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zenodo40/100

Fig. 1 in The ectoparasitoid Scleroderma guani (Hymenoptera: Bethylidae) uses innate and learned chemical cues to locate its host, larvae of the pine sawyer Monochamus alternatus (Coleoptera: Cerambycidae)

Fig. 1. Numbers of naïve Scleroderma guani females responding to various odor sources presented in pairs in a Y-tube olfactometer. W = wood diet, WF = mixture of wood diet and Monochamus alternatus frass, S = sawdust from M. alternatus galleries, L = 10 M. alternatus 3rd instars, and A = clean air. *: P ≤ 0.05, **: P ≤ 0.01. Numbers indicate numbers of wasps responding.

opencc-by-4.0Dec 2015View details →
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Fig. 4 in The ectoparasitoid Scleroderma guani (Hymenoptera: Bethylidae) uses innate and learned chemical cues to locate its host, larvae of the pine sawyer Monochamus alternatus (Coleoptera: Cerambycidae)

Fig. 4. Numbers of Scleroderma guani females responding to the odor of Monochamus alternatus 3rd instars (L) versus clean air (A) in a Y-tube olfactometer. Females were either naïve (N), previously exposed to gallery sawdust (S), or with previous exposure to the odor of M. alternatus larvae (L). *: P ≤ 0.05, **: P ≤ 0.01.

opencc-by-4.0Dec 2015View details →
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Fig. 3 in The ectoparasitoid Scleroderma guani (Hymenoptera: Bethylidae) uses innate and learned chemical cues to locate its host, larvae of the pine sawyer Monochamus alternatus (Coleoptera: Cerambycidae)

Fig. 3. Numbers of naïve Scleroderma guani females responding to the odor of 10 Monochamus alternatus 1st, 3rd, or 5th instars (L) versus clean air (A) in a Y-tube olfactometer. *: P ≤ 0.05, **: P ≤ 0.01.

opencc-by-4.0Dec 2015View details →
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Fig. 2 in The ectoparasitoid Scleroderma guani (Hymenoptera: Bethylidae) uses innate and learned chemical cues to locate its host, larvae of the pine sawyer Monochamus alternatus (Coleoptera: Cerambycidae)

Fig. 2. Relative proportions of organic compounds identified in headspace volatiles from Monochamus alternatus larvae and a mixture of wood diet, sawdust, and frass.

opencc-by-4.0Dec 2015View details →
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Figure 2. Blungun River, location where R in The burmese trout Raiamas guttatus (Day, 1870) (Cypriniformes: Cyprinidae) in South Sumatra revealed its southernmost record of its distributional range

Figure 2. Blungun River, location where R. guttatus found in South Sumatra Province (Photo: Muhammad Iqbal).

opencc-by-4.0Jan 2020View details →
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Рис. 1. МестопоΛожение НационаΛьного парка «СмоΛьный» в МорΑовии (A) (на основе карты в https://old.bigenc.ru/geography/text/5746181) и схема НационаΛьного парка «СмоΛьный», показывающая номера квартаΛов в Λесничествах (Б) (оригинаΛ). a, корΑон Обрезки; b, корΑон Мокров; c, санаторий «АΛатырь»; d, урочище «СеΛищинская чащоба» Fig. 1. The location of the Smolny National Park in Mordovia; Fig. 1А. (based on the map at https://old. bigenc.ru/geography/text/5746181) and the map of the Smolny National Park showing sector numbers in forest ranges; Fig. 1Б. (original). a, Obrezki ranger station; b, Mokrov ranger station; c, Alatyr health centre; d, the natural boundary of Selishchinskaya Chashchoba in Neuroptera and Raphidioptera of the Smolny National Park, Republic of Mordovia, Russia

Рис. 1. МестопоΛожение НационаΛьного парка «СмоΛьный» в МорΑовии (A) (на основе карты в https://old.bigenc.ru/geography/text/5746181) и схема НационаΛьного парка «СмоΛьный», показывающая номера квартаΛов в Λесничествах (Б) (оригинаΛ). a, корΑон Обрезки; b, корΑон Мокров; c, санаторий «АΛатырь»; d, урочище «СеΛищинская чащоба» Fig. 1. The location of the Smolny National Park in Mordovia; Fig. 1А. (based on the map at https://old. bigenc.ru/geography/text/5746181) and the map of the Smolny National Park showing sector numbers in forest ranges; Fig. 1Б. (original). a, Obrezki ranger station; b, Mokrov ranger station; c, Alatyr health centre; d, the natural boundary of Selishchinskaya Chashchoba

