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Eye Modeling Jobs in Boston, MA (NOW HIRING)

Research Fellow, PGY 4

Boston, MA · On-site

$70K - $71K/yr

Site: Massachusetts Eye and Ear Infirmary Mass General Brigham relies on a wide range of ... The project uses mouse models, retinal cell and molecular biology approaches, ocular genomics, and ...

Site: Massachusetts Eye and Ear Infirmary Mass General Brigham relies on a wide range of ... The project uses mouse models, retinal cell and molecular biology approaches, ocular genomics, and ...

Senior Algorithm Engineer

Boston, MA · On-site +1

$170K - $190K/yr

... learning models that analyze brain and biosignal data for advancing sleep, neurological, and ... eye for composability, a self-service mindset, and-most of all-a deep empathy toward colleagues ...

Algorithm Engineer

Boston, MA · On-site +1

$150K - $170K/yr

... learning models that analyze brain and biosignal data for advancing sleep, neurological, and ... eye for composability, a self-service mindset, and-most of all-a deep empathy toward colleagues ...

Algorithm Engineer

Boston, MA · On-site +1

$150K - $170K/yr

... learning models that analyze brain and biosignal data for advancing sleep, neurological, and ... eye for composability, a self-service mindset, and-most of all-a deep empathy toward colleagues ...

Senior Algorithm Engineer

Boston, MA · Remote

$170K - $190K/yr

... learning models that analyze brain and biosignal data for advancing sleep, neurological, and ... eye for composability, a self-service mindset, and-most of all-a deep empathy toward colleagues ...

Research Fellow

Charlestown, MA · On-site

$33.65 - $38.46/hr

Eye-tracking methodologies * MATLAB * R * E-Prime * Signal processing techniques * Statistical modeling and quantitative data analysis Additional Job Details (if applicable) The compensation range ...

... models Rounded business skills with the ability to understand customer business needs Ability to ... organized, have an eye for detail, and be able to put ideas into a tangible form Ability to ...

... models Rounded business skills with the ability to understand customer business needs Ability to ... organized, have an eye for detail, and be able to put ideas into a tangible form Ability to ...

At Mass Eye and Ear, our nursing model is driven by the belief that quality nursing care arises from the clinical application of evidence-based practice. Specializing in both Adult, and Pediatric, we ...

Registered Nurse (RN) - MEE

Boston, MA · On-site

$41.72 - $105.65/hr

At Mass Eye and Ear, our nursing model is driven by the belief that quality nursing care arises from the clinical application of evidence-based practice. Specializing in both Adult, and Pediatric, we ...

Registered Nurse (RN) - MEE

Boston, MA · On-site

$41.72 - $105.65/hr

At Mass Eye and Ear, our nursing model is driven by the belief that quality nursing care arises from the clinical application of evidence-based practice. Specializing in both Adult, and Pediatric, we ...

Models and shares customer service best practices with all team members to deliver a distinctive and delightful customer experience, including interpersonal habits (e.g., greeting, eye contact ...

Showing results 21-40

Eye Modeling information

What is the difference between Eye Modeling vs Optometric Technician?

AspectEye ModelingOptometric Technician
Required CredentialsTypically requires a background in biomedical engineering or computer science, with specialized training in 3D modeling and vision scienceRequires certification such as Certified Paraoptometric (CPO) or state-specific optometric technician licenses
Work EnvironmentPrimarily office or laboratory settings focused on digital design and simulationOptometry clinics, eye care centers, and healthcare facilities
Employer & Industry UsageUsed in research, product development, and vision technology companiesEmployed by optometrists and eye care providers to assist with patient exams

Eye Modeling involves creating digital representations of the eye for research or product design, often requiring technical and engineering skills. In contrast, Optometric Technicians support eye care professionals by preparing patients and assisting during exams. While both roles relate to eye health, they differ significantly in skills, environment, and purpose.

How do I become an eye model?

