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8,998 results for “Adaptation”

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Figs 25–32 in New fossil genus and new extant species of diatoms (Stephanodiscaceae, Bacillariophyceae) from Pleistocene sediments in the Neotropics (Guatemala, Central America): adaptation to a changing environment?

Figs 25–32. Type material of fossil lacustrine diatom Cyclocostis rolfii Paillès gen. et sp. nov.; SEM external valve views. 25. Valve view of concentrically undulated marginal area and tangentially undulated central area; punctuated striae become in the central area rows of larger areolae arranged in a stellate pattern. 26. Valve surface with scattered papillae; the external opening of the single valve face fultoportula is located on the raised part (white arrowhead). 27. Marginal area showing the external openings of marginal fultoportulae, collared but with no projections (white arrowheads). 28. Side view of marginal area showing striation, papillae, external openings of marginal fultoportulae (mfp – two white arrows), and the cingulum consisting of an open valvocopula and several copulae (white arrow). 29. Detail of the central area with large areolae; external areolae are bigger and occluded by volae in places where ribs are fusing. 30. Broken valve view showing the different striation between the margins and the center, the steep transversal undulation and the valve thickness. 31. Marginal area with the external openings of marginal fultoportulae (white arrowheads), papillae, and the cingulum. 32. Broken valve view showing the simple structure of anastomosing ribs covered by a finely perforated silica layer. Scale bars: 25 = 5 µm; 26, 28–32 =2 µm; 27 = 1 µm (27).

opencc-by-4.0Nov 2020View details →
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Fig. 59 in New fossil genus and new extant species of diatoms (Stephanodiscaceae, Bacillariophyceae) from Pleistocene sediments in the Neotropics (Guatemala, Central America): adaptation to a changing environment?

Fig. 59. Diagram showing the succession of Stephanodiscaceae Glezer & Makarova in Pleistocene sediments (0–84 ka) from Lake Petén-Itzá (Guatemala).

opencc-by-4.0Nov 2020View details →
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Figs 1–24 in New fossil genus and new extant species of diatoms (Stephanodiscaceae, Bacillariophyceae) from Pleistocene sediments in the Neotropics (Guatemala, Central America): adaptation to a changing environment?

Figs 1–24. Type material of fossil lacustrine diatom Cyclocostis rolfii Paillès gen. et sp. nov., Lake PeténItzá (Guatemala); LM girdle view (1) and valve views (2–24). 4. Holotype (MNHN, slide PC0608731). 7–8. Valve surface strongly tangentially undulated, forming an S shape. Scale bar = 10 µm.

opencc-by-4.0Nov 2020View details →
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Motor adaptation distorts visual space

<p>The folder Visual Adaptation contains the data for the visual adaptation experiment</p> <p>Each file contains a matrix called &ldquo;MatriceRisultati&rdquo;. Each row of the matrix &ldquo;MatriceRisultati&rdquo; is a trial.&nbsp;</p> <p>The columns contain the following information:</p> <ul> <li>1<sup>st</sup>: Number of trial</li> <li>2<sup>nd</sup>: Test size</li> <li>3<sup>rd</sup>: Subject response on test</li> <li>4<sup>th</sup>: Condition&nbsp;</li> <li>5<sup>th</sup>: Test side</li> </ul> <p>The folder Motor Adaptation contains the data for the visual adaptation experiment</p> <p>Each file contains a matrix called &ldquo;MatriceRisultati&rdquo;. Each row of the matrix &ldquo;MatriceRisultati&rdquo; is a trial.&nbsp;</p> <p>The columns contain the following information:</p> <ul> <li>1<sup>st</sup>: Number of trial</li> <li>2<sup>nd</sup>: Test size</li> <li>3<sup>rd</sup>: Subject response on test</li> </ul> <p>The structure &ldquo;Resp&rdquo; contains one matrix for each trial with the hand coordinates for the motor adaptation</p>

opencc-by-4.0Nov 2020View details →
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Farmer adaptive behavior and risk management in EU agriculture

