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Figure 5 from: Cifuentes-Rincón A, Morales-Donoso JA, Sandoval EDP, Tomazella IM, Mantellatto AMB, de Thoisy B, Duarte JMB (2020) Designation of a neotype for Mazama americana (Artiodactyla, Cervidae) reveals a cryptic new complex of brocket deer species. ZooKeys 958: 143-164. https://doi.org/10.3897/zookeys.958.50300
Figure 5 Basic karyotype belonging to the Mazama americana neotype (2n = 45 FN = 51 + 3Bs) under conventional Giemsa staining.
Figure 8 from: Cifuentes-Rincón A, Morales-Donoso JA, Sandoval EDP, Tomazella IM, Mantellatto AMB, de Thoisy B, Duarte JMB (2020) Designation of a neotype for Mazama americana (Artiodactyla, Cervidae) reveals a cryptic new complex of brocket deer species. ZooKeys 958: 143-164. https://doi.org/10.3897/zookeys.958.50300
Figure 8 Phylogenetic tree from Bayesian inference of the fragments of the concatenated D-Loop and Cyt-b regions. The values represent the posterior probability of the analysis.
Figure 3 from: Cifuentes-Rincón A, Morales-Donoso JA, Sandoval EDP, Tomazella IM, Mantellatto AMB, de Thoisy B, Duarte JMB (2020) Designation of a neotype for Mazama americana (Artiodactyla, Cervidae) reveals a cryptic new complex of brocket deer species. ZooKeys 958: 143-164. https://doi.org/10.3897/zookeys.958.50300
Figure 3 Distance tree (cluster analysis) made with biometric measurements of 39 Mazama americana specimens of various origins compared to the neotype and other Mazama species (M. nemorivaga, M. gouazoubira, M. nana and M. bororo).
Figure 2 from: Cifuentes-Rincón A, Morales-Donoso JA, Sandoval EDP, Tomazella IM, Mantellatto AMB, de Thoisy B, Duarte JMB (2020) Designation of a neotype for Mazama americana (Artiodactyla, Cervidae) reveals a cryptic new complex of brocket deer species. ZooKeys 958: 143-164. https://doi.org/10.3897/zookeys.958.50300
Figure 2 Right lateral (A), left lateral (B), ventral (C) and dorsal (D) views of the skull of the M. americana neotype. Scale illustrates measurement in centimeters.
Figure 1 from: Cifuentes-Rincón A, Morales-Donoso JA, Sandoval EDP, Tomazella IM, Mantellatto AMB, de Thoisy B, Duarte JMB (2020) Designation of a neotype for Mazama americana (Artiodactyla, Cervidae) reveals a cryptic new complex of brocket deer species. ZooKeys 958: 143-164. https://doi.org/10.3897/zookeys.958.50300
Figure 1 Lateral view of the adult male Mazama americana collected in French Guiana and proposed as neotype.
Figure 4 from: Cifuentes-Rincón A, Morales-Donoso JA, Sandoval EDP, Tomazella IM, Mantellatto AMB, de Thoisy B, Duarte JMB (2020) Designation of a neotype for Mazama americana (Artiodactyla, Cervidae) reveals a cryptic new complex of brocket deer species. ZooKeys 958: 143-164. https://doi.org/10.3897/zookeys.958.50300
Figure 4 Distance tree (cluster analysis) made with cranial measurements of different M. americana cytotypes, in parenthesis, found in Brazil (SA-Santarém, JU-Juína, RO-Rondônia, PR-Paraná, CA-Carajás) compared to M. americana neotype and other Mazama species (M. gouazoubira, M. nemorivaga and M. bororo).
Figure 7 from: Cifuentes-Rincón A, Morales-Donoso JA, Sandoval EDP, Tomazella IM, Mantellatto AMB, de Thoisy B, Duarte JMB (2020) Designation of a neotype for Mazama americana (Artiodactyla, Cervidae) reveals a cryptic new complex of brocket deer species. ZooKeys 958: 143-164. https://doi.org/10.3897/zookeys.958.50300
Figure 7 Basic karyotype belonging to the M. americana neotype (2n = 45 FN = 51 +3 Bs) under G-band and its schematic representation to facilitate future comparisons.