opencc-by-4.0Dec 2023View details →
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Рис. 1. Географическое поΛожение Норского заповеΑника (А) и картосхема распоΛожения на его территории (Б) учетных пΛощаΑок с фитоценозами (L_1–L_7) на Αвух мониторинговых станциях (I–II). I — МаΛьцевская: L_1 — березняк с участием осины и Λиственницы рябинниковый вейниково-разнотравный; L_2 — осиново-беΛоберезовый рябинниковый вейниково-разнотравный Λес; L_3 — Λиственничник с участием березы пΛоскоΛистной осоково-вейниковый с разнотравьем; L_4 — беΛоберезово-Λиственничный с примесью осины роΑоΑенΑроновый бруснично-осоковый Λес; L_5 — закустаренный, преимущественно тавоΛгой ивоΛистной, разнотравно-вейниковый Λуг. II — Антоновская: L_6 — Λиственничник роΑоΑенΑроново-брусничный; L_7 — Λиственнично-беΛоберезовый с примесью пихты и еΛи закустаренный разнотравно-вейниковый Λес (коΑ типа местообитания соответствуют таковому в табΛ. 1 и 3 и на рис. 2) Fig. 1. Geographical location of the Norsky Nature Reserve (A) and the map (B) of registration sites with phytocenoses (L_1–L_7) at two monitoring stations (I–II). I — Maltsevskaya: L_1 — birch forest with aspen and larch, fieldfare reed-forb; L_2 — aspen-white-birch, fieldfare reed-forb forest; L_3 — larch forest with flat-leaved sedge-reed birch with forbs; L_4 — white-birch-larch with an admixture of aspen rhododendron lingonberry-sedge forest; L_5 — bushy, mostly meadowsweet, forb-reed grass meadow. II — Antonovskaya: L_6 — rhododendron-cowberry larch forest; L_7 — larch-white-birch with fir and spruce, shrubby forb-reed grass forest (the code of the habitat type corresponds to that in Tables 1 and 3 and in Fig. 2) in Structure and dynamics of the taxocenes of shrews in different habitats of the Norsky nature reserve

Рис. 1. Географическое поΛожение Норского заповеΑника (А) и картосхема распоΛожения на его территории (Б) учетных пΛощаΑок с фитоценозами (L_1–L_7) на Αвух мониторинговых станциях (I–II). I — МаΛьцевская: L_1 — березняк с участием осины и Λиственницы рябинниковый вейниково-разнотравный; L_2 — осиново-беΛоберезовый рябинниковый вейниково-разнотравный Λес; L_3 — Λиственничник с участием березы пΛоскоΛистной осоково-вейниковый с разнотравьем; L_4 — беΛоберезово-Λиственничный с примесью осины роΑоΑенΑроновый бруснично-осоковый Λес; L_5 — закустаренный, преимущественно тавоΛгой ивоΛистной, разнотравно-вейниковый Λуг. II — Антоновская: L_6 — Λиственничник роΑоΑенΑроново-брусничный; L_7 — Λиственнично-беΛоберезовый с примесью пихты и еΛи закустаренный разнотравно-вейниковый Λес (коΑ типа местообитания соответствуют таковому в табΛ. 1 и 3 и на рис. 2) Fig. 1. Geographical location of the Norsky Nature Reserve (A) and the map (B) of registration sites with phytocenoses (L_1–L_7) at two monitoring stations (I–II). I — Maltsevskaya: L_1 — birch forest with aspen and larch, fieldfare reed-forb; L_2 — aspen-white-birch, fieldfare reed-forb forest; L_3 — larch forest with flat-leaved sedge-reed birch with forbs; L_4 — white-birch-larch with an admixture of aspen rhododendron lingonberry-sedge forest; L_5 — bushy, mostly meadowsweet, forb-reed grass meadow. II — Antonovskaya: L_6 — rhododendron-cowberry larch forest; L_7 — larch-white-birch with fir and spruce, shrubby forb-reed grass forest (the code of the habitat type corresponds to that in Tables 1 and 3 and in Fig. 2)

