Vision
Producing Biomedical Masters graduates who are professional, have a socio-technopreneurship insight and excel in optimizing physiology with natural antioxidants
Master · Universitas Prima Indonesia
Master's program in biomedical sciences and medical applications.
The Master's Program in Biomedical Sciences is an advanced education program focusing on the development of biomedical knowledge and its medical applications in the field of medicine. This program aims to train biomedical experts who can understand, analyze, and develop solutions for diagnosing, treating, and preventing diseases through scientific approaches and cutting-edge technologies. Students will study various disciplines within biomedical sciences, including biotechnology, genetics, microbiology, and other foundational fields related to human health. The curriculum is designed to provide students with a deep understanding of molecular biology, immunology, and the application of technologies in drug development and healthcare treatments. In addition to technical skills, this program also emphasizes the importance of biomedical research and the development of new methods for medical diagnostics and therapies. Students are encouraged to engage in research focusing on healthcare innovations and contribute to scientific publications and academic seminars in the field of biomedical sciences. Graduates of this program are expected to pursue careers as researchers, medical technology developers, or healthcare professionals involved in medical research and drug development across research institutions, pharmaceutical companies, and healthcare organizations.
Producing Biomedical Masters graduates who are professional, have a socio-technopreneurship insight and excel in optimizing physiology with natural antioxidants
Produce Biomedical Masters graduates who have high competence in their fields, have integrity, are professional, and have sociotechnopreneurship skills and insight who are able to adapt and provide innovative solutions in the world of work and business, especially in the field of optimizing physiology by using antioxidants made from natural ingredients;The production of high quality and international standard scientific work in the biomedical field, especially those that focus on optimizing physiology with natural antioxidants, which can be a reference for the development of science and technological innovation as well as encouraging progress in the health sector and the use of natural resources;Produce effective Community Service and have a positive impact on the community, especially in the application of biomedical research results regarding natural antioxidants. Through community service programs, the community can improve the quality of their health and utilize local potential with the principles of Sociotechnopreneurship;The production of integrated and synergistic Tridharma services, realizing quality and international standard education, research and community service, as well as supporting the achievement of the vision of becoming a study program with the support of domestic and international cooperation.
Creation of Biomedical Master's graduates who have in-depth expertise in optimizing physiology with natural antioxidants, and are able to play an active and competitive role in the world of health industry, research and business with a Sociotechnopreneurship approach;Creation of high quality scientific work that can be published in journals of international reputation, emphasizing innovation and real contributions in the biomedical field, especially optimizing physiology by using antioxidants made from natural ingredients;The realization of Community Service based on research results and innovation in the biomedical field, providing concrete solutions to society, especially in applying the benefits of natural antioxidants for better well-being and quality of life;The realization of responsive, adaptive and innovative Academic Services, supporting the success of the teaching-learning process and the achievement of graduate competencies;Creation of institutional collaboration activities with national and international institutions in the fields of education, research and community service that are relevant to the biomedical field, especially physiological optimization;Creation of superior human resources who have high competence, integrity and dedication, and are able to actively contribute to achieving the vision and mission of the Master of Biomedical Science Program;Creation of superior students with academic, non-academic abilities, practical skills, and broad sociotechnopreneurship insight, who are ready to become agents of change and leaders in the biomedical field.
| Code | Course / Stage | Credits |
|---|---|---|
| BIO801111 | Pengantar Biomedik | 1 |
| BIO802112 | Biologi Sel | 2 |
| BIO802113 | Biologi Molekuler dan Genetika Molekuler | 2 |
| BIO802114 | Teknik Dasar Biomolekuler | 2 |
| BIO802115 | Imunologi Lanjutan | 2 |
| BIO803116 | Metode Penelitian Lanjutan | 3 |
| BIO801117 | Manajemen Pendidikan Kedokteran | 1 |
| BIO803118 | Biostatistika Lanjutan | 3 |
| Total | 16 | |
Open a course to explore its overview and the Course Learning Outcomes (CPMK) students are expected to achieve.
This course covers fundamental concepts and advances in biomedical sciences at the cellular, molecular, and organ-system levels as a foundation for understanding health and disease mechanisms and supporting biomedical research.
This course covers cell structure, function, organization, and mechanisms, as well as interactions among cellular components in maintaining homeostasis and supporting life processes.
This course covers the molecular mechanisms of life and heredity, including DNA/RNA structure and function, replication, gene expression and regulation, mutations, and their applications in biomedical sciences.
This course covers the fundamental principles and applications of biomolecular laboratory techniques, including nucleic acid (DNA/RNA) isolation and purification, electrophoresis, Polymerase Chain Reaction (PCR), as well as mutation and gene expression analysis to support medical diagnosis and research.
This course covers advanced molecular and cellular mechanisms of the immune response, including immune regulation, immunopathology, hypersensitivity, autoimmunity, cancer immunology, and recent developments in immunotherapy and vaccines.
This course covers advanced research design, hypothesis formulation, advanced quantitative and qualitative methodologies, statistical analysis of biomedical/molecular data, as well as research ethics and scientific writing for international publications.
This course discusses the basic concepts, principles, and strategies for managing medical education systems, covering curriculum planning, institutional governance, quality assurance, and learning evaluation in medical education institutions.
This course discusses the concepts and applications of advanced statistical methods in biomedical and public health research, including probability, multivariate analysis, logistic regression, survival analysis, and the use of statistical software for clinical data processing.
Head of Study Program
Program Secretary