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成果统计

合作作者[TOP 5]

访问统计


  总访问量
 1693

  访问来源
    内部: 1
    外部: 1692
    国内: 1391
    国外: 302

  年访问量
 149

  访问来源
    内部: 0
    外部: 149
    国内: 121
    国外: 28

  月访问量
 34

  访问来源
    内部: 0
    外部: 34
    国内: 26
    国外: 8

访问量

访问量

1. 国际地层委员会官网与《国际年代地层表》(2015/01版) [857]
2. 古生物学和地层学研究的定量化趋势——GBDB数字化科研平台的建设及其意.. [720]
3. 基于GBDB数据库与定量地层学的瓜德鲁普世末期生物多样性研究 [680]
4. 贵州桐梓县境南部奥陶系-志留系界线地层新认识 [641]
5. 华南中、晚奥陶世定量岩相古地理研究 [598]
6. Silurian integrative stratigraphy and timescale of China [582]
7. Geobiodiversity Database: a comprehensive section-based integratio.. [540]
8. 华南奥陶-志留系龙马溪组黑色笔石页岩的生物地层学 [519]
9. Paleogeographic evolution of the Lower Yangtze region and the brea.. [516]
10. Biogeography and Mass Extinction: Extirpation and re-invasion of N.. [514]
11. 上扬子区奥陶-志留纪之交的黔中隆起和宜昌上升 [512]
12. 新疆巴楚中—晚奥陶世牙形刺生物地层和沉积环境研究 [498]
13. 古生物学数据库现状与数据驱动下的科学研究 [498]
14. 扬子区奥陶纪末赫南特亚阶的生物地层学研究 [495]
15. Geobiodiversity Database (GBDB) in stratigraphic, palaeontological.. [494]
16. 中国志留纪综合地层和时间框架 [487]
17. Biostratigraphical constraints on the disconformity within the Upp.. [484]
18. The ICS International Chronostratigraphic Chart [479]
19. 定量古生物学及重要名词释义 [475]
20. Onset of the Kwangsian Orogeny as evidenced by biofacies and litho.. [470]
21. 奥陶系上统赫南特阶全球层型剖面和点位的建立 [466]
22. Biostratigraphy and geography of the Ordovician-Silurian Lungmachi.. [462]
23. Stratigraphy of the Hirnantian substage from Wangjiawan, Yichang, .. [451]
24. Geographic dynamics of some major graptolite taxa of the Diplograp.. [446]
25. 五峰组及龙马溪组黑色页岩在扬子覆盖区内的划分与圈定 [446]
26. 湖北恩施太阳河奥陶纪-志留纪之交沉积间断的研究 [445]
27. 古生物学原理(译著) [443]
28. Ordovician and Silurian Stratigraphy and Palaeontology of Yunnan, .. [442]
29. Darriwilian graptolites of the Shihtien Formation (Ordovician) in .. [440]
30. Late Ordovician to earliest Silurian graptolite and brachiopod bio.. [439]
31. 广西运动的进程:来自生物相和岩相带的证据 [437]
32. Phylogeny and Adaptive Radiation of the Neograptina (Graptoloida) .. [434]
33. The Global boundary Stratotype Section and Point (GSSP) for the ba.. [433]
34. Early Permian (Cisuralian) global brachiopod palaeobiogeography [426]
35. Principal aspects of the Ordovician biotic radiation [421]
36. 赣南奥陶纪笔石地层序列与广西运动 [419]
37. Ordovician graptolite-bearing strata in southern Jiangxi with a sp.. [416]
38. 基于GBDB数据库的地层学研究与应用 [410]
39. 奥陶-志留系界线地层生物带的全球对比 [405]
40. GBDB的在线文献数据库及其应用 [403]
41. 全球古地理重建模型的构建方法、比较与知识发现 [399]
42. 华南奥陶纪末大灭绝前后笔石分异度、新生率与灭绝率的数值分析 [396]
43. 志留纪宁强组碳酸盐岩台地的时空演变及宁强湾的封闭 [395]
44. 奥陶系上奥陶统赫南特阶全球标准层型剖面和点位的建立 [394]
45. 华南史前海洋生物多样性的演变型式 [393]
46. 塔里木盆地及周缘奥陶系黑色岩系的生物地层学对比 [391]
47. 华南奥陶纪末笔石灭绝及幸存的进程与机制 [389]
48. 四川华蓥地区五峰组、龙马溪组黑色页岩的笔石生物地层研究 [386]
49. 中国古生代气候敏感沉积物及古生物地理资料点 [382]
