Fine analysis functions and their application of ichnofabric: Outline of the 15th International Ichnofabric Workshop
Niu Yong-Bin, Qi Yong-An, Hu Bin, Song Hui-Bo, Xing Zhi-Feng, Dai Ming-Yue, Li Da
College of Resources & Environment,Key Laboratory of Biogenic Traces and Sedimentary Minerals of Henan Province,Henan Polytechnic University,Henan Jiaozuo 454003,China
Abstract The 15th International Ichnofabric Workshop was held successfully in Prague,the Czech capital from April 26th to May 9th,2019. From oral presentations,posters,field trips and workshop discussions,a few new progress and application of ichnology can be outlined: (1)Connotation of ichnofabric is extended and fine analysis functions of ichnofabric are further improved,which provides scientific theoretical basis and practical working method for sedimentary microenvirmental analysis,genetic stratigraphy interpretation and fine characterization of oil-gas and water reservoirs. (2)The applications of trace fossil in the study of palaeoecology and palaeoclimate have become important research directions in the field of ichnology. Organism-sediment interactions are interpreted through studying rich behavioral and taphonomic characteristics of palaeobios towards bridging among palaeontology,sedimentology and sequence stratigraphy. (3)Trace fossils have important applications in the study of major geological events. In particular,it provides the best evidence for the study of the creatures that cannot be preserved as body fossils due to the lack of mineralized skeleton in the ecological recovery period after the mass extinction,and provides invaluable clues for the study of the ecological system conditions and the geotectonic-sedimentary environment conditions in the biological recovery period. (4)New techniques and new methods are widely used in the field of ichnology,which will promote the further theoretic improvement in the field of ichnology and the rapid development in the field of production.
Fund:Co-funded by the National Natural Science Foundation of China(Nos. 41472104,41872111,41772104)and the Doctoral Scientific Foundation of Henan Polytechnic University(No. B2018-16)
Corresponding Authors:
Qi Yong-An,born in 1963,is a professor and doctoral supervisor of Henan Polytechnic University. He is mainly engaged in researches of trace fossls and sedimentology. E-mail: qiya@hpu.edu.cn.
About author: Niu Yong-Bin,born in 1980,is an associate professor and master supervisor of Henan Polytechnic University. He is mainly engaged in researches of applied ichnology and sedimentology. E-mail: niuyongbin@hpu.edu.cn.
Cite this article:
Niu Yong-Bin,Qi Yong-An,Hu Bin et al. Fine analysis functions and their application of ichnofabric: Outline of the 15th International Ichnofabric Workshop[J]. JOPC, 2019, 21(5): 767-782.
Niu Yong-Bin,Qi Yong-An,Hu Bin et al. Fine analysis functions and their application of ichnofabric: Outline of the 15th International Ichnofabric Workshop[J]. JOPC, 2019, 21(5): 767-782.
