There are 11 master's Biomedical Engineering programmes for international students across 9 universities in United States. Tuition is about €52k. Browse the full list below, compare entry requirements, and explore scholarships to fund your studies.
The Safe-T project is a student-designed medical device aimed at improving surgical care accessibility, particularly in regions like India where a significant portion of the population lacks access to safe surgical procedures. A critical component of safe surgical care is reliable anesthesia. In busy urban hospitals, anesthesia providers face challenges in managing patient airways due to high patient volume. Maintaining a patent airway is essential and often requires manual maneuvers by the anesthetist. Glossoptosis, a tongue displacement issue often caused by sedatives, can lead to airway obstruction. The Safe-T device is designed to address this by mimicking the manual airway maintenance maneuvers, thereby freeing up the anesthesia provider's attention to focus on other responsibilities or patients.
This project focuses on developing machine learning models to predict the likelihood of patients being readmitted to the Intensive Care Unit (ICU). ICUs manage critically ill patients, and while clinicians make discharge decisions based on expertise, there's no formal method to predict readmission success. Current readmission rates range from 2% to 20%, with readmitted patients facing significantly higher mortality risks. Existing predictive models often rely on static data and don't fully utilize the complex, time-varying information available in Electronic Health Records (EHRs). The goal is to create an algorithm that leverages comprehensive EHR data to accurately predict ICU readmissions. By improving the prediction of patient recovery and reducing premature discharges, this work aims to decrease morbidity and mortality, lower healthcare costs, and optimize resource allocation. The insights gained from analyzing predictive features could also inform future healthcare modeling.
The Department of Biomedical Engineering (BME) at Stony Brook University offers a Master of Science (MS) program designed to provide students with advanced knowledge and research opportunities in the field. This program focuses on applying engineering principles to solve problems in biology and medicine, aiming to improve human health and well-being. Students engage with cutting-edge research and develop skills for careers in academia, industry, or further graduate studies.
The Master of Science (MS) in Biomedical Engineering with a Research focus at the University of Wisconsin-Madison is designed for students aiming to conduct in-depth research during their program. This option requires the completion of a thesis, serving as a capstone to your research endeavors. It offers a rigorous academic experience within a world-renowned institution, preparing students for advanced research roles or further doctoral studies. The program emphasizes a strong foundation in engineering and bioscience principles, allowing students to tailor their studies to specific areas of interest through a flexible curriculum. Students will work closely with faculty advisors to define their research specialization and select relevant coursework. The goal is to foster critical thinking, problem-solving skills, and independent research capabilities.
The graduate program in Biomedical Engineering (BME) at Stony Brook University offers Master's, Ph.D., and Advanced Graduate Certificate (AGC) degrees. The program emphasizes hands-on experience and access to world-class laboratories, allowing students to tailor their studies to their individual needs and prepare for cutting-edge research and advancements in medicine. Students can choose from various specializations and research interests, gaining practical skills to contribute to the evolving fields of healthcare and technology.
The Master of Science in Bioengineering is a research-focused, typically two-year program. You will complete advanced coursework in bioengineering, conduct original research, and write a thesis. The department emphasizes integrating biological sciences with engineering principles. A strong undergraduate foundation in both areas is expected for admission.
Rice University offers a professional Master of Bioengineering (MBE) degree designed to provide advanced training and practical experience. Students can choose between two specialized concentrations: Applied Bioengineering, which offers flexibility for careers in academia, medicine, or related fields with options for course-based or research-based specializations; and Global Medical Innovation, a one-year full-time program that combines engineering, business, and clinical training to address real-world medical needs through hands-on design and global immersion experiences in the U.S., Brazil, and Costa Rica. Both concentrations emphasize practical application, professional development, and networking opportunities. The program aims to equip students with enhanced engineering skills alongside business, management, communication, leadership, and entrepreneurship competencies. Partnerships with leading companies in engineering-related fields provide valuable industry exposure and career development.
Carnegie Mellon University's Master of Science (M.S.) in Biomedical Engineering (BME) program offers advanced, course-based academic training designed to build both depth and breadth of knowledge. The program is ideal for students with backgrounds in traditional engineering or basic sciences who aim to build a career in biomedical engineering, as well as for those considering medical or graduate school who wish to enhance their credentials. The BME M.S. program provides significant flexibility, allowing students to tailor their coursework to specific interests and career aspirations. While students can focus on particular areas, the curriculum ensures a well-rounded understanding of the field, requiring engagement with at least three core areas: physiology and cellular/molecular biology, biomaterials and tissue engineering, biomechanics, biomedical imaging and bioinformatics, and neuroengineering. All students also participate in a Biomedical Engineering Seminar series each semester to learn from established professionals. The program offers specialized tracks, including an Applied Study option that incorporates a real-world practical experience like an internship, practicum, or research project, and a Research option focused on independent research culminating in a thesis or publication. Additionally, CMU offers specialized M.S. programs in Artificial Intelligence Engineering – Biomedical Engineering (MSAIE-BME) and a dual M.S. program in Biomedical Engineering and Engineering & Technology Innovation Management (E&TIM).
The Master of Science (MS) in Biomedical Engineering at Texas A&M University is designed to equip students with essential research skills and in-depth knowledge in the field. This program prepares graduates for diverse careers in areas such as research and development, medical device design, or for further academic pursuits like a doctorate. The curriculum is tailored to each student's goals and existing expertise, ensuring a personalized educational journey. Students in this thesis-based program will develop technical leadership skills through a combination of rigorous coursework and significant research training. While an MS can be a stepping stone to a PhD, students aspiring directly for a PhD are encouraged to apply directly to the PhD program at Texas A&M.
The Master of Science in Biomedical Engineering program at Stony Brook University offers a comprehensive educational experience focused on both fundamental and advanced topics in the field. Students have the flexibility to tailor their degree plans to specific career-oriented tracks and sub-disciplines, preparing them for diverse roles in academia, industry, or entrepreneurship. The program emphasizes developing engineers who can address clinical and industry needs, design and test solutions, communicate effectively with stakeholders, and strategize implementation within real-world constraints. Students can choose from three distinct tracks: Academic, Industry, and Entrepreneurship. The Academic track provides a broad foundation for doctoral studies and includes teaching and research opportunities. The Industry track introduces concepts relevant to the professional setting, including management skills. The Entrepreneurship track focuses on new technology development, market placement, and communication. All students are required to complete core coursework specific to their chosen track, and can opt for a thesis or a project-based capstone experience. The program fosters collaboration with various research facilities and institutions, including Brookhaven National Labs and Cold Spring Harbor Laboratory.
The Master of Science (MS) in Biomedical Engineering program at Boston University offers advanced training in the field, building upon a strong foundation in biology and mathematics. This program is designed to equip students with sophisticated knowledge and skills in molecular- or systems-level biology and physiology, alongside advanced biomedical engineering coursework. Graduates will be prepared to contribute to the field through innovative research and development.
11 across 9 universities, listed on this page.
Yes — these programmes admit international students; check each programme's entry requirements and language of instruction.