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zenodo32/100

Bridging the Language Gap: An Empirical Study of Bindings for Open Source Machine Learning Libraries in Software Package Ecosystems

<p>Replication package for the paper "Bridging the Language Gap: An Empirical Study of Bindings for Open Source Machine Learning Libraries in Software Package Ecosystems "</p>

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

Embeddings_bridging

<p>A general word representation resource for bridging</p> <p>Related paper: Yufang Hou. 2018. A Deterministic Algorithm for Bridging Anaphora Resolution. In Proceedings of the 2018 Conference on Empirical Methods in Natural Language Processing, Brussels, Belgium, October 31&ndash;November 4, 2018</p> <p>&nbsp;</p> <p>&nbsp;</p> <p><br> &nbsp;</p>

opencc-by-4.0Aug 2018View details →
zenodo32/100

Рис. 13. ГнёзΑа скаΛьных гоΛубей Columba rupestris, основаниями которых сΛужиΛи старые гнёзΑа птиц этого виΑа. 1 — Δазовский район, мост через кΛюч ЗвёзΑочка, 25.05.2022, фото В.П. Шохрина; 2 — Октябрьский район, разваΛины в окрестностях сеΛа Чернятино, 23.04.2022, фото À.В. Коробова Fig. 13. Nests of hill pigeons Columba rupestris with old nests of the same species as foundations. 1 — Lazovsky District, bridge over Zvezdochka Spring, 25.05.2022. Photo by V.P. Shokhrin; 2 — Oktyabrsky District, ruins in the vicinity of the village of Chernyatino, 23.04.2022. Photo by D.V. Korobov in About breeding biology of the hill pigeon Columba rupestris in Primorsky Krai

Рис. 13. ГнёзΑа скаΛьных гоΛубей Columba rupestris, основаниями которых сΛужиΛи старые гнёзΑа птиц этого виΑа. 1 — Δазовский район, мост через кΛюч ЗвёзΑочка, 25.05.2022, фото В.П. Шохрина; 2 — Октябрьский район, разваΛины в окрестностях сеΛа Чернятино, 23.04.2022, фото À.В. Коробова Fig. 13. Nests of hill pigeons Columba rupestris with old nests of the same species as foundations. 1 — Lazovsky District, bridge over Zvezdochka Spring, 25.05.2022. Photo by V.P. Shokhrin; 2 — Oktyabrsky District, ruins in the vicinity of the village of Chernyatino, 23.04.2022. Photo by D.V. Korobov

opennotspecifiedMar 2023View details →
zenodo32/100

Рис. 10. ГнёзΑа с кΛаΑками и птенцами скаΛьных гоΛубей Columba rupestris. 1 — Пограничный район, автомобиΛьный мост через реку СтуΑёная, 05.07.2012; 2–5 —Уссурийский гороΑской округ, окрестности сеΛа НовоникоΛьск, 27.03.2022; 6, 7 — Октябрьский район, мост через реку Крестьянка, 23.04.2022; 8, 9 — Уссурийский гороΑской округ, окрестности сеΛа НовоникоΛьск, 03.05.2022. Фото À. В. Коробова Fig. 10. Nests with clutches and chicks of hill pigeons Columba rupestris. 1 — Pogranichny District, road bridge over the Studenaya River, 05.07.2012; 2-5 — Ussuriysky City District, vicinity of the village of Novonikolsk, 27.03.2022; 6, 7 — Oktyabrsky District, bridge over the Krestyanka River, 23.04.2022; 8, 9 — Ussuriysky City District, vicinity of the village of Novonikolsk, 03.05.2022. Photo by D. V. Korobov СΛеΑует поΑчеркнуть, что имеет место на Барановском вуΛкане в низовье реки выраженная тенΑенция оставΛения скаΛь- РазΑоΛьная, скаΛистых берегах Японскоными гоΛубями многих скаΛьных посеΛе- го моря в окрестностях ВΛаΑивостока, гΑе ний и формирование таковых в усΛовиях эти птицы обитаΛи в неΑаΛеком прошΛом гнезΑования в искусственных нишах. Так, (ШуΛьпин 1936; Панов 1973; наши Αанные). в настоящее время скаΛьные гоΛуби не МатериаΛом ΑΛя постройки гнезΑ гнезΑятся на массиве «ГоΛубиный Утёс» (рис. 10) сΛужат преимущественно тонкие бΛиз корейской границы, гΑе быΛи отме- сухие веточки (в наших сΛучаях, преимучены ранее (Панов 1973; Назаров, Шибаев щественно иΛьма Ulmus sp. и ивы Salix sp.) 1984; ПекΛо 2011; наши Αанные), а также и фрагменты сухих стебΛей травянистых in About breeding biology of the hill pigeon Columba rupestris in Primorsky Krai

