Masters in Biomedical Engineering

Integrated Masters with deeper specialization and research focus
Taught in English
Duration 2 Years
Mode On Campus
Level Postgraduate
Degree Masters Degree
Next Intake TBA

Course Overview

The Masters in Biomedical Engineering at University College Dublin is designed for ambitious graduates seeking to innovate at the intersection of healthcare and engineering. You will delve into critical areas such as medical device design, biomaterials, and biomechanics, preparing you to address complex challenges in modern medicine. This programme is ideal if you possess a strong scientific or engineering background and are eager to apply your knowledge to develop cutting-edge healthcare solutions. You will gain a comprehensive understanding of how engineering principles can be applied to biological systems and medical technologies, a field vital to improving patient outcomes and advancing medical practice.

You will study this full-time, on-campus Masters Degree over two years, engaging with core modules like Experimental Design and Statistics for Engineers, and Medical Device Design. The curriculum includes opportunities for professional work experience, allowing you to gain practical insights into the biomedical industry. Through project work and specialised options in areas such as neural engineering or tissue engineering, you will develop advanced technical skills. You will graduate with the expertise to pursue careers in medical technology development, research, or regulatory affairs, contributing to a dynamic and rapidly growing sector.

Course Curriculum & Details

Detailed information for serious evaluators

Program Overview

This Master's in Biomedical Engineering program equips students with a strong foundation in core engineering principles applied to biological systems. The curriculum covers essential areas such as experimental design, medical device design, biomechanics, and biomaterials. Students will also engage in professional work experience and choose from a range of specialized options in fields like bioinformatics, neural engineering, and tissue engineering, culminating in a significant research project.

1 Stage 1 Core Modules (Biomedical Engineering)

Experimental Design and Statistics for Engineers
Medical Device Design
Biomechanics
Biomaterials

2 Stage 1 Options - A (Core Professional Work Experience Modules)

ME Biomed Professional Work Experience (Long)
ME Biomed Professional Work Experience (Short)

3 Stage 1 Options - B (Spring Options for Students with Short PWE)

Bioinformatics
Electromagnetic Waves
Signal Processing: Theory and Applications
Analogue Electronics
Applied Dynamics II
Mechanics of Solids II
Technical Communication

4 Stage 1 Options - C (Required Core Modules for All Students)

Medical Sciences for Biomedical Engineering
Biomedical Signal Processing

5 Stage 1 Options - D (Core Modules with Short Professional Work Experience Only)

Neural Engineering
Rehabilitation Engineering
Tissue Engineering

6 Stage 1 Options - F (Autumn Option Modules)

Control Theory
Optimisation Techniques for Engineers
Mechanical Engineering Design II
Mechanics of Fluids II
Manufacturing Engineering II
Bio-inspired Technologies
Cardiovascular Physiology for Engineers

7 Stage 2 Core Modules (Biomedical Engineering)

ME Biomed Project
Biosensors & Actuators
Research and Professional Skills for Biomedical Engineers

8 Stage 2 Options - A (Spring Core with Short PWE Only)

Musculoskeletal Biomechanics and Mechanobiology

9 Stage 2 Options - B (Autumn Options)

Bio-material Interactions
Software Engineering
Control Theory
Advanced Signal Processing
Optimisation Techniques for Engineers
Machine Learning for Engineers
Mechanics of Fluids II
Manufacturing Engineering II
Fracture Mechanics
Technical Ceramics
Materials Thermodynamics and Kinetics
Mechanics of Solids III
Bio-inspired Technologies
Cardiovascular Physiology for Engineers

10 Stage 2 Options - C (Spring Options with Long PWE)

Bioinstrumentation
Neural Engineering
Rehabilitation Engineering
Musculoskeletal Biomechanics and Mechanobiology

11 Stage 2 Options - D (Spring Options Long PWE #2)

Bioinformatics
Applied Dynamics II
Tissue Engineering

12 Stage 2 Options - E (Spring Options for Short PWE)

Bioinformatics
Electromagnetic Waves
Signal Processing: Theory and Applications
Analogue Electronics
Bioinstrumentation
Applied Dynamics II
Tissue Engineering

Cost & Affordability

A clear picture of what this course will cost you

Program Costs

First Year Fee Tuition fee
USD 34,232.00
Second Year Fee Tuition fee
USD 34,232.00
Total Program Cost Estimated total tuition
USD 68,464.00

Currency note: Program costs shown in USD based on the available tuition breakdown.

Living Costs

Accommodation
USD 349.00 - USD 849.00
Food & Groceries USD 3,930.00 - USD 5,613.00
Transport USD 842.00 - USD 1,965.00
Utilities & Bills USD 1,404.00 - USD 2,105.00
Estimated Total USD 6,176.00 - USD 9,683.00

Living cost estimates are based on Belfield campus.

Outcomes & Employability

What happens after you graduate

99%
Graduate Employment Rate Within 6 to 12 months of graduation

Common Graduate Roles

Agricultural Marketing & SalesBiotechnology & GenomicsEducation Policy & AdministrationEvent & Experiential MarketingGaming & Interactive MediaHigher Education & UniversitiesIndustrial & Offshore ConstructionNuclear EnergyQuality Assurance & ControlSpace Exploration & Satellite Technology

Top Employers Hiring for this course

Amgen

Arup

Beacon Hospital Dublin

Boeing

Bristol Myers Squibb

Children's Health Ireland

Collins Aerospace

Department of Education and Youth

Why Study Masters in Biomedical Engineering at University College Dublin

What makes this program stand out

Top 20 in UK For Computer Science

Exeter's Computer Science department consistently ranks among the top 20 in the UK for both teaching quality and research output.

Fast Offers Quick turnaround

Exeter typically responds to applications within 2-3 weeks, giving you clarity on your options quickly.

Flexible Intakes September start

Primary intake in September with January start available for some pathways through the INTO foundation program.

Accredited Industry recognized

Accredited by BCS, The Chartered Institute for IT, meeting requirements for Chartered IT Professional (CITP) status.

Life at University College Dublin in Ireland

What daily life looks like for international students

Language

English

Primary language everywhere

Climate

Mild & Rainy

10-20°C average, pack layers

Safety (Numbeo Safety Index)

Very Safe

Exeter is one of UK's safest cities

Frequently Asked Questions

Common questions about Masters in Biomedical Engineering at University College Dublin

Can I work while studying?

International students can work up to 20 hours per week during term time and 40 hours during breaks. No separate work permit is needed while studying full-time.

What English language score do I need for this course?

To meet English language requirements, candidates must achieve a TOEFL overall score of 90, with specific sub-scores. Alternatives include an IELTS overall score of 6.5 or a PTE score of 63.

What jobs can I get after studying this course?

Graduates can pursue careers as Biomedical Engineers, Medical Device Developers, Research Scientists, or Regulatory Affairs Specialists.

What will I actually study in this course?

This program explores areas such as medical device design and biomaterials, equipping graduates to tackle modern healthcare challenges. It includes hands-on experience and specialized options like neural engineering.

When can I start — what are the intake months?

The Masters in Biomedical Engineering at University College Dublin has an intake in September each year. Applicants should prepare their documents in advance to ensure a smooth application process.
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