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210 results for “field observations”

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zenodo32/100

Figs 58 – 62 in The Southeast Asian Pholcus halabala species group (Araneae, Pholcidae): new data from field observations and ultrastructure

Figs 58 – 62. Pholcus kuhapimuk Huber, sp. nov., ZFMK Ar 15027. 58 – 59. Left male palp, prolateral and retrolateral views. 60. Male chelicerae, frontal view. 61 – 62. Cleared female genitalia, ventral and dorsal views. Abbreviations: a = appendix; b = genital bulb; e = embolus; p = procursus; u = uncus. Scale lines: 0.3 mm (61 – 62); 0.5 mm (58 – 60).

opennotspecifiedDec 2016View details →
zenodo32/100

Figs 49 – 56 in The Southeast Asian Pholcus halabala species group (Araneae, Pholcidae): new data from field observations and ultrastructure

Figs 49 – 56. Live specimens, Pholcus kuhapimuk Huber, sp. nov. (49 – 51), Ph. khaolek Huber, sp. nov. (52 – 53), and Ph. sudhami Huber, 2011 (54 – 56). 49 – 51. ♂, penultimate instar ♂, and ♀ with egg-sac from Wat Kuhapimuk, Thailand. 52 – 53. ♀ with spiderlings and ♂ from Khao Lek, Thailand. 54 – 55. ♂ from Tham Phraya Nakhon, Thailand. 56. ♂ from Erawan, Thailand.

opennotspecifiedDec 2016View details →
zenodo32/100

Four-Dimensional wind fields retrieved from FY4B GIIRS observations during Typhoon Khanun (2023)

<p>This is the output of four-dimensional wind fields retrieved from FY4B intensified observations during Typhoon Khanun in 2023. Apart from regular quality flag indicating cloud contamination over each target FOV, the number of&nbsp;total cloud contaminated neighboring FOVs included in the calculation for each target is also given as a reference of potential bias of retrievals.</p>

opencc-by-4.0Dec 2023View details →
zenodo32/100

Magnetic field segments derived from JCMT/POL2 850 micrion polarization observations toward the Central Molecular Zone

<p>Catalogs of magnetic field segments derived from JCMT/POL2 850 micrion polarization observations toward the Central Molecular Zone (Lu et al. 2023, ApJ accepted, https://ui.adsabs.harvard.edu/abs/2023arXiv231201776L/abstract). The position angles are those of the magnetic field (i.e., polarization position angles rotated by 90 degree).</p><p>The files 'CLOUDNAME_cloud_tran.mrt' are field segments within the boundaries of the clouds (see Figure 2 in the reference paper). Here 'CLOUDNAME' is one of the eleven clouds defined in the paper, including: 50kms, brick, CO002, DRb, DRc, DRd, DRef, fsc, sgrc, stone, and strawsticks.</p><p>The files 'REGIONNAME_bin2_pdp3_deg.mrt' are field segments in the three large tiles, regardless of whether the segments are within a cloud or not (see the dashed magenta boxes in Figure 1 in the reference paper). Here 'REGIONNAME' is one of the three large tiles, i.e., dustridge, gc, and sgrcaround.</p><p>Please check the Byte-by-byte Description inside the files for the meanings of the columns in the tables.</p><p>Many thanks to August Muench for converting the files to machine readable tables.</p>

opencc-by-4.0Dec 2023View details →
zenodo32/100

Data supporting the publication "Observation of Landau levels and chiral edge states in photonic crystals through pseudomagnetic fields induced by synthetic strain"

<p>Data supporting the publication "Observation of Landau levels and chiral edge states in photonic crystals through pseudomagnetic fields induced by synthetic strain".</p> <p>Version 2: updated Figure 1c1</p>

opencc-by-4.0Nov 2023View details →
zenodo32/100

Quantifying the Different Sources of REE in the Deep Philippine Sea: Insights from Numerical Models and Field Observations

<p><span><span><span>The data within this database includes <span>station location information, sampling depth,</span> and <span>salinity data, temperature data, AOU data, as well as dissolved rare earth elements in both seawater and porewater.</span></span></span></span></p>

opencc-by-4.0Nov 2024View details →
zenodo32/100

Quantifying the differrent source of REE in the deep Philippine Sea: Insights from numerical model and field observations