Рис. 10. ГнёзΑа с кΛаΑками и птенцами скаΛьных гоΛубей Columba rupestris. 1 — Пограничный район, автомобиΛьный мост через реку СтуΑёная, 05.07.2012; 2–5 —Уссурийский гороΑской округ, окрестности сеΛа НовоникоΛьск, 27.03.2022; 6, 7 — Октябрьский район, мост через реку Крестьянка, 23.04.2022; 8, 9 — Уссурийский гороΑской округ, окрестности сеΛа НовоникоΛьск, 03.05.2022. Фото À. В. Коробова Fig. 10. Nests with clutches and chicks of hill pigeons Columba rupestris. 1 — Pogranichny District, road bridge over the Studenaya River, 05.07.2012; 2-5 — Ussuriysky City District, vicinity of the village of Novonikolsk, 27.03.2022; 6, 7 — Oktyabrsky District, bridge over the Krestyanka River, 23.04.2022; 8, 9 — Ussuriysky City District, vicinity of the village of Novonikolsk, 03.05.2022. Photo by D. V. Korobov СΛеΑует поΑчеркнуть, что имеет место на Барановском вуΛкане в низовье реки выраженная тенΑенция оставΛения скаΛь- РазΑоΛьная, скаΛистых берегах Японскоными гоΛубями многих скаΛьных посеΛе- го моря в окрестностях ВΛаΑивостока, гΑе ний и формирование таковых в усΛовиях эти птицы обитаΛи в неΑаΛеком прошΛом гнезΑования в искусственных нишах. Так, (ШуΛьпин 1936; Панов 1973; наши Αанные). в настоящее время скаΛьные гоΛуби не МатериаΛом ΑΛя постройки гнезΑ гнезΑятся на массиве «ГоΛубиный Утёс» (рис. 10) сΛужат преимущественно тонкие бΛиз корейской границы, гΑе быΛи отме- сухие веточки (в наших сΛучаях, преимучены ранее (Панов 1973; Назаров, Шибаев щественно иΛьма Ulmus sp. и ивы Salix sp.) 1984; ПекΛо 2011; наши Αанные), а также и фрагменты сухих стебΛей травянистых

opennotspecifiedMar 2023View details →
zenodo32/100

Рис. 9. Варианты размещения гнёзΑ скаΛьных гоΛубей Columba rupestris в нишах раз- Λичных строений. 1 — Δазовский район, автомобиΛьный мост через кΛюч ЗвёзΑочка, 25.05.2022, фото В. П. Шохрина; 2 — Уссурийский гороΑской округ, окрестности сеΛа НовоникоΛьск, заброшенный животновоΑческий компΛекс, 27.03.2022; 3 — Октябрьский район, окрестности сеΛа Чернятино, заброшенное зΑание, 23.04.2022; 4 — Октябрьский район, окрестности сеΛа Покровка, заброшенное зΑание 17.05.2022; 5 — там же, 17.05.2022; 6 — там же, 17.05.2022. Фото À. В. Коробова Fig. 9. Possible locations of nests of hill pigeons Columba rupestris in the niches of buildings. 1 — Lazovsky District, a road bridge over Zvezdochka Spring, 25.05.2022. Photo by V. P. Shokhrin; 2 — Ussuriysky City District, vicinity of the village of Novonikolsk, abandoned livestock facility, 27.03.2022; 3 — Oktyabrsky District, vicinity of the village of Chernyatino, abandoned building, 23.04.2022; 4 — Oktyabrsky District, vicinity of the village of Pokrovka, abandoned building, 17.05.2022; 5 — in the same place, 17.05.2022; 6 — in the same place, 17.05.2022. Photo by D. V. Korobov in About breeding biology of the hill pigeon Columba rupestris in Primorsky Krai

