Although discovered more than 100 years ago, X-ray source technology has evolved rather slowly. The recent invention of the carbon nanotube (CNT) X-ray source technology holds great promise to revolutionize the fiel...Although discovered more than 100 years ago, X-ray source technology has evolved rather slowly. The recent invention of the carbon nanotube (CNT) X-ray source technology holds great promise to revolutionize the field of biomedical X-ray imaging. CNT X-ray sources have been successfully adapted to several biomedical imaging applications including dynamic rnicro-CT of small animals and stationary breast tomosynthesis of breast cancers. Yet their more irnportant biomedical imaging applications still lie ahead in the future, with the devel- oprnent of stationary rnulti-source CT as a noteworthy exarnple.展开更多
in this paper we present a distributed graphics processing support library called DGPSL. Itis a facility for implementing graphics applications which repuire expensive computing power on a network of workstations- Use...in this paper we present a distributed graphics processing support library called DGPSL. Itis a facility for implementing graphics applications which repuire expensive computing power on a network of workstations- Users may use it to implernent distributed graphics application just as use anordinary library- DGPSI- contains a sequencial graphics library (SGL) and a parallel graphics library(PGL). When users call graphics rountines in PGL, DGPSL finds more than one idle rnachines andexecute the specified algorithm in parallel. The DGPSL is implemented on a heterogenous network.With DGPSL, we have developed a distributed solid modeling sysytem and a distributed volurne ren-dering system.展开更多
基金supported by Dr.Guohua Cao’s CAREER award from the U.S.National Science Foundation(CBET 1351936)
文摘Although discovered more than 100 years ago, X-ray source technology has evolved rather slowly. The recent invention of the carbon nanotube (CNT) X-ray source technology holds great promise to revolutionize the field of biomedical X-ray imaging. CNT X-ray sources have been successfully adapted to several biomedical imaging applications including dynamic rnicro-CT of small animals and stationary breast tomosynthesis of breast cancers. Yet their more irnportant biomedical imaging applications still lie ahead in the future, with the devel- oprnent of stationary rnulti-source CT as a noteworthy exarnple.
文摘in this paper we present a distributed graphics processing support library called DGPSL. Itis a facility for implementing graphics applications which repuire expensive computing power on a network of workstations- Users may use it to implernent distributed graphics application just as use anordinary library- DGPSI- contains a sequencial graphics library (SGL) and a parallel graphics library(PGL). When users call graphics rountines in PGL, DGPSL finds more than one idle rnachines andexecute the specified algorithm in parallel. The DGPSL is implemented on a heterogenous network.With DGPSL, we have developed a distributed solid modeling sysytem and a distributed volurne ren-dering system.