<p><span>Supportive information includes position information, temperature, salinity, and rare earth concentrations in seawater and porewater; FVCOM5.0.1 is the source code for fvcom model.</span></p>

opencc-by-4.0Nov 2024View details →
zenodo32/100

Snow and sea ice observations during the field phase of MOSAiC

<p>Measurements of discrete and continous snow and sea ice measurements during the Multidisciplinary drifting Observatory for the Study of Arctic Climate (MOSAiC) expedition of the research vessel Polarstern in the Arctic Ocean from October 2019 to September 2020. The tables contain the observational dates from various methods as described in Nicolaus et al. (2021). The dates refer to Figure 3 in this publication.</p> <p>&nbsp;</p> <p>Reference:</p> <p>Nicolaus M, Perovich D, Spreen G, Granskog M, Albedyll L, Angelopoulos M, Anhaus P, Arndt S, Belter H, Bessonov V, Birnbaum G, Brauchle J, Calmer R, Cardellach E, Cheng B, Clemens-Sewall D, Dadic R, Damm E, Boer G, Demir O, Dethloff K, Divine D, Fong A, Fons S, Frey M, Fuchs N, Gabarr&oacute; C, Gerland S, Goessling H, Gradinger R, Haapala J, Haas C, Hamilton J, Hannula H-R, Hendricks S, Herber A, Heuz&eacute; C, Hoppmann M, H&oslash;yland K, Huntemann M, Hutchings J, Hwang B, Itkin P, Jacobi H-W, Jaggi M, Jutila A, Kaleschke L, Katlein C, Kolabutin N, Krampe D, Kristensen S, Krumpen T, Kurtz N, Lampert A, Lange B, Lei R, Light B, Linhardt F, Liston G, Loose B, Macfarlane A, Mahmud M, Matero I, Maus S, Morgenstern A, Naderpour R, Nandan V, Niubom A, Oggier M, Oppelt N, P&auml;tzold F, Perron C, Petrovsky T, Pirazzini R, Polashenski C, Rabe B, Raphael I, Regnery J, Rex M, Ricker R, Riemann-Campe K, Rinke A, Rohde J, Salganik E, Scharien R, Schiller M, Schneebeli M, Semmling M, Shimanchuk E, Shupe M, Smith M, Smolyanitsky V, Sokolov V, Stanton T, Stroeve J, Thielke L, Timofeeva A, Tonboe R, Tavri A, Tsamados M, Wagner D, Watkins D, Webster M, Wendisch M. 2021. Overview of the MOSAiC expedition &ndash; Snow and sea ice. Elementa Science of the Anthropocene 9. doi:10.1525/elementa.2021.000046.</p> <p>&nbsp;</p> <p>&nbsp;</p>

opencc-by-4.0Jan 2022View details →
zenodo32/100

FIGURE. Puccinia klugkistiana on Ligustrum obtusifolium (A–F, N, O, P) and Cleistogenes hackelii (G–N). A. Plant hedges producing spermogonia and aecia in the field. B. Spermogonia on the upper leaf surface. C. Vertical section of an aecium surrounded with peridia. D. Aecia on the lower leaf surface. E. Vertical section of a spermogonium. F. Aeciospores. G. Uredinia on the leaf surface. H. Vertical section of a uredinium. I. Urediniospores. J, K. Telia on the leaf surface. L. Teliospores. M. Urediniospore observed under SEM. N. Vertical section of an uredinium observed under SEM. O. Aecium observed under SEM. P. Aeciospores with various sizes of verrucae on the surface observed under SEM. Scale bars: C = 100 μm, E, F = 20 μm, H, I = 30 μm, M = 5 μm, P = 10 μm, H, L, O = 40 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China

FIGURE. Puccinia klugkistiana on Ligustrum obtusifolium (A–F, N, O, P) and Cleistogenes hackelii (G–N). A. Plant hedges producing spermogonia and aecia in the field. B. Spermogonia on the upper leaf surface. C. Vertical section of an aecium surrounded with peridia. D. Aecia on the lower leaf surface. E. Vertical section of a spermogonium. F. Aeciospores. G. Uredinia on the leaf surface. H. Vertical section of a uredinium. I. Urediniospores. J, K. Telia on the leaf surface. L. Teliospores. M. Urediniospore observed under SEM. N. Vertical section of an uredinium observed under SEM. O. Aecium observed under SEM. P. Aeciospores with various sizes of verrucae on the surface observed under SEM. Scale bars: C = 100 μm, E, F = 20 μm, H, I = 30 μm, M = 5 μm, P = 10 μm, H, L, O = 40 μm.

opennotspecifiedFeb 2022View details →
zenodo32/100

FIGURE. Puccinia cerinthes-agropyrina on Clematis sp. A. Plants producing spermogonia and aecia on the leaves and stems in the field. B. Spermogonia and aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Aecia on the stem. E. Aeciospores. F. Aeciospore with verrucose surface observed under SEM. G. Aecium observed under SEM. H. Vertical section of an aecium. Scale bars: C = 20 μm, E, H = 30 μm, F = 5 μm, G = 100 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China