To become an eye model, you typically need clear, symmetrical eyes with good skin around the eye area. Many agencies look for individuals who can maintain a natural appearance and are comfortable with photos or videos for casting. Building a portfolio and registering with modeling agencies that specialize in facial or eye modeling can improve your chances of getting hired.

What are the key skills and qualifications needed to thrive as an eye model, and why are they important?

To thrive as an Eye Model, you need distinct and photogenic eye features, excellent eye health, and often prior modeling experience or a professional portfolio. Familiarity with posing techniques, makeup application for the eyes, and sometimes digital photography standards is beneficial. Outstanding communication, patience, and the ability to take direction well are important soft skills in this field. These skills ensure that models can effectively showcase products or concepts for clients and photographers, leading to successful campaigns and repeat bookings.

What is eye modeling?

Eye modeling is the process of creating digital or physical representations of the human eye for use in various fields such as computer graphics, animation, medical research, and virtual reality. This involves accurately simulating the anatomy, structure, and behavior of the eye, including its movements, reflections, and how it interacts with light. Eye modeling is crucial for realistic character creation in movies and video games, as well as for training and research in ophthalmology. Professionals in this area use specialized software and techniques to achieve highly detailed and lifelike results.

What are some typical challenges faced by professionals working in eye modeling for animation or visual effects?

Professionals in eye modeling often encounter challenges such as achieving realistic textures and reflections, which are critical for believable characters in animation or visual effects. Accurately capturing the complex anatomy and movement of the human eye requires close collaboration with animators and lighting artists. Additionally, maintaining consistency across different shots and adapting the model for various lighting conditions can be demanding. Staying updated with the latest software and rendering techniques is essential to meet industry standards.

What are popular job titles related to Eye Modeling jobs in Boston, MA?

For Eye Modeling jobs in Boston, MA, the most frequently searched job titles are:

What job categories do people searching Eye Modeling jobs in Boston, MA look for?

The top searched job categories for Eye Modeling jobs in Boston, MA are:

What cities near Boston, MA are hiring for Eye Modeling jobs?

Cities near Boston, MA with the most Eye Modeling job openings:

Infographic showing various Eye Modeling job openings in Boston, MA as of August 2026, with employment types broken down into 1% As Needed, 72% Full Time, 25% Part Time, 1% Contract, and 1% Nights. Highlights an 97% Physical, 1% Hybrid, and 2% Remote job distribution.

Post-Doctoral Research Fellow - Laryngology AI

Massgeneralbrigham

Boston, MA

$53K - $72K/yr

Full-time

Re-posted 21 days ago


Job description

Site: Massachusetts Eye and Ear Infirmary


Mass General Brigham relies on a wide range of professionals, including doctors, nurses, business people, tech experts, researchers, and systems analysts to advance our mission. As a not-for-profit, we support patient care, research, teaching, and community service, striving to provide exceptional care. We believe that high-performing teams drive groundbreaking medical discoveries and invite all applicants to join us and experience what it means to be part of Mass General Brigham.


Job Summary

The Postdoctoral Fellow will support and help lead a multidisciplinary research initiative focused on advancing laryngology through real-time machine learning, computer vision, and quantitative analysis of laryngoscopy videos. This role will involve developing, testing, validating, and translating algorithms that track laryngeal anatomy, classify examination states, extract clinically meaningful video-derived metrics, and support future clinical decision-support tools. The fellow will work with laryngologists, clinical research staff, engineers, and collaborators at Mass Eye and Ear and Mass General Brigham to move the project from proof-of-concept research toward reproducible, clinically useful deployment. This position is best suited for a highly independent, technically strong researcher with broad computer science or machine learning expertise who is interested in applying advanced AI methods to important clinical problems in laryngology.


Qualifications

ESSENTIAL FUNCTIONS:

Data Collection & Processing:

  • Extract, curate, and manage clinical research datasets, including flexible laryngoscopy videos, frame-level annotations, laryngeal keypoint data, high-fidelity voice recordings, operative data, patient-reported outcomes, and relevant clinical metadata.
  • Develop and maintain reproducible pipelines for video ingestion, annotation, quality control, de-identification, preprocessing, dataset versioning, and secure data management.
  • Work with clinicians and research staff to standardize video and outcomes data collection protocols across clinic, operating room, and follow-up settings.

