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Costs of territoriality: A review of hypotheses, meta-analysis, and field study
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Building on challenges hindering practical use of smell concept: a systematic review (80 primary studies from 2002-2019)
<p>Data set of the research: Extending a systematic review on code smell effect: outlining catalogues, investigated smells and building on tool-related bias (80 primary studies from 2002-2019)</p>
Dataset of "Test-Driven Code Review: An Empirical Study"
<p>Dataset of "Test-Driven Review: An Empirical Study"<br> This appendix material refers to the paper "Test-Driven Review: An Empirical Study" published in the Proceedings of the 41st International Conference on Software Engineering (ICSE 2019)</p>
Data from: Reporting guidelines for community-based participatory research (CBPR) did not improve the reporting quality of published studies: a systematic review of studies on smoking cessation
<p>Although a guideline for reporting the results of community-based participatory research (CBPR) was published in 2010, the impact on the quality of reporting a CBPR on smoking cessation is unknown. Here we provide the raw data of a systematic review that assessed the impact of a 2010 community-based participatory research reporting guideline. on the quality of reporting a CBPR on smoking cessation. Specifically, we searched the MEDLINE, Embase, the Cochrane Central Register for Controlled Trials (CENTRAL), PsycINFO, and CINAHL databases and included articles published up to October 2018 (PROSPERO: CRD42019111668). We assessed reporting quality using a 13-item checklist.</p>
FIGURES 96–103 in Review of the genus Meganola Dyar, 1898 of Ivory Coast and adjacent areas with descriptions of 5 new species and several taxonomic updates (Lepidoptera Nolidae, Nolinae)-Taxonomic studies on West African Nolinae I.
FIGURES 96–103: female genitalia (all in coll. ANHRT unless otherwise indicated). 96, Meganola fontainei, Zambia, LGNA 3; 97, M. xantholeuca, Liberia, LGNA 977; 98, M. rhyssomorpha, Ivory Coast, LGNA 984; 99, M. mesothermoides, holotype, Ghana, NHMUK010315152 (prep. by Gy.M. László) (NHMUK); 100, M. spermophaga, Sierra Leone, LGNA 462; 101, M. pyrrhomorpha, Ivory Coast, LGNA 145; 102, M. canocolorata, Ivory Coast, LGNA 981; 103, M. foviferoides, Zambia, LGNA 37.
FIGURES 88–95 in Review of the genus Meganola Dyar, 1898 of Ivory Coast and adjacent areas with descriptions of 5 new species and several taxonomic updates (Lepidoptera Nolidae, Nolinae)-Taxonomic studies on West African Nolinae I.
FIGURES 88–95: female genitalia (all in coll. ANHRT unless otherwise indicated). 88, Meganola smithi sp. n., paratype, Liberia, LGNA 523; 89, M. endoscota, holotype, Ghana, NHMUK010315151 (prep. by Gy.M. László) (NHMUK); 90, M. microfascia, Ivory Coast, LGNA 418; 91, M. mesonephele, Ivory Coast, LGNA 151; 92, M. lucia, Ivory Coast, LGNA 420; 93, M. palaeographa, Ivory Coast, LGNA 24; 94, M. dananae, Guinea, LGNA 988; 95, M. taiana sp. n., paratype, Ivory Coast, LGNA 983.
FIGURES 84–87 in Review of the genus Meganola Dyar, 1898 of Ivory Coast and adjacent areas with descriptions of 5 new species and several taxonomic updates (Lepidoptera Nolidae, Nolinae)-Taxonomic studies on West African Nolinae I.
FIGURES 84–87: male genitalia (all in coll. ANHRT). 84, Meganola leucosigna, Ivory Coast, LGNA 263; 85, M. hackeri sp. n., holotype, Ivory Coast, LGNA 239; 86, M. ronkayiana, Ivory Coast, LGNA 225; 87, M. illaudata, Ivory Coast, LGNA 224.