FIGURE. Puccinia cerinthes-agropyrina on Clematis sp. A. Plants producing spermogonia and aecia on the leaves and stems in the field. B. Spermogonia and aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Aecia on the stem. E. Aeciospores. F. Aeciospore with verrucose surface observed under SEM. G. Aecium observed under SEM. H. Vertical section of an aecium. Scale bars: C = 20 μm, E, H = 30 μm, F = 5 μm, G = 100 μm.

opennotspecifiedFeb 2022View details →
zenodo32/100

FIGURE. Puccinia miscanthi on Plantago asiatica (A–H) and Miscanthus sacchariflorus (I–Q). A. Plants producing spermogonia and aecia on the leaf surface. B. Spermogonia on the leaf surface. C. Aecia on lower leaf surface. D. Vertical section of a spermogonium. E. Aeciospores. F. Vertical section of an aecium observed under SEM. G. Aeciospores with verrucose surface observed by SEM. H. Vertical section of an aecium surrounded by peridia. I. Plants producing uredinia on the leaf surface in the field. J. Vertical section of an uredinium with paraphyses. K. Urediniospores. L. Uredinia on the leaf surface. M. Uredinium on the leaf surface observed under SEM. N. Urediniospore with echinulate surface observed under SEM. O. Telia on the leaf surface. P. Vertical section of a telium. Q. Teliospores. Scale bars: D, E, K = 20 μm, F, H, M = 100 μm, G = 5 μm, J, P, Q = 30 μm, N = 10 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China

FIGURE. Puccinia miscanthi on Plantago asiatica (A–H) and Miscanthus sacchariflorus (I–Q). A. Plants producing spermogonia and aecia on the leaf surface. B. Spermogonia on the leaf surface. C. Aecia on lower leaf surface. D. Vertical section of a spermogonium. E. Aeciospores. F. Vertical section of an aecium observed under SEM. G. Aeciospores with verrucose surface observed by SEM. H. Vertical section of an aecium surrounded by peridia. I. Plants producing uredinia on the leaf surface in the field. J. Vertical section of an uredinium with paraphyses. K. Urediniospores. L. Uredinia on the leaf surface. M. Uredinium on the leaf surface observed under SEM. N. Urediniospore with echinulate surface observed under SEM. O. Telia on the leaf surface. P. Vertical section of a telium. Q. Teliospores. Scale bars: D, E, K = 20 μm, F, H, M = 100 μm, G = 5 μm, J, P, Q = 30 μm, N = 10 μm.

opennotspecifiedFeb 2022View details →
zenodo32/100

FIGURE. Puccinia achnatheri-sibirici on Berberis amurensis (A–H) and Stipa baicalensis (I–M). A. Plants producing spermogonia and aecia on leaf surface in the field. B. Aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Spermogonia on the upper leaf surface. E. Vertical section of an aecium surrounded with peridia. F. Aeciospores. G. Aecium observed under SEM. H. Aeciospore with verrucose surface observed under SEM. I, J. Telia on the leaf surface. K. Urediniospores. L. Teliospores. M. Vertical section of a telium. Scale bars: C, F, L, M = 20 μm, E = 50 μm, G = 100 μm, H = 5 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China

FIGURE. Puccinia achnatheri-sibirici on Berberis amurensis (A–H) and Stipa baicalensis (I–M). A. Plants producing spermogonia and aecia on leaf surface in the field. B. Aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Spermogonia on the upper leaf surface. E. Vertical section of an aecium surrounded with peridia. F. Aeciospores. G. Aecium observed under SEM. H. Aeciospore with verrucose surface observed under SEM. I, J. Telia on the leaf surface. K. Urediniospores. L. Teliospores. M. Vertical section of a telium. Scale bars: C, F, L, M = 20 μm, E = 50 μm, G = 100 μm, H = 5 μm.

opennotspecifiedFeb 2022View details →
zenodo32/100

FIGURE. Puccinia digitaticoronata on Rhamuns sp. (A–C, F, J) and species of Poaceae (D, E, G–I, K, L). A. Vertical section of spermogonia. B. Vertical section of an aecium surrounded with peridia. C. Aeciospores. D. Plants producing uredinia on the leaf surface in the field. E. Urediniospores. F. Aecium observed under SEM. G. Uredinia on the leaf surface. H. Telia on the leaf surface. I. Vertical section of an uredinium. J. Aeciospore with verrucose surface observed under SEM. K. Teliospores. L. Vertical section of a telium. Scale bars: A, I = 40 μm, B = 60 μm, C, E, K, L= 20 μm, J, F = 80 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China

FIGURE. Puccinia digitaticoronata on Rhamuns sp. (A–C, F, J) and species of Poaceae (D, E, G–I, K, L). A. Vertical section of spermogonia. B. Vertical section of an aecium surrounded with peridia. C. Aeciospores. D. Plants producing uredinia on the leaf surface in the field. E. Urediniospores. F. Aecium observed under SEM. G. Uredinia on the leaf surface. H. Telia on the leaf surface. I. Vertical section of an uredinium. J. Aeciospore with verrucose surface observed under SEM. K. Teliospores. L. Vertical section of a telium. Scale bars: A, I = 40 μm, B = 60 μm, C, E, K, L= 20 μm, J, F = 80 μm.