50. Reconstruction of the mid-Hirnantian palaeotopography in the Upper.. [379]
51. 利用GBDB数据库与GIS技术绘制高精度古地理图 [374]
52. 论广西运动的阶段性 [372]
53. GBDB数据平台中地层剖面全景显示功能的设计与实现 [372]
54. Darriwilian to Katian (Ordovician) Graptolites from Northwest Chin.. [367]
55. 下扬子区奥陶纪晚期古地理演变及华南“台-坡-盆”格局的打破 [365]
56. Patterns and processes of latest Ordovician graptolite extinction .. [363]
57. 中国古生物学与地层学专业数据库的建设 [363]
58. 《国际年代地层表》(2016/04版)、配色方案及其应用 [363]
59. Temporal and spatial distribution of the Wufeng Formation black sh.. [362]
60. GBDB数据库在地层研究中的应用 [360]
61. Biostratigraphic correlation of the Ordovician black shales in Tar.. [358]
62. Graptolite palaeobiogeography [358]
63. 古生物多样性统计方法及其适用性分析 [357]
64. Global brachiopod palaeobiogeographical evolution from Changhsingi.. [357]
65. 奥陶纪生物大辐射研究的关键科学问题 [356]
66. 奥陶纪笔石的主要演化辐射进程 [356]
67. 地层古生物科学数据在地质研究和油气勘探中的应用 [356]
68. Biostratigraphy [356]
69. Hirnantian (Latest Ordovician) graptolites from the Upper Yangtze .. [353]
70. Graptolite biostratigraphy of the Shihtien Formation (Darriwilian).. [352]
71. A mid Telychian (Llandovery) graptolite fauna from Mojiang, Yunnan.. [345]
72. 论上扬子区上奥陶统大渡河组 [344]
73. 黔渝地区志留系龙马溪组黑色笔石页岩的阶段性渐进展布模式 [341]
74. Paleo-environmental cyclicity in the Early Silurian Yangtze Sea (S.. [337]
75. 黔北习科1井五峰组―龙马溪组黑色页岩的地层划分与对比 [337]
76. 物种分布模型在古生物学研究中的应用 [333]
77. Quantitative stratigraphy of the Wufeng and Lungmachi black shales.. [332]
78. The Central Guizhou and Yichang Uplifts, upper Yangtze region, bet.. [325]
79. Toward a stepwise Kwangsian Orogeny [325]
80. 奥陶纪年代地层学研究评述 [324]
81. Dynamic patterns of latest Proterozoic-Palaeozoic-early Mesozoic m.. [323]
82. Latest Ordovician to earliest Silurian graptolite succession from .. [322]
83. 志留系全球界线层型的“再研究”--志留系底界与温洛克统底界 [317]
84. 地层数据的常用空间插值方法介绍和比较分析——以上扬子区宝塔组厚度重.. [317]
85. 《国际年代地层表》(2018/08版) [314]
86. Ordovician graptolite evolutionary radiation: a review [310]
87. Ashgillian graptolite fauna of the Yangtze region and the biogeogr.. [308]
88. 元数据标准及其在古生物数据库中的应用 [308]
89. Llandovery (Silurian) conodont provincialism: An update based on q.. [306]
90. Carbon isotopes and event stratigraphy near the Ordovician-Siluria.. [302]
91. 奥陶纪气候 [295]
92. GBDB数据库的发展与数据简况 [291]
93. Stage – progressive distribution pattern of the Lungmachi black g.. [291]
94. The base of the Middle Ordovician in China with special reference .. [288]
95. A Graphic Correlation and Diversity Analysis of the Upper Darriwil.. [283]
96. Pangaean aggregation and disaggregation with evidence from global .. [279]
97. 单元组合法(Unitary Association)——一种定量生物地层对比方法简介 [278]
98. 下扬子区奥陶纪晚期古地理演变及华南台坡盆格局的打破 [273]
99. 地层中的计时器 [263]
100. SinoCor 1.0, a program for graphic correlation [258]

