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Figs 60–64. Meligethes flavimanus Stephens, 1830 in A new species of the genus Meligethes Stephens (Coleoptera: Nitidulidae: Meligethinae) from China

Figs 60–64. Meligethes flavimanus Stephens, 1830, ♂. 60. Head. 61. Front tibia. 62. Prosternal process. 63. Tegmen, ventral view. 64. Medial lobe of aedeagus, ventral. Scale bar = 0.5 mm.

opencc-by-4.0Dec 2015View details →
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Figure 60. Triangulum thutai Jiang & Li in Twenty new spider species (Arachnida: Araneae) from Late Cretaceous Kachin amber (Myanmar)

Figure 60. Triangulum thutai Jiang & Li, sp. nov., holotype male (IZCAS-Ar42704Fo), left palp, retrolateral view. Scale bar = 0.05 mm.

opencc-by-4.0Dec 2022View details →
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Figure 60. Wendilgarda housaiyuae Lin & Li in Taxonomy notes on twenty-eight spider species (Arachnida: Araneae) from Asia

Figure 60. Wendilgarda housaiyuae Lin & Li, sp. nov., paratype female. A. Epigyne, ventral view; B. Vulva, dorsal view. Abbreviations: CD—copulatory duct; CO—copulatory opening; FD—fertilization duct; S—spermatheca; Sc—scape. Scale bars = 0.1 mm.

opencc-by-4.0Dec 2022View details →
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Figs 55–60 in Sem Study Of Hooks In The Acanthocephala With Emphasis On Structural-Functional Relationships

Figs 55–60. SEM of proboscis and hooks of Neoechinorhynchus ponticus (figs 55, 56) and Neoechinorhynchus personatus (figs 57–60) (Neoechinorhynchidae): 55 — proboscis of N. ponticus with a sensory pore at level of posterior hooks; 56 — anterior hook showing angle of projection and external serrations; 57 — posterior hook ofN. personatus showing serrations; 58 — a high magnification showing pattern of serrations on an anterior hook; 59 — outermost layer of a hook showing detail of longitudinal serrations in cross section; 60 — a part of a Gallium-cut section of an anterior hook showing its thin cortical layer and dense core, and its articulation vs. the root of the same core density.

opencc-by-4.0Dec 2022View details →
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Fig. 60 in The pea crab genus Arcotheres Manning, 1993 (Crustacea: Brachyura: Pinnotheridae) from Singapore and Peninsular Malaysia, with a reappraisal of diagnostic characters and descriptions of two new genera

Fig. 60. Arcotheres placunicola Ng, 2018. A–C, paratype male (5.6 × 4.7 mm) (ZRC 2017.1010), Changi, Singapore; D–H, male (3.7 × 3.3 mm) (ZRC 2021.802), Batu Pahat, Peninsular Malaysia. A, D, overall dorsal view; B, E, frontal view of cephalothorax; C, F, outer view of left chela; G, left G1; H, distal part of P5 (ventral view). B after Ng (2018a: fig. 2B).

opencc-by-4.0Mar 2022View details →
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Text-fig. 6. Transmitted light microphotographs of permineralized wood from Govone. a, b: cf. Cupressinoxylon sp., radial section, MGPT-PU141105, a – nodular end of ray parenchyma (arrow), b – thick and pitted horizontal walls of ray parenchyma (arrow). c–f: Pinaceae gen. et sp. indet., MGPT-PU141107, c – abnormal discoloration due to ecological disruptions (radial section), d – rays up to 10 cells high, uniseriate, partly biseriate (black arrow), intercellular spaces observed (white arrows) (tangential section), e – large, thick-walled axial resin canal with more than 9 epithelial cells observed, axial resin canal diameter>60 Μm (transverse section), f – spiral thickenings due to compression (white arrow) (radial section). in Remains Of A Subtropical Humid Forest In A Messinian Evaporitebearing Succession At Govone, Northwestern Italy - Preliminary Results