FIGURES 57–65 in Review of the genus Meganola Dyar, 1898 of Ivory Coast and adjacent areas with descriptions of 5 new species and several taxonomic updates (Lepidoptera Nolidae, Nolinae)-Taxonomic studies on West African Nolinae I.
FIGURES 57–65: male genitalia (all in coll. ANHRT unless otherwise indicated). 57, Meganola smithi sp. n., holotype, Ivory Coast, LGNA 242; 58, M. endoscota, Liberia, LGNA 970; 59, M. microfascia, Ivory Coast, LGNA 250; 60, M. mesonephele, Ivory Coast, LGNA 149; 61, M. lucia, Ivory Coast, LGNA 472; 62, M. palaeographa, Ivory Coast, LGNA 235; 63, M. monofascia, Ivory Coast, LGNA 237; 64, M. monofascia, Cameroon, LGNA 568; 65, M. monofascia, Zambia, LGNA 103.
FIGURES 1–20 in Review of the genus Meganola Dyar, 1898 of Ivory Coast and adjacent areas with descriptions of 5 new species and several taxonomic updates (Lepidoptera Nolidae, Nolinae)-Taxonomic studies on West African Nolinae I.
FIGURES 1–20: adults (all in coll. ANHRT unless otherwise indicated). 1, Meganola smithi sp. n., holotype, ♂, Ivory Coast; 2, M. smithi sp. n., paratype, ♂, Liberia; 3, M. smithi sp. n., paratype, ♀, Liberia; 4, M. endoscota, holotype, ♀, Ghana (NHMUK); 5, M. endoscota, ♂, Liberia; 6, M. endoscota, ♂, Guinea; 7, M. endoscota, ♂, Cameroon; 8, M. microfascia, ♂, Ivory Coast; 9, M. microfascia, ♀, Ivory Coast; 10, M. mesonephele, ♀, Ivory Coast; 11, M. lucia, ♂, Ivory Coast; 12, M. lucia, ♂, Cameroon; 13, M. lucia, ♀, Ivory Coast; 14, M. palaeographa, ♂, Ivory Coast; 15, M. palaeographa, ♀, Ivory Coast; 16, M. monofascia, ♂, Ivory Coast; 17, M. monofascia, ♂, Cameroon; 18, M. monofascia, ♀, Liberia; 19, M. dananae, ♂, Guinea; 20, M. dananae, ♀, Guinea.
FIGURES 75–83 in Review of the genus Meganola Dyar, 1898 of Ivory Coast and adjacent areas with descriptions of 5 new species and several taxonomic updates (Lepidoptera Nolidae, Nolinae)-Taxonomic studies on West African Nolinae I.
FIGURES 75–83: male genitalia (all in coll. ANHRT unless otherwise indicated). 75, Meganola chionea, holotype, Nigeria, BM Arct. 6467 (prep. by Gy. M. László) (NHMUK); 76, M. subchionea sp. n., holotype, Ivory Coast, LGNA 139; 77, M. cinereoparva sp. n., holotype, Ivory Coast, LGNA 397; 78, M. cinereoparva sp. n., paratype, Ivory Coast, LGNA 137; 79, M. mesothermoides, Liberia, LGNA 502; 80, M. spermophaga, Liberia, LGNA 547; 81, M. pyrrhomorpha, Ivory Coast, LGNA 565; 82, M. foviferoides, Togo, LGNA 597; 83, M. foviferoides, Zambia, LGNA 17.
FIGURES 41–56 in Review of the genus Meganola Dyar, 1898 of Ivory Coast and adjacent areas with descriptions of 5 new species and several taxonomic updates (Lepidoptera Nolidae, Nolinae)-Taxonomic studies on West African Nolinae I.
