科研成果

2026
陈功, 张承蒙. 气候老年学的方法论建构:范式转换与中国实践. 成都理工大学学报(社会科学版). 2026;34:54-70.
易红梅, 何煦, 智华勇, 黄季焜, 陈曦. 涉农数智技术采纳现状与现实挑战:基于两套具有代表性农户调查的研究. 智慧农业(中英文) [Internet]. 2026:1-16. 访问链接
刘怀亚, 贾积有. 生成式人工智能促进学生高阶思维发展的内在机制和教学建议——基于IRIT模型的构建. 北京教育学院学报 [Internet]. 2026;40(2):81-87. 访问链接
陈柯彤, 王文博, 贾积有. 生成式人工智能在高校学生中的应用现状与群体差异研究. 第30届全球华人计算机教育应用大会论文集(中文论文)(GCCCE 2026). 2026:1369-1372.
杨佳兴, 吴亚南, 李文琦, 张鹏翼, 王军. 生成式人工智能赋能文献遗产活化的方法路径分析. 图书馆杂志. 2026.
Song J, Xie J. 算术动力系统. [Internet]. 2026. pdf
刘智锋, 罗鹏程, 唐星龙, 赵思琪, 王继民*. 组态视角下科学数据复用的驱动因素研究. 情报理论与实践. 2026;49(1):50-59.
郑永平,雷润宏,陈意,曲昂,李敏,邓秀文,孙海涛,江萍,王俊杰. 自适应放疗(ART)临床工作流分析系统. 2026.Abstract
开发目的:用于肿瘤自适应ART(Adaptive Radiation Therapy)放疗过程中各步骤耗时的精确记录、数据管理和统计分析,优化临床工作流程,提升放疗效率和质量 主要功能: 1. 实时计时功能:记录ART放疗过程中各步骤的时间戳,包括摆位、IGRT扫描、ROI生成、CTV/OARs勾画与修改、计划创建与优化、计划评估等16个关键步骤。2. 患者信息管理:记录患者姓名、ID、ART分次、日期等基本信息。3. ART设置记录:记录扫描范围、扫描层厚、CTV生成方式、计划生成方式等参数。4. 数据导出:自动导出Excel格式数据,包含步骤耗时表和事件时间戳表。5. 数据合并:合并多个Excel记录文件,生成统一的数据汇总表。6. 统计分析:计算各步骤的平均值、中位数、标准差、方差、最小值、最大值等统计指标。7. 数据可视化:生成箱线图、折线图等可视化图表,支持3mm与5mm扫描层厚的对比分析,包含显著性检验。8. 参考耗时对比:显示实际耗时与参考耗时的对比,用颜色标识是否超出参考时间。 技术特点:1. 采用面向对象设计,模块化架构,代码结构清晰。2. 实时计时更新机制,每秒自动刷新显示当前耗时。3. 支持键盘快捷键操作(Page Down/Up),提高操作效率。4. 自动数据导出和格式化,支持Excel多工作表。5. 内置统计分析模块,无需外部统计软件。6. 数据可视化功能,支持箱线图、折线图、趋势分析。7. 支持PyInstaller打包为独立可执行文件,无需安装Python环境。8. 中英文列名自动转换,便于国际化应用。
金帆, 张鹏翼. 虚拟馆员的应用需求及启示——基于Q方法的探索研究. 图书情报工作. 2026.
旷欣然, 张莅凝, 贾积有. 融合多模态识别与大模型的启发式解题引导系统:以“小希问道”为例. 2026年中国教育技术学术大会. 2026.
金子,马昕蕾,杨明,邢昕. 血红蛋白结构与冬眠哺乳动物高氧亲和力研究. 兽类学报 [Internet]. 2026. 访问链接
张莅凝, 戴璐, 贾积有. 面向学生发展全过程的高校综合育人画像系统的设计与实现. 第30届全球华人计算机教育应用大会论文集(中文论文)(GCCCE 2026). 2026:432-436.
唐星龙, 徐扬*. 面向战略布局梳理的人智协作模式研究. 情报资料工作 [Internet]. 2026:1-26. 访问链接
2025
Gong J, Yin Z, Lei Y, Lu X, Zhang Q, Cai C, Chai Q, Chen H, Chen R, Chen W. The 2023 report of the synergetic roadmap on carbon neutrality and clean air for China: Carbon reduction, pollution mitigation, greening, and growth. Environmental Science and Ecotechnology. 2025;23:100517.
李雅瑄, 陈昂轩, 贾积有. 2024中国教育技术研究前沿与热点年度报告. 中国电化教育. 2025;2025(5):61-67.
Zhou Y, Zhu R, Luo W, Xu X, Qi S, Ning Z, Chen L, Shao H, Tang K, HUANG R. 3D NOR-Type FeFETs with Record Endurance of 1011, Fast Erase of 50 ns, and Immediate Read-After-Write for In-Memory Learning, in 2025 Symposium on VLSI Technology and Circuits (VLSI Technology and Circuits).; 2025:1-3.
