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Neural Electrode Jobs (NOW HIRING)

We are also adding electrode-based interfaces in animal studies. From these data, we'll build ... neural, or medical imaging data; prior work in a research setting where you had to build the ...

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Neural Electrode information

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$11K

$248.6K

$400K

How much do neural electrode jobs pay per year?

As of Sep 10, 2026, the average yearly pay for neural electrode in the United States is $248,571.00, according to ZipRecruiter salary data. Most workers in this role earn between $100,000.00 and $400,000.00 per year, depending on experience, location, and employer.

What is the difference between Neural Electrode vs Neural Engineer?

AspectNeural ElectrodeNeural Engineer
Required CredentialsTechnical training, certifications in biomedical devicesDegree in biomedical engineering, neuroscience, or related field
Work EnvironmentLaboratories, hospitals, research facilitiesResearch labs, medical device companies, academic institutions
Industry UsageComponent used in neural interfaces and brain-machine interfacesDesigns and develops neural interface systems and devices

Neural electrodes are specialized components used in neural interfaces, focusing on hardware and implantation. Neural engineers design and develop these systems, integrating neural electrodes into functional devices. While neural electrodes are hardware elements, neural engineers oversee the entire development process, combining engineering, neuroscience, and medical knowledge.

What other helpful pages are available for Neural Electrode?

Other pages related to Neural Electrode:

Infographic showing various Neural Electrode job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 85% Full Time, 13% Part Time, and 1% Contract. Highlights an 77% Physical, 2% Hybrid, and 21% Remote job distribution, with an average salary of $248,571 per year, or $119.5 per hour.

Research Scientist, Data Analysis

San Francisco, CA • On-site

$183K - $210K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 7 days ago


Job description

About Arbor Neuroscience 

(formerly Forest Neurotech)

Arbor is a nonprofit research organization working on one of the hardest open problems in clinical neuroscience: how to change brain circuits by design.

Millions of people with depression, chronic pain, and other brain disorders have no treatment that works. Modulating activity in the brain circuits underlying their symptoms – with electrical stimulation, focused ultrasound, or magnetic stimulation – can work spectacularly well. But it doesn't work reliably, and we can't predict who it will help.

That's what Arbor aims to fix. The starting point is a new class of experiment: intervene, measure how the circuit responds, track the symptom, and repeat in the same individual over months. We’re building the necessary experimental platform. It currently includes the Forest 1 ultrasound system, which works like a wearable functional MRI, but with higher resolution. The system images activity across large brain volumes, including deep brain structures, and will soon stimulate as well. We are also adding electrode-based interfaces in animal studies. From these data, we'll build models to make neuromodulation predictable.

Arbor is a Focused Research Organization within the Convergent Research family, and the new name for Forest Neurotech. We're a mission-focused nonprofit, doing multidisciplinary translational work that doesn't fit in a lab or on a company roadmap. We have the funding to run the first phase, and we're a small team – the people we hire now will shape what Arbor becomes.

The Role

This is the person who turns our experiments into results.

Arbor is generating novel datasets. In humans, we image deep brain structures with functional ultrasound, and we will soon be adding ultrasound neuromodulation. Those studies are longitudinal and causal: intervene, image the circuit response, track the symptom, and repeat in the same person over months. In animals, we combine this bidirectional ultrasound with electrophysiological stimulation and recording, giving us causal measurements across a wide range of spatial and temporal scales, in the same subjects over time.

Your primary responsibility is the analysis of those data and the tooling around them, working with a highly quantitative experimental team from the design stage onward. Because these studies will be longitudinal and closed-loop, there will also be a need for optimal experiment design, online analysis implementations, and closed-loop control.

We're hiring at multiple levels and will calibrate scope and title to your experience: at the earlier end, you'd own the analysis work in close collaboration with the scientific team; with more experience, you'd set the computational direction for the organization.

We're also still a small, startup-like organization, so everyone fills multiple roles, including hands-on science and the work that gets science done.


What You’ll Do
  • Own analysis of Arbor's experimental data, including functional ultrasound imaging and electrophysiology, along with the tooling that supports it

  • Work with the experimental team from study design through interpretation, so we answer the highest-priority questions

  • Develop image processing tools: registration and alignment, artifact handling, and whatever else the data demands

  • Help design algorithms for intervention optimization and adaptive experiment design

  • Develop online and real-time analysis methods to support closed-loop experiments

  • Build methods for integrating data across modalities and scales

  • Contribute to high-level scientific decisions about where the organization is going

Not all of this is one person's job. Where you start depends on your strengths and on what the program needs most.

Who We’re Looking For

The successful candidate will have:

  • A strong quantitative background: a PhD, or comparable training in an equally demanding environment such as industry

  • Real depth in several of: signal processing, statistics and inference, machine learning, medical or brain imaging analysis, control theory, computational neuroscience; we don't expect all of them

  • Strong coding skills

  • A significant body of independent work you can point to

  • The judgment to tell a problem that can be solved with standard statistical methods from one that requires a more sophisticated approach – and the discipline to prefer the simpler answer

  • A self-starter with the skills and instinct to find the shortest effective path to the scientific goal, rather than the most interesting one

  • Directness without friction – you say what you think, ask when you don't know, and aren't looking to compete with your colleagues

Nice to have: experience in a professional software development environment; a public record of algorithm or code development on GitHub or similar; experience with ultrasound, neural, or medical imaging data; prior work in a research setting where you had to build the tooling yourself.

You don't need a neuroscience background. You do need to want one. Some of the best people to have worked on these problems originally came from another field.


Compensation is benchmarked and leveled. If you don't fit a level, we find one that works.

Our benefits include:

  • Medical, dental, and vision – most plans fully covered for you and your dependents

  • 401(k) with up to 6% match

  • Company-paid life and AD&D, with voluntary supplemental options

  • 15 holidays plus a floating day for your birthday

  • 3 weeks PTO increasing with tenure, and separate sick leave

Arbor will consider sponsorship for U.S. work authorization case by case. Sponsorship isn't guaranteed, and immigration timelines can affect start dates. Where we sponsor, we cover the legal and government fees.

Arbor is an equal opportunity employer. We hire based on talent and experience and don't discriminate on the basis of race, color, religion, ethnicity, gender, gender identity, sexual orientation, disability, age, military or veteran status, or any other characteristic protected by law.

We may use artificial intelligence (AI) tools to support parts of the hiring process, such as reviewing applications, analyzing resumes, or assessing responses and identifying potential inconsistencies or verification signals in application materials based on available information. These tools assist our recruitment team but do not replace human judgment. Final hiring decisions are ultimately made by humans. If you would like more information about how your data is processed, please contact us.