Text-fig. 6. Transmitted light microphotographs of permineralized wood from Govone. a, b: cf. Cupressinoxylon sp., radial section, MGPT-PU141105, a – nodular end of ray parenchyma (arrow), b – thick and pitted horizontal walls of ray parenchyma (arrow). c–f: Pinaceae gen. et sp. indet., MGPT-PU141107, c – abnormal discoloration due to ecological disruptions (radial section), d – rays up to 10 cells high, uniseriate, partly biseriate (black arrow), intercellular spaces observed (white arrows) (tangential section), e – large, thick-walled axial resin canal with more than 9 epithelial cells observed, axial resin canal diameter>60 Μm (transverse section), f – spiral thickenings due to compression (white arrow) (radial section).

opencc-by-4.0Aug 2022View details →
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Fig. 60 in Jumping spiders from Ivory Coast collected by J.-C. Ledoux (Araneae, Salticidae)

Fig. 60. Saraina rubrofasciata Wanless & Clark, 1975, ♀ (MNHN). A. Habitus, dorsal view. B. Epigyne.

opencc-by-4.0Oct 2022View details →
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Figs 55–60 in A revision of the Andrena (Hymenoptera: Andrenidae) fauna of Iran, with the description of 16 new species

Figs 55–60. Andrena obsidiana Wood sp. nov., ♀ (OÖLM). 55. Profile. 56. Face. 57. Dorsum.58. Scutum, detail. 59. Terga. 60. Terga, detail.

opencc-by-4.0Oct 2022View details →
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FDTD simulation of 230 nm thickness PAAO with Au NPs in different mediums (AoI 60 deg., s- and p-polarizations)

<p>FDTD software: Lumerical (Ansys, version 2021 R2.3).</p> <p>Structure: aluminum (Palik) substrate; 230 nm thickness (<em>h</em>) aluminum oxide (Palik) layer with 35 nm diameter (<em>RPo</em>) cylindrical pores with 100 nm&nbsp;distance (<em>D</em>) between the pore centers (representing porous anodized aluminum oxide - PAAO); 60 nm diameter (<em>RNP</em>) gold (Johnson and Christy) nanoparticles (Au NPs) placed directly above each pore.</p> <p>Refractive index of the surrounding medium (<em>n</em>): 1.0; 1.1.</p> <p>Simulation region: from 300 nm below the substrate/PAAO interface to 1.3 &micro;m above PAAO surface; x and y spans are equal to one period of the structure.</p> <p>Mesh override region: from 50 nm below the PAAO to 50 nm above the nanoparticles; 2 nm step size in each direction.</p> <p>Light source: BFAST plane wave light source; 500 nm above PAAO; 60&deg; angle of incidence (<em>ang</em>); 300 nm &ndash; 1000 nm wavelength range; s- and p-polarizations (<em>pol</em>).</p> <p>Monitors (frequency domain field and power): (1) 2D Z-normal; 1 &micro;m above PAAO; results are in &quot;<em>_reflection.txt</em>&quot; files. (2) 2D Y-normal; centered to the structure; starts 50 nm below PAAO and ends 50 nm above nanoparticles; results are in &quot;<em>.fsp</em>&quot; files. (3) 2D X-normal; centered to the structure; starts 50 nm below PAAO and ends 50 nm above nanoparticles; results are in &quot;<em>.fsp</em>&quot; files.</p> <p>Information in the file name: <em>h</em> - thickness of PAAO; <em>pol</em> - polarization; <em>RNP</em> - diameter of gold nanoparticles; <em>RPo</em> - diameter of pores; <em>D</em> - distance between pore centers; <em>ang</em> - angle of incidence; <em>n</em> - refractive index of surrounding medium.</p> <p>Files: (1) &quot;<em>_reflection.txt</em>&quot; - lambda(nm) (first column) - wavelength in nanometers; Y (second column) - T data from the monitor above the structure. (2) &quot;<em>_p0.log</em>&quot; - log file produced by the software while running the simulation. (3) &quot;<em>.fsp</em>&quot; - Lumerical software file containing the simulation project; it can be used to extract data from Y- and X-normal monitors (license required to open these files). (4) &quot;<em>Lumerical_Screenshots.pdf</em>&quot; - shows software screenshots for every object and its every property; red text is added to show which values are different for different simulations. (5) &quot;<em>Structure_Illustration.png</em>&quot; - a schematic of modeled structure. (6) &quot;<em>h230.jpg</em>&quot; - a preview of data from &quot;<em>_reflection.txt</em>&quot; files.</p>