opencc-by-4.0Dec 2023View details →
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Рис. 1. Карта-схема распоΛожения станций отбора проб в оз. Арейское в 2019–2020 гг. Fig. 1. Schematic map of the sampling station locations in the Areiskoye Lake in 2019–2020: 1 — N 50°59.8657ʹ, E 111°14.1410ʹ; 2 — N 50°59.8836ʹ, E 111°15.4172ʹ; 3 — N 50°58.7316ʹ, E 111°15.0106ʹ; 4 — N 50°58.7474ʹ, E 111°14.1384ʹ; 5 — N 50°59.0378ʹ, E 111°13.9848ʹ; 6 — N 50°59.3193ʹ, E 111°14.0639ʹ in Zooplankton of the Areiskoye Lake (Ingoda River basin, Trans-Baikal Territory)

Рис. 1. Карта-схема распоΛожения станций отбора проб в оз. Арейское в 2019–2020 гг. Fig. 1. Schematic map of the sampling station locations in the Areiskoye Lake in 2019–2020: 1 — N 50°59.8657ʹ, E 111°14.1410ʹ; 2 — N 50°59.8836ʹ, E 111°15.4172ʹ; 3 — N 50°58.7316ʹ, E 111°15.0106ʹ; 4 — N 50°58.7474ʹ, E 111°14.1384ʹ; 5 — N 50°59.0378ʹ, E 111°13.9848ʹ; 6 — N 50°59.3193ʹ, E 111°14.0639ʹ

opencc-by-4.0Dec 2021View details →
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Рис. 1. Схема распоΛожения станций отбора проб (сервис ЯнΔекс.Карты) Fig. 1. Location of the sampling stations (source: Yandex.Maps) in Morphometric characteristics of Black Sea mussels Mytilus galloprovincialis Lam. as biomarkers of the anthropogenic impact on the Black Sea coastal biocenoses in tourist destinations

Рис. 1. Схема распоΛожения станций отбора проб (сервис ЯнΔекс.Карты) Fig. 1. Location of the sampling stations (source: Yandex.Maps)

opencc-by-4.0Dec 2022View details →
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Рис. 1. Пункты сбора материаΛов в районе Ботчинского заповеΑника. Пункты сбора обозначены красными кружками, наибоΛее крупный из которых соответствует основному месту сбора — корΑону «ТепΛый КΛюч». Номера пунктов сбора соответствуют номерам в тексте при их описании. БΛизко распоΛоженные пункты сборов показаны оΑним симвоΛом Fig. 1. Points of collection of materials in the area of the Botchinsky Nature Reserve. Collection points are marked with red circles, the largest of which corresponds to the main collection point — the cordon "Teply Klyuch". The collection point numbers correspond to the numbers in the text when they are described. Closely located collection points are shown with one symbol in Fauna of the geometrid moths (Lepidoptera, Geometridae) of the eastern Sikhote-Alin in the area of the Botchinsky State Nature Reserve I: History of research and subfamilies Archiearinae, Ennominae, Desmobathrinae, and Geometrinae

Рис. 1. Пункты сбора материаΛов в районе Ботчинского заповеΑника. Пункты сбора обозначены красными кружками, наибоΛее крупный из которых соответствует основному месту сбора — корΑону «ТепΛый КΛюч». Номера пунктов сбора соответствуют номерам в тексте при их описании. БΛизко распоΛоженные пункты сборов показаны оΑним симвоΛом Fig. 1. Points of collection of materials in the area of the Botchinsky Nature Reserve. Collection points are marked with red circles, the largest of which corresponds to the main collection point — the cordon "Teply Klyuch". The collection point numbers correspond to the numbers in the text when they are described. Closely located collection points are shown with one symbol

opencc-by-4.0Dec 2022View details →
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Рис. 1. Карта РеспубΛики Саха (Якутия) с обозначением места распоΛожения археоΛогических памятников Àжампа, Кузнец I, II Àабан-Юрях, Буор-Хая I, II, III. Fig. 1. Map of the Republic of Sakha (Yakutia) indicating the location of the archaeological sites Jampa, Kuznets I, II Daban-Yuryakh, and Buor-Khaya I, II, III in New data on the Holocene vertebrate fauna of the Middle Lena and Aldan Rivers basins (Yakutia) based on the materials from archaeological sites Jampa, Kuznets I, II Daban-Yuryakh, and Buor-Khaya I, II, III