[1] 范若颖,龚一鸣. 2017.21世纪遗迹学热点与前沿: 第14届国际遗迹组构专题研讨会综述. 古地理学报, 19(5): 919-926. [Fan R Y,Gong Y M.2017. Focus and frontiers of Ichnology in the 21st century: Outline of the 14th International Ichnofabric Workshop. Journal of Palaeogeography(Chinese Edition), 19(5): 919-926] [2] 龚一鸣. 1995. 从原型遗迹相到遗迹组构: 第三届国际遗迹组构专题研讨会综述. 地质科技情报, 14(4): 101-102. [Gong Y M.1995. From archetypical Ichnofacies to Ichnofabric: Outline of the Third International Ichnofabric Workshop. Geological Science and Technology Information, 14(4): 101-102] [3] 龚一鸣,刘本培,肖诗宇,杜远生. 1997. 中国海相泥盆纪遗迹组构及其与沉积层序的关系. 地球科学, 22(2): 123-130. [Gong Y M,Liu B P,Xiao S Y,Du Y S.1997. Marine Devonian ichnofabric of China and their relations to dedimentary sequences. Earth Science, 22(2): 123-130] [4] 龚一鸣,胡斌,齐永安,张国成. 2005. 遗迹学的研究现状与新进展: 第8届国际遗迹组构专题研讨会综述. 古地理学报, 7(4): 503-508. [Gong Y M,Hu B,Qi Y A,Zhang G C.2005. Research actuality and new advances in ichnology: Outline of the Eighth International Ichnofabric Workshop. Journal of Palaeogeography(Chinese Edition), 7(4): 503-508] [5] 牛永斌,胡亚洲,高文秀,董小波,崔胜利. 2018. 豫西北奥陶系马家沟组三段遗迹组构及沉积演化规律. 地质学报, 92(1): 15-27. [Niu Y B,Hu Y Z,Gao W X,Dong X B,Cui S L.2018. Ichnofabric and sedimentary evolution of the Third Member of Ordovician Majiagou Formation in northwestern Henan Province. Acta Geologica Sinica, 92(1): 15-27] [6] 齐永安,王敏. 2007. 遗迹组构研究现状及进展. 河南理工大学学报(自然科学版), 26(5): 509-515. [Qi Y A,Wang M.2007. The current achivement and potential of Ichnofabric. Journal of Henan Polytechnic University(Natural Science), 26(5): 509-515] [7] 齐永安,胡斌,张国成,龚一鸣. 2008. 第9届国际遗迹组构专题研讨会综述. 古地理学报, 10(3): 305-311. [Qi Y A,Hu B,Zhang G C,Gong Y M.2008. Outline of the Ninth International Ichnofabric Workshop. Journal of Palaeogeography(Chinese Edition), 10(3): 305-311] [8] 齐永安,王敏,李妲,孙长彦,代明月. 2012. 洛阳龙门地区中寒武统张夏组下部遗迹组构及其沉积环境. 地球科学, 37(4): 693-706. [Qi Y A,Wang M,Li D,Sun C Y,Dai M Y.2012. Ichnofabrics and their sedimentary environments from the lower part of the Middle Cambrian Zhangxia Formation,Longmen area,Luoyang City. Earth Science, 37(4): 693-706] [9] Pemberton G,MacEachern J A,Gingras M K,张建平. 2000. 遗迹化石在成因地层学中的意义: 以加拿大阿尔伯塔省白垩系为例. 中国科学(D辑: 地球科学), 30(3): 264-278. [Pemberton G,MacEachern J A,Gingras M K,Zhang J P.2000. Significance of trace fossils in genetic stratigraphy: Taking the Cretaceous in Albert,Canada as example. Science in China: Series D-Earth Sciences, 30(3): 264-278] [10] 施振生,杨威,郭长敏,胡斌. 2008. 遗迹化石在层序地层学研究中的应用. 地层学杂志, 32(1): 79-84. [Shi Z S,Yang W,Guo C M,Hu B.2008. The application of trace fossils to the research of sequence statigraphy. Journal of Stratigraphy, 32(1): 79-84] [11] 宋慧波,金毅,胡磊,胡斌. 2012. 豫西地区下二叠统太原组遗迹组构及其沉积环境. 地质学报, 86(6): 973-984. [Song H B,Jin Y,Hu L,Hu B.2012. Ichnofabrics and their sedimentary environment of the Lower Permian Taiyuan Formation,western Henan. Acta Geologica Sinica, 86(6): 973-984] [12] 张建平,李明路. 2000. 遗迹学研究现状及其在层序地层学中的应用潜力. 沉积学报, 18(3): 389-394. [Zhang J P,Li M L.2000. Advances in Ichnology and its potential for sequence stratigraphy. Acta Sedimentologica Sinica, 18(3): 389-394] [13] 张立军,胡斌,齐永安,邢智峰,郑伟,牛永斌,宋慧波,范若颖. 2015. 连结过去、现在和未来的遗迹组构研究: 第13届国际遗迹组构专题研讨会综述. 古地理学报, 17(5): 611-615. [Zhang L J,Hu B,Qi Y A,Xing Z F,Zheng W,Niu Y B,Song H B,Fan R Y.2015. Ichnofabric studies linking past,present and future: Outline of the 13th International Ichnofabric Workshop. Journal of Palaeogeography(Chinese Edition), 17(5): 611-615] [14] 赵小明,童金南. 2010. 浙江煤山钻孔二叠—三叠系界线剖面遗迹化石的两模式变化. 中国科学: 地球科学, 40(9): 1241-1249. [Zhao X M,Tong J N.2010. Two episodic changes of trace fossils through the Permian-Triassic transition in the Meishan Cores,Zhejiang Province. Scientia Sinica Terrae, 40(9): 1241-1249] [15] Aguirre J,Gibert J M D,Puga-Bernabéu A.2010. Proximal-distal ichnofabric changes in a siliciclastic shelf,Early Pliocene,Guadalquivir Basin,southwest Spain. Palaeogeography,Palaeoclimatology,Palaeoecology, 291(3-4): 328-337. [16] Baniak G M,Gingras M K,Pemberton S G.2012. Reservoir characterization of