下载量

1. 基于GBDB数据库与定量地层学的瓜德鲁普世末期生物多样性研究 [64]
2. 华南中、晚奥陶世定量岩相古地理研究 [63]
3. 古生物学和地层学研究的定量化趋势——GBDB数字化科研平台的建设及其意.. [49]
4. 四川华蓥地区五峰组、龙马溪组黑色页岩的笔石生物地层研究 [49]
5. Biogeography and Mass Extinction: Extirpation and re-invasion of N.. [47]
6. Hirnantian (Latest Ordovician) graptolites from the Upper Yangtze .. [46]
7. Phylogeny and Adaptive Radiation of the Neograptina (Graptoloida) .. [46]
8. 贵州桐梓县境南部奥陶系-志留系界线地层新认识 [44]
9. Biostratigraphy and geography of the Ordovician-Silurian Lungmachi.. [42]
10. 奥陶系上统赫南特阶全球层型剖面和点位的建立 [41]
11. Darriwilian graptolites of the Shihtien Formation (Ordovician) in .. [40]
12. 奥陶纪生物大辐射研究的关键科学问题 [36]
13. 赣南奥陶纪笔石地层序列与广西运动 [36]
14. 华南奥陶-志留系龙马溪组黑色笔石页岩的生物地层学 [36]
15. 新疆巴楚中—晚奥陶世牙形刺生物地层和沉积环境研究 [35]
16. 定量古生物学及重要名词释义 [34]
17. Ordovician graptolite evolutionary radiation: a review [33]
18. Ordovician and Silurian Stratigraphy and Palaeontology of Yunnan, .. [33]
19. Preliminary report on the Late Ordovician graptolite extinction in.. [32]
20. 单元组合法(Unitary Association)——一种定量生物地层对比方法简介 [32]
21. 扬子区奥陶纪末赫南特亚阶的生物地层学研究 [31]
22. Onset of the Kwangsian Orogeny as evidenced by biofacies and litho.. [31]
23. 古生物多样性统计方法及其适用性分析 [31]
24. Patterns and processes of latest Ordovician graptolite extinction .. [30]
25. Biostratigraphic correlation of the Ordovician black shales in Tar.. [29]
26. 奥陶-志留系界线地层生物带的全球对比 [28]
27. 志留纪宁强组碳酸盐岩台地的时空演变及宁强湾的封闭 [27]
28. 塔里木盆地及周缘奥陶系黑色岩系的生物地层学对比 [27]
29. Ordovician graptolite-bearing strata in southern Jiangxi with a sp.. [26]
30. 广西运动的进程:来自生物相和岩相带的证据 [26]
31. 元数据标准及其在古生物数据库中的应用 [25]
32. 湖北恩施太阳河奥陶纪-志留纪之交沉积间断的研究 [24]
33. Principal aspects of the Ordovician biotic radiation [23]
34. Late Ordovician to earliest Silurian graptolite and brachiopod bio.. [23]
35. 生物地层学图形对比软件包SinoCor1.0 [23]
36. 论广西运动的阶段性 [23]
37. Ashgillian graptolite fauna of the Yangtze region and the biogeogr.. [21]
38. 奥陶纪笔石的主要演化辐射进程 [21]
39. 华南史前海洋生物多样性的演变型式 [21]
40. 下扬子区奥陶纪晚期古地理演变及华南“台-坡-盆”格局的打破 [21]
41. GBDB的在线文献数据库及其应用 [20]
42. 显生宙全球气候变化与生物绝灭事件的联系 [19]
43. 上扬子区奥陶-志留纪之交的黔中隆起和宜昌上升 [19]
44. Temporal and spatial distribution of the Wufeng Formation black sh.. [19]
45. Geobiodiversity Database (GBDB) in stratigraphic, palaeontological.. [19]
46. 论上扬子区上奥陶统大渡河组 [19]
47. Carbon isotopes and event stratigraphy near the Ordovician-Siluria.. [18]
48. The Central Guizhou and Yichang Uplifts, upper Yangtze region, bet.. [18]
49. 奥陶纪年代地层学研究评述 [18]
50. Dynamic patterns of latest Proterozoic-Palaeozoic-early Mesozoic m.. [17]
