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Biomedical Engineer Phd Jobs in Spring, TX (NOW HIRING)

ELIGIBILITY REQUIREMENTS PhD, MD, or equivalent doctoral degree in a relevant scientific discipline (e.g., biology, biomedical sciences, engineering, computational sciences, or related fields) by the ...

Postdoc Fellow - Imaging Physics

Houston, TX · On-site

$46K - $63K/yr

... PhD. Dr. Chengyue Wu's research interests focus on computational precision oncology, especially ... biomedical imaging techniques to improve the diagnosis, prognosis, and treatment of human cancers.

Postdoc Fellow - Imaging Physics

Houston, TX · On-site

$46K - $63K/yr

... PhD. Dr. Chengyue Wu's research interests focus on computational precision oncology, especially ... biomedical imaging techniques to improve the diagnosis, prognosis, and treatment of human cancers.

Postdoc Fellow - Imaging Physics

Houston, TX · On-site

$46K - $63K/yr

... PhD. Dr. Chengyue Wu's research interests focus on computational precision oncology, especially ... biomedical imaging techniques to improve the diagnosis, prognosis, and treatment of human cancers.

Showing results 41-58

Biomedical Engineer Phd information

See Spring, TX salary details

$36.5K

$84.4K

$124.6K

How much do biomedical engineer phd jobs pay per year?

As of Sep 2, 2026, the average yearly pay for biomedical engineer phd in Spring, TX is $84,368.00, according to ZipRecruiter salary data. Most workers in this role earn between $66,300.00 and $103,200.00 per year, depending on experience, location, and employer.

What does a biomedical engineer PhD do?

A Biomedical Engineer PhD conducts advanced research and develops innovative solutions at the intersection of engineering, biology, and medicine. They design and improve medical devices, imaging systems, and biotechnologies, often working in academic, clinical, or industry settings. Their work may include publishing scientific papers, leading research projects, and collaborating with healthcare professionals to translate discoveries into practical applications that improve patient care.

What types of projects and collaborations can a biomedical engineer PhD expect to engage in within a multidisciplinary team?

Biomedical Engineer PhDs often work on projects that require close collaboration with clinicians, biologists, and other engineers. These collaborations may involve developing medical devices, improving imaging technologies, or conducting translational research that bridges laboratory findings with patient care. On a typical team, you might contribute expertise in advanced data analysis, experimental design, or regulatory compliance, while learning from colleagues in other specialties. This multidisciplinary environment fosters innovation and can open doors to leadership roles or specialized research positions in both academia and industry.

What are the key skills and qualifications needed to thrive as a biomedical engineer PhD, and why are they important?

To excel as a Biomedical Engineer PhD, you need advanced knowledge in biomedical engineering principles, research methodologies, and a doctoral degree in biomedical engineering or a related field. Familiarity with tools such as MATLAB, CAD software, laboratory instrumentation, and experience with regulatory standards like FDA or ISO is crucial. Exceptional analytical thinking, problem-solving abilities, and strong communication skills are vital for collaborating with multidisciplinary teams and conveying complex findings. These skills ensure innovative solutions, effective cross-functional teamwork, and successful navigation of regulatory and research challenges in biomedical engineering.

What is the difference between Biomedical Engineer Phd vs Biomedical Engineer?

AspectBiomedical Engineer PhdBiomedical Engineer
Required CredentialsPhD in Biomedical Engineering or related fieldBachelor's or Master's in Biomedical Engineering or related field
Work EnvironmentResearch labs, academia, advanced R&DHospitals, medical device companies, industry
Employer & Industry UsageAcademic institutions, research organizations, specialized R&DMedical device firms, healthcare facilities, manufacturing

The main difference between a Biomedical Engineer Phd and a Biomedical Engineer lies in education level, with the Phd focusing on advanced research and academic roles, while the Biomedical Engineer typically works in industry or clinical settings with a bachelor's or master's degree. The Phd often engages in innovative research, whereas the Biomedical Engineer applies engineering principles to develop and improve medical devices and systems.

What are popular job titles related to Biomedical Engineer Phd jobs in Spring, TX?

For Biomedical Engineer Phd jobs in Spring, TX, the most frequently searched job titles are:

What job categories do people searching Biomedical Engineer Phd jobs in Spring, TX look for?