<p>Risk and risk management are essential elements of agriculture and affect the wellbeing of farm households. Farmers react to production, market and institutional risks and challenges by taking measures on or off the farm. Such risk management measures are often costly and have implications for up- and downstream industries as well as the environment. The risk exposure of European farms is increasing. For example, climate change will increase the frequency and magnitude of extreme weather events like droughts, heatwaves and heavy rainfalls that potentially have detrimental effects on agricultural production. Thus, the adaptive capacity and risk management options in European agriculture need to be improved. Policy shall support this process. Policies are needed to support a diversity of risk management solutions and not only focus on a few solutions. Strategies to cope with risk often go beyond the level of the individual farm. Cooperation, learning and sharing of risks play a vital role in European agriculture and shall be strengthened. Thus, coordinated policies targeting beyond the individual farm and considering all the stakeholders involved in the risk management strategies are needed to ensure their effective implementation. Moreover, policies need to facilitate to take full advantage of the rapid technological progress and improved data availability (e.g. based on satellite imagery) to develop a wider set of risk management strategies.</p>

opencc-by-4.0Aug 2019View details →
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Figure 98‒99 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figure 98‒99. Distribution maps of cave-adapted diplurans in Asia: Campodeinae Condé, 1956 (red circles), Plusiocampinae Paclt, 1957 (black circles), Lepidocampinae Condé, 1956 (brown circles), Japygidae Haliday, 1864 (red squares). In yellow: karst areas (source: Chen et al. 2017). In orange: deserts (source: Olson &amp; Dinerstein 2002). In violet, encircled by discontinued line: hypogean karst systems (source: Klimchouk 2007). 98. In blue: ice cover and permafrost extent during the Last Glacial Maximum (sources: Ehlers et al. 2011; Lindgren et al. 2016). 99. In blue: areas covered with either continuous or patched permafrost at present (source: Brown et al. 2002).

opencc-by-4.0Jan 2021View details →
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Figs 92‒97 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 92‒97. Mueggejapyx brehieri Sendra &amp; Komerički gen. et sp. nov. 92. Urite X and cerci, ventral side. 93. Proximal and ventral side of the cerci. 94. Ventral proximal portion of the left cercus. 95. Ventral proximal portion of the right cercus. 96. Conical sensillum of the cerci. 97. Cerci, caudal view. See Material and methods for terminology.

opencc-by-4.0Jan 2021View details →
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Figs 80‒85 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 80‒85. Mueggejapyx brehieri Sendra &amp; Komerički gen. et sp. nov. female. 80. First urosternite. 81. Lateral posterior of the first urosternite. 82. Detail of the lateral coxal organ with glandular setae (GS) and setiform setae (SS). 83. Median glandular organ (ss: setae-shaped sensilla). 84. Detail of the large socket setae (lss) of the lateral coxal organ. 85. Detail of the cuticle of the first urosternite.

opencc-by-4.0Jan 2021View details →
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Figs 75‒79 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 75‒79. Mueggejapyx brehieri Sendra &amp; Komerički gen. et sp. nov. 75. Head, prothorax, mesothorax and metathorax, ventral view (paratype, MZB (MCNB) 2020-1157). 76. Head anterior ventral side, (ad) admentum, (el) external lobule, (lp) labial palp, and (sm) submentum. 77. Pro-prosternum (pr-prt) with spine (sp) and anterior portion of prosternum (pr-st). 78. Meso-poststernum (ms-pst), meso-intersternum (ms-ist), and mesosternum (ms-st). 79. Meta-poststernum (mt-pst), meta-intersternum (mt-ist), and metasternum (mt-st).

opencc-by-4.0Jan 2021View details →
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Figs 71‒74 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 71‒74. Mueggejapyx brehieri Sendra &amp; Komerički gen. et sp. nov. 71. Pronotum, mesonotum and metanotum, right side, see terminology in the text (holotype, MZB (MCNB) 2020-1156). 72. Detail of the surface of the mesonotum. 73. Detail of the latero–posterior left side of the mesonotum. 74. Detail of the macroseta base.