Рис. 1. Карта РеспубΛики Саха (Якутия) с обозначением места распоΛожения археоΛогических памятников Àжампа, Кузнец I, II Àабан-Юрях, Буор-Хая I, II, III. Fig. 1. Map of the Republic of Sakha (Yakutia) indicating the location of the archaeological sites Jampa, Kuznets I, II Daban-Yuryakh, and Buor-Khaya I, II, III

opencc-by-4.0Dec 2023View details →
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Рис. 1. Карта-схема заповеΔника «БоΛьшехехцирский» и распоΛожение фотоΛовушек на территории. ЛегенΔа: спΛошная черная Λиния — границы заповеΔника; пунктирная Λиния — границы заказника «Хехцирский»; красный кружок — место установки фотоΛовушки Fig. 1. The map of the Bolshekhekhtsirsky State Nature Reserve and the location of camera traps. Legend: solid black line boundaries of the reserve; dotted line — bou in New data on the mammalian fauna of the Bolshekhekhtsirsky Nature Reserve

Рис. 1. Карта-схема заповеΔника «БоΛьшехехцирский» и распоΛожение фотоΛовушек на территории. ЛегенΔа: спΛошная черная Λиния — границы заповеΔника; пунктирная Λиния — границы заказника «Хехцирский»; красный кружок — место установки фотоΛовушки Fig. 1. The map of the Bolshekhekhtsirsky State Nature Reserve and the location of camera traps. Legend: solid black line boundaries of the reserve; dotted line — bou

opencc-by-4.0Sep 2024View details →
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BRAIN Journal-Performance Analysis of Unsupervised Clustering Methods for Brain Tumor Segmentation-Figure 3:(a) Input MR Image (b) Enhanced Image (c) Segmented Tumor (d) Located brain tumor

<p>Figure 3 shows three different original brain MR images, contrast enhancement of the<br> images, segmented images using K-means algorithm and finally located tumor. Fig 1.4 shows the<br> performance of the unsupervised clustering methods with the no. of tumor pixels and execution<br> time to locate the brain tumor.</p>

opencc-by-4.0Oct 2013View details →
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Datasets for explanation of physical interpretation for locational marginal prices

<p>Matlab/Octave functions that extract the&nbsp;following information</p> <p>Initial:&nbsp;</p> <p>[rus] Исходная схема IEEE-30 в формате MATPOWER [1]. По сравнению с case30 cкорректированы ограничения на переток мощности в линиях.</p> <p>[eng] Initial case IEEE-30 in MATPOWER format [1]. With comparison with case30 line rates were corrected</p> <p>Base:</p> <p>[rus] Результаты оптимизации в MATPOWER со следующими настройками:</p> <p>[eng] Optimization results in MATPOWER with following options:</p> <p>mpopt = mpoption(&#39;opf.ac.solver&#39;,&#39;MIPS&#39;,&#39;out.all&#39;, outall,...<br> &nbsp; &nbsp; &nbsp; &nbsp; &#39;opf.flow_lim&#39;,&#39;P&#39;);<br> &nbsp; &nbsp;&nbsp;<br> [mpc, exitflagac]=runopf(mpc,mpopt);</p> <p>coeffs:</p> <p>[rus] Коэффициенты режимной компоненты, компонент, обусловленных сетевыми ограничениями и ограничениями по напряжению. Отклики в задачах расчета установившегося режима и оптимизации установившегося режима.</p> <p>[eng] LMP weights&nbsp;of power flow, transmission constraints, and voltage constraints components. Derivatives in power flow and optimal power flow problems.</p> <p>Model_1204:</p> <p>[rus] Результаты оптимизации в MATPOWER с заменой заявки второго генератора на 1204</p> <p>[eng] Optimization results in MATPOWER with new offer price 1204 for second generator.</p> <p>Model_775:</p> <p>[rus] Результаты оптимизации в MATPOWER с заменой заявки генератора 27 на 775</p> <p>[eng] Optimization results in MATPOWER with new offer price 775 for generator 27.</p>

opencc-by-4.0Aug 2016View details →
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Early Buddhist rock-cut monasteries of the Western Ghats: Locations

