Pistone, M., Racek, M. a Štípská, P. 2020. Effects of diffusion of water and migration of melts in crustal rocks: An experimental study Chemical Geology. 540, 119548.
DOI Google Scholar2020
Huang, Y., Jiang, Y., Yu, Y., Collett, S., Wang, S., Shu, T. a Xu, K. 2020. Nd-Hf Isotopic Decoupling of the Silurian—Devonian Granitoids in the Chinese Altai: A Consequence of Crustal Recycling of the Ordovician Accretionary Wedge? Journal of Earth Science.
Google ScholarChopin, F., Korja, A., Nikkilä, K., Hölttä, P., Korja, T., Zaher, M.A., Kurhila, M., Eklund, O. a Rämö, T. 2020. The Vaasa Migmatitic Complex (Svecofennian Orogen, Finland): Buildup of a LP-HT Dome During Nuna Assembly Tectonics. 39, e2019TC005583.
DOI Google ScholarAouizerat, A., Xiao, W., Schulmann, K., Windley, B.F., Zhou, J., Zhang, J., Ao, S., Song, D., Monie, P. a Liu, K. 2020. Accretion, subduction erosion, and tectonic extrusion during late Paleozoic to Mesozoic orogenesis in NE China Journal of Asian Earth Sciences. 194, 104258.
DOI Google ScholarMartelat, J.-E., Cardon, H., Lardeaux, J.-M., Nicollet, C., Schulmann, K. a Pili, E. 2020. Geophysical evidences for large-scale mullion-type structures at the mantle–crust interface in southern Madagascar: implications for Neoproterozoic orogeny 109, 1487–1500.
Google ScholarBakili, A.E., Corsini, M., Chalouan, A., Münch, P., Romagny, A., Lardeaux, J.-M. a Azdimousa, A. 2020. Neogene polyphase deformation related to the Alboran Basin evolution: new insights for the Beni Bousera massif (Internal Rif, Morocco) 191, 10.
Google ScholarJouffray, F., Spalla, M.I., Lardeaux, J.-M., Filippi, M., Rebay, G., Corsini, M., Zanoni, D., Zucali, M. a Gosso, G. 2020. Variscan eclogites from the Argentera–Mercantour Massif (External Crystalline Massifs, SW Alps): a dismembered cryptic suture zone 109, 1273–1294.
Google ScholarXiao, W., Liu, Y., Somerville, I., Schulmann, K., Kusky, T. a Seltmann, R. 2020. Accretionary tectonics, deep structures and metallogeny of southern Altaids Geological Journal. 55, 1613–1619.
DOI Google ScholarFilippi, M., Zanoni, D., Lardeaux, J.-M., Spalla, M.I. a Gosso, G. 2020. Evidence of Tethyan continental break-up and Alpine collision in the Argentera-Mercantour Massif, Western Alps 372-373, 105653.
Google ScholarManzotti, P., Ballèvre, M., Pitra, P., Putlitz, B., Robyr, M. a Müntener, O. 2020. The Growth of Sodic Amphibole at the Greenschist- to Blueschist-facies Transition (Dent Blanche, Western Alps): Bulk-rock Chemical Control and Thermodynamic Modelling Journal of Petrology. 61.
DOI Google ScholarDe Hoÿm de Marien, L., Pitra, P., Cagnard, F. a Le Bayon, B. 2020. Prograde and retrograde P–T evolution of a Variscan high-temperature eclogite, French Massif Central, Haut-Allier BSGF - Earth Sciences Bulletin. 191, 14.
DOI Google ScholarRegmi, K., Hasalová, P. a Nicholls, I. 2020. Was the Tynong Batholith, Lachlan Orogen, Australia, extremely hot? Application of pseudosection modelling and TitaniQ geothermometry Journal of GeosciencesJ. Geosci. 65, 121–138.
Google ScholarGoussin, F., Riel, N., Cordier, C., Guillot, S., Boulvais, P., Roperch, P., Replumaz, A., Schulmann, K., Dupont-Nivet, G., Rosas, F. a Guo, Z. 2020. Carbonated Inheritance in the Eastern Tibetan Lithospheric Mantle: Petrological Evidences and Geodynamic Implications Geochemistry, Geophysics, Geosystems. 21, e2019GC008495.
