姓  名: 降雨强
    职  称: 研究员
    职  务:
    电话/传真:
    电子邮件: yqjiang@genetics.ac.cn
    实验室主页:
    研究方向: 微纳米光学及其生物应用

    简历介绍:

    降雨强,博士,研究员,博士生导师
      1989年毕业于北京师范大学物理系,1998-2004年在山西大学、中科院物理所攻读硕士、博士学位。2004年-2010年,先后在日本大阪大学应用物理系和日本国立自然科学研究机构分子科学研究所从事博士后研究,主要开展光学微操纵、近场光学以及双光子荧光成像等方面的研究;2011年在华南师范大学任特岗教授,2012年加入中国科学院遗传与发育生物学研究所。现任公共技术中心主任,生物影像平台首席科学家。

    研究领域:

    主要研究内容 
        1、光学微操纵技术及在生物学中的应用
        (1)基于光镊的单分子动力学研究
        利用光学微操纵(激光光镊)技术研究细胞、生物大分子等之间的相互作用及各种动力学过程。
        (2)基于非线性效应的飞秒激光光镊及其生物学应用
         研究不同偏振飞秒激光下的非线性捕获效应与现象,探索非线性效应在飞秒捕获中的物理机制及其生物学新应用。
        2、多功能纳米探针及其生物学应用
        开展基于量子点、金纳米簇、发光金纳米颗粒等纳米材料的多功能探针制备、理化性质研究,探索其在肿瘤放射动力学(RDT)/光动力学治疗(PDT)、生物影像、植物温度探测等方面的应用。

        3、生物影像技术及其生物学应用
        (1)光学显微成像技术开发
        开发新的显微成像技术。利用共聚焦显微镜、双光子显微镜以及超高分辨率显微镜等成像设备及时间门控(Time-gated)采集等技术,结合长寿命发光纳米探针技术等,开展生物光子学方面的研究。

        (2)作物表型组学研究
        开发面向植物表型研究的成像技术,例如植物CT等,开展作物深层组织、遮挡部位和根部表型采集和研究 ,结合多种采集手段开展作物多模态表型组学研究。

    课题组成员:
    韩荣成 博士,副研究员;
    王瑜 博士,高级工程师;
    黄璐 博士,高级工程师
    秦亚强 博士,工程师
    博士研究生:
    于文文,孙宇蛟,陈霞,黄江伟,李超,MD ATIQUR RAHMAN,赵佃英,张玉慧,董晶晶,钱一凡,李一凡
    硕士研究生:
    李瑞渊,张振方,周中梁,彭雅龄,段同锦
    已毕业学生:
    朱菱,石浩,王旭,范艳艳,李政红,李坤龙,高莹,宋忠森,程良辉,徐亚辉,方义,靳云峰,黄诗妍,黄增益,李炳熠,王志维,薛英喜,尉杰忠,秦亚强,朱胜藏,燕飞虹,刘启航,李芳, 薛如仙

    社会任职:

    获奖及荣誉:

    承担科研项目情况:

    代表论著:

    代表性论文
    1. Sun Yujiao; Shao Shihao; Huang Jiangwei; Shi Hao; Yan Liying; Lu Yongjie; Liu Ping; Jiang Yuqiang; Qiao Jie; Zhang Li. Development and validation of a deep learning model based on cascade mask regional convolutional neural network to noninvasively and accurately identify human round spermatids. Journal of Advanced Research, 2025, S2090-1232(25)00219-X.
    2. Yan, Feihong; Li, Ruiyuan; Liu, Jiaxin; Yang, Lulu; Liu, Helin; Zhu, Shengcang; Zhang, Yuhui; Wang, Lijun; Huang, Lu; Wang, Yu; Qin, Yaqiang; Zhang, Yuhang; Wang, Xin; Wang, Yuan; Zhang, Jianping; Sha, Yinlin; Fu, Limin; Liu, Zhiyong; Han, Rongcheng*; Jiang, Yuqiang*. Hybrid near-Infrared-Activated Luminescent Gold Nanoparticle Platform for Efficient Cancer Therapy. Advanced Composites and Hybrid Materials, 2025, 8(2): 173.
    3. Yang, Lulu; Yan, Feihong; Zhu, Shengcang; Liu, Helin; Wang Jianhai; Wang, Lijun; Hong, Yuankai; Fu, Limin; Zhang, Jianping; Chen, Xia; Song, Xiaojing; Zhang, Weibo; Han, Rongcheng*; Jiang, Yuqiang*; Sha, Yinlin*; Liu, Zhiyong*. Highly luminescent gold nanoparticles prepared via a facile photochemical method for bioimaging applications. Advanced Composites and Hybrid Materials, 2024, 7(5):152.
    4. MD ATIQUR RAHMAN; Yan, Feihong; Li, Ruiyuan; Wang, Yu; Huang, Lu; Han, Rongcheng*; Jiang, Yuqiang*; Deep Learning Insights into the Dynamic Effects of Photodynamic Therapy on Cancer Cells, Pharmaceutics, 2024, 16(5):673.
    5. Li, Yuebing, Yaqiang Qin, Heqiang Wang, Lu Huang, Honglian Guo*, and Yuqiang Jiang*. Calculation and measurement of trap stiffness in femtosecond optical tweezers. Optics Express, 2024, 32(7): 12358-12367.
    6. Pan,Huimin; Qin, Yaqiang; Zhu, Jinglin; Wang, Wei; Liu, Zhonghua; Huang, Xiahe; Lam, SinMan; Shui, Guanghou; Wang, Yingchun; Jiang, Yuqiang; Huang, Xun; Centrins control chicken cone cell lipid droplet dynamics through lipid-droplet-localized SPDL1. Developmental cell, 2023, (58): 1-17.
    7. Yao, Jun, Yaqiang Qin, Yihua Bai, Mingsheng Gao, Lei-Ming Zhou, Jiafang Li, Yuqiang Jiang*, and Yuanjie Yang*; Generation of optical vortices by diffraction from circular apertures. ACS Photonics, 2023, 10(12): 4267-4272.
    8. Tang, Zhixin; Chen, Zhuo; Gao, Yua; ,Xue, Ruxian; Geng, Zedong; Bu,Qingyun; Wang, Yanyan; Chen, Xiaoqian; Jiang, Yuqiang; Chen,Fan; Yang, Wanneng; Hu, Weijuan; A Strategy for the Acquisition and Analysis of Image-Based Phenome in Rice during the Whole Growth Period. Plant phenomics, 2023, 5(0): 0058.
    9. Zhu, Shengcang#; Yan, Feihong#; Yang, Lulu; Li, Bingyi; Xue, Ruxian; Yu, Wenwen ; Wang, Yu; Huang, Lu; Wang, Lijun; Han, Rongcheng*; Jiang, Yuqiang*; Low-dose X-ray radiodynamic therapy solely based on gold nanoclusters for efficient treatment of deep hypoxic solid tumors combined with enhanced antitumor immune response. Theranostics. 2023,13(3):1042-1058.
    10. Qin, Yaqiang; Zhou, Lei-Ming; Huang, Lu; Jin, Yunfeng; Shi, Hao; Shi, Shali; Guo, Honglian; Xiao, Liantuan; Yang, Yuanjie*; Qiu, Cheng-Wei*; Jiang, Yuqiang*. Nonlinearity-Induced Nanoparticle Circumgyration at Sub-Diffraction Scale. Nature communications2021, 12(1):3722.