opencc-by-4.0Dec 2021View details →
zenodo40/100

FDTD simulation of 350 nm thickness PAAO with Au NPs in different mediums (AoI 60 deg., s- and p-polarizations)

<p>FDTD software: Lumerical (Ansys, version 2021 R2.3).</p> <p>Structure: aluminum (Palik) substrate; 350 nm thickness (<em>h</em>) aluminum oxide (Palik) layer with 35 nm diameter (<em>RPo</em>) cylindrical pores with 100 nm&nbsp;distance (<em>D</em>) between the pore centers (representing porous anodized aluminum oxide - PAAO); 60 nm diameter (<em>RNP</em>) gold (Johnson and Christy) nanoparticles (Au NPs) placed directly above each pore.</p> <p>Refractive index of the surrounding medium (<em>n</em>): 1.0; 1.1.</p> <p>Simulation region: from 300 nm below the substrate/PAAO interface to 1.3 &micro;m above PAAO surface; x and y spans are equal to one period of the structure.</p> <p>Mesh override region: from 50 nm below the PAAO to 50 nm above the nanoparticles; 2 nm step size in each direction.</p> <p>Light source: BFAST plane wave light source; 500 nm above PAAO; 60&deg; angle of incidence (<em>ang</em>); 300 nm &ndash; 1000 nm wavelength range; s- and p-polarizations (<em>pol</em>).</p> <p>Monitors (frequency domain field and power): (1) 2D Z-normal; 1 &micro;m above PAAO; results are in &quot;<em>_reflection.txt</em>&quot; files. (2) 2D Y-normal; centered to the structure; starts 50 nm below PAAO and ends 50 nm above nanoparticles; results are in &quot;<em>.fsp</em>&quot; files. (3) 2D X-normal; centered to the structure; starts 50 nm below PAAO and ends 50 nm above nanoparticles; results are in &quot;<em>.fsp</em>&quot; files.</p> <p>Information in the file name: <em>h</em> - thickness of PAAO; <em>pol</em> - polarization; <em>RNP</em> - diameter of gold nanoparticles; <em>RPo</em> - diameter of pores; <em>D</em> - distance between pore centers; <em>ang</em> - angle of incidence; <em>n</em> - refractive index of surrounding medium.</p> <p>Files: (1) &quot;<em>_reflection.txt</em>&quot; - lambda(nm) (first column) - wavelength in nanometers; Y (second column) - T data from the monitor above the structure. (2) &quot;<em>_p0.log</em>&quot; - log file produced by the software while running the simulation. (3) &quot;<em>.fsp</em>&quot; - Lumerical software file containing the simulation project; it can be used to extract data from Y- and X-normal monitors (license required to open these files). (4) &quot;<em>Lumerical_Screenshots.pdf</em>&quot; - shows software screenshots for every object and its every property; red text is added to show which values are different for different simulations. (5) &quot;<em>Structure_Illustration.png</em>&quot; - a schematic of modeled structure. (6) &quot;<em>h350.jpg</em>&quot; - a preview of data from &quot;<em>_reflection.txt</em>&quot; files.</p>

opencc-by-4.0Dec 2021View details →
zenodo40/100

FDTD simulation of 320 nm thickness PAAO with Au NPs in different mediums (AoI 60 deg., s- and p-polarizations)