opennotspecifiedFeb 2022View details →
zenodo32/100

FIGURE. Puccinia ramificaticoronata on Rhamnus ussuriensis (A–G) and species of Poaceae (H–K). A. Plants producing spermogonia and aecia on the leaf surface in the field. B. Aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Vertical section of an aecium surrounded with peridia. E. Aecium observed under SEM. F. Aeciospore with verrucose surface observed under SEM. G. Aeciospores. H. Vertical section of an uredinium. I. Urediniospores. J. Telia on the leaf surface. K. Vertical section of a telium. Scale bars: C, H = 40 μm, D, G = 30 μm, E = 80 μm, F = 5 μm, I, K =20 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China

FIGURE. Puccinia ramificaticoronata on Rhamnus ussuriensis (A–G) and species of Poaceae (H–K). A. Plants producing spermogonia and aecia on the leaf surface in the field. B. Aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Vertical section of an aecium surrounded with peridia. E. Aecium observed under SEM. F. Aeciospore with verrucose surface observed under SEM. G. Aeciospores. H. Vertical section of an uredinium. I. Urediniospores. J. Telia on the leaf surface. K. Vertical section of a telium. Scale bars: C, H = 40 μm, D, G = 30 μm, E = 80 μm, F = 5 μm, I, K =20 μm.

opennotspecifiedFeb 2022View details →
zenodo32/100

Field Observations (2018; 2021), Grain-Size Measurements, and Componentry of the Cleetwood Eruption of Mount Mazama

<p>This dataset accompanies the paper &quot;Using Eruption Source Parameters and High-Resolution Grain-Size Distributions of the 7.7 ka Cleetwood Eruption of Mount Mazama to Reveal Primary and Secondary Eruptive Processes&quot;.</p>

opencc-by-4.0Jan 2022View details →
zenodo32/100

Observations of natural positive leader featuring stepwise propagation in low frequency magnetic field

<p>The high-speed video, B-field and E-field data of two cases in the manuscript&nbsp;is presented here.</p>

opencc-by-4.0Oct 2022View details →
zenodo32/100

Figs 9 – 16 in The Southeast Asian Pholcus halabala species group (Araneae, Pholcidae): new data from field observations and ultrastructure

Figs 9 – 16. Live specimens, Pholcus sabah Huber, 2011 (9 – 10), Ph. lintang Huber, sp. nov. (11 – 12) and Ph. erawan Huber, 2011 (13 – 16). 9. ♂ from Poring, Sabah. 10. ♂ from Sepilok, Sabah. 11 – 12. ♂ and ♀ from Bako, Sarawak. 13. ♂ from Khao Nan, Thailand. 14. Male from Erawan, Thailand. 15 – 16. ♂ and ♀ with egg-sac from Gunung Jerai, Malaysia.

opennotspecifiedDec 2016View details →
zenodo32/100

Figs 1 – 8 in The Southeast Asian Pholcus halabala species group (Araneae, Pholcidae): new data from field observations and ultrastructure

Figs 1 – 8. Live specimens, Pholcus halabala Huber, 2011 (1 – 6) and Ph. ubin Huber, sp. nov. (7 – 8). 1. ♂ from MacRitchie, Singapore. 2. ♂ from Gunung Jerai, Malaysia. 3. ♀ with egg-sac from Gunung Liang, Malaysia. 4. Juvenile in web with silk tufts, Upper Selatar, Singapore. 5. ♀ with egg-sac from Hala Bala, Thailand. 6. ♀ with egg-sac from Ulu Dong, Malaysia. 7 – 8. ♂ and ♀ from Pulau Ubin, Singapore.

opennotspecifiedDec 2016View details →
zenodo32/100

Demo data and model weights for "Direct Observation of Atmospheric Turbulence with a Video-rate Wide-field Wavefront Sensor"

<p>Demo data and model weights for "Direct Observation of Atmospheric Turbulence with a Video-rate Wide-field Wavefront Sensor". For usage, please refer to https://github.com/freemercury/Widefield_wavefront_sensor.</p>

opencc-by-4.0Jan 2024View details →
zenodo32/100

Quantifying the large-scale electrification equilibrium effects in dust storms using field observations at Qingtu Lake Observatory

<p>The measured divergence of the electric field, PM<sub>10</sub> concentration, ambient temperature and relative&nbsp;humidity time series during dust storms (at Qingtu Lake observatory) are given in these datasets.</p>

opencc-by-nc-nd-4.0Mar 2018View details →

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Allen Brain Atlas

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Last verified 2026-04-30Open record

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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