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[1] Tang L, Shen C*, Lu H, Li C, Ma Q. 2021. Fifty years of Quaternary palynology in the Tibetan Plateau. Science China Earth Sciences, 64, https://doi.org/10.1007/s11430-020-9802-8 |
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[2] Shen C*, Liu K-b, Tang L, Overpeck J T. 2021. Modern pollen rain in the Tibetan Plateau. Frontiers in Earth Science, 9, https://doi.org/10.3389/feart.2021.732441.
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[3] Cui A, Lu H, Liu X, Shen C, Xu D, Xu B, Wu N. 2021. Tibetan plateau precipitation modulated by the periodically coupled westerlies and Asian monsoon. Geographical Research Letter, 48, e2020GL091543. https://doi.org/10.1029/2020GL091543
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[4] 孙启发, 梁家昌, 蒙红卫, 王敏, 黄林培, 沈才明*. 2021. 云南近5个半世纪雨季同旱涝空间模态的时间变化. 第四纪研究,41(2): 379-388.
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[5] Zhang J, Lu H, Jia J, Shen C, Wang S, Chu G, Wang L, Cui A, Wu N, Li F. 2020. Seasonal drought events in tropical East Asia over the last 60,000 y. Proceedings of the National Academy of Sciences of the United States of America, 111, https://doi.org/10.1073/pnas.2013802117.
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[6] Xu D, Lu H, Chu G, Shen C, Li F, Wu J, Wang C, Li H, Yu Y, Jin Y, Wu N. 2020. Asynchronous 500-year summer monsoon rainfall cycles between Northeast and Central China during the Holocene. Global and Planetary Change, 195, 103324.
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[7] Wu J, Liu Q, Cui Q, Xu D, Wang L, Shen C, Chu G, Liu J. 2019. Shrinkage of East Asia winter monsoon associated with increased ENSO events since the mid‐Holocene. Journal of Geophysical Research-Atmospheres, 124(7):3839-3848.
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[8] 余晓珊, 蒙红卫*, 黄林培, 孙启发, 王敏, 张虎才, 沈才明. 2020. 滇中阳宗海流域过去1200年以来的环境变化. 生态学杂志, 39(6): 1896-1910.
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[9] 李希进, 蒙红卫*, 孙启发, 张国富, 黄林培, 沈才明. 2020. 滇南红河地区现代花粉雨特征及其与气候因子的关系. 生态学杂志, 39(6): 1884-1895.
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[10] Xu D, Lu H, Chu G, Liu L, Shen C, Li F, Wang C, Wu N. 2019. Synchronous 500-year oscillations of monsoon climate and human activity in Northeast Asia. Nature Communications, 10(1):1-10.
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[11] Nolan C, Overpeck JT…Shen C, …Jackson ST. 2018. Past and future global transformation of terrestrial ecosystems under climate change. Science, 361(6405): 920-923.
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[12] Peng Y, Cheng H, Shen C, Xu Y, Bei F. 2018. Past millennium contrasting hydroclimate patterns between monsoonal northern China and arid central Asia: A modeling study. Asia-Pacific Journal of Atmospheric Sciences, 54(3): 445-455.
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[13] 孙启发,沈才明*,王敏,蒙红卫,张虎才. 2018. 云贵高原抚仙湖近13300年的花粉/炭屑记录. 古生物学报,57(2): 249-259.
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[14] 秦鼎,沈才明*,蒙红卫,黄林培. 2018. 滇东北现代花粉/炭屑组合与植被和火灾关系。云南师范大学学报(自然科学版), 38(3):
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[15] Lu H, Zhang J, …Shen C... Wu N. 2016. Earliest tea as evidence for one branch of the Silk Road across the Tibetan Plateau. Scientific Reports, 6(1): 18955.
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[16] Li Q, Lu H, Shen C, Zhao Y, Ge Q. 2016. Vegetation successions in response to Holocene climate changes in the central Tibetan Plateau. Journal of Arid Environments, 125: 136-144. |
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[17] Peng Y, Shen C*, Cheng H, Xu Y. 2915. Simulation of the Interdecadal Pacific Oscillation and its impacts on the climate over eastern China during the last millennium. Journal of Geophysical Research: Atmospheres, 120: 7573-7585.
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[18] Xu D, Lu H, Chu G, Wu N, Shen C, Wang C, Mao L. 2014. 500-year climate cycles stacking of recent centennial warming documented in an East Asian pollen record. Scientific Reports, 4: 3611.
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[19] Zeng G, Wang W-c, Shen C*, Hao Z. 2014. Summer precipitation changes over the Yangtze River Valley and North China: Simulations from CMIP3 models. Asia-Pacific Journal of Atmospheric Sciences, 50(3): 355-364.
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[20] Peng Y, Shen C*, Cheng H, Xu Y. 2014. Modeling of severe persistent droughts over eastern China during the last millennium. Climate of the Past, 10(3): 1079–1091.
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[21] Xu D, Lu H, Wu N, Liu Z, Li T, Shen C, Wang L. 2013. Asynchronous marine-terrestrial signals of the last deglacial warming in East Asia associated with low- and high-latitude climate changes. Proceedings of the National Academy of Sciences of the United States of America, 110 (24): 9657-9662.
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[22] Shen C*, Wang W-c, Zeng G, Peng Y, Xu Y. 2013. Rates of global temperature change during the past millennium. Climate Research, 57: 11-18.
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[23] Zeng G, Wang W-c, Shen C*. 2012. Association of the rainy-season precipitation with low-level meridional wind in the Yangtze River Valley and North China. Journal of Climate, 25, 792-799.