<p>FDTD software: Lumerical (Ansys, version 2021 R2.3).</p> <p>Structure: aluminum (Palik) substrate; 320 nm thickness (<em>h</em>) aluminum oxide (Palik) layer with 35 nm diameter (<em>RPo</em>) cylindrical pores with 100 nm&nbsp;distance (<em>D</em>) between the pore centers (representing porous anodized aluminum oxide - PAAO); 60 nm diameter (<em>RNP</em>) gold (Johnson and Christy) nanoparticles (Au NPs) placed directly above each pore.</p> <p>Refractive index of the surrounding medium (<em>n</em>): 1.0; 1.1.</p> <p>Simulation region: from 300 nm below the substrate/PAAO interface to 1.3 &micro;m above PAAO surface; x and y spans are equal to one period of the structure.</p> <p>Mesh override region: from 50 nm below the PAAO to 50 nm above the nanoparticles; 2 nm step size in each direction.</p> <p>Light source: BFAST plane wave light source; 500 nm above PAAO; 60&deg; angle of incidence (<em>ang</em>); 300 nm &ndash; 1000 nm wavelength range; s- and p-polarizations (<em>pol</em>).</p> <p>Monitors (frequency domain field and power): (1) 2D Z-normal; 1 &micro;m above PAAO; results are in &quot;<em>_reflection.txt</em>&quot; files. (2) 2D Y-normal; centered to the structure; starts 50 nm below PAAO and ends 50 nm above nanoparticles; results are in &quot;<em>.fsp</em>&quot; files. (3) 2D X-normal; centered to the structure; starts 50 nm below PAAO and ends 50 nm above nanoparticles; results are in &quot;<em>.fsp</em>&quot; files.</p> <p>Information in the file name: <em>h</em> - thickness of PAAO; <em>pol</em> - polarization; <em>RNP</em> - diameter of gold nanoparticles; <em>RPo</em> - diameter of pores; <em>D</em> - distance between pore centers; <em>ang</em> - angle of incidence; <em>n</em> - refractive index of surrounding medium.</p> <p>Files: (1) &quot;<em>_reflection.txt</em>&quot; - lambda(nm) (first column) - wavelength in nanometers; Y (second column) - T data from the monitor above the structure. (2) &quot;<em>_p0.log</em>&quot; - log file produced by the software while running the simulation. (3) &quot;<em>.fsp</em>&quot; - Lumerical software file containing the simulation project; it can be used to extract data from Y- and X-normal monitors (license required to open these files). (4) &quot;<em>Lumerical_Screenshots.pdf</em>&quot; - shows software screenshots for every object and its every property; red text is added to show which values are different for different simulations. (5) &quot;<em>Structure_Illustration.png</em>&quot; - a schematic of modeled structure. (6) &quot;<em>h320.jpg</em>&quot; - a preview of data from &quot;<em>_reflection.txt</em>&quot; files.</p>

opencc-by-4.0Dec 2021View details →
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Figs 52–60 in The Panjange nigrifrons group in Borneo (Araneae: Pholcidae): high diversity in Sarawak, apparent absence in Sabah

Figs 52–60. Female genitalia, untreated in ventral view, cleared in ventral and dorsal views. 52– 54. Panjange pueh Huber, sp. nov. (ZFMK Ar 14577). 55–57. Pa. niah Huber, sp. nov. (ZFMK Ar 14580). 58–60. Pa. kapit Huber, sp. nov. (ZFMK Ar 14584).

opencc-by-4.0Dec 2016View details →
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Figs 60–62 in Overview of the Anyphaenids (Araneae, Anyphaeninae, Anyphaenidae) spider fauna from the Chocó forest of Ecuador, with the description of thirteen new species

Figs 60–62. Patrera suni sp. nov. 60.  ♂,  palp,  ventral  view.  61.  ♂,  palp,  retrolateral  view. 62.  ♂,  chelicerae, posterior view. Scale bars: 60–61 = 0.1 mm; 62 = 0.5 mm.

opencc-by-4.0Dec 2016View details →
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Ind. Ch. 60 Grant of the time of Ravivarman, seal High resolution TIFF