51. Graptolite biostratigraphy of the Shihtien Formation (Darriwilian).. [17]
52. 笔石Pseudisograptus的最小平均生命期 [17]
53. 地层古生物研究辅助绘图软件StratDraw 1.0 [17]
54. 志留系全球界线层型的“再研究”--志留系底界与温洛克统底界 [17]
55. Geographic dynamics of some major graptolite taxa of the Diplograp.. [17]
56. The Global boundary Stratotype Section and Point (GSSP) for the ba.. [16]
57. Quantitative stratigraphy of the Wufeng and Lungmachi black shales.. [16]
58. 基于GBDB数据库的地层学研究与应用 [16]
59. Geobiodiversity Database: a comprehensive section-based integratio.. [15]
60. 奥陶系上奥陶统赫南特阶全球标准层型剖面和点位的建立 [15]
61. SinoCor 1.0, a program for graphic correlation [15]
62. 五峰组及龙马溪组黑色页岩在扬子覆盖区内的划分与圈定 [15]
63. 地层数据的常用空间插值方法介绍和比较分析——以上扬子区宝塔组厚度重.. [15]
64. 宜昌奥陶纪末期赫尔南特亚阶的笔石及正常笔石类的形态统计分析 [14]
65. Graptolite palaeobiogeography [14]
66. 古生物学原理(译著) [14]
67. Reconstruction of the mid-Hirnantian palaeotopography in the Upper.. [14]
68. Darriwilian to Katian (Ordovician) Graptolites from Northwest Chin.. [14]
69. 黔渝地区志留系龙马溪组黑色笔石页岩的阶段性渐进展布模式 [14]
70. 中国志留纪综合地层和时间框架 [14]
71. 扬子区晚奥陶世至早志留世初定量生物地层学 [12]
72. 中国古生代气候敏感沉积物及古生物地理资料点 [12]
73. 物种分布模型在古生物学研究中的应用 [12]
74. GBDB数据库的发展与数据简况 [11]
75. 华南奥陶纪末大灭绝前后笔石分异度、新生率与灭绝率的数值分析 [11]
76. 利用GBDB数据库与GIS技术绘制高精度古地理图 [11]
77. 奥陶纪气候 [10]
78. A mid Telychian (Llandovery) graptolite fauna from Mojiang, Yunnan.. [10]
79. 地层古生物科学数据在地质研究和油气勘探中的应用 [10]
80. GBDB数据库在地层研究中的应用 [10]
81. Stratigraphy of the Hirnantian substage from Wangjiawan, Yichang, .. [9]
82. Pangaean aggregation and disaggregation with evidence from global .. [9]
83. Toward a stepwise Kwangsian Orogeny [9]
84. 华南奥陶纪末笔石灭绝及幸存的进程与机制 [9]
85. GBDB数据平台中地层剖面全景显示功能的设计与实现 [9]
86. QUANTITATIVE BIOSTRATIGRAPHY OF UPPER ORDOVICIAN TO LOWERMOST SILU.. [8]
87. Stage – progressive distribution pattern of the Lungmachi black g.. [8]
88. Early Permian (Cisuralian) global brachiopod palaeobiogeography [7]
89. 国际地层委员会官网与《国际年代地层表》(2015/01版) [7]
90. 《国际年代地层表》(2016/04版)、配色方案及其应用 [7]
91. Silurian integrative stratigraphy and timescale of China [7]
92. The base of the Middle Ordovician in China with special reference .. [6]
93. Biostratigraphical constraints on the disconformity within the Upp.. [6]
94. 全球古地理重建模型的构建方法、比较与知识发现 [6]
95. The ICS International Chronostratigraphic Chart [5]
96. Global brachiopod palaeobiogeographical evolution from Changhsingi.. [5]
97. 地层中的计时器 [5]
98. Paleo-environmental cyclicity in the Early Silurian Yangtze Sea (S.. [5]
99. Paleogeographic evolution of the Lower Yangtze region and the brea.. [5]
100. 《国际年代地层表》(2018/08版) [5]