Vullo R., Cavin L., Khalloufi B., Amaghzaz M., Bardet N., Jalil N.-E., Jourani E., Khaldoune F. et Gheerbrant E. A unique Cretaceous — Paleogene lineage of piranha-jawed pycnodont fishes // Scientific Reports, 2017, V.7, p.6802.
Walsh S.A., Milner A.C. et Bourdon E. A reappraisal of
Wilson J.A. et Sereno P.C. Early evolution and higher-level phylogeny of sauropod dinosaurs // Journal of Vertebrate Paleontology, 1998, V.18, № 2, Supplement, pp.1–68. Зауроподы
Wilson J.A. et Upchurch P. A revision of
Wolff E.D.S., Salisbury S.W., Horner J.R. et Varricchio D.J. Common avian infection plagued the tyrant dinosaurs // PLoS ONE, V.4, № 9, №e7288, pp.1–7. Инфекционное заболевание у
Wong W.O., Dilcher D.L., Labandeira C.C., Sun G. et Fleischmann A. Early Cretaceous
Xing L.D., Lockley M.G., Zhang J.P., M.A.R.C., Klein H., Li D.Q., Persons IV W.S. et Ebi J.F. A new Early Cretaceous dinosaur track assemblage and the firstdefinite non-avian theropod swim trackway from China // Chinese Science Bulletin, 2013, pp.1–9. Следы плывущего теропода
Xing L., McKellar R.C., Wang M., Bai M., O'Connor J.K., Benton M.J., Zhang J., Wang Ya., Tseng K., Lockley M.G., Li G., Zhang W. et Xu X. Mummified precocial bird wings in mid-Cretaceous Burmese amber // Nature Communications, 2016, V.7, № 12089, pp.1–7. Птенец энанциорниса в янтаре
Xing L., O'Connor J.K., McKellar R.C., Chiappe L.M., Tseng K., Li G. et Bai M. A mid-Cretaceous enantiornithine (Aves) hatchling preserved in Burmese amber with unusual plumage // Gondwana Research, 2017, V.49, pp.264–277. Птенец энанциорниса в янтаре
Xing L., O'Connor J.K., McKellar R.C., Chiappe L.M., Bai M., Tseng K., Zhang J., Yang H., Fang J. et Li G. A flattened enantiornithine in mid-Cretaceous Burmese amber: morphology and preservation //
Xing L., McKellar R.C., O'Connor J.K., Bai M., Tseng K. et Chiappe L.M. A fully feathered enantiornithine foot and wing fragment preserved in mid-Cretaceous Burmese amber // Scientific Reports, 2019, V.9, № 927, pp.1–9.
Xing L., McKellar R.C., O'Connor J.K., Niu K. et Mai H. A mid-Cretaceous enantiornithine foot and tail feather preserved in Burmese amber // Scientific Reports, 2019, V.9, № 15513, pp.1–8. Лапа и хвост энанциорниса в янтаре
Xing L., O'Connor J.K., Chiappe L.M., McKellar R.C., Carroll N., Hu H., Bai M. et Lei F. A new enantiornithine bird with unusual pedal proportions found in amber // Current Biology, 2019, V.29, pp.2396–2401.
Xing L., O’Connor J.K., Schmitz L., Chiappe L.M., McKellar R.C., Yi Q. et Li G. Hummingbird-sized dinosaur from the Cretaceous period of Myanmar // Nature, 2020, V.579, pp.245–249.
Yang T.-R. et Sander P.M. The origin of the bird’s beak: new insight from dinosaur incubation periods // Biology Letters, 2018, V.14, № 20180090, pp.1–5. Зубы, клюв, высиживание яиц и вымирание динозавров
Yao Yu., Cai W., Xu X., Shih Ch., Engel M.S., Zheng X., Zhao Yu. et Ren D. Blood-feeding true bugs in the early Cretaceous // Current Biology, 2014, V.24, № 15, pp.1786–1792. Кровососущие клопы
Zelenitsky D.K., Therrien F., Erickson G.M., DeBuhr Ch.L., Kobayashi Yo., Eberth D.A. et Hadfield F. Feathered non-avian dinosaurs from North America provide insight into wing origins // Science, 2012, V.338, pp.510–514. Оперённый
Zelenkov N.V., Averianov A.O. et Popov E.V. An Ichthyornis-like bird from the earliest Late Cretaceous (Cenomanian) of European Russia // Cretaceous Research, 2017, V.75, pp.94–100. Саратовский ихтиорнис
Zhou Zh. et Zhang F. A precocial avian embryo from the Lower Cretaceous of China // Science, 2004, V.306, pp.653–653. Эмбрион энанциорниса в яйце
Zhou Zh. et Zhang F. Mesozoic birds of China — a synoptic review // Frontiers of Biology in China, 2007, V.2, № 1, pp.1–14.