<p><a href="https://siddham.network/object/ob01055/">OB01055</a>&nbsp;Ind. Ch. 60 Grant of the time of Ravivarman, seal High resolution TIFF</p>

opencc-by-4.0Dec 2017View details →
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Рис. 1. Viscosia orientalis sp. nov., гоΛотип самца (А, Б, Á) и паратипа самки (В, Г). А — гоΛова; Б — переΑний конец теΛа; В, Á — заΑний конец теΛа; Г — теΛо в обΛасти вуΛьвы. Масштаб: А — 15 мкм; В — 25 мкм; Á — 30 мкм; Г — 60 мкм; Б — 80 мкм Fig. 1. Viscosia orientalis sp. nov., male holotype (А, Б, Á) and female paratype (В, Г). А — head; Б — anterior body end; В, Á — posterior body end; Г — vulva region. Scale bars: А — 15 μm; В — 25 μm; Á — 30 μm; Г — 60 μm; Б — 80 μm in Sp. Nov. And Sp. Nov. (Nematoda, Enoplida) From The Mouth Of The Cam River In Vietnam

Рис. 1. Viscosia orientalis sp. nov., гоΛотип самца (А, Б, Á) и паратипа самки (В, Г). А — гоΛова; Б — переΑний конец теΛа; В, Á — заΑний конец теΛа; Г — теΛо в обΛасти вуΛьвы. Масштаб: А — 15 мкм; В — 25 мкм; Á — 30 мкм; Г — 60 мкм; Б — 80 мкм Fig. 1. Viscosia orientalis sp. nov., male holotype (А, Б, Á) and female paratype (В, Г). А — head; Б — anterior body end; В, Á — posterior body end; Г — vulva region. Scale bars: А — 15 μm; В — 25 μm; Á — 30 μm; Г — 60 μm; Б — 80 μm

opencc-by-4.0Feb 2020View details →
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FIG. 60 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)

FIG. 60. — Pelvic reconstruction of Lemmysuchus obtusidens (Andrews, 1909), NHMUK PV R 3168 (holotype): A, lateral view; B, anterior view; C, ventral view; D, dorsal view. Arrow points anteriorly. Target indicates anterior. The left ischium and right ilium and pubis are mirrored. Scale bar: 5 cm.

opencc-zeroMay 2024View details →
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Figures 60–61. Centris tarsata females. 60 in The genus Centris Fabricius in Cuba, with a new record and the description of a new species (Hymenoptera: Apoidea: Anthophila)

Figures 60–61. Centris tarsata females. 60) visiting flowers of Senna alata, Fabaceae, San Diego de los Baños, Pinar del Río. 61) collecting sandy soil for nest construction. Photos by D. Breto.

opencc-by-4.0Apr 2024View details →
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Figures 60–61 in Scorpions of the Horn of Africa (Arachnida: Scorpiones). Part XXX. Parabuthus (Buthidae) (Part III), with description of three new species from Somaliland and occurrence of Parabuthus eritreaensis Kovařík, 2003

Figures 60–61. Parabuthus evae sp. n., male holotype, in dorsal (60) and ventral (61) views. Scale bar: 10 mm.

opencc-by-4.0Apr 2024View details →
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Fig. 60 in Taxonomy of the ant genera Leptothorax Mayr, 1855 and Temnothorax Mayr, 1861 (Hymenoptera: Formicidae) of China with descriptions of twenty-eight new species and a key to the known Chinese species

Fig. 60. Temnothorax reticulatus (Chang &amp; He, 2001), holotype worker (NXU 98-610). A. Head in fullface view. B. Body in lateral view. C. Body in dorsal view.

opencc-by-4.0Nov 2024View details →
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FIG. 65. Morphotype 60, AMNH 04-59. A, B. Part. C in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina

FIG. 65. Morphotype 60, AMNH 04-59. A, B. Part. C. Left elytron of part showing rows of punctures. D. Head of part. E. Counterpart, head not preserved. F. Elytral apex of counterpart. Scale bars: A–E: 1 mm; F: 0.5 mm.

opencc-by-4.0May 2024View details →

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Allen Brain Atlas

Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

Annotated Behaviour and Observability Dataset (ABODe)

ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

DANDI Archive for NWB datasets

DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.

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