    11. Han, Rongcheng; Zhao Miao; Wang, Zhiwei; Liu, Helin; Zhu, Shengcang; Huang, Lu; Wang, Yu; Wang, Lijun; Hong, Yuankai; Sha, Yinlin*; Jiang, Yuqiang*; Super-efficient in Vivo Two-Photon Photodynamic Therapy with a Gold Nanocluster as a Type I Photosensitizer, ACS Nano, 2020, 14(8): 9532-9544.
    12. Huang, Lu; Qin, Yaqiang; Jin, Yunfeng; Shi, Hao; Guo, Honglian; Xiao, Liantuan*; Jiang, Yuqiang*; Spheroidal trap shell beyond diffraction limit induced by nonlinear effects in femtosecond laser trapping, Nanophotonics, 2020, 9(14): 4315-4325.
    13. Yan, Yuqing; Yu, Jiezhong; Gao, Ye; Kumar, Gajendra; Guo, Minfang; Zhao, Yijin; Fang, Qingli; Zhang, Huiyu; Yu, Jingwen; Jiang, Yuqiang*; Zhang, Han-Ting*; Ma, Cun-Gen*; Therapeutic potentials of the Rho kinase inhibitor Fasudil in experimental autoimmune encephalomyelitis and the related mechanisms., Metabolic Brain Disease, 2019, 34(2): 377-384.
    14. Zhao, Miao; Chen, Ying; Han, Rongcheng*; Luo, Dan; Du, Libo; Zheng, Qiang; Wang, Lijun; Hong, Yuankai; Liu, Yang*; Sha, Yinlin*; A facile synthesis of biocompatible, glycol chitosan shelled CdSeS/ZnS QDs for live cell imaging, Colloids and Surfaces B: Biointerfaces, 2018, 172: 752-759.
    15. Yu, Jiezhong; Yan, Yuqing; Gu, Qingfang; Kumar, Gajendra; Yu, Hongqiang; Zhao, Yijin; Liu, Chunyun; Gao, Ye; Chai, Zhi; Chumber, Jasleen; Xiao, Bao-Guo; Zhang, Guang-Xian; Zhang, Han-Ting*; Jiang, Yuqiang*; Ma, Cun-Gen*; Fasudil in Combination With Bone Marrow Stromal Cells (BMSCs) Attenuates Alzheimer’s Disease-Related Changes Through the Regulation of the Peripheral Immune System, Frontiers in Aging Neuroscience, 2018, 10: 216.
    16. Ren, Suxia; Huang, Zengyi; Jiang, Yuqiang; Wang, Tao*; dTBC1D7 regulates systemic growth independently of TSC through insulin signaling, The Journal of Cell Biology, 2018, 217(2): 517-526.
    17. Yu, Jiezhong; Gu, Qingfang; Yan, Yuqing; Yu, Hongqiang; Guo, Minfang; Liu, Chunyun; Song, Guobin; Chai, Zhi; Wang, Qing; Xiao, Baoguo; Zhang, Hanting; Jiang, Yuqiang*; Ma, Cungen*; [Fasudil improves cognition of APP/PS1 transgenic mice via inhibiting the activation of microglia and shifting microglia phenotypes from M1 to M2]., Xi Bao Yu Fen Zi Mian Yi Xue Za Zhi, 2017, 33(12): 1585-1593.
    18. Luo, Dan; Han, Rongcheng; Chen, Ying; Zheng, Qiang; Wang, Lijun; Hong, Yuankai; Sha, Yinlin*; Design and Fabrication of a Geometrically Ordered Hydrophobic Interlayer to Prepare High-Quality QD/SiO2 for Cell Imaging, Journal of Biomedical Nanotechnology, 2017, 13(10): 1344-1353.
    19. Huang, Z.; Ren, S.; Jiang, Y.*; Wang, T.*; PINK1 and Parkin cooperatively protect neurons against constitutively active TRP channel-induced retinal degeneration in Drosophila, Cell Death & Disease, 2016, 7(4): e2179.
    20. Fan, Yanyan; Liu, Helin; Han, Rongcheng*; Huang, Lu; Shi, Hao; Sha, Yinlin*; Jiang, Yuqiang*; Extremely High Brightness from Polymer-Encapsulated Quantum Dots for Two-photon Cellular and Deep-tissue Imaging, Scientific Reports, 2015, 5(1): 9908.
    21. Helin Liu; Yanyan Fan; Jianhai Wang; Zhongsen Song; Hao Shi; Rongcheng Han*; Yinlin Sha*; Yuqiang Jiang*; Intracellular Temperature Sensing: An Ultra-bright Luminescent Nanothermometer with Non-sensitivity to pH and Ionic Strength, Scientific Reports, 2015, 5(1): 14879.