Application of Bioinformatics in Biomedicine

The application of bioinformatics in biomedicine is as follows:

In the fields of biomedicine and biopharmaceutics, bioinformatics technology has a very wide range of applications, including visual medicine and computer-aided biopharmaceuticals to obtain bioinformatics.

Bioinformatics is based on biotechnology. The so-called biotechnology is similar to bionics. Based on the research of life science, it uses the characteristics and functions of organisms to design and construct new substances or strains with certain characteristics. The so-called bio-information technology is a typical interdisciplinary subject, which uses information technology to better achieve the goal of biotechnology.

With the development of science and technology and the arrival of the era of big data, the ways of information acquisition, processing, transmission and storage have changed greatly. This has injected new possibilities into biotechnology and made its application in the biomedical field more important and extensive. Bioinformatics technology is the development trend and leading technology in the field of life science in the future.

In the context of the era of big data, it has been fully developed and made great progress. The application of bioinformatics technology in biomedical field provides great convenience for treatment, diagnosis, drug production and research and development. The author believes that with the continuous development of bioinformatics technology, it will create one miracle after another in the medical field, and escort human health and life continuation.

Training objectives

This major trains advanced engineering compound applied talents with comprehensive abilities such as medical device design, research and development, and application, and combining science, engineering and medicine. Students mainly study basic theoretical knowledge such as electronics, mechanics, optics, computers and medicine. Master the system design methods of medical electronic instruments and precision medical devices, and have the ability of quality inspection and risk assessment of medical device products.

Can be engaged in the development, design and research of medical electronic instruments and precision medical devices, medical device quality inspection and technical supervision and management. , with a solid natural science foundation, strong engineering practice ability, good sense of innovation and international vision, as well as good comprehensive literacy in humanities, arts and social sciences.