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[24] Shen C*, Wang W-c, Zeng G. 2011. Decadal variability in snow cover over the Tibetan Plateau during the Last Two Centuries. Geophysical Research Letter, 38: L10703, doi:10.1029/2011GL047288.
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[25] Lu H, Wu N, Liu K-b, Zhu L, Yang X, Yao T, Wang L, Li Q, Liu X, Shen C, Li X, Tong G, Jiang H. 2011. Modern pollen distributions in Qinghai-Tibetan Plateau and the development of transfer functions for reconstructing Holocene environmental changes. Quaternary Science Reviews, 30: 947-966.
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[26] Peng Y, Shen C*, Wang W-c, Xu Y. 2010. Response of summer precipitation over eastern China to large volcanic eruptions. Journal of Climate, 23: 818-824.
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[27] Tang L, Shen C (equal contributor), Li C, Peng J, Liu H, Liu K-b, Morrill C, Overpeck J T, Cole J E, Yang B. 2009. Pollen-inferred vegetation and environmental changes in the central Tibetan Plateau since 8200 year BP. Science in China (series D), 52: 1104-1114.
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[28] Shen C*, Wang W-c, Peng Y, Xu Y, Zheng J. 2009. Variability of summer precipitation over eastern China during the last millennium. Climate of the Past, 5: 129–141.
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[29] Liu K-b, Lu H, Shen C. 2009. Some fundamental misconceptions about paleotempestology. Quaternary Research, 71: 253-254. |
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[30] Shen C*, Liu K-b, Morrill C, Peng J, Overpeck J T, Tang L. 2008. Ecotone shift and major droughts during mid-late Holocene in central Tibetan Plateau. Ecology, 89: 1079-1088. |
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[31] Shen C*, Liu K-b, Tang L, Overpeck J T. 2008. Numerical analysis of modern and fossil pollen data from the Tibetan Plateau. Annals of the Association of American Geographers, 98: 755-772.
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[32] Liu K-b, Lu H, Shen C. 2008. A 1200-year proxy record of hurricanes and fires from the Gulf of Mexico coast: testing the hypothesis of hurricane-fire Interactions. Quaternary Research, 69: 29-41.
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[33] Shen C*, Wang W-c, Hao Z, Gong W. 2008. Characteristics of anomalous precipitation events over eastern China during the past five centuries. Climate Dynamics, 31: 463-476. |
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[34] Lu H, Wu N, Yang X, Shen C, Zhu L, Wang L, Li Q, Xu D, Tong G, Sun X. 2008. Spatial pattern of Abies and Picea surface pollen distribution along the elevation gradient in the Qinghai–Tibetan Plateau and Xinjiang, China. Boreas, 37: 254-262.
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[35] Shen C*, Wang W-c, Hao Z, Gong W. 2007. Exceptional drought events over eastern China during the last five centuries. Climatic Change, 85: 453-471.
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[36] Ge Q, Wang S, Wen X, Shen C, Hao Z. 2007. Temperature and precipitation changes in China during the Holocene. Advances in Atmospheric Sciences, 24: 1024-1036.
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[37] Shen C*, Wang W-c, Hao Z, Gong W. 2006. A Pacific Decadal Oscillation Record since 1470 AD Reconstructed from Proxy Data of Summer Rainfall over Eastern China. Geophysical Research Letter, 33: L03702, doi:10.1029/2005GL024804.
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[38] Shen C*, Liu K-b, Tang L, Overpeck J T. 2006. Quantitative relationships between modern pollen rain and climate in the Tibetan Plateau. Review of Paleobotany and Palynology, 140: 61-77.
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[39] Morrill C, Overpeck J T, Cole J E, Liu K-b, Shen C, Tang L. 2006. Holocene variations in the Asian monsoon inferred from the geochemistry of lake sediments in central Tibet. Quaternary Research, 65: 232-243.
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[40] Shen C, Tang L*, Wang S, Li C, Liu K-b. 2005. Pollen records and time scale for the RM core of the Zoige Basin, northeastern Qinghai-Tibetan Plateau. Chinese Science Bulletin, 50(6): 553-562.
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[41] 唐领余, 沈才明, 廖淦标, 于世永, 李春海, 2004. 末次盛冰期以来西藏东南部的气候变化——西藏东南部的花粉记录. 中国科学D辑, 34(5): 436-442.
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[42] 唐领余, 李春海, 于革, 沈才明. 2003. Pollen-based reconstructions of Holocene vegetation and climatic change of Tibetan Plateau. 极地研究(英文版), 14(2): 99-116.
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[43] 吕厚远, 王淑云, 沈才明, 羊向东, 童国榜, 廖淦标, 2004. 青藏高原现代表土中冷杉和云杉花粉的空间分布. 第四纪研究, 24(1): 39-49.
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[44] Liu K-b, Shen C, Louie K-s. 2001. A 1,000-year history of typhoon landfalls in Guangdong, Southern China, reconstructed from Chinese historical documentary records. Annals of the Association of American Geographers, 91: 453-464.
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[45] Lu H, Wang S, Wu N, Tong G, Yang X, Shen C, Li S, Zhu L, Wang L. 2001. A new pollen record of the last 2.8 Ma from the Co Ngion, central Tibetan Plateau. Science in China (series D), 44(Sppl.): 292-300.
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[46] 唐领余, 沈才明, 廖淦标, Jonathan T. Overpeck, 于世永, 2000. 青藏高原东南部18ka以来气候与水文变化. 微体古生物学报, 17(2): 113-124.
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