burrow-mottled dolomites: Devonian Wabamun Group,West-Central Alberta,Canada. GeoConvention: 1-7. [17] Baniak G M,Gingras M K,Pemberton S G.2013. Reservoir characterization of burrow-associated dolomites in the Upper Devonian Wabamun Group,Pine Creek Gas Field,central Alberta,Canada. Marine and Petroleum Geology, 48: 275-292. [18] Baniak G M,Amskold L,Konhauser K O,Muehlenbachs K,Pemberton S G,Gingras M K.2014a. Sabkha and burrow-mediated dolomitization in the Mississippian Debolt Formation,northwestern Alberta,Canada. An International Journal for Plant and Animal Traces, 21(3): 158-174. [19] Baniak G M,Gingras M K,Pemberton S G.2014b. Reservoir characterization of bioturbated of tight gas reservoirs. GeoConvention: 1-2. [20] Baniak G M,La Croix A D,Polo C A,Playter T L,Pemberton S G,Gingras M K.2014c. Associating X-Ray microtomography with permeability contrasts in bioturbated media. An International Journal for Plant and Animal Traces, 21(4): 234-250. [21] Bednarz M,McIlroy D.2015. Organism-sediment interactions in shale-hydrocarbon reservoir facies: Three-dimensional reconstruction of complex ichnofabric geometries and pore-networks. International Journal of Coal Geology, 150-151: 238-251. [22] Ben-Awuah J,Eswaran P.2015. Effect of bioturbation on reservoir rock quality of sandstones: A case from the Baram Delta,offshore Sarawak,Malaysia. Petroleum Exploration and Development, 42(2): 223-231. [23] Bromley R G,Ekdale A A.1986. Composite ichnofabrics and tiering of burrows. Geological Magazine, 123(1): 59-65. [24] Buatois L A,Echevarría C.2019. Ichnofabrics from eolian systems: An example from the Cretaceous Mulichinco Formation,subsurface of western Argentina. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,4. [25] Celis S,Giraldo-Villegas C A,Rodríguez-Tovar F J,Cardona-Sánchez F J,Gallego N F,Pardo-Trujillo A. 2019. Ophiomorpha ichnofabric revealing delta front conditions in Cenozoic deposits of the Colombian Caribbean-NW South America. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,5-6. [26] Cunningham K J,Sukop M C,Huang H,Alvarez P F,Curran H A,Renken R A,Dixon J F.2009. Prominence of ichnologically influenced macroporosity in the karst Biscayne aquifer: Stratiform “super-K” zones. Geological Society of America Bulletin,121(1/2): 164-180. [27] Cunningham K J,Sukop M C,Curran H A.2012. Carbonate Aquifers. In: Knaust D,Bromley R G(eds). Trace fossils as indicators of sedimentary environments. Developments in Sedimentology,869-896. [28] Dey J,Sen S.2017. Impact of bioturbation on reservoir quality and production: A review. Journal Geological Society of India, 89: 460-470. [29] Dorador J,Rodríguez-Tovar F J.2014. Digital image treatment applied to ichnological analysis of marine core sediments. Facies, 60(1): 39-44. [30] Dorador J,Rodríguez-Tovar F J.2016. Stratigraphic variation in ichnofabrics at the“Shackleton Site”(IODP Site U1385)on the Iberian Margin: Paleoenvironmental implications. Marine Geology, 377: 118-126. [31] Dorador J,Rodríguez-Tovar F J.2018. High-resolution image treatment in ichnological core analysis: Initial steps,advances and prospects. Earth-Science Reviews, 177: 226-237. [32] Dorador J,Rodríguez-Tovar F J,Mena A,Francés G. 2019. Ichnofabric analysis of contouritic deposits from the NW Iberian margin. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,8-10. [33] Dronov A,Kushlina V.2019. Ordovician trace fossils of Siberia: Responses to climatic events and connection with Gondwana,Baltica and Laurentia. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,11. [34] Ekdale A A,Bromley R G.1983. Trace fossils and ichnofabric in the Kjolby Gaard Marl,uppermost Cretaceous,Denmark. Bulletin of the Geological Society of Denmark, 31: 107-119. [35] Ekdale A A,Bromley R G.1991. Analysis of composite ichnofabrics: An example in uppermost Cretaceous chalk of Denmark. SEPM Society for Sedimentary Geology, 6(3): 232-249. [36] Ekdale A A,Bromley R G,Knaust D.2012. The Ichnofabric Concept. In: Knaust D,Bromley R G(eds). Trace Fossils as Indicators of Sedimentary Environments. Developments in Sedimentology,139-155. [37] Friesen O J,Dashtgard S E,Miller J,Schmitt L,Baldwin C.2017. Permeability heterogeneity in bioturbated sediments and implications for waterflooding of tight-oil reservoirs,Cardium Formation,Pembina Field,Alberta,Canada. Marine and Petroleum Geology, 82: 371-387. [38] Gabriela Mángano M,Buatois L A.2017. The Cambrian revolutions: Trace-fossil record,timing,links and geobiological impact. Earth-Science Reviews, 173: 96-108. [39] Genise J F,Bellosi E S,Gonzalez M G.2004. Apporach to the description and interpretion of ichnofabric in palaeosols. Geological Society, 228: 355-382. [40] Gerard J R F,Bromley R G.2008. Ichnofabric in clastic sediment. AAPG Bulletin,Spain,1-100. [41] Gerard J.2018. Ichnofabrics: An invaluable tool for sedimentary geologists. GeoExpro: 38-41. [42] Gibert J M D,Goldring R.2007. An ichnofabric approach to the depositional interpretation of the intensely burrowed Bateig Limestone,Miocene,SE Spain. Sedimentary Geology, 194(1-2): 1-16. [43] Gingras M K,Mendoza C A,Pemberton S G.2004a. Fossilized worm burrows influence the resource quality of porous media. AAPG Bulletin, 88(7): 875-883. [44] Gingras M K,Pemberton S G,Muelenbachs K,Machel H.2004b. Conceptual models for burrow-related,selective dolomitization with textural and isotopic evidence from the Tyndall Stone,Canada. Geobiology, 2: 21-30. [45] Gingras M K,Baniak G,Gordon J,Hovikoski J,Konhauser K O,La Croix A D,Lemiski R,Mendoza C,Pemberton S G,Polo C,John-Paul Z. 2012. Porosity and Permeability in Bioturbated Sediments. In: Knaust D,Bromley R G(eds). Trace Fossils as Indicators of Sedimentary Environments. Developments in Sedimentology,837-868. [46] Gingras M K,Pemberton S G,Smith M.2014. Bioturbation-reworking sediments for better or worse. Oilfield Review,26(4): 46-58. [47] Golab J A,Smith J J,Clark A K,Blome C D.2017a. Effects of Thalassinoides ichnofabrics on the petrophysical properties of the Lower Cretaceous Lower Glen Rose Limestone,Middle Trinity Aquifer,Northern Bexar County,Texas. Sedimentary Geology, 351: 1-10. [48] Golab J A,Smith J J,Clark A K,Morris R R.2017b. Bioturbation-influenced fluid pathways within a carbonate platform system: The Lower Cretaceous(Aptian-Albian)Glen Rose Limestone. Palaeogeography,Palaeoclimatology,Palaeoecology, 465: 138-155. [49] Goldring R,Taylor A M,Hughes G W.2005. The application of ichnofabrics towards bridging the dichotomy between siliciclastic and carbonate shelf facies. Proceedings of the Geologists’ Association, 116: 235-249. [50] Gordon J B,Pemberton S G,Gingras M K,Konhauser K O.2010. Biogenically enhanced permeability: A petrographic analysis of Macaronichnus segregatus in the Lower Cretaceous Bluesky Formation,Alberta,Canada. AAPG Bulletin, 94(11): 1779-1795. [51] Haddad E E,Boyer D L,Droser M L,Lee B K,Lyons T W,Love G D.2018. Ichnofabrics and chemostratigraphy argue against