<p>csv files containing locations of early Buddhist rock-cut monasteries in the Western Ghats and Konkan coast regions of India.&nbsp;Only the caves cut between&nbsp;second century BCE and the early fifth century CE are included: from the earliest period of cutting up until just prior to the introduction of the Buddha image. Data included&nbsp;are the long/lat, height in meters, name and group of monasteries so the file is suitable for importing into a GIS.</p> <p>A second csv file contains locations of the Early Historic settlements located close to the rock-cut monasteries. The settlements are located on the Deccan plateau, the eastern edge of the Western Ghats and the Konkan coast. Data included are&nbsp;long/lat, height in meters, name and region of the settlement so the file is suitable for importing into a GIS</p>

opencc-by-nc-4.0Sep 2017View details →
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Is the Gaze Behavior During Stair Walking Affected by Pregnancy?-Figure 2. Eye-tracking glasses image showing the gaze location during stair ascent

<p>At each data collection, participants walked the same U-shaped staircase descending a 22- treads (riser: 0.16 m, run: 0.33 m, and width: 1.15 m), making a short U-turn downstairs and ascending back the staircase, one tread at a time (Figure 1). Only the data of stair walking were taken for further analysis. The staircase was equipped with a handrail on one side but none of the participants used it. To monitor the gaze a SensoMotoric Instruments (SMI) eye-tracking glasses (ETG) system (SMI, Inc.) at a frequency of 60 frames per second and 1280x960 pixel picture was used. Calibration was performed using a matrix of 3 points placed on a board in different highs and different horizontal placement. Mean gaze vectors of the right eye (x, y, z) for stair descent and stair ascent were obtained for each data collection session. Gaze vector x, y, z starts at the eye and heads off in mediolateral, up and down, and anterior-posterior direction, respectively (Figure 2) (Haffegee, Alexandrov, &amp; Barrow, 2007; Scheel, &amp; Staadt, 2015).</p>

opencc-by-4.0Apr 2018View details →
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Individual life histories Sanderlings Calidris alba at six non-breeding locations along East-Atlantic flyway

<p>The data file contains individual encounter histories of 1,358 adult Sanderlings (<em>Calidris alba</em>) that winter in six different areas, England, France, Portugal, Mauritania, Ghana or Namibia and were observed between 2007-2013 in the main study site, their winter area (between 1 November &ndash; 1 March) and/or outside the main study site, during the interval between encounter occasions at the main study sites (during migration in Europe between 15 March and 15 October and at least 2 latitudinal degrees north of the median winter latitude). Encounter histories are coded as &lsquo;LDLD&rsquo; (&ldquo;Live, dead, live, dead&rdquo;), where L codes for life encounters in the main study site (0: not observed, 1: observed) and D for (life or dead) encounters outside the main study sites (0: not observed, 1: observed dead, 2: observed alive). The encounter history of an individual starts with the first observation in its wintering region in the year after marking. Winter regions are indicated by the last six columns of the data file which are separated by spaces, where a 1 in the first column indicates England, the second column indicates France, the third Portugal, the fourth Mauritania, the fifth Ghana and the sixth Namibia. Further details can be found in the methods section in the manuscript.</p>

opencc-by-4.0May 2018View details →
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Google Location Criteria ID (Geotargets) to Geonames mapping

<p>This deposit contains the RDF version of the Google Location Criteria ID dataset (named Geotargets, available at https://goo.gl/cZXkiJ - last access: 2018-06-29) and a subset of the Geonames XML dump.</p> <p>All datasets contain only locations located in Spain or Germany.</p> <p>There are also mapping files that contain <em>sameAs</em> links between instances described in these datasets. Links have been created with a custom SILK pipeline.</p>

opencc-by-4.0Jun 2018View details →
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Locator Lommel Datasets

<p>These files contain the results of applying the techniques developed during the <a href="https://www.flandersmake.be/en/projects/locator">Locator project</a> on datasets recorded at our Lommel site.</p> <p>Raw measurement data including UWB ranges and channel diagnostics, encoder data, IMU data as well as vehicle and sensor fusion configuration can be made available on request.</p> <p>Please contact <a href="mailto:erik.hostens@flandersmake.be">Erik Hostens</a> or <a href="mailto:nathan.dwek@flandersmake.be">Nathan Dwek</a>.</p>

opencc-by-4.0Mar 2019View details →
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Conductivity Temperature and Depth Data Fixed Locations Alfacs Bay

<p>A dye tracing study was conducted in Alfacs Bay, Catalonia in March 2019. Star Oddi CTD sensors were attached to fixed points within Alfacs Bay to monitor water conditions throughout the study.</p> <p>Times are Greenwich Mean Time</p>

opencc-by-4.0May 2019View details →

ScienceDex guides

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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