Du J, Haley BA, McManus J, Blaser P, Rickli J, Vance D. Abyssal seafloor as a key driver of ocean trace-metal biogeochemical cycles. Nature [Internet]. 2025;642:620–627. 访问链接Abstract
Trace elements and isotopes (TEIs) are important to marine life and are essential tools for studying ocean processes1. Two different frameworks have arisen regarding marine TEI cycling: reversible scavenging favours water-column control on TEI distributions2–5, and seafloor boundary exchange emphasizes sedimentary imprints on water-column biogeochemistry6,7. These two views lead to disparate interpretations of TEI behaviours8–10. Here we use rare earth elements and neodymium isotopes as exemplar tracers of particle scavenging11 and boundary exchange6,7,12. We integrate these data with models of particle cycling and sediment diagenesis to propose a general framework for marine TEI cycling. We show that, for elements with greater affinity for manganese oxide than biogenic particles, scavenging is a net sink throughout the water column, contrary to a common assumption for reversible scavenging3,13. In this case, a benthic flux supports increasing elemental concentrations with water depth. This sedimentary source consists of two components: one recycled from elements scavenged by water-column particles, and another newly introduced to the water column through marine silicate weathering inside sediment8,14,15. Abyssal oxic diagenesis drives this benthic source, and exerts a strong influence on water-column biogeochemistry through seafloor geometry and bottom-intensified turbulent mixing16,17. Our findings affirm the role of authigenic minerals, often overshadowed by biogenic particles, in water-column cycling18, and suggest that the abyssal seafloor, often regarded as inactive, is a focus of biogeochemical transformation19,20.
Liang J, Zhang Z, Zhang X, Shen Q, Gao Y, Yuan X, Xue H, Wu P, Wu Z. Achilles: A Formal Framework of Leaking Secrets from Signature Schemes via Rowhammer, in 34th USENIX SECURITY SYMPOSIUM. SEATTLE, WA, USA(Honorable Mention Paper): USENIX; 2025. 访问链接Abstract
Signature schemes are a fundamental component of cybersecurity infrastructure. While they are designed to be mathematically secure against cryptographic attacks, they are vulnerable to Rowhammer fault-injection attacks. Since all existing attacks are ad-hoc in that they target individual parameters of specific signature schemes, it remains unclear about the impact of Rowhammer on signature schemes as a whole. In this paper, we present Achilles, a formal framework that aids in leaking secrets in various real-world signature schemes via Rowhammer. Particularly, Achilles can be used to find potentially more vulnerable parameters in schemes that have been studied before and also new schemes that are potentially vulnerable. Achilles mainly describes a formal procedure where Rowhammer faults are induced to key parameters of a generalized signature scheme, called G-sign, and a post-Rowhammer analysis is then performed for secret recovery on it. To illustrate the viability of Achilles, we have evaluated six signature schemes (with five CVEs assigned to track their respective Rowhammer vulnerability), covering traditional and post-quantum signatures with different mathematical problems. Based on the analysis with Achilles, all six schemes are proved to be vulnerable, and two new vulnerable parameters are identified for EdDSA. Further, we demonstrate a successful Rowhammer attack against each of these schemes, using recent cryptographic libraries including wolfsslrelic, and liboqs.
Zhang H. The Acquisition of Chinese Pinyin and Hanzi: A study from English and Arabic learners. Routledge; 2025. 访问链接
Activation of Chlorite with Sunlight for the Efficient Disinfection of Antibiotic-Resistant Bacteria: the Overlooked Contribution of Cytomembrane-Bound Chlorite
Shen Y, Liu F, Liang J, Li Z, Hou Y, Wu J, Ting Y, Guo R, Liu Y, Han P, et al. Activation of Chlorite with Sunlight for the Efficient Disinfection of Antibiotic-Resistant Bacteria: the Overlooked Contribution of Cytomembrane-Bound Chlorite. Environmental Science & Technology [Internet]. 2025;59:19526-19536. 访问链接Abstract
Current antibiotic-resistant bacteria (ARB) disinfection techniques commonly rely on large dosages of oxidants, resulting in the presence of considerable amounts of residuals and toxic disinfection byproducts (DBPs) in water. Herein, we propose a highly effective ARB disinfection approach via activating an ultralow concentration (10 μM) of chlorite (ClO2–) by naturally abundant sunlight to generate various reactive species (i.e., HO•, Cl•, ClO•, and ClO2) with negligible generation of halogenated DBPs. Combining in situ characterization with theoretical calculations, we reveal that, in addition to the photolysis of ClO2– in the bulk solution, ClO2– ions electrostatically adsorbed on the positive local sites of lipids can boost light absorption and facilitate the in situ generation of reactive species upon sunlight irradiation, enabling more efficient attacks toward cell membranes and the intracellular antioxidant enzyme system. The intracellular antibiotic resistance genes (ARGs) are then released and further degraded, inhibiting horizontal ARG transfer. This approach can also achieve excellent ARB disinfection performance in real water matrices (e.g., lake and river water) in 1 L tanks and 500 mL plastic bottles with natural sunlight irradiation. Overall, this work presents an efficient, safe, and sustainable method to inactivate ARB with deep insights into disinfection mechanisms at the subcellular level.

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