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80 results for “Crawling”
FIGURE 6. Fossil larva BUB 4436, specimen 3. A. Overview dorsal side. B in An overview of crawling water beetle larvae and a first possible record from 100-million-years-old Myanmar amber
FIGURE 6. Fossil larva BUB 4436, specimen 3. A. Overview dorsal side. B. Colour-marked version of B. C. Ventral side. D. Close-up on anterior region in ventral view. E. Close-up on head. F. Close-up on very terminal end. Abbreviations: ad = abdomen; at = antenna; hc = head capsule; ms = mesothorax; mt = metathorax; pt = prothorax; te = trunk end.
FIGURE 1 in An overview of crawling water beetle larvae and a first possible record from 100-million-years-old Myanmar amber
FIGURE 1. Simplified drawings of larvae of Haliplus and Brychius, stage 3 larvae or larvae of unknown stage, based on various sources. A–N. Haliplus. A. H. confinis, Böving and Craighead (1931). B. Peterson (1957). C–I. Stage 3 larvae. C–F. Vondel (2012). C. H. halsei. D. H. pilbaraensis. E. H. fortescueensis. F. Haliplus pinderi. G–H. Vondel (2004). G. H. testudo. H. H. timmsi. I. H. variomaculatus, Vondel (2011b). J. Spangler (1991). K–N. Stage 3 larvae. K. H. laminatus, Vondel (1986). L. H. varius, Vondel (1996). M. H. subseriatus, Vondel (2001). N. H. kamiyai, Watanabe and Yamasaki (2020). O. Haliplus variegatus, stage 3 larva, Vondel (1997). P. Brychius elevatus, Bertrand (1933).
FIGURE 8. Fossil larva BUB 4436, specimen 5. A. Overview ventral side. B in An overview of crawling water beetle larvae and a first possible record from 100-million-years-old Myanmar amber
FIGURE 8. Fossil larva BUB 4436, specimen 5. A. Overview ventral side. B. Colour-marked version of B. C. Dorsal side. D. Close-up on head. E. Close-up on leg. F. Terminal end in different contrasting to highlight setae. Abbreviations: ad = abdomen; at = antenna; hc = head capsule; th = thorax.
FIGURE 7. Fossil larva BUB 4436, specimen 4. A. Overview dorsal side. B in An overview of crawling water beetle larvae and a first possible record from 100-million-years-old Myanmar amber
FIGURE 7. Fossil larva BUB 4436, specimen 4. A. Overview dorsal side. B. Colour-marked version of B. C. Ventral side. D. Close-up on trunk end. E. Close-up on head. Abbreviations: ad = abdomen; at = antenna; hc = head capsule; pt = prothorax; te = trunk end.
FIGURE 3 in An overview of crawling water beetle larvae and a first possible record from 100-million-years-old Myanmar amber
FIGURE 3. Simplified drawings of larvae of Peltodytes, based on various sources. A. P. caesus, stage 3 larva, Vondel (2011b). B. Spangler (1991).
FIGURE 4. Fossil larvae BUB 4436, specimens 1 and 6. A–D. Specimen 1. A in An overview of crawling water beetle larvae and a first possible record from 100-million-years-old Myanmar amber
FIGURE 4. Fossil larvae BUB 4436, specimens 1 and 6. A–D. Specimen 1. A. View on one side. B. Colour-marked version of A. C. View on other side. D. Very terminal end, with different contrasting to highlight the setae. E–G. Specimen 6. E. Overview. F. Colour-marked version of E. G. Close-up on very terminal end. Abbreviations: ad = abdomen; at = antenna; hc = head capsule; ms = mesothorax; mt = metathorax; pt = prothorax; te = trunk end.
FIGURE 2 in An overview of crawling water beetle larvae and a first possible record from 100-million-years-old Myanmar amber
FIGURE 2. Simplified drawings of larvae of Haliplus, partially representing ontogenetic sequences, based on various sources. A–D. Vondel (2011a). A, B. H. abbreviatus or H. maculatus. A. Stage 1 larva. B. Stage 2 larva. C, D. Stage 3 larvae. C. H. maculatus. D. H. abbreviatus. E–G. H. lineatocollis, Bertrand (1933). E. Stage 1 larva. F. Stage 2 larva. G. Stage 3 larva. H–J. H. apicalis. H, I. Vondel (1997). H. Stage 1 larva. I. Stage 2 larva. J. Stage 3 larva, Vondel (1995). K, L. Stage 1 larvae. K. H. indistinctus, Michat et al. (2020). L. H. halsei, Vondel (2012). M. H. fulvus, Klausnitzer (1978).