FIGURES 41–56: adults (all in coll. ANHRT). 41, Meganola pyrrhomorpha, ♂, Ivory Coast; 42, M. pyrrhomorpha, ♀, Ivory Coast; 43, M. canocolorata ♀, Ivory Coast; 44, M. foviferoides ♂, Togo; 45, M. foviferoides ♀, Zambia; 46, M. leucosigna, ♂, Ivory Coast; 47, M. leucosigna, ♀, Ivory Coast; 48, M. hackeri sp. n., holotype, ♂, Ivory Coast; 49, M. hackeri sp. n., paratype, ♂, Ivory Coast; 50, M. ronkayiana, ♂, Ivory Coast; 51, M. ronkayiana, ♂, Liberia; 52, M. pyrrhosoma, ♀, Ivory Coast; 53, M. pyrrhosoma, ♀, Liberia; 54, M. illaudata, ♂, Ivory Coast; 55, M. illaudata, ♂, Liberia; 56, M. illaudata, ♀, Liberia.
FIGURES 21–40 in Review of the genus Meganola Dyar, 1898 of Ivory Coast and adjacent areas with descriptions of 5 new species and several taxonomic updates (Lepidoptera Nolidae, Nolinae)-Taxonomic studies on West African Nolinae I.
FIGURES 21–40: adults (all in coll. ANHRT unless otherwise indicated). 21, Meganola furvitincta, lectotype, ♂, Sierra Leone (NHMUK); 22, M. furvitincta, ♂, Liberia; 23, M. aarviki, ♂, Ivory Coast; 24, M. spherographa, ♂, Ivory Coast; 25, M. spherographa, ♀, Liberia; 26, M. taiana sp. n., holotype, ♂, Ivory Coast; 27, M. taiana sp. n., paratype, ♂, Liberia; 28, M. taiana sp. n., paratype, ♀, Ivory Coast; 29, M. xantholeuca, ♀, Ivory Coast; 30, M. xantholeuca, ♀, Liberia; 31, M. rhyssomorpha, ♂, Ivory Coast; 32, M. rhyssomorpha, ♀, Ivory Coast; 33, M. chionea, holotype, ♂, Nigeria (NHMUK); 34, M. subchionea sp. n., holotype, ♂, Ivory Coast; 35, M. cinereoparva sp. n., holotype, ♂, Ivory Coast; 36, M. cinereoparva sp. n., paratype, ♂, Ivory Coast; 37, M. mesothermoides, holotype, ♀, Ghana (NHMUK); 38, M. mesothermoides, ♂, Liberia; 39, M. spermophaga, ♂, Liberia; 40, M. spermophaga, ♀, Sierra Leone.
FIGURES 66–74 in Review of the genus Meganola Dyar, 1898 of Ivory Coast and adjacent areas with descriptions of 5 new species and several taxonomic updates (Lepidoptera Nolidae, Nolinae)-Taxonomic studies on West African Nolinae I.
FIGURES 66–74: male genitalia (all in coll. ANHRT unless otherwise indicated). 66, Meganola dananae, Guinea, LGNA 975; 67, M. furvitincta, lectotype, Sierra Leone, BM Arct. 6469 (prep. by Gy. M. László) (NHMUK); 68, M. furvitincta, Liberia, LGNA 491; 69, M. aarviki, Ivory Coast, LGNA 980; 70, M. spherographa, Ivory Coast, LGNA 228; 71, M. taiana sp. n., holotype, Ivory Coast, LGNA 142; 72, M. taiana sp. n., paratype, Liberia, LGNA 487; 73, M. fontainei, Zambia, LGNA 1; 74, M. rhyssomorpha, Ivory Coast, LGNA 233.