DOI Google ScholarRegorda, A., Lardeaux, J.-M., Roda, M., Marotta, A.M. a Spalla, M.I. 2020. How many subductions in the Variscan orogeny? Insights from numerical models Geoscience Frontiers. 11, 1025–1052.
Google ScholarUlrich, S., Hobbs, B.E., Ord, A. a Schulmann, K. 2020. The relative strengths of deforming mineral phase assemblages: Geometrically necessary deformation mechanisms Journal of Structural Geology. 137, 104056.
DOI Google ScholarBorbugulov, E., Chen, Y., Xiao, W., Windley, B.F., Schulmann, K., Zhang, J., Zhang, Z., Song, S., Li, R. a Sang, M. 2020. Late Carboniferous southward migration of Tarbagatay subduction–accretion complex by slab retreat and break-off in West Junggar (NW China) Geological Journal. 55, 11–30.
DOI Google ScholarCastiñeiras, P., Barreiro, J.G., Fernández, F.J., Gil, C.A. a Benítez-Pérez, J.M. 2020. Resolving uncertainties in the application of zircon Th / U and CL gauges to interpret U-Pb ages: a case study of eclogites in polymetamorphic terranes of NW Iberia.
DOI Google ScholarCatalán, J.R.M., Collett, S., Schulmann, K., Aleksandrowski, P. a Mazur, S. 2020. Correlation of allochthonous terranes and major tectonostratigraphic domains between NW Iberia and the Bohemian Massif, European Variscan belt 109, 1105–1131.
Google ScholarSong, S., Xiao, W., Windley, B.F., Collins, A.S., Chen, Y., Zhang, J., Schulmann, K., Han, C., Wan, B., Ao, S., Zhang, Z., Song, D. a Li, R. 2020. Late Paleozoic Chingiz and Saur Arc Amalgamation in West Junggar (NW China): Implications for Accretionary Tectonics in the Southern Altaids Tectonics. 39, e2019TC005781.
DOI Google ScholarGuy, A., Schulmann, K., Soejono, I. a Xiao, W. 2020. Revision of the Chinese Altai-East Junggar Terrane Accretion Model Based on Geophysical and Geological Constraints Tectonics. 39, e2019TC006026.
DOI Google Scholar2019
Štípská, P., Hasalová, P., Powell, R., Závada, P., Schulmann, K., Racek, M., Aguilar, C. a Chopin, F. 2019. The Effect of Melt Infiltration on Metagranitic Rocks: the Snieznik Dome, Bohemian Massif Journal of Petrology. 60, 591–618.
Google ScholarKrýza, O., Závada, P. a Lexa, O. 2019. Advanced strain and mass transfer analysis in crustal-scale oroclinal buckling and detachment folding analogue models Tectonophysics. 764, 88–109.
DOI Google ScholarBroussolle, A., Sun, M., Schulmann, K., Guy, A., Aguilar, C., Štípská, P., Jiang, Y., Yu, Y. a Xiao, W. 2019. Are the Chinese Altai “terranes” the result of juxtaposition of different crustal levels during Late Devonian and Permian orogenesis? Gondwana Research. 66, 183–206.
DOI Google ScholarJiang, Y., Schulmann, K., Sun, M., Weinberg, R.F., Štípská, P., Li, P.F., Zhang, J., Chopin, F., Wang, S., Xia, X.P. a Xiao, W. 2019. Structural and Geochronological Constraints on Devonian Suprasubduction Tectonic Switching and Permian Collisional Dynamics in the Chinese Altai, Central Asia Tectonics. 38, 253–280.
DOI Google ScholarAouizerat, A., Xiao, W., Schulmann, K., Jeřábek, P., Monie, P., Zhou, J.-B., Zhang, J., Ao, S., Li, R., Li, Y. a Esmaeili, R. 2019. Structures, strain analyses, and 40Ar/39Ar ages of blueschist-bearing Heilongjiang Complex (NE China): Implications for the Mesozoic tectonic evolution of NE China Geological Journal. 54, 716–745.
DOI Google Scholar