Chaoqun Dong

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Conventional in vitro circulating tumor cell (CTC) detection methods are always limited by blood sample volume because of the requirement of a large amount of blood. The aim of this study was to overcome the limitation by designing and making an in vivo CTC capture device. In this study, we designed and prepared a kind of proper material to serve the(More)
This paper proposed a Virtualized Self-Adaptive Heterogeneous High Productivity Computers Parallel Programming Framework (VAPPF), which is composed of Virtualization-Based Runtime System (VRTS) and Virtualized Adaptive Parallel Programming Model (VAPPM). Virtualization-Based Runtime System is composed of Node-Level Virtual Machine Monitor (NVMM) and(More)
Circulating tumor cells (CTC) capture is one of the most effective approaches in diagnosis and treatment of cancers in the field of personalized cancer medicine. In our study, zwitterionic carboxybetaine methacrylate (CBMA) oligomers were grafted onto nylon via atomic transfer random polymerization (ATRP) which would serve as a novel material for the(More)
Here we propose an efficient estimation method to interpolate new samples in a blurred and aliased observation, in such a way that (1) aliasing artifacts in an ulterior restoration are mitigated, and (2) thanks to aliasing we may recover some spatial frequencies beyond the Nyquist frequency (super-resolution). The only requirement is having a good(More)
Cognitive Radio(CR) is a promising technology to fully utilize the constrained spectrum, and cooperative spectrum sharing in cognitive network is regarded as an important and challenging issue. This paper considers that primary user(PU) is willing to coexist with secondary users(SUs) once it is paid and its Signal to Interference-plus-Noise Ratio(SINR) is(More)
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