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Neuroscience Research Engineer Jobs in Indiana (NOW HIRING)

Research Principal Engineer I 12 Months Warsaw, IN Duties Job Summary Responsible for leading and ... Relevant disciplines may include neuroscience, biomedical science, biology, toxicology, materials ...

Postdoctoral Appointee

Bloomington, IN · On-site

$45K - $61K/yr

D., or equivalent degree in a relevant field such as physiology, neuroscience, biomedical engineering, or aerospace medicine. • Strong background in human physiology, translational research, or ...

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Neuroscience Research Engineer information

What does a neuroscience research engineer do?

A Neuroscience Research Engineer applies engineering principles and technical skills to support neuroscience research. They design, develop, and maintain hardware and software tools used in experiments that investigate the brain and nervous system. Their work may involve data acquisition, signal processing, computational modeling, and creating custom devices or algorithms to analyze neural data. These engineers often collaborate closely with neuroscientists to advance research in areas such as brain-computer interfaces, neural imaging, and electrophysiology.

What are the key skills and qualifications needed to thrive as a neuroscience research engineer?

To thrive as a Neuroscience Research Engineer, you need a strong background in neuroscience, engineering, and data analysis, usually supported by an advanced degree in a relevant field. Familiarity with neuroimaging tools (such as fMRI or EEG), programming languages (like Python or MATLAB), and data processing software is essential, and certifications in research ethics or neurotechnology are advantageous. Outstanding problem-solving abilities, attention to detail, and effective collaboration and communication skills are crucial soft skills. These skills and qualifications enable accurate experimental design, reliable data interpretation, and productive teamwork in advancing neuroscience research.

What are some common challenges faced by neuroscience research engineers when integrating new technologies into ongoing research projects?

Neuroscience Research Engineers often encounter challenges when introducing cutting-edge tools or methodologies into established research workflows. Compatibility issues with existing equipment, data integration complexities, and the need for thorough validation to ensure data accuracy are frequent hurdles. Additionally, coordinating with interdisciplinary teams—including neuroscientists, software developers, and clinical staff—requires clear communication to align technical innovations with research objectives. Overcoming these challenges typically involves proactive planning, continuous learning, and strong collaborative skills.

What is the difference between Neuroscience Research Engineer vs Neuroscientist?

AspectNeuroscience Research EngineerNeuroscientist
Required CredentialsBachelor's or Master's in Engineering, Neuroscience, or related fields; often some research experiencePh.D. in Neuroscience or related disciplines; extensive research background
Work EnvironmentResearch labs, tech companies, healthcare settings focusing on developing neurotechnologiesAcademic labs, research institutions, hospitals studying brain functions
Employer & Industry UsageTech firms, biotech companies, medical device manufacturersUniversities, research institutes, healthcare organizations

Neuroscience Research Engineers focus on applying engineering principles to develop neurotechnologies and solutions, often working in industry settings. Neuroscientists primarily conduct fundamental research to understand brain functions, typically in academic or clinical environments. Both roles require strong research skills but differ in their focus and application.

Does neuroscience research pay well?

Neuroscience research engineers typically earn competitive salaries that vary based on experience, education, and location. Entry-level positions may start lower, but experienced professionals with advanced degrees and specialized skills can earn higher wages, especially in academic or industry settings with access to research funding and grants.

How do I become a neuroscience research engineer?

To become a neuroscience research engineer, typically a bachelor's degree in neuroscience, biomedical engineering, or a related field is required, often followed by a master's or Ph.D. for advanced roles. Skills in programming, data analysis, and laboratory techniques are essential, along with experience using tools like MATLAB or Python and familiarity with neuroimaging methods. Gaining research experience through internships or assistant positions can also improve job prospects.

What are popular job titles related to Neuroscience Research Engineer jobs in Indiana?

For Neuroscience Research Engineer jobs in Indiana, the most frequently searched job titles are:

What job categories do people searching Neuroscience Research Engineer jobs in Indiana look for?

The top searched job categories for Neuroscience Research Engineer jobs in Indiana are:

What cities in Indiana are hiring for Neuroscience Research Engineer jobs?