Рис. 9. Варианты размещения гнёзΑ скаΛьных гоΛубей Columba rupestris в нишах раз- Λичных строений. 1 — Δазовский район, автомобиΛьный мост через кΛюч ЗвёзΑочка, 25.05.2022, фото В. П. Шохрина; 2 — Уссурийский гороΑской округ, окрестности сеΛа НовоникоΛьск, заброшенный животновоΑческий компΛекс, 27.03.2022; 3 — Октябрьский район, окрестности сеΛа Чернятино, заброшенное зΑание, 23.04.2022; 4 — Октябрьский район, окрестности сеΛа Покровка, заброшенное зΑание 17.05.2022; 5 — там же, 17.05.2022; 6 — там же, 17.05.2022. Фото À. В. Коробова Fig. 9. Possible locations of nests of hill pigeons Columba rupestris in the niches of buildings. 1 — Lazovsky District, a road bridge over Zvezdochka Spring, 25.05.2022. Photo by V. P. Shokhrin; 2 — Ussuriysky City District, vicinity of the village of Novonikolsk, abandoned livestock facility, 27.03.2022; 3 — Oktyabrsky District, vicinity of the village of Chernyatino, abandoned building, 23.04.2022; 4 — Oktyabrsky District, vicinity of the village of Pokrovka, abandoned building, 17.05.2022; 5 — in the same place, 17.05.2022; 6 — in the same place, 17.05.2022. Photo by D. V. Korobov

opennotspecifiedMar 2023View details →
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Рис. 5. АвтомобиΛьный мост, на конструкциях которого гнезΑятся скаΛьные гоΛуби Columba rupestris. Октябрьский район, окрестности сеΛа Покровка, 23.04.2022. Фото À. В. Коробова Fig. 5. A road bridge with nests of hill pigeons Columba rupestris on its structures. Oktyabrsky District, vicinity of the village of Pokrovka, 23.04.2022. Photo by D. V. Korobov in About breeding biology of the hill pigeon Columba rupestris in Primorsky Krai

Рис. 5. АвтомобиΛьный мост, на конструкциях которого гнезΑятся скаΛьные гоΛуби Columba rupestris. Октябрьский район, окрестности сеΛа Покровка, 23.04.2022. Фото À. В. Коробова Fig. 5. A road bridge with nests of hill pigeons Columba rupestris on its structures. Oktyabrsky District, vicinity of the village of Pokrovka, 23.04.2022. Photo by D. V. Korobov

opennotspecifiedMar 2023View details →
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Рис. 11. ВыΛупΛение в гнёзΑах скаΛьных гоΛубей Columba rupestris. Уссурийский гороΑской округ, окрестности сеΛа НовоникоΛьск. 1–3 — 27.03.2022; 4 — 03.05.2022. Фото À. В. Коробова Fig. 11. Hatching in the nests of hill pigeons Columba rupestris. Ussuriysky City District, vicinity of the village of Novonikolsk. 1–3 — 27.03.2022; 4 — 03.05.2022. Photo by D. V. Korobov растений (нереΑко жестких, в частности, ΑопоΛнитеΛьно испоΛьзоваΛи сухие Λистья, поΛыни Artemisia sp.). Часто в гнезΑах при- пропиΛеновые нити, кусочки поΛиэтиΛена, сутствуют перья (преимущественно махо- а 3 мая 2022 гоΑа в окрестностях сеΛа Новые) скаΛьных, реже сизых гоΛубей и Αру- воникоΛьск быΛо найΑено гнезΑо, основу гих птиц. В некоторых Αругих сΛучаях в которого составΛяΛи обгоревшие кусочки качестве строитеΛьного материаΛа гоΛуби корΑа автомобиΛьного коΛеса, сожженного Рис. 12. ГнёзΑа скаΛьных гоΛубей Columba rupestris. 1 — с оперенными птенцами, Пограничный район, мост через реку СтуΑёная, 12.07.2007, фото À.В. Коробова; 2 — посΛе выΛета птенцов, Δазовский район, мост через кΛюч ЗвёзΑочка, 25.05.2022, фото В. П. Шохрина Fig. 12. Nests of hill pigeons Columba rupestris. 1 — with feathered chicks, Pogranichny District, bridge over the Studenaya River, 12.07.2007. Photo by D.V. Korobov; 2 — after the chicks have flown out, Lazovsky District, bridge over Zvezdochka Spring, 25.05.2022. Photo by V. P. Shokhrin in About breeding biology of the hill pigeon Columba rupestris in Primorsky Krai

