Indiana University Bloomington

USA
2 Scholarships 167 Programs 3 Degree levels
Masters

Master's in Neurobiology and Neurosciences

DegreeMasters
FieldNeurobiology and Neurosciences.
B

Cost & earnings at Indiana University Bloomington What students borrow here, and what they go on to earn

You borrow $19,509 median federal debt
You repay $222/mo over 10 years
Graduates earn $63,742 10 yrs after entry
Debt clears in 0.8 yrs of the salary premium
US Department of Education figures See the full breakdown →

This master's programme in Neurobiology and Neurosciences at Indiana University Bloomington provides advanced, research-led training in cellular, systems and cognitive neuroscience. It suits students with a strong undergraduate background in biological or behavioural sciences who want hands-on laboratory experience and preparation for research careers or doctoral study.

What you'll study

The programme combines core coursework, laboratory rotations or independent research, and seminar participation to build a broad and practical understanding of the nervous system. Core topics typically include cellular and molecular neurobiology, neurophysiology, systems neuroscience, and neuroanatomy, supplemented by courses in neuropharmacology, synaptic plasticity, neurodevelopment and neuroimmunology.

  • Quantitative and analytical methods for neuroscientists, including statistics, experimental design and data analysis
  • Neuroimaging and electrophysiological techniques, with practical training in microscopy, patch clamp, EEG/ERP or fMRI methods depending on research focus
  • Computational neuroscience and modelling of neural systems (where available)
  • Ethics in neuroscience and translational research, including considerations for animal use and human-subjects research
  • Graduate seminars and journal clubs to develop critical reading, presentation skills and familiarity with current literature

Study structure is research-focused: students normally complete a substantial independent research project or thesis under the supervision of a faculty mentor. There are opportunities to take laboratory rotations early in the programme to identify a research group, and some pathways also allow a coursework-only option with a capstone project.

Entry requirements

Applicants are expected to hold a bachelor's degree in neuroscience, biology, psychology, biomedical engineering or a closely related field. Successful candidates will have completed foundational coursework in biology, chemistry, and statistics, together with laboratory experience. Typical supporting materials include academic transcripts, a statement of purpose describing research interests, and letters of recommendation from academic or research supervisors.

Admissions committees look for evidence of quantitative and experimental skills as well as clear research potential. International applicants must demonstrate proficiency in English through an accepted test or equivalent evidence where required by the university. Some applicants may be asked for an interview or to provide examples of previous laboratory work or writing.

Career prospects

Graduates from this programme go on to a variety of careers across academia, industry and the public sector. Common pathways include:

  • Continuing to doctoral study (PhD) in neuroscience, neurobiology or related biomedical disciplines
  • Research positions in university labs, government research institutes or independent research organisations
  • Roles in biotechnology and pharmaceutical companies focusing on drug discovery, preclinical research, assay development and translational neuroscience
  • Clinical research coordination, neuroimaging analysis, data science and bioinformatics roles that require strong quantitative and experimental skills
  • Science communication, policy, regulatory affairs and patent or technical consulting where a scientific research background is advantageous

The programme’s laboratory emphasis and seminar training also equip graduates for technical or managerial positions in core facilities and for careers that require the ability to design experiments, analyse complex data and communicate scientific results effectively.

Why study at Indiana University Bloomington

Indiana University Bloomington hosts a vibrant neuroscience community that spans departments including Biology, Psychological and Brain Sciences, Cognitive Science and collaborations with the IU School of Medicine. Students benefit from access to shared research facilities such as imaging centres, electrophysiology suites and molecular biology cores, and from faculty conducting research across molecular, systems and cognitive levels.

The campus supports professional development through workshops in grant writing, teaching experience opportunities, and career services that connect students with internships and industry partners. Bloomington itself is a research-focused academic environment with frequent seminars, interdisciplinary centres, and opportunities to join collaborative projects that broaden technical skills and research networks.

Overall, the programme is well suited to students wishing to build rigorous experimental skills, undertake substantive independent research, and prepare for careers in neuroscience research, industry or further graduate study.

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Programme details are indicative and may change — always verify current information with the official university website before applying.