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Neuroengineer Next Gen

💼 Full-time🗓 2026-07-27

Core

Designing and implementing brain-computer interfaces, including computational models of electrical stimulation, neural recording experiments, and end-to-end hardware/software solutions for prosthetic vision.

Role type

Senior IC neuroengineer (BCI & prosthetic vision)

Builds

Brain-computer interfaces, prosthetic vision systems, smart glasses, and experimental instrumentation

Domain

Neuroscience, biomedical engineering, electrical engineering, machine learning

Deliverable

production ML models | product features | infrastructure

Required skills

computational modeling of electrical stimulation, neural recording and stimulation experiment design, Python for data analysis, machine vision algorithms, closed-loop BCI implementation, in-vivo electrophysiology, awake behaving recordings, finite element modeling (FEM), NEURON modeling environment, experimental instrumentation programming

Preferred skills

modern statistical inference, neural stimulation experience, modeling electrical stimulation influence on neural activity, building and programming experimental instrumentation

Technologies

Python, NEURON, FEM

Responsibilities

Develop computational models and design encoding strategies for electrical stimulation; Design, execute, interpret, and communicate results of neural recording and stimulation experiments; Implement end-to-end hardware and software solutions for prosthetic vision; Run and support research sessions in coordination with software engineers, field engineers, and animal specialists; Present results in a collaborative setting

Seniority

Senior, hands-on IC

Rewrite
## About the role The Next Gen team at Neuralink is developing the next generation of brain-computer interfaces. We are laying the groundwork for intuitive, high-dimensional, and bidirectional interfaces between brains and machines, with the goal of helping people challenged by a variety of neurological disorders and conditions. Our team consists of scientists and engineers, working closely together to define the engineering requirements for these future products. As a Neuroengineer on this team, you will contribute across a wide range of projects, from designing novel experimental preparations, to interpreting neural signals and behavioral data, to developing novel BCI paradigms. Successful candidates will be highly adaptable, able to deploy their core technical and creative skills to tackle a wide range of problems, and have a keen sense of urgency. ## Responsibilities - Develop computational models of, and design encoding strategies for, electrical stimulation - Design, execute, interpret, and communicate the results of neural recording and stimulation experiments - Implement end-to-end hardware and software solutions for prosthetic vision, including machine vision algorithms, smart glasses, and eye tracking technology - Run and support research sessions in coordination with software engineers, field engineers, and animal specialists - Present results in a collaborative setting ## Required Qualifications - Evidence of exceptional ability in neuroscience, biomedical engineering, electrical engineering, machine learning, or a related field - 4+ years of academic or industry experience - A strong understanding of the scientific method and engineering first principles - Fluency with Python for data analysis ## Preferred Qualifications - Experience with modern statistical inference and machine learning, including for machine vision applications - Experience with neural stimulation - Experience modeling the influence of electrical stimulation on neural activity, for example using the NEURON modeling environment - Experience modeling electric fields using finite element modeling (FEM) - Experience building and programming experimental instrumentation - Experience with in-vivo electrophysiology, awake behaving recordings, and in particular, closed-loop brain-computer interface ## About the company Neuralink is developing the next generation of brain-computer interfaces. We are laying the groundwork for intuitive, high-dimensional, and bidirectional interfaces between brains and machines, with the goal of helping people challenged by a variety of neurological disorders and conditions.
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