Рис. 11. ВыΛупΛение в гнёзΑах скаΛьных гоΛубей Columba rupestris. Уссурийский гороΑской округ, окрестности сеΛа НовоникоΛьск. 1–3 — 27.03.2022; 4 — 03.05.2022. Фото À. В. Коробова Fig. 11. Hatching in the nests of hill pigeons Columba rupestris. Ussuriysky City District, vicinity of the village of Novonikolsk. 1–3 — 27.03.2022; 4 — 03.05.2022. Photo by D. V. Korobov растений (нереΑко жестких, в частности, ΑопоΛнитеΛьно испоΛьзоваΛи сухие Λистья, поΛыни Artemisia sp.). Часто в гнезΑах при- пропиΛеновые нити, кусочки поΛиэтиΛена, сутствуют перья (преимущественно махо- а 3 мая 2022 гоΑа в окрестностях сеΛа Новые) скаΛьных, реже сизых гоΛубей и Αру- воникоΛьск быΛо найΑено гнезΑо, основу гих птиц. В некоторых Αругих сΛучаях в которого составΛяΛи обгоревшие кусочки качестве строитеΛьного материаΛа гоΛуби корΑа автомобиΛьного коΛеса, сожженного Рис. 12. ГнёзΑа скаΛьных гоΛубей Columba rupestris. 1 — с оперенными птенцами, Пограничный район, мост через реку СтуΑёная, 12.07.2007, фото À.В. Коробова; 2 — посΛе выΛета птенцов, Δазовский район, мост через кΛюч ЗвёзΑочка, 25.05.2022, фото В. П. Шохрина Fig. 12. Nests of hill pigeons Columba rupestris. 1 — with feathered chicks, Pogranichny District, bridge over the Studenaya River, 12.07.2007. Photo by D.V. Korobov; 2 — after the chicks have flown out, Lazovsky District, bridge over Zvezdochka Spring, 25.05.2022. Photo by V. P. Shokhrin

opennotspecifiedMar 2023View details →
zenodo32/100

Online Appendix for the HICSS2025 Paper: Bridging Citizens and Public Sector Employees through an Open Employee-driven Innovation Process - A Design Science Research Study

<p>Online Appendix for the HICSS2025 Paper: Bridging Citizens and Public Sector Employees through an Open Employee-driven Innovation Process - A Design Science Research Study</p>

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

Data for "Bridging reading and mapping: The role of reading annotations in facilitatingfeedback while concept mapping"

<p>This data includes:</p> <ul> <li>Questionnaire for Problem formulation</li> <li>UTAUT questionnaire evaluating Concept&amp;Go</li> <li>SmartPLS model files for the UTAUT evaluation</li> </ul>

opencc-by-4.0Sep 2024View details →
dryad32/100

Gene-drive suppression of mosquito populations in large cages as a bridge between lab and field

<p>CRISPR-based gene-drives targeting the gene doublesex in the malaria vector Anopheles gambiae effectively suppressed the reproductive capability of mosquito populations reared in small laboratory cages. To bridge the gap between laboratory and the field, this gene-drive technology must be challenged with vector ecology. Here we report the suppressive activity of the gene-drive in age-structured An. gambiae populations in large indoor cages that permit complex feeding and reproductive behaviours. The gene-drive element spreads rapidly through the populations, fully supresses the population within one year and without selecting for resistance to the gene drive. Approximate Bayesian computation allowed retrospective inference of life-history parameters from the large cages and a more accurate prediction of gene-drive behaviour under more ecologically-relevant settings. Generating data to bridge laboratory and field studies for invasive technologies is challenging. Our study represents a paradigm for the stepwise and sound development of vector control tools based on gene-drive.</p>

opencc-zeroJun 2021View details →
dryad32/100

Island area, not isolation, drives taxonomic, phylogenetic and functional diversity of ants on land-bridge islands

