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IL-27:overclocking cytotoxic T lymphocytes to boost cancer immunotherapy
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作者 Silvia Dusi Vincenzo Bronte Francesco De Sanctis 《Signal Transduction and Targeted Therapy》 2025年第5期2534-2536,共3页
In a recent study published in Nature,Breart et al.1 untangled the controversy surrounding interleukin(IL)-27’s role in regulating T cell differentiation and immune responses in cancer.Their findings reveal that IL-2... In a recent study published in Nature,Breart et al.1 untangled the controversy surrounding interleukin(IL)-27’s role in regulating T cell differentiation and immune responses in cancer.Their findings reveal that IL-27 enhances the persistence and effector functions of tumor-infiltrating CD8^(+)T lymphocytes(TILs),preventing exhaustion,sustaining T cell-dependent tumor control and immunotherapy efficacy without significant systemic side effects. 展开更多
关键词 overclocking cancer immunotherapy TILs cell differentiation immune responses immune exhaustion cytotoxic T lymphocytes tumor control INTERLEUKIN
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Athlon超频卡—K7 overclock Card
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作者 佚名 《计算机应用文摘》 2000年第5期23-23,共1页
关键词 CPU 超频卡 K7Overclock 微处理器
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A Holistic Energy-Efficient Approach for a Processor-Memory System 被引量:1
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作者 Feihao Wu Juan Chen +5 位作者 Yong Dong Wenxu Zheng Xiaodong Pan Yuan Yuan Zhixin Ou Yuyang Sun 《Tsinghua Science and Technology》 SCIE EI CAS CSCD 2019年第4期468-483,共16页
Component overclocking is an effective approach to speed up the components of a system to realize a higher program performance; it includes processor overclocking or memory overclocking. However, overclocking will una... Component overclocking is an effective approach to speed up the components of a system to realize a higher program performance; it includes processor overclocking or memory overclocking. However, overclocking will unavoidably result in increase in power consumption. Our goal is to optimally improve the performance of scientific computing applications without increasing the total power consumption for a processor-memory system. We built a processor-memory energy efficiency model for multicore-based systems, which coordinates the performance and power of processor and memory. Our model exploits performance boost opportunities for a processor-memory system by adopting processor overclocking, processor Dynamic Voltage and Frequency Scaling(DVFS), memory active ratio adjustment, and memory overclocking, according to different scientific applications.This model also provides a total power control method by considering the same four factors mentioned above. We propose a processor and memory Coordination-based holistic Energy-Efficient(CEE) algorithm, which achieves performance improvement without increasing the total power consumption. The experimental results show that an average of 9.3% performance improvement was obtained for all 14 benchmarks. Meanwhile the total power consumption does not increase. The maximal performance improvement was up to 13.1% from dedup benchmark.Our experiments validate the effectiveness of our holistic energy-efficient model and technology. 展开更多
关键词 PROCESSOR overclocking memory overclocking performance BOOST TOTAL power control energy efficiency
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