#climatemarch crawl; May 3-7, 2017
<p>Consists of a web crawl of unique URLs tweeted with the #climatemarch hashtag. #WomensMarch collection took place from April 28 - May 3, 2017. Unique URLs were extracted from the dataset, and harvested with Heritrix on May 3-7, 2017.</p>
#MarchForScience crawl; April 26-30, 2017
<p>Consists of a web crawl of unique URLs tweeted with the #MarchForScience hashtag. #MarchForScience collection took place from April 22-26, 2017. Unique URLs were extracted from the dataset, and harvested with Heritrix on April 26-30, 2017.</p>
#WomensMarch crawl; January 29-February 25, 2017
<p>Consists of a web crawl of unique URLs tweeted with the #WomensMarch hashtag. #WomensMarch collection took place from January 21-28, 2017. Unique URLs were extracted from the dataset, and harvested with Heritrix on January 29-February 25, 2017.</p>
#elxn42 web crawl
<p>Consists of a web crawl of unique URLs tweeted with the #elxn42 hashtag. #elxn42 collection took place from August 3, 2015 - November 5, 2015. Unique URLs were extracted from the dataset, and harvested with Heritrix on January 29, 2016 - February 8, 2016.</p>
Catalan General Crawling
<p>The Catalan General Crawling Corpus is a 435-million-token web corpus of Catalan built from the web. It has been obtained by crawling the 500 most popular .cat and .ad domains during July 2020. It consists of 434.817.705 tokens, 19.451.691 sentences and 1.016.114 documents. Documents are separated by single new lines. It is a subcorpus of the <a href="../record/4519349">Catalan Textual Corpus</a>.</p> <p>We license the actual packaging of this data under a <a href="https://creativecommons.org/licenses/by/4.0/">Attribution 4.0 International License</a>.</p> <p><strong>Notice and take down policy</strong></p> <p>Notice: Should you consider that our data contains material that is owned by you and should therefore not be reproduced here, please:</p> <ul> <li>Clearly identify yourself, with detailed contact data such as an address, telephone number or email address at which you can be contacted.</li> <li>Clearly identify the copyrighted work claimed to be infringed.</li> <li>Clearly identify the material that is claimed to be infringing and information reasonably sufficient to allow us to locate</li> </ul> <p>Copyright (c) 2021 Text Mining Unit at BSC</p> <p> </p> <p>If you use this resource in your work, please cite our latest paper:</p> <p>@inproceedings{armengol-estape-etal-2021-multilingual,<br> title = "Are Multilingual Models the Best Choice for Moderately Under-resourced Languages? {A} Comprehensive Assessment for {C}atalan",<br> author = "Armengol-Estap{\'e}, Jordi and<br> Carrino, Casimiro Pio and<br> Rodriguez-Penagos, Carlos and<br> de Gibert Bonet, Ona and<br> Armentano-Oller, Carme and<br> Gonzalez-Agirre, Aitor and<br> Melero, Maite and<br> Villegas, Marta",<br> booktitle = "Findings of the Association for Computational Linguistics: ACL-IJCNLP 2021",<br> month = aug,<br> year = "2021",<br> address = "Online",<br> publisher = "Association for Computational Linguistics",<br> url = "https://aclanthology.org/2021.findings-acl.437",<br> doi = "10.18653/v1/2021.findings-acl.437",<br> pages = "4933--4946",<br>}</p>
Рис. 1. ПреΔпочтитеΛьное отношение паукообразных (1 – Galeodes araneoides, 2 – Lycosa praegrandis, 3 – Mesobuthus eupeus) к объектам питания по способу переΔвижения жертвы: I – Λетающие; II – прыгающие; III – бегающие; IV – хоΔящие; V – поΛзающие; VI – маΛопоΔвижные; VII – непоΔвижные. Fig. 1. Preferred attitude of arachnids (1 – Galeodes araneoides, 2 – Lycosa praegrandis, 3 – Mesobuthus eupeus) to food objects by the method of movement of pray: I – flying; II – jumping; III – running; IV – walking; V – crawling; VI – sluggish; VII – motionless. in Comparison of trophic spectra and hunting strategies of some large arachnids (Arachnida: Scorpiones, Solifugae, Aranei) in semi-desert biocenoses of Gobustan (Eastern Azerbaijan)
Рис. 1. ПреΔпочтитеΛьное отношение паукообразных (1 – Galeodes araneoides, 2 – Lycosa praegrandis, 3 – Mesobuthus eupeus) к объектам питания по способу переΔвижения жертвы: I – Λетающие; II – прыгающие; III – бегающие; IV – хоΔящие; V – поΛзающие; VI – маΛопоΔвижные; VII – непоΔвижные. Fig. 1. Preferred attitude of arachnids (1 – Galeodes araneoides, 2 – Lycosa praegrandis, 3 – Mesobuthus eupeus) to food objects by the method of movement of pray: I – flying; II – jumping; III – running; IV – walking; V – crawling; VI – sluggish; VII – motionless.