persistent anoxia during the Upper Kellwasser Event in New York State. Palaeogeography,Palaeoclimatology,Palaeoecology, 490: 178-190. [52] Howard J D,Elders C A.1970. Burrowing patterns of haustoriid amphipods from Sapelo Island,Georgia. In: Crimes TP,Harper J C(eds). Trace Fossils. Geo. J.,Spec. Iss.,(3): 243-260. [53] Howard J D,Frey R W.1975. Estuaries of the Georgia Coast,U.S.A.: Sedimentology and biology. Ⅱ. Regional animal-sediment characteristics of Georgia Estuaries. Senckenbergiana Marit, (7): 33-103. [54] Hsieh A I,Allen D M,MacEachern J A.2015. Statistical modeling of biogenically enhanced permeability in tight reservoir rock. Marine and Petroleum Geology, 65: 114-125. [55] Hsieh A I,Allen D M,MacEachern J A.2017. Upscaling permeability for reservoir-scale modeling in bioturbated,heterogeneous tight siliciclastic reservoirs: Lower Cretaceous Viking Formation,Provost Field,Alberta,Canada. Marine and Petroleum Geology, 88: 1032-1046. [56] Ichaso A,Mángano M G,Buatois L A.2019. Ichnofabrics from the Cambrian-Ordovician Deadwood and Earlie Formations: Exploring evolutionary and environmental controls. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,19-20. [57] Knaust D.2009a. Characterisation of a Campanian deep-sea fan system in the Norwegian Sea by means of ichnofabrics. Marine and Petroleum Geology, 26(7): 1199-1211. [58] Knaust D.2009b. Ichnology as a tool in carbonate reservoir characterization: A case study from the Permian-Triassic Khuff Formation in the Middle East. GeoArabia, 14(3): 17-38. [59] Knaust D.2014. Classification of bioturbation-related reservoir quality in the Khuff Formation(Middle East): Towards a genetic approach. In: Pöppelreiter M C(ed).Permo-Triassic sequence of the Arabian Plate. EAGE,Netherlands,247-267. [60] Knaust D.2019. Ichnofabric. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,21-22. [61] Konhauser K O,Gingras M K.2011. Are animal burrows a major sedimentary sink for metals?An International Journal for Plant and Animal Traces, 18(3): 144-146. [62] La Croix A D,Gingras M K,Dashtgard S E,Pemberton S G.2012. Computer modeling bioturbation: The creation of porous and permeable fluid-flow pathways. AAPG Bulletin, 96(3): 545-556. [63] La Croix A D,Gingras M K,Pemberton S G,Mendoza C A,MacEachern J A,Lemiski R T.2013. Biogenically enhanced reservoir properties in the Medicine Hat Gas Field,Alberta,Canada. Marine and Petroleum Geology, 43: 464-477. [64] Li D,Qi Y A,Dai M Y,Wang M.2019. Firmground trace fossils in the Mantou Formation,Cambrian,Western Henan. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,23. [65] Loughlin N J D,Hillier R D.2010. Early Cambrian Teichichnus-dominated ichnofabrics and palaeoenvironmental analysis of the Caerfai Group,Southwest Wales,UK. Palaeogeography,Palaeoclimatology,Palaeoecology, 297(2): 239-251. [66] MacEachern J A,Bann K L,Gingras M K,Pemberton S G,Dashtgard S E,Hansen C D,Dafoe L T,John L,Pearson N J.2010. Ichnofabric vs. Ichnofacies: A field-based test of spatial recurrence in Shallow-Marine Successions. Geoscience Canada: 1-4. [67] Malpas J A,Gawthorpe R L,Pollard J E,Sharp I R.2005. Ichnofabric analysis of the shallow marine Nukhul Formation(Miocene),Suez Rift,Egypt: Implications for depositional processes and sequence stratigraphic evolution. Palaeogeography,Palaeoclimatology,Palaeoecology, 215(3-4): 239-264. [68] Mángano M G,El Albani A,Buatois L A,Bengtson S,Riboulleau A,Bekker A,Konhauser K,Lyons T,Rollion-Bard C,Bankole