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5¡¢Èðµä¹ú¼ÒÑо¿»ù½ð(VR2012-1658)£º¸ÔÍßÄɴ󽺮Îä¼Í´¥ÊÖ¹ÚÀදÎïϵͳÑÝ»¯£¬2012-2015£¬Ö÷Òª¼ÓÈëÕß

6¡¢ËÄ´¨ÅèµØ¶¯µ©Ïµ-º®ÎäϵȫÓÍÆøϵͳ³É²ØģʽÓëÓÐÀû¿±Ì½Çø´øÆÀ¼Û,2023-2025,Ö÷Òª¼ÓÈëÕß

 

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[1] Wang H., Li C., Zhang Z., Kershaw S., Holmer L.E., Zhang Y., Wei K., Liu P. (2022) Fossil Brachiopod identification using a new deep convolutional neural network. Gondwana Research 105£º290-298.

[2] Wang H., Zhang Z., Holmer L.E., Hu S., Wang X. and Li G. (2012)Peduncular attached secondary tiering acrotretoid brachiopods from the Chengjiang fauna: Implications for the ecological expansion of brachiopods during the Cambrian explosion. Palaeogeography Palaeoclimatology Palaeoecology, 323:60-67.

[3] Wang H., Zhang Z., Holmer L.E., Zhang Z. (2023) Redescription and systematic position of Diandongia pista from the Chengjiang Lagerst?tte. Palaeoworld 32(3): 373-384.

[4] Wang H., Zhang Z. and Holmer L.E. (2014), Oldest glosselline linguliform brachiopod with soft parts from the lower Cambrian of Yunnan, Southern China.  GFF£¬136(4)£º539-547

[5] Zhang Z., Holmer L.E., Hu S., Wang X., Li G. and Wang H. (2011), First record of repaired durophagous shell damages in Early Cambrian lingulate brachiopods with preserved pedicles. Palaeogeography Palaeoclimatology Palaeoecology, 302(3-4):206-212.

[6] Zhang Z., Holmer L.E., Skovsted C.B., Brock G.A., Budd G.E., Fu D., Zhang X., Shu D., Han J., Liu J., Wang H., Butler A. and Li G. (2013), A sclerite-bearing stem group entoproct from the early Cambrian and its implications. Scientific Reports, 3:1066.

[7] Zhang Z., Li G., Holmer L.E., Brock G. A., Balthasar U., Skovsted C.B., Fu D., Zhang X., Wang. H., Butler A., Zhang Z., Cao C., Han J., Liu, J. and Shu D. (2014) An early Cambrian agglutinated tubular lophophorate with brachiopod characters. Scientific Reports, 4:4682.

[8] Zhang Z., Zhang Z. & Wang H. (2016) Epithelial cell moulds preserved in the earliest acrotretid brachiopods from the Cambrian (Series 2) of the Three Gorges area, China. GFF, 138:4, 455-466.

[9] Xu Q., Wang H.*, Guo R., Liu P., Shi D., Liu E., Zhang Y., Wei K. (2022) Pore structural characteristics and methane adsorption capacity of transitional shale of different depositional and burial processes: a case study of shale from Taiyuan formation of the Southern North China basin. Journal of Petroleum Exploration and Production Technology, 12:995¨C1008.

[10] Liu W., Xu Q., Wang H., Liu P., Guo R., Zhang Y., Wei K. (2022) Quantitative characterization of pore network and influencing factors of methane adsorption capacity of transitional shale from the southern North China Basin. Journal of Petroleum Exploration and Production Technology, 12:793¨C810.

[11] Íõº£ÖÞ*, ÁõÅô£¬ÀîТ¸¦£¬ÕÅÑÕÅ×϶«. £¨2022£©¹ð±±µØÇøϺ®ÎäͳÇåϪ×麣ÏàÒ³ÑÒ¼×ÍéÎü¸½ÌØÕ÷ÓëÓ°ÏìÒòËØÆÊÎö ¡£Ê¯ÓÍ¿Æѧת´ï£¬ 7( 2)£º127-138.



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