Michigan State University

USA
2 Scholarships 229 Programs 3 Degree levels
PhD

PhD in Physiology, Pathology and Related Sciences

DegreePhD
FieldPhysiology, Pathology and Related Sciences.
B

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

You borrow $23,250 median federal debt
You repay $264/mo over 10 years
Graduates earn $67,253 10 yrs after entry
Debt clears in 0.8 yrs of the salary premium
US Department of Education figures See the full breakdown →
F

Physiology graduates earn a median $27,334 Across 159 US programmes, two years after finishing

See the degree grade →

The PhD in Physiology, Pathology and Related Sciences at Michigan State University is a research-focused doctoral programme that trains scientists in integrative, molecular and translational physiology and disease mechanisms. It suits candidates who want intensive laboratory training, interdisciplinary collaboration and preparation for careers in academic research, industry, clinical translation or regulatory science.

What you'll study

This PhD emphasises original research in physiological and pathological processes across molecular, cellular, systems and whole-organism levels. Students complete a combination of core coursework, elective modules and sustained laboratory research leading to a doctoral dissertation. Typical core topics and modules include:

  • Molecular and Cellular Physiology — signalling pathways, membrane physiology, ion channels and cellular homeostasis.
  • Systems and Integrative Physiology — cardiovascular, respiratory, renal, neurophysiology and endocrine system interactions.
  • Pathobiology and Disease Mechanisms — inflammation, cancer biology, metabolic disease and comparative pathology.
  • Research Methods and Experimental Design — quantitative methods, statistics for biological research and experimental reproducibility.
  • Advanced Techniques — imaging and microscopy, genomics and transcriptomics, proteomics, in vivo physiology and model organism approaches.
  • Professional Development — scientific communication, ethics, grant writing and teaching pedagogy.

Programme structure typically includes initial coursework and laboratory rotations (for students without a permanent adviser), passing a qualifying or comprehensive examination, proposal and defence of a dissertation project, regular seminar participation and contributions to the academic community through teaching or mentoring. Training emphasises interdisciplinary collaboration with access to core facilities for imaging, genomics and bioinformatics.

Entry requirements

Applicants are expected to hold a bachelor’s degree in physiology, biology, biomedical sciences or a closely related discipline; many successful applicants hold a master’s degree and demonstrable research experience. Typical application materials include academic transcripts, a curriculum vitae, a statement of research interests, and letters of recommendation. International applicants must meet the university’s English language proficiency requirements.

Competitive candidates will have prior laboratory experience, familiarity with experimental design and data analysis, and clear research goals that align with faculty expertise. Admission decisions also consider fit with potential supervisors and availability of research support.

Career prospects

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

  • Postdoctoral research positions leading to faculty roles in universities and medical schools.
  • Research and development positions in biotechnology and pharmaceutical companies.
  • Positions in clinical translation and translational research within hospitals and research institutes.
  • Roles in regulatory science, patent and technology transfer offices, and scientific consulting.
  • Science communication, policy and education roles including higher-education teaching and outreach.

The programme’s emphasis on quantitative skills, experimental design and communication prepares graduates for leadership roles in laboratory management, project leadership and interdisciplinary research teams.

Why study at Michigan State University

Michigan State University offers an interdisciplinary environment with researchers across life-science departments and professional colleges, enabling projects that span basic physiology to translational pathology. Students benefit from access to modern core facilities for imaging, genomics, proteomics and animal physiology, and from collaborative centres that foster translational research.

The university supports graduate training through mentoring, professional development workshops, teaching opportunities and a network of seminars and symposia. Strong links between basic scientists, clinical researchers and industry partners create opportunities for collaborative projects, internships and pathways into diverse careers.

Overall, the programme is designed for students seeking rigorous, research-intensive training in physiology and disease biology within a large, resource-rich research university committed to interdisciplinary science and graduate education.

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