The top searched job categories for Biomedical Engineer Phd jobs in Spring, TX are:

What cities near Spring, TX are hiring for Biomedical Engineer Phd jobs?

Cities near Spring, TX with the most Biomedical Engineer Phd job openings:

Infographic showing various Biomedical Engineer Phd job openings in Spring, TX as of August 2026, with employment types broken down into 95% Full Time, 2% Part Time, and 3% Contract. Highlights an 85% Physical, 6% Hybrid, and 9% Remote job distribution, with an average salary of $84,368 per year, or $40.6 per hour.

Postdoctoral Fellow - Genetics

MD Anderson

Houston, TX

$64K - $76K/yr

Full-time

Medical, Dental, Retirement, PTO

Re-posted 2 days ago


MD Anderson Cancer Center rating

8.5

Company rating: 8.5 out of 10

Based on 172 frontline employees who took The Breakroom Quiz

14th of 898 rated healthcare providers


Job description

The Trakala Lab at MD Anderson Cancer Center seeks a motivated postdoctoral fellow to study the biology of chromosomal instability (CIN) and aneuploidy in cancer, with an emphasis on immune surveillance and tumor evolution in vivo. The postdoctoral fellow will lead independent research projects using genetically engineered mouse models, organoids/tumoroids, advanced imaging, and single-cell and spatial omics approaches. Key responsibilities include experimental design and execution, data analysis and interpretation, manuscript preparation, and presentation of findings at scientific meetings. The position offers a highly collaborative and interdisciplinary research environment with strong mentorship and opportunities for career development.
All duties and responsibilities are carried out in compliance with institutional policies, ethical research standards, and applicable federal and state regulations.
LEARNING OBJECTIVES
The postdoctoral fellow will develop advanced expertise in studying chromosomal instability and aneuploidy in cancer using in vivo and ex vivo model systems. Training goals include gaining proficiency in experimental design and execution with genetically engineered mouse models, organoids/tumoroids, advanced microscopy, and single-cell and spatial omics technologies, as well as rigorous data analysis and interpretation. The fellow will acquire skills in hypothesis-driven research, statistical analysis, scientific writing, and manuscript preparation, and will gain experience presenting research at national and international meetings. Additional outcomes include developing independence in project leadership, grant and fellowship writing, collaborative research, and mentoring of junior trainees, preparing the fellow for a successful career in academia, industry, or related scientific fields.
ELIGIBILITY REQUIREMENTS
PhD, MD, or equivalent doctoral degree in a relevant scientific discipline (e.g., biology, biomedical sciences, engineering, computational sciences, or related fields) by the start date. Demonstrated research experience through doctoral training, with the ability to design and execute experiments and analyze and interpret data. Strong written and verbal communication skills and the ability to work both independently and collaboratively in a research environment.
Candidates with training in cell biology, cancer biology, immunology, computational biology, bioengineering, or related fields are encouraged to apply; experience with mouse models and/or single-cell technologies is preferred.
ADDITIONAL APPLICATION INFORMATION
Trakala Lab: https://www.mdanderson.org/research/departments-labs-institutes/labs/trakala-laboratory.html
POSITION INFORMATION
MD Anderson offers full-time postdoc positions with a salary ranging from $64,000 to $76,000. depending on the number of years of postgraduate experience. The University of Texas MD Anderson Cancer Center offers excellent benefits, including medical, dental, paid time off, retirement, tuition benefits, educational opportunities, and individual and team recognition
Offsite work arrangements are subject to approval and may be modified or revoked at any time based on business needs, performance considerations, or regulatory requirements.
This position may be responsible for maintaining the security and integrity of critical infrastructure, as defined in Section 113.001(2) of the Texas Business and Commerce Code and therefore may require routine reviews and screening. The ability to satisfy and maintain all requirements necessary to ensure the continued security and integrity of such infrastructure is a condition of hire and continued employment.
It is the policy of The University of Texas MD Anderson Cancer Center to provide equal employment opportunity without regard to race, color, religion, age, national origin, sex, gender, sexual orientation, gender identity/expression, disability, protected veteran status, genetic information, or any other basis protected by institutional policy or by federal, state or local laws unless such distinction is required by law. http://www.mdanderson.org/about-us/legal-and-policy/legal-statements/eeo-affirmative-action.html

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