Research & Analysis:

  • Develop and refine deep learning, computer vision, and benchmark algorithms for real-time laryngeal structure tracking, examination-state classification, anatomic feature detection, lesion or abnormality localization, and quantitative laryngoscopy.
  • Apply supervised, self-supervised, temporal, explainable and multimodal machine learning methods to clinical video and related datasets, with rigorous evaluation of model accuracy, generalizability, latency, robustness, and clinical interpretability.
  • Translate model outputs into clinically meaningful metrics and visualization tools that can support research, standardized examination quality, documentation, and eventual clinical decision support.

Publication & Dissemination:

  • Lead and contribute to manuscripts on AI applications in laryngology, quantitative laryngoscopy, real-time video analysis, clinical validation, and related patient outcomes research.
  • Prepare abstracts, posters, oral presentations, technical reports, grant materials, and documentation for scientific meetings, collaborators, and potential translational partners.

Clinical & Translational Research Support:

  • Collaborate closely with laryngologists, research assistants, engineers, and clinical teams to test algorithms against real clinical workflows and to identify failure modes, usability needs, and implementation barriers.
  • Participate in translational activities including clinical validation planning, regulatory and data-governance discussions, intellectual property development, and interactions with internal and external collaborators.

General Research Support:

  • Maintain research codebases, model documentation, databases, and analytic workflows in accordance with institutional research ethics, HIPAA, data security, and reproducibility standards.
  • Attend team meetings, provide regular project updates, coordinate technical priorities, contribute to grant writing, and help define milestones for continued development of the laryngoscopy AI platform.
  • Mentor junior staff, students, and research assistants in data annotation, computational methods, experimental design, coding practices, and scientific communication.

EDUCATION AND EXPERIENCE:

PhD or equivalent degree in computer science, biomedical engineering, electrical engineering, computational neuroscience, data science, statistics or a closely related field.

Strong experience with modern machine learning methods, including deep learning, neural network architecture design, computer vision, video analysis, temporal modeling, supervised and/or self-supervised learning, and rigorous model evaluation strategies.

Advanced programming skills in Python are required; experience with PyTorch and/or TensorFlow/Keras, OpenCV, Git, Linux/Unix environments, high-performance or cloud-based computing platforms with GPU acceleration, and reproducible research workflows is strongly preferred. Experience with DeepLabCut software is also appreciated.

Excellent verbal and written communication skills, strong publication record or evidence of scholarly productivity, ability to work independently, and interest in collaborating with clinicians to translate AI research into healthcare applications.

Pay Range: $70,000.00 - $71,750.00/Annual


Additional Job Details (if applicable)


Remote Type

Onsite


Work Location

243-245 Charles Street


Scheduled Weekly Hours

40


Employee Type

Regular


Work Shift

Day (United States of America)


EEO Statement:

5110 Massachusetts Eye and Ear Infirmary is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religious creed, national origin, sex, age, gender identity, disability, sexual orientation, military service, genetic information, and/or other status protected under law. We will ensure that all individuals with a disability are provided a reasonable accommodation to participate in the job application or interview process, to perform essential job functions, and to receive other benefits and privileges of employment. To ensure reasonable accommodation for individuals protected by Section 503 of the Rehabilitation Act of 1973, the Vietnam Veteran's Readjustment Act of 1974, and Title I of the Americans with Disabilities Act of 1990, applicants who require accommodation in the job application process may contact Human Resources at (857)-282-7642.


Mass General Brigham Competency Framework

At Mass General Brigham, our competency framework defines what effective leadership "looks like" by specifying which behaviors are most critical for successful performance at each job level. The framework is comprised of ten competencies (half People-Focused, half Performance-Focused) and are defined by observable and measurable skills and behaviors that contribute to workplace effectiveness and career success. These competencies are used to evaluate performance, make hiring decisions, identify development needs, mobilize employees across our system, and establish a strong talent pipeline.