We target scientific research in the interdisciplinary fields of biology, medicine, and electronic information, leading with basic and applied basic research, vigorously developing new technologies, continuously improving the overall level of scientific research, and emphasizing the development of new scientific research growth points, enabling sustained scientific development, maintaining a leading domestic position, and steadily approaching international advanced standards.

The school mainly focuses on the following five research directions:

(1) Genome sequencing and bioinformatics analysis. Research in this direction aims to establish whole genome sequencing methods based on biochips, develop rapid, low-cost, and highly sensitive DNA sequencing technologies, to develop bioinformatics analysis technologies related to genome sequencing, and to study individual genome information analysis methods and technologies related to human diseases.

(2) Biological and medical nanotechnology. Research in this direction focuses on the preparation and characterization of biomedical nanomaterials, biocompatibility, the interaction methods and characteristics of nanoparticles with cells and organelles, and to develop nanobiomedical technologies for clinical diagnosis and treatment.

(3) Biomedical materials and devices. Research in this direction aims to develop new implantable and non-implantable bioelectronic devices, to advance human organ function repair technologies, to investigate neuronal signal transmission mechanisms based on microelectronic chips, and to study new technologies and methods for biocompatibility evaluation related to biomaterials and implantable devices.

(4) Medical Imaging and Medical Electronics. Research in this direction aims to research the physical and physiological properties of high-speed medical ultrasound echo signals, to further improve the temporal and spatial resolution of medical ultrasound images, to develop multi-purpose high-speed medical ultrasound signal acquisition systems, and miniature medical instruments.

(5) Biomechanics. Cardiovascular and cerebrovascular diseases are common illnesses that seriously threaten human health, which have become the leading cause of death, and are also the "silent killer" of human health. They are characterized by "high incidence, high disability rates, high mortality rates, high recurrence rates, and many complications. Research in this direction will actively explore the biomechanical mechanisms of cardiovascular and cerebrovascular systems, thereby advancing the prevention, diagnosis, and treatment of cardiovascular and cerebrovascular diseases.