Data from: Experiences with Global Trigger Tool reviews in five Danish hospitals – an implementation study
Objectives: To describe experiences with the implementation of global trigger tool (GTT) reviews in five Danish hospitals and to suggest ways to improve the performance of GTT review teams. Design: Retrospective observational study. Setting: The measurement and monitoring of harms are crucial to campaigns to improve the safety of patients. Increasingly, teams use the GTT to review patient records and measure harms in English and non-English-speaking countries. Meanwhile, it is not clear as to how the method performs in such diverse settings. Participants: Review teams from five Danish pilot hospitals of the national Danish Safer Hospital Programme. Primary and secondary outcome measures: We collected harm rates, background and anecdotal information and reported patient safety incidents (PSIs) from five pilot hospitals currently participating in the Danish Safer Hospital Programme. Experienced reviewers categorised harms by type. We plotted harm rates as run-charts and applied rules for the detection of patterns of non-random variation. Results: The hospitals differed in size but had similar patient populations and activity. PSIs varied between 3 and 12 per 1000 patient-days. The average harm rate for all hospitals was 60 per 1000 patient-days ranging from 34 to 84. The percentage of harmed patients was 25 and ranged from 18 to 33. Overall, 96% of harms were temporary. Infections, pressure ulcers procedure-related and gastrointestinal problems were common. Teams reported differences in training and review procedures such as the role of the secondary reviewer. Conclusions: We found substantial variation in harm rates. Differences in training, review procedures and documentation in patient records probably contributed to these variations. Training reviewers as teams, specifying the roles of the different reviewers, training records and a database for findings of reviews may improve the application of the GTT.
FIGURES 1–2 in Studies on the Canacidae (Diptera), subfamily Apetaeninae. II. A review of the world subgenera of Apetaenus Eaton, with a special reference to the Australian and New Zealand species
FIGURES 1–2. Apetaenus (Macrocanace) australis (Hutton). 1. Male terminalia lateral view; 2. ditto, caudal view. Scale bar = 0.1 mm.
FIGURES 3–4 in Studies on the Canacidae (Diptera), subfamily Apetaeninae. II. A review of the world subgenera of Apetaenus Eaton, with a special reference to the Australian and New Zealand species
FIGURES 3–4. Apetaenus (Macrocanace) littoreus (Hutton). 3. Male terminalia lateral view; 4. ditto, caudal view. Scale bar = 0.1 mm. The arrow indicates a magnified detail of the surstylus apical portion.
FIGURES 13–14 in Studies on the Canacidae (Diptera), subfamily Apetaeninae. II. A review of the world subgenera of Apetaenus Eaton, with a special reference to the Australian and New Zealand species
FIGURES 13–14. Two typical landscapes of the subantarctic Bounty Island showing the rocky and impervious coasts populated by several colonies of sea-birds. These are the elective environments of the Australian and New Zealand subantarctic species of Apetaenus. (Photo Courtesy of Tui de Roy).
FIGURE 15 in Studies on the Canacidae (Diptera), subfamily Apetaeninae. II. A review of the world subgenera of Apetaenus Eaton, with a special reference to the Australian and New Zealand species
FIGURE 15. Distributional map of the subfamily Apetaeninae (as for the insular toponyms, see the text as well as the distributions given in Munari, 2007).
FIGURES 5–6 in Studies on the Canacidae (Diptera), subfamily Apetaeninae. II. A review of the world subgenera of Apetaenus Eaton, with a special reference to the Australian and New Zealand species
FIGURES 5–6. Chaetotaxy of anepisternum. 5. Apetaenus (Macrocanace) australis (Hutton); 6. Apetaenus (Macrocanace) littoreus (Hutton). Scale bar = 0.5 mm.
FIGURES 7–12. 7–10 in Studies on the Canacidae (Diptera), subfamily Apetaeninae. II. A review of the world subgenera of Apetaenus Eaton, with a special reference to the Australian and New Zealand species
FIGURES 7–12. 7–10. Wing (N.B.: the seeming sinuosity of the costal vein, as it appears in some of these photographs, is exclusively due to a defective slide preparation). 7. Apetaenus (Macrocanace) australis (Hutton) from the Antipodes Islands; 8. ditto from the Snares Islands; 9. Apetaenus (Macrocanace) littoreus (Hutton) from the Antipodes Islands; 10. ditto from the Bounty Islands. 11–12. Abdomen of male dorsally. 11. Apetaenus (Apetaenus) litoralis litoralis Eaton; 12. Apetaenus (Apetaenus) litoralis marionensis n. ssp.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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