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58 results for “Human Rights”

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zenodo44/100

Universal Declaration of Human Rights, Volume 02

<p>&Alpha;&nu;ά&gamma;&nu;&omega;&sigma;&eta; &gamma;&iota;&alpha; &tau;&omicron; LibriVox, &sigma;&tau;&eta;&nu; &Epsilon;&lambda;&lambda;&eta;&nu;&iota;&kappa;ή &gamma;&lambda;ώ&sigma;&sigma;&alpha; &gamma;&iota;&alpha; &tau;&omicron; έ&rho;&gamma;&omicron;,&nbsp;42&nbsp;<a href="http://librivox.org/">LibriVox</a>&nbsp;recordings of The Universal Declaration of Human Rights in 39 languages.</p> <p>&Alpha;&kappa;&omicron;&lambda;&omicron;&upsilon;&theta;&epsilon;ί &eta; &pi;&epsilon;&rho;&iota;&gamma;&rho;&alpha;&phi;ή &tau;&omicron;&upsilon; έ&rho;&gamma;&omicron;&upsilon; &alpha;&pi;ό &tau;&omicron;&nu; &iota;&sigma;&tau;ό&tau;&omicron;&pi;&omicron; &tau;&omicron;&upsilon; Internet Archive<br> The Universal Declaration of Human Rights (UDHR) is a declaration adopted by the United Nations General Assembly (10 December 1948 at Palais de Chaillot, Paris). The Guinness Book of Records describes the UDHR as the &quot;Most Translated Document&quot; in the world. It consists of 30 articles which outline the view of the General Assembly on the human rights guaranteed to all people.(Summary adapted from Wikipedia)<br> <br> This second Librivox collection contains 42 readings of this declaration, recorded by 35 volunteers in 39 different languages - to mark its 60th anniversary.<br> <br> In combination with&nbsp;<a href="http://librivox.org/the-universal-declaration-of-human-rights-by-the-united-nations/">an earlier Librivox collection</a>&nbsp;this brings the total number of languages of Librivox readings of the Universal Declaration of Human Rights to 53.<br> <br> For further information, including links to online text, reader information, RSS feeds, CD cover or other formats (if available), please go to the&nbsp;<a href="http://librivox.org/universal-declaration-of-human-rights-by-united-nations-volume-02/">LibriVox catalog page</a>&nbsp;for this recording.<br> <br> For more free audio books (in more than 25 languages) or to become a volunteer reader, visit&nbsp;<a href="http://librivox.org/">LibriVox.org</a>.<br> <br> <a href="https://archive.org/download/human_rights_02_0908_librivox/multiuniversalDeclarationOfHumanRightsVol02a_librivox.m4b">M4B audio book, part 1 (162MB)</a><br> <a href="https://archive.org/download/human_rights_02_0908_librivox/multiuniversalDeclarationOfHumanRightsVol02b_librivox.m4b">M4B audio book, part 2 (162MB)</a></p> <p>Boxid OL100020511</p> <p>Identifier human_rights_02_0908_librivox</p> <p>Run time 11:51:17</p> <p>Source&nbsp;<a href="https://archive.org/search.php?query=source%3A%22Librivox+recording+of+a+public-domain+text%22">Librivox recording of a public-domain text</a></p> <p>Taped by&nbsp;<a href="https://archive.org/search.php?query=taper%3A%22LibriVox%22">LibriVox</a></p> <p>Year&nbsp;<a href="https://archive.org/search.php?query=year%3A%222009%22">2009</a></p>

