- [21] Ma, Q., Zheng, J.P., Xu, Y.G., Griffin, W.L., Zhang, R.S., 2015. Are continental “adakites” derived from thickened or foundered lower crust? Earth and Planetary Science Letters 419, 125-133 10.1016/j.epsl.2015.02.036.
- [22] Ma, Q., Xu, Y.G., Zheng, J.P., Griffin, W.L., Hong, L.B., Ma, L., 2016. Coexisting Early Cretaceous High-Mg Andesites and Adakitic Rocks in the North China Craton: the Role of Water in Intraplate Magmatism and Cratonic Destruction. Journal of Petrology 57(7), 1279 -1308.
- [23] Ma, Q., Xu, Y.G., Zheng, J.P., Sun, M., Griffin, W.L., Wei, Y., Ma, L., Yu, X., 2016. High-Mg adakitic rocks and their complementary cumulates formed by crystal fractionation of hydrous mafic magmas in a continental crustal magma chamber. Lithos 260, 211-224 10.1016/j.lithos.2016.05.024.
- [24] Ma, Q., Xu, Y.G., Zheng, J.P., Sun, M., Griffin, W.L., Xia, X., Pan, S.K., 2017. Phanerozoic magma underplating and crustal growth beneath the North China Craton. Terra Nova 29(4), 211-217 10.1111/ter.12265.
- [25] Ma, Q., Xu, Y.G., Deng, Y., Zheng, J.P., Sun, M., Griffin, W.L., Xia, B., Wang, C.Y., 2019. Similar crust beneath disrupted and intact cratons: Arguments against lower-crust delamination as a decratonization trigger. Tectonophysics 750, 1-8 https://doi.org/10.1016/j.tecto.2018.11.007.
- [26] Ma, Q., Xu, Y.G., Huang, X.L., Zheng, J.P., Ping, X., Xia, X.P., 2020. Eoarchean to Paleoproterozoic crustal evolution in the North China Craton: Evidence from U-Pb and Hf-O isotopes of zircons from deep-crustal xenoliths. Geochimica Et Cosmochimica Acta 278, 94-109 https://doi.org/10.1016/j.gca.2019.09.009.
- [27] Zhang, S., Ma, Q.*, Chen, H., Long, X., Chu, G., Cheng, J., Xia, X., Li, R., 2021. Precambrian crust growth and reworking of the eastern Yangtze Craton: insights from xenocrystic zircons in the lamprophyres from the Middle–Lower Yangtze Belt, China. Precambrian Research 355, 106121 https://doi.org/10.1016/j.precamres.2021.106121.
- [28] Ma, Q., Xu, Y.G., 2021. Magmatic perspective on subduction of Paleo-Pacific plate and initiation of big mantle wedge in East Asia. Earth-Science Reviews 213, 103473 https://doi.org/10.1016/j.earscirev.2020.103473.