Supplementary material 1 from: Cifuentes-Rincón A, Morales-Donoso JA, Sandoval EDP, Tomazella IM, Mantellatto AMB, de Thoisy B, Duarte JMB (2020) Designation of a neotype for Mazama americana (Artiodactyla, Cervidae) reveals a cryptic new complex of brocket deer species. ZooKeys 958: 143-164. https://doi.org/10.3897/zookeys.958.50300
Table S1. Samples used in this study for genetic analysis
Supplementary material 5 from: Cifuentes-Rincón A, Morales-Donoso JA, Sandoval EDP, Tomazella IM, Mantellatto AMB, de Thoisy B, Duarte JMB (2020) Designation of a neotype for Mazama americana (Artiodactyla, Cervidae) reveals a cryptic new complex of brocket deer species. ZooKeys 958: 143-164. https://doi.org/10.3897/zookeys.958.50300
Figure S2. Phylogenetic tree of the D-Loop gene
3D Models from Morales, J. I., et al. (2015). "Measuring Retouch Intensity in Lithic Tools: A New Proposal Using 3D Scan Data." Journal of Archaeological Method and Theory 22(2): 543-558.
<p>This document compiles the complete set of 3D models and the measurements used for the experimental work of the paper:</p> <p>Morales, J. I., et al. (2015). "Measuring Retouch Intensity in Lithic Tools: A New Proposal Using 3D Scan Data." Journal of Archaeological Method and Theory 22(2): 543-558.<br> <br> It includes 3D scans from both unmodified and modified flakes (X & Xb). All the flakes produced in this experiment were produced by freehand hard hammer percussion and no specific flaking method was followed. Diferents types of tertiary evaporitic flint described in Soto, M., et al. (2017). "The chert abundance ratio (CAR): a new parameter for interpreting Palaeolithic raw material procurement." J. Archaeol Anthropol Sci. (https://doi.org/10.1007/s12520-017-0516-3) were used.</p> <p> </p>
Sex differences in moral judgements across 67 countries
Most of the empirical research on sex differences and cultural variations in morality has relied on within-culture analyses or small-scale cross-cultural data. To further broaden the scientific understanding of sex differences in morality, the current research relies on two international samples to provide the first large-scale examination of sex differences in moral judgements nested within cultures. Using a sample from 67 countries (Study 1; n = 336,691), we found culturally-variable sex differences in moral judgements, as conceptualized by Moral Foundations Theory. Women consistently scored higher than men on Care, Fairness, and Purity. In contrast, sex differences in Loyalty and Authority were negligible and highly variable across cultures. Country-level sex differences in moral judgements were also examined in relation to cultural, socio-economic, and gender-equality indicators revealing that sex differences in moral judgements are larger in individualist, Western, and gender-equal societies. In Study 2 (19 countries; n = 11,969), these results were largely replicated using Bayesian multi-level modeling in a distinct sample. The findings were robust even when incorporating cultural non-independence of countries into the models. Specifically, women consistently showed higher concerns for Care, Fairness, and Purity in their moral judgements than did men. Sex differences in moral judgements were larger in individualist and gender-equal societies with more flexible social norms. We discuss the implications of these findings for the ongoing debate about the origin of sex differences and cultural variations in moral judgements as well as theoretical and pragmatic implications for moral and evolutionary psychology.
Preventive behaviours during the pandemic: the role of collective rituals, emotional synchrony, social norms, and moral obligation
<p>One of the main challenges posed by the COVID-19 pandemic is that it has necessitated a series of behavioural changes designed to stop the spread of the disease. This study focuses on collective processes with a social influence and intra-individual processes, as factors which mould preventive behaviours among Spanish citizens (<em>N</em> = 528). Using an on-line survey, we explored the impact of the ritual of collective applause (carried out daily for over 70 days), the role of perceived social norms in fostering preventive behaviours, and the mediating power of perceived emotional synchrony and a sense of moral obligation, as intra-individual processes. The dependent variables were preventive behaviours carried out in the past and intention to continue engaging in them in the future. </p>
Moral Awareness as a Source of Improved Performance
<p>Data set for the Article</p>
Figure 9 from: Mondragón-F SP, Morales I, Moreira FFF (2021) Telmatometropsis fredyi gen. nov., sp. nov.: a new water strider from the Colombian Pacific region (Insecta, Hemiptera, Gerridae). ZooKeys 1043: 87-102. https://doi.org/10.3897/zookeys.1043.58548
Figure 9 Apterous holotype male, Telmatometroides rozeboomi (Drake & Harris, 1937) A dorsal view B ventral view C labels D fore tarsus, internal lateral view. Scale bar: 0.25 mm.