Data Tugas Akhir SI ITS Data Crawling
<p>Data is taken from Thesis Information Systems (SIM TA) Website of the ITS Information Systems Department (Link: <a href="http://is.its.ac.id/apps/simta/simta_mhslist.php">http://is.its.ac.id/apps/simta/simta_mhslist.php</a>). SIM TA's data is used for data collection of ITS Information Systems's students who have proposed the thesis title. In this dataset there are six attribute columns. The first one contains the Student NRP attribute which is the student ID number that applies at ITS. Student NRP contains 14 digit numbers where the first 2 digit numbers indicate the faculty code, the second 2 digit numbers indicate the department code, and the third 2 digit numbers indicate the year class. The second attribute contains the Name of the Student. The third attribute is the Name of the Supervisor of the student's thesis. Fourth attribute is the Thesis Title. The fifth attribute is Lab chosen by students. The last attribute is the Date the Proposal was presented. This dataset is only part of the original data, this data contains 120 rows. </p>
Star Wars New Hope Opening Crawl (Animation)
Each of the eight episodic Star Wars films begin with nearly identical openings, in which the text "A long time ago in a galaxy far, far away...." is displayed, followed by the Star Wars logo over a field of stars. A subsequent downward tilt reveals the film's episode number, the subtitle in all-capital letters, and a three-paragraph summary of events immediately prior to the events of the film. I have a Patreon Join now! :https://www.patreon.com/user?u=14434838 I have a Patreon Join now! :https://www.patreon.com/user?u=14434838 Source: Objaverse 1.0 / Sketchfab
The relation between crawling and non-crawling 9-month-old infants' visual prediction abilities in spatial object processing.
<p>The data set Kubicek et al._JECP_DataSet.sav containts the data of the paper from Kubicek, C., Jovanovic, B., & Schwarzer, G. (2017). The relation between crawling and non-crawling 9-month-old infants' visual prediction abilities in spatial object processing. Journal of Experimental Child Psychology, 158, 64–76.</p>
Twitter Crawling for "PSE" tweets and accounts
<p>Gathered 849 tweets discussing about Peraturan PSE in Indonesia and 335 account data for said tweets.</p>
Tranco 29-3-23 top 10K crawled with T.EX
<p>A single stateful crawl (1 x Chrome) of the Tranco top 10K websites (as of 29th of March 2023) is performed on the 30th of March 2023 with T.EX (see: <a href="https://github.com/t-ex-tools/t.ex">https://github.com/t-ex-tools/t.ex</a>). Measurements had been carried out on 1 Amazon Web Services instances (c5.large) running Windows Server. All instances were launched in Frankfurt, Germany (eu-central-1).</p> <p>After completing the crawls, each instance's extension storage was extracted (see <a href="https://github.com/t-ex-tools/t.ex">https://github.com/t-ex-tools/t.ex</a> for help using the datasets).</p>
Video recordings of polynoid (Annelida) swimming and crawling
Open the record for dataset details and reuse information.
alfalifr/twitterCrawlViral: Twitter Crawling for "Viral" or "Heboh" News
<p>The data we take is about tweet form 10 official account of news portal on twitter that mentioned word "Viral" or "Heboh". The dataset contain 5 columns and sorted by time.</p>
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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.
Annotated Behaviour and Observability Dataset (ABODe)
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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.
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.
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.