opencc-by-4.0Jan 2021View details →
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Figs 65‒70 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 65‒70. Mueggejapyx brehieri Sendra &amp; Komerički gen. et sp. nov. 65. Last antennomere with placoide sensilla (ps). 66. Distal antennomeres with placoide sensilla (ps). 67. Central antennomeres. 68. Proximal antennomeres, ventral side. 69. Head, dorsal side. Abbreviations: see Material and methods. 70. Proximal antennomeres, dorsal side.

opencc-by-4.0Jan 2021View details →
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Figs 61‒64 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 61‒64. Pacificampa wudonghuii Sendra sp. nov. 61. Urotergites III–VIII and IX abdominal segment, left side (holotype, NEIGA-diplura-01). 62. Male first urosternite with glandular a 1 setae. 63. Fourth urosternite, right side. 64. Male eighth urosternite.

opencc-by-4.0Jan 2021View details →
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Figs 55‒60 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 55‒60. Pacificampa wudonghuii Sendra sp. nov. 55. Dorsal macrosetae on the metathoracic femur. 56. Joint between tibia and tarsus with calcars. 57. Ventral macroseta on the tibia. 58. Lateral side of the tarsus. 59. Pretarsus. 60. Detail of the pretarsus.

opencc-by-4.0Jan 2021View details →
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Figs 46‒48 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 46‒48. Grotte du 8ième Ciel Baxian Dong, Banqiao, Hubei, China. 46. Map of the cave. 47. Main entrance. 48. Saltpetre passage with an old saltpetre oven. (Photographs Josiane Lips).

opencc-by-4.0Jan 2021View details →
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Figs 44‒45 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 44‒45. Hubeicampa melissa Sendra &amp; Lips gen. et sp. nov. 44. Central cercal articles. 45. Detail of a cercal macroseta.

opencc-by-4.0Jan 2021View details →
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Figs 30‒33 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 30‒33. Hubeicampa melissa Sendra &amp; Lips gen. et sp. nov. 30. Pronotum, mesonotum, and metanotum, left side, holotype (MZB (MCNB) 2020-1162). 31. Detail of the pronotum. 32. Detail of clothing setae on pronotum. 33. Detail of the surface of metanotum.

opencc-by-4.0Jan 2021View details →
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Figs 49‒50. Plutocampa methoria Chevrizov, 1978. 49 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 49‒50. Plutocampa methoria Chevrizov, 1978. 49. Sensillum of the third antennomere. 50. Left labial palp and palpiform process (pp).

opencc-by-4.0Jan 2021View details →
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Figs 40‒43 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 40‒43. Hubeicampa melissa Sendra &amp; Lips gen. et sp. nov. 40. Urotergites I–VII and abdominal segment IX, left side, holotype (MZB (MCNB) 2020-1162). 41. First urosternite of a female, holotype (MZB (MCNB) 2020-1162, with glandular a 1 setae. 42. Stylus, right fifth urosternite. 43. Detail stylus, right fifth urosternite.

opencc-by-4.0Jan 2021View details →
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Figs 34‒39 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 34‒39. Hubeicampa melissa Sendra &amp; Lips gen. et sp. nov. 34. Tarsus of metathoracic leg. 35. Medial portion of tarsus. 36. Pretarsus. 37. Detail of the posterior portion of a claw. 38. Detail of the distal part of a lateral process. 39. Detail of the lateral part of a lateral process.

opencc-by-4.0Jan 2021View details →
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Figs 26‒29 in Asian cave-adapted diplurans, with the description of two new genera and four new species (Arthropoda, Hexapoda, Entognatha)

Figs 26‒29. Hubeicampa melissa Sendra &amp; Lips gen. et sp. nov. 26. Detail of the setae and macrosetae on antennomeres. 27. Distal portion of an antenna macroseta. 28. Basal portion of an antenna macroseta. 29. Central portion of an antenna macroseta.

opencc-by-4.0Jan 2021View details →

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Allen Brain Atlas

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DANDI Archive for NWB datasets

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dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

OpenNeuro

OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record