Figure 6 from: Mondragón-F SP, Morales I, Moreira FFF (2021) Telmatometropsis fredyi gen. nov., sp. nov.: a new water strider from the Colombian Pacific region (Insecta, Hemiptera, Gerridae). ZooKeys 1043: 87-102. https://doi.org/10.3897/zookeys.1043.58548
Figure 6 Telmatometropsis fredyi gen. nov, sp. nov., female A dorsal view B ventral view C lateral view D–E scanning electron micrographs D fore leg, ventral view E apex of fore tibia and fore tarsus, ventral view. Scale bars: 1 mm (A, B, C); 200 μm (D); 100 μm (E).
Figure 8 from: Mondragón-F SP, Morales I, Moreira FFF (2021) Telmatometropsis fredyi gen. nov., sp. nov.: a new water strider from the Colombian Pacific region (Insecta, Hemiptera, Gerridae). ZooKeys 1043: 87-102. https://doi.org/10.3897/zookeys.1043.58548
Figure 8 Type locality of Telmatometropsis fredyi sp. nov.; mangrove lagoons in Buenaventura Bay, Valle del Cauca, Colombia.
Figure 3 from: Mondragón-F SP, Morales I, Moreira FFF (2021) Telmatometropsis fredyi gen. nov., sp. nov.: a new water strider from the Colombian Pacific region (Insecta, Hemiptera, Gerridae). ZooKeys 1043: 87-102. https://doi.org/10.3897/zookeys.1043.58548
Figure 3 Telmatometropsis fredyi gen. nov, sp. nov., male, scanning electron micrographs A fore leg, ventral view B–E fore tarsus B external lateral view C internal lateral view D dorsal view E ventral view. Scale bars: 200 μm (A); 300 μm (B); 20 μm (C); 60 μm (D); 40 μm (E).
Figure 4 from: Mondragón-F SP, Morales I, Moreira FFF (2021) Telmatometropsis fredyi gen. nov., sp. nov.: a new water strider from the Colombian Pacific region (Insecta, Hemiptera, Gerridae). ZooKeys 1043: 87-102. https://doi.org/10.3897/zookeys.1043.58548
Figure 4 Telmatometropsis fredyi gen. nov, sp. nov., scanning electron micrographs A–C male A fore pretarsal claw, lateral view B fore tarsomere II, area with cuticular pegs adjacent to pretarsal claw insertion, ventral view C apex of fore tibia with grooming structures, ventral view D female, apex of fore tibia with grooming structures, ventral view. Scale bars: 20 μm (A); 10 μm (B, C, D).
Figure 2 from: Mondragón-F SP, Morales I, Moreira FFF (2021) Telmatometropsis fredyi gen. nov., sp. nov.: a new water strider from the Colombian Pacific region (Insecta, Hemiptera, Gerridae). ZooKeys 1043: 87-102. https://doi.org/10.3897/zookeys.1043.58548
Figure 2 Telmatometropsis fredyi gen. nov, sp. nov., male A ventral view B lateral view. Scale bars: 1 mm.
Figure 1 from: Mondragón-F SP, Morales I, Moreira FFF (2021) Telmatometropsis fredyi gen. nov., sp. nov.: a new water strider from the Colombian Pacific region (Insecta, Hemiptera, Gerridae). ZooKeys 1043: 87-102. https://doi.org/10.3897/zookeys.1043.58548
Figure 1 Telmatometropsis fredyi gen. nov, sp. nov., male A dorsal view B–D Scanning electron micrographs B dorsal view C head, pronotum and anterior portion of mesonotum, dorsal view D apex of thorax and base of abdomen, dorsal view. Scale bars: 1 mm (A); 400 μm (B); 100 μm (C, D).
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