对网络中流通的数据进行截获分析是限制和打击网络黑客和网络犯罪的重要手段。然而目前基于有限状态机的截获算法由于实现成本和复杂度的限制,吞吐量较低,难以满足网络核心级的截获速度要求。该文以高速无感截获为目标,利用基于BCAM(b i...对网络中流通的数据进行截获分析是限制和打击网络黑客和网络犯罪的重要手段。然而目前基于有限状态机的截获算法由于实现成本和复杂度的限制,吞吐量较低,难以满足网络核心级的截获速度要求。该文以高速无感截获为目标,利用基于BCAM(b inary con ten t access ib le m em ory)的非状态机结构提出了一种可实现无感截获的高效易行方案。该方案从减少系统成本和实现复杂度出发,通过原创性地采用BCAM避开了设计状态机所需的复杂硬件结构,使方案更简洁高效,同时降低了系统成本,实现了汉字的高速过滤截获,能满足网络核心级,例如O c48链路速度(即2.5G b/s)无感截获系统的要求。展开更多
Parkinson's disease (PD) is a typical degenerative disease, which is characterized by the most obvious symptoms of movement dysfunction, including shaking, rigidity, slowness of movement and difficulty in walking a...Parkinson's disease (PD) is a typical degenerative disease, which is characterized by the most obvious symptoms of movement dysfunction, including shaking, rigidity, slowness of movement and difficulty in walking and gait. This disease can not be clearly identified through laboratory tests at present, thus application of high-throughput technique in studying the expression profiles of PD helps to find the genetic markers for its early diagnosis. Studies on expression profiles of neurodegenerative diseases have revealed the novel genes and pathways involved in the progress of illness. In this study, the expression profiles of PD in blood were compared, showing that 181 differentially expressed genes (DEG) exhibit a similar expression trend both in patients and in normal controls.展开更多
文摘对网络中流通的数据进行截获分析是限制和打击网络黑客和网络犯罪的重要手段。然而目前基于有限状态机的截获算法由于实现成本和复杂度的限制,吞吐量较低,难以满足网络核心级的截获速度要求。该文以高速无感截获为目标,利用基于BCAM(b inary con ten t access ib le m em ory)的非状态机结构提出了一种可实现无感截获的高效易行方案。该方案从减少系统成本和实现复杂度出发,通过原创性地采用BCAM避开了设计状态机所需的复杂硬件结构,使方案更简洁高效,同时降低了系统成本,实现了汉字的高速过滤截获,能满足网络核心级,例如O c48链路速度(即2.5G b/s)无感截获系统的要求。
基金supported by the National Natural Science Foundation of China(81101302,31270185)SKLID Development Grant(2014,SKLID201)
文摘Parkinson's disease (PD) is a typical degenerative disease, which is characterized by the most obvious symptoms of movement dysfunction, including shaking, rigidity, slowness of movement and difficulty in walking and gait. This disease can not be clearly identified through laboratory tests at present, thus application of high-throughput technique in studying the expression profiles of PD helps to find the genetic markers for its early diagnosis. Studies on expression profiles of neurodegenerative diseases have revealed the novel genes and pathways involved in the progress of illness. In this study, the expression profiles of PD in blood were compared, showing that 181 differentially expressed genes (DEG) exhibit a similar expression trend both in patients and in normal controls.