to) scope and responsibilities of the position, candidate's work experience, education/training, key skills, internal peer equity, as well as, market and organizational considerations when extending an offer. This pay range represents base pay only and excludes any additional items such as incentives, bonuses, or other items.

FLSA:Non-ExemptTime Type:Part timePay Rate:HourlyAdditional Information:

As an EEO employer NJIT is committed to building a diverse and inclusive teaching, research, and working environment and strongly encourages applications from individuals with disabilities, minorities, veterans, and women.


Employment at NJIT is subject to the provisions of New Jersey First Act which mandates new employees, who are not NJ residents, to establish primary residence in New Jersey within one year of their appointment to certain positions. The law does not apply to any individual employed at NJIT on a temporary or per semester basis as a visiting or adjunct professor, teacher, lecturer, researcher or administrator. For more information on the act please click here.


If special accommodations are needed in applying for a position, please visit the Department of Human Resources located in Fenster Hall, 5th Floor, University Heights, Newark, NJ 07102 or call (973) 596-3140. If you have questions, please email the Human Resources Department at hr@njit.edu.


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