Li Shipu's achievements and honors.

1974 participated in the development of "ceramic electric contact water level meter" by the ceramic research group of our school.

1978 "water level gauge of boiler electric contact" won the national science conference award;

198 1 developed a new artificial femoral head prosthesis made of pure corundum-metal composite material, which was the first in China and has been successfully applied in more than ten major hospitals in Beijing, Wuhan and Shenyang. 1985, won the third prize of national invention and the first prize of scientific and technological progress in Hubei province;

1982 "development of pure corundum double-cup total hip joint" won the third prize of the Ministry of building materials industry;

1986 "Pure corundum-bone cement-stainless steel composite articulated total knee joint (M28)" won the Yellow Crane Invention Award;

1990, becoming the first batch of people enjoying "government allowance" in the State Council;

1996 "Special Ceramic Technology" won the second prize of Excellent Textbook Award of Building Materials Bureau;

1997, special ceramic technology won the second prize of scientific and technological progress in Hubei province;

65438-0998 "Research and clinical application development of composite calcium phosphate bioceramics for bone implantation" won the first prize of scientific and technological progress of the State Building Materials Bureau and the third prize of national scientific and technological progress. Since then, China has entered the international advanced ranks of biomaterials research.

In 2000, "Study on Degradation Mechanism of Biodegradable Ceramic Materials" won the second prize of Hubei Natural Science Award;

In 2004, "Research and Application of Bioabsorbable PDLLA/HA Intraosseous Fixation Device" won the second prize of Scientific and Technological Progress of National Building Materials Industry Association;

In 2004, "Preparation Technology and Application of Bioabsorbable PDLLA/ Hydroxyapatite Intraosseous Fixator" won the first prize of technological invention in Hubei Province;

In 2005, "Development and application of bioceramic middle ear ventilation and drainage tube" won the third prize of scientific and technological progress in Hubei Province;

In 2005, "Research and Development of Artificial Hip Joint and Intraosseous Fixture" won the first prize of Wuhan Science and Technology Progress Award;

20 10 won the second prize of national scientific and technological progress;

20 12 was elected as an academician of the International Federation of biomaterial science and Engineering Societies. "Academician" is the highest honorary title for life awarded by the International Federation of biomaterial science and Engineering Societies to the world's outstanding biomaterials experts.

We have applied for 27 invention patents, authorized patents 15 and authorized 2 utility model patents.

Since 1979, he has been engaged in the research of biomaterials, and has taken the lead in applying alumina ceramics to the medical field in China. Nearly 30 years of clinical practice has proved that it is successful. A series of alumina ceramic composite artificial joints with novel design were studied, which solved the problem of easy wear of metal joints.

65438-0987 took the lead in studying the degradation and metabolism of calcium phosphate biomaterials and the ways and mechanisms involved in life processes in order to solve the bone source problem of clinically needed bones. The theoretical formula of material microstructure and sound conduction is put forward. The original bioceramic ossicles in China were developed to solve the problem of hearing recovery of deaf people caused by ossicles injury. The composite preparation technology of liquid phase adsorption method was invented, so that nanoparticles were uniformly dispersed in polymer matrix, the cutting process of polymer material was invented by direct heating, pressure molding and online cooling, and the absorbable bone screw was developed, which solved the problem that aseptic inflammation was easily caused by the degradation of polymer material.