<p><b>Aim:</b> To explore the impact of island area and isolation on multiple dimensions of ant biodiversity (taxonomic, phylogenetic, and functional diversity) and the underlying processes of community assembly on islands.</p> <p><b>Location:</b> Thousand Island Lake, Zhejiang, China, created by dam construction in 1959.</p> <p><b>Taxon:</b> Ants.</p> <p><b>Methods:</b> We sampled ants on 33 islands, built a species-level phylogenetic tree and measured five morphological traits of all species collected to estimate taxonomic, phylogenetic, and functional diversity. We used multiple linear regression models and null models to examine the relationships between diversity metrics and island variables (area and isolation).</p> <p><b>Results</b>: We recorded 97 ant species on the study islands. We verified positive diversity–area relationships for species richness, phylogenetic diversity, and functional diversity. However, although functional and phylogenetic community structure were indistinguishable from random communities, phylogenetic structure tended to be clustered, whereas functional structure tended to be over dispersed. Additionally, we found the structure of ant communities shifted from phylogenetic and functional clustering on smaller islands to phylogenetic and functional overdispersion on larger islands.</p> <p><b>Main conclusions:</b> Our results support the hypothesis that environmental filtering is the dominant process structuring ant communities on smaller islands, and that competitive exclusion becomes more important on larger islands. Thus, island area acts as an important filter even though ant community structure on the study islands was indistinguishable from random communities. Moreover, our results show that environmental filtering influences phylogenetic community structure of ants, whereas competitive exclusion influences functional community structure of ants. These findings highlight the need to examine both phylogenetic and functional diversity in order to understand the mechanisms that govern the assembly of natural communities on islands.</p>

opencc-zeroAug 2021View details →
zenodo32/100

FIG. 8 in The transverse apodeme bridge from the cephalothorax of Amphipoda (Crustacea) and its signi®cance for systematics

FIG. 8. Cephalothoraces, opened dorsally. (A) Parandani a boecki; (B) Cyllopus lucasi; (C) Vibilia antarctica; (D) Phrosina semilunata.

opennotspecifiedJan 2002View details →
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FIG. 11 in The transverse apodeme bridge from the cephalothorax of Amphipoda (Crustacea) and its signi®cance for systematics

FIG. 11. Hypothetical evolutionary relationships of the diOEerent morphological apodeme types of amphipods.

opennotspecifiedJan 2002View details →
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FIG. 6 in The transverse apodeme bridge from the cephalothorax of Amphipoda (Crustacea) and its signi®cance for systematics

FIG. 6. (A, B) Cephalothoraces, opened dorsally. These iphimediids have dentate transverse apodemes (AB) and elongate frontal processes (FP) attached to the anterior cephalothorax wall. (A) Maxilliphimedia longipes; (B) Iphimediella cyclogena.

opennotspecifiedJan 2002View details →
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FIG. 4 in The transverse apodeme bridge from the cephalothorax of Amphipoda (Crustacea) and its signi®cance for systematics

FIG. 4. (A, B) Cephalothoraces, opened dorsally, showing separate type of apodemes. (A) Liljeborgia sp.; (B) Ampithoe rubricata.

opennotspecifiedJan 2002View details →
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FIG. 2 in The transverse apodeme bridge from the cephalothorax of Amphipoda (Crustacea) and its signi®cance for systematics

FIG. 2. (A±D) Continuous series of transverse sections through the cephalothorax of Paraceradocus gibber from posterior to anterior, each section approx. 1 mm thick. (A) Section of the apodeme bridge (AB) showing the attachment of maxillulary musculature (Mx1Ad); (B) attachment of the hypopharynx adductors on the transverse apodeme bridge (HypAd); (C) frontal processes (Fp) of the apodeme complex with muscles attached to mandible (Md); (D) plane of mandibular molars.

opennotspecifiedJan 2002View details →
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FIG. 10 in The transverse apodeme bridge from the cephalothorax of Amphipoda (Crustacea) and its signi®cance for systematics

FIG. 10. (A) Paraceradocus gibber with a complete transverse apodeme bridge, seen in the dorsally opened cephalothorax; (B) apodeme bridge of Weyprechtia pinguis, posterodorsal aspect with the dentate type of apodeme; (C) transverse apodemes of Niphargus sp.

opennotspecifiedJan 2002View details →
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FIG. 9 in The transverse apodeme bridge from the cephalothorax of Amphipoda (Crustacea) and its signi®cance for systematics

FIG. 9. Phronima sedentaria. (A) Macerated cephalothorax capsule, frontal aspect; (B) detail of (A) showing the arrangement of frontal apodemes (Fa) and the apodeme bridge (AB).

opennotspecifiedJan 2002View details →
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Bridging Pre-trained Models and Downstream Tasks for Source Code Understanding

<p>Datasets for the paper &quot;Bridging Pre-trained Models and Downstream Tasks for Source Code Understanding&quot;</p>

opencc-by-4.0Sep 2021View details →
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Calibration data for reflection bridge using SR 844 lock-in amplifier

<p>Calibration data for reflection brigde using SR 844 lock-in amplifier</p>

opencc-by-4.0Sep 2021View 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