O,Meunier A,Trentesaux A,Mazurier A,Aubineau J,Laforest C,Baghekema S G L,Fontaine C,Recourt P,Fru E C,Macchiarelli R,Reynaud J Y,Gauthier-Lafaye F,Canfield D E. 2019. Paleoproterozoic ichnofabrics from 2.1Ga shallow-marine strata(Francevillian Basin,Gabon). In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,24-25. [69] McIlroy D.2008. Ichnological analysis: The common ground between ichnofacies workers and ichnofabric analysts. Palaeogeography,Palaeoclimatology,Palaeoecology, 270(3-4): 332-338. [70] Miguez-Salas O,Löwemark L,Pan Y-Y,Rodríguez-Tovar F J. 2019. Ichnofabric evolution after storm events in a delta environment: A case from the Miocene of Taiwan. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,26-27. [71] Mikuláš R.2019. Ichnofabric of the Buchava Formation(Cambrian,Biskoupky site,Skryje-Týrovice Basin,Czechia). In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,28-30. [72] Nara M.2019. Tectonically controlled ichnofabrics in the early to middle Miocene fore-arc basin fills of the Southwest Japan Arc. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,31-32. [73] Niu Y B,Marshall J D,Song H B,Hu B,Hu Y Z,Cui S L.2019. Ichnofabrics and their role in the modification of petrophysical properties: The Ordovician Majiagou Formation,Northwest Henan Province,China. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,33-34. [74] Pemberton S G,Gingras M K.2005. Classification and characterizations of biogenically enhanced permeability. AAPG Bulletin, 89(11): 1493-1517. [75] Pemberton S G.1992. Applications of Ichnology to Petroleum Exploration. Society for Sedimentary Geology: 1-423. [76] Petrash D A,Gingras M K,Lalonde S V,Orange F,Pecoits E,Konhauser K O.2012. Dynamic controls on accretion and lithification of modern gypsum-dominated thrombolites,Los Roques,Venezuela. Sedimentary Geology, 245-246: 29-47. [77] Qi Y,Wang M,Zheng W,Li D.2012. Calcite cements in burrows and their influence on reservoir property of the Donghe sandstone,Tarim Basin,China. Journal of Earth Science, 23(2): 129-141. [78] Quaye J A,Jiang Z,Zhou X.2019. Bioturbation influence on reservoir rock quality: A case study of Well Bian-5 from the second member Paleocene Funing Formation in the Jinhu sag,Subei Basin,China. Journal of Petroleum Science and Engineering, 172: 1165-1173. [79] Reineck H-E.1958. Wühlbau-Gefüge in Abhängigkeit von Sediment-Umlagerungen. Senck. Leth., 39(1-23): 54-56. [80] Reineck H-E.1963. Sedimentgefüge im Bereich der südlichen Nordsee. Abh. Senckenberg. Naturf. Ges, 505: 1-138. [81] Reineck H-E.1967. Parameter von Schichtung und Bioturbation. Geologische Rundschau, 56: 420-438. [82] Reolid J,Betzler C.2018. Ichnofabric logs for the characterization of the organic content in carbonates. Marine and Petroleum Geology, 95: 246-254. [83] Rodríguez-Tovar F J,Dorador J,Mayoral,E,Santos A.2017. Outcrop and core integrative ichnofabric analysis of Miocene sediments from Lepe,Huelva(SW Spain): Improving depositional and paleoenvironmental interpretations. Sedimentary Geology, 349: 62-78. [84] Rodríguez-Tovar F J,Dorador J,Mena A,Hernández-Molina F J.2018. Lateral variability of ichnofabrics in marine cores: Improving sedimentary basin analysis using computed tomography images and high-resolution digital treatment. Marine Geology, 397: 72-78. [85] Rodríguez-Tovar F J. 2019a. The macrobenthic response after the K/Pg mass extinction event: An ichnofabric approach. In: Mikuláš R(ed).Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,38-39. [86] Rodríguez-Tovar F J,Miguez-Salas O,Dorador J. 2019b. Improving characterization of composite ichnofabrics by image processing techniques. In: Mikuláš R(ed).Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,40-41. [87] Rodríguez-Tovar F,Dorador J.2015. Ichnofabric characterization in cores: A method of digital image treatment. Annales Societatis Geologorum Poloniae, 85: 465-471. [88] Savrda C E,Hannelore K,McCarthy F M G,McHugh C M G,Olson H C,Gregory M.2001. Ichnofabrics of a Pleistocene slope succession,New Jersey margin: Relations to climate and sea-level dynamics. Palaeogeography,Palaeoclimatology,Palaeoecology, 171: 41-61. [89] Schäfer W.1956. Wirkungen der Benthos-Organismen auf den jungen Schichtverband. Senck. Leth., 37: 183-263. [90] Sharafi M,Ashuri M,Mahboubi A,Moussavi-Harami R.2012. Stratigraphic application of Thalassinoides ichnofabric in delineating sequence stratigraphic surfaces(Mid-Cretaceous),Kopet-Dagh Basin,northeastern Iran. Palaeoworld, 21(3-4): 202-216. [91] Song H B,Zheng F L,Hu B.2019. Characteristics of ichnoassemblages and relationships with paleo-oxygenation facies of the Taiyuan Formation,western North China. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,42-43. [92] Stachacz M,Matysik M.2019. Ichnofabric changes in Polish Muschelkalk(Middle Triassic). In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,44-46. [93] Tarhan L G.2018. The Early Paleozoic development of bioturbation: Evolutionary and geobiological consequences. Earth-Science Reviews, 178: 177-207. [94] Taylor A M,Goldring R.1993. Description and analysis of bioturbation and ichnofabric. Journal of the Geological Society, 150: 141-148. [95] Taylor A,Golding R,Gowland S.2003. Analysis and application of ichnofabrics. Earth Science Reviews, 60: 227-259. [96] Timmer E R,Gingras M K,Zonneveld J-P.2016. Pychno: A core-image quantitative ichnology logging software. Palaios, 31(11): 525-532. [97] Tonkin N S,McIlroy D,Meyer R,Moore-Turpin A.2010. Bioturbation influence on reservoir quality: A case study from the Cretaceous Ben Nevis Formation,Jeanne d’Arc Basin,offshore Newfoundland,Canada. AAPG Bulletin, 94(7): 1059-1078. [98] Uchman A.2019. Ichnofabrics in Holocene inland dunes of SE Poland. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,47-48. [99] Uchman A,Pieńkowski G,Ninard K.2019. Ichnofabrics of Upper Sinemurian-Lower Pliensbachian deposits in the Cardigan Bay Basin(western England)in the Mochras borehole core. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,49-51. [100] Villegas-Martín J,Netto R G,Lavina E L C,Rojas-Consuegra R.2014. Ichnofabrics of the Capdevila Formation(early Eocene)in the Los Palacios Basin(western Cuba): Paleoenvironmental and paleoecological implications. Journal of South American Earth Sciences, 56: 214-227. [101] Wang C Z,Hu B,Chang L,Chen C H.2019. Trace fossils and sedimentological significance in the Member Ⅲ of the Shahejie Formation in southern Dongpu Sag. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,54-55. [102] Wetzel A.2019. Ichnofabrics in early diagenetic concretions. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,56-57. [103] Xing Z F,Lin J,Zhou H,Qi Y A,Zheng W.2019. Trace fossils in the terrestrial Lower Triassic of North China and their ecological implications. In: Mikuláš R(ed). Program,Abstracts,Field Guidebook of 15th International Ichnofabric Workshop. Prague: The Czach Academy of Sciences,Institute of Geology,58.