Cities in Indiana with the most Neuroscience Research Engineer job openings:

Research Principal Engineer I

Aequor

Warsaw, IN • On-site

Other

Posted 5 days ago


Job description

Research Principal Engineer I

12 Months

Warsaw, IN


Duties


Job Summary

Responsible for leading and supporting investigation and research activities for orthopedic products. This role drives research planning, study execution support, and outcome tracking, biological evaluation, and risk assessment documentation to support product development and regulatory objectives. Serves as a scientific subject matter expert and advisor to cross-functional teams including R&D, Marketing, Sales, Clinical Affairs, and Regulatory Affairs. Acts as a key scientific liaison with external key opinion leaders, laboratories, suppliers, CROs and partner organizations. Collaborates across design, process engineering, manufacturing, quality, regulatory, corporate, and site teams to advance research initiatives and support broader neuro-related project needs.


Principal Duties and Responsibilities:

  • Identify, assess, and support the development of new and existing orthopedic products
  • Lead or support development, review, and approval of technical documentation, including study protocols, reports, and biological safety risk assessments per ISO 10993.
  • Develop strategy for technical investigations and provide scientific expertise to the research team and other cross-functional partners.
  • Contribute biological safety content and supporting rationale for regulatory submissions and related technical documents.
  • Serve as a subject matter resource for biological evaluation activities related to new product development and sustaining products across the portfolio.
  • Coordinate, initiate, track laboratory studies and associated deliverables.
  • Conduct biocompatibility assessments and organize required biological safety testing.
  • Support development of testing strategies and biological safety risk assessments for orthopedic products.
  • Present scientific and technical information to internal groups, stakeholders, and regulatory bodies as necessary.
  • Provide medical and scientific expertise to project teams, marketing, global sales, and medical information functions, as needed.
  • Develop materials for project updates, technical reviews, and data presentations.
  • Support relationships and scientific interactions with key opinion leaders and external collaborators.
  • Contribute to additional neuro-related research activities based on business and project needs.
  • This is not intended to be an exhaustive list of duties and may not include all essential functions of the role.


Skills

Expected Areas of Competence (i.e., knowledge, skills and abilities)

  • Recognized subject matter expertise in biological safety (ISO 10993) and orthopedic device manufacturing/quality/regulatory requirements.
  • Strong foundation of internal and external training in area of biological safety.
  • Demonstrated ability to present preclinical and scientific data clearly, credibly, and persuasively to expert audiences and key opinion leaders.
  • Ability to communicate complex scientific concepts in a clear, concise, and audience appropriate manner.
  • Strong and independent problem-solving skills, including the ability to evaluate complex situations, identify practical solutions, and execute effectively in a timely manner.
  • Demonstrated ability to expand current knowledge, methods, and procedures and establish approaches that others can build upon.
  • Ability to balance cross-functional priorities to meet customer expectations and project timelines.
  • Effective use of resources, sound judgment, and strong execution skills.
  • Demonstrated professionalism and ability to represent the company effectively, including in challenging or conflicting situations.
  • Strong negotiation and collaboration skills related to scope, design, process, and timelines.
  • Strong written, verbal, and presentation skills, with the ability to respond confidently to scientific and regulatory questions.
  • Ability to discuss complex topics with confidence and credibility.
  • Ability to communicate sensitive or complex information effectively with management, surgeons, external experts, and other stakeholders.
  • Demonstrated leadership, initiative, and accountability.


Education

Education/Experience Requirements

  • Master’s degree in a relevant scientific discipline required; PhD or DVM preferred. Relevant disciplines may include neuroscience, biomedical science, biology, toxicology, materials science, or a related field.
  • Bachelor’s degree with significant directly relevant experience may be considered in lieu of an advanced degree.
  • Typically requires: Master’s degree with 5+ years of relevant industry experience, or PhD or DVM with 3+ years of relevant industry experience, or Bachelor’s degree with 10+ years of relevant experience.
  • 3-5 years of research experience in neuroscience, tissue histology, or related preclinical research areas.
  • 3-5 years of hands-on experience in preclinical in vivo research, including large animal model testing.
  • 5+ years of experience in medical device R&D with responsibility for biological safety risk assessment, or equivalent depth of experience based on degree level.
  • Experience with successful project management is required.
  • Experience supporting regulated product development and cross-functional research programs is preferred.


Travel Requirements

  • Up to 20%