opencc-by-4.0Jun 2019View details →
zenodo44/100

Japanese Expressions Dataset from Human Rights Infringement on Internet

<p>Japanese Expressions Dataset from Human Rights Infringement on Internet</p> <p>これは、言語処理学会2023において&rdquo;<a href="https://www.anlp.jp/proceedings/annual_meeting/2023/pdf_dir/D2-2.pdf"><strong>権利侵害と不快さの間:日本語人権侵害表現データセット</strong></a>&rdquo;の発表で用いた、誹謗中傷等の表現を集めたデータセットです。</p> <p>仕様は変更される可能性があります</p> <p>Release Date</p> <p>Version 0.1 2023/03/09</p> <p>Version 0.2&nbsp;2023/06/01</p> <p>&nbsp;</p> <p>1.調査対象</p> <p>民事事件</p> <ul> <li>発信者情報開示請求事件</li> <li>損害賠償等請求事件</li> </ul> <p>インターネット上の投稿による人権侵害を争った事件よりこのデータセットは作成されています。</p> <p>Annotation Scheme</p> <p>1: Text in Dispute&nbsp;</p> <p>Text in Dispute is transcribed from the list of articles submitted or the facts and reasons section of the court cases.<br> This text is what the plaintiff alleges is infringing his or her rights.<br> <br> For example, we use the tag [Plaintiff] for descriptions related to plaintiffs, the tag [Defandant] for descriptions related to defandantss and [Third Party] for any mention of third parties.<br> The tag [Other] is designated for texts involving anonymized place names and any other content not covered by the preceding tags.&nbsp;<br> If distinguishing between tags proves challenging, we advise the use of [Other].&nbsp;<br> Should a URL be present in the text, it is substituted with the [URL] tag.</p> <p>2: Context Utilized in Adjudication</p> <p>In some cases, the history of the conversation and previous postings are taken into account in determining whether or not an infringement has occurred.<br> Such text is transcribed from the fact-finding and judgment portions of the court case.<br> Contextual information that can be used for tasks other than proper understanding of the issue and accurate learning and classification.<br> Anonymization is applied in the same way as for [1: Text in Dispute].</p> <p>3: Allegedly Infringed Right and Judgement on the Infringement Allegation</p> <p>This category provides a label indicating the types of personal rights infringement complained of by the plaintiff against Text in Dispute&nbsp;and whether or not the infringement of that right was recognized by the trial court.<br> If there are more than two types of infringement of rights complained of by the plaintiff against one text, up to two labels are given.</p> <p>3-1a: The types of Allegedly Infringed Right 1</p> <p>Labels are assigned from the above types of personal rights, the right of reputation, the sense of honor, the right of peaceful private life, and other personal rights, from the complaint of infringement of rights by the plaintiff.</p> <p>3-1b: Judgement on the Infringement Allegation 1</p> <p>This category indicates whether the trial court granted the plaintiff&#39;s complaint against the text under consideration.<br> The annotator reads the result of the Judgement for each case from the court&#39;s judgment in the case.<br> If we find that the court has admitted the plaintiff&#39;s claim, we assign &quot;1&quot; label to the case concerning the infringement of personal rights.<br> If we find that the court has dismissed the plaintiff&#39;s claim, we assign &quot;0&quot; label to those cases that are not infringing.<br> We assign the label &quot;UNJUDGE&quot; to cases where we cannot find the court&#39;s Judgement.&nbsp;<br> This appears in cases where the plaintiff alleges multiple infringements and only one of the claims is adjudicated, or where the complaint is found to have been dismissed based on factors other than a determination of infringement by textual expression.</p> <p>3-2a &amp; b:The types of Allegedly Infringed Right and Judgement on the Infringement Allegation 2</p> <p>If two infringements are complained of, the annotator assigns a label for the second right.</p> <p><br> 4: Index Information of Court Cases</p> <p>This section contains information about the cited court case.</p> <p>4-1: Case Number</p> <p>This is the case number of the court case and the court in which the case was argued.</p> <p>4-2: Case Name</p> <p>This is the case name of the court case and the court in which the case was argued.<br> Either a case requesting for disclosure of sender&#39;s information. or a case requesting compensation for damages is applicable.</p> <p>4-3: Bibliography</p> <p>This is the bibliography of the cited case.</p> <p>4-4: Article Number</p> <p>This is the number assigned to Text in Dispute in the court case.</p> <p>4-5: Online Platform</p> <p>If the online platform where Text in Dispute is explicitly indicated in the court case, it is stated.<br> Since the form of the text and context differs from platform to platform, considering the uniqueness of each service is an important factor to be taken into account.</p>

opencc-by-4.0May 2023View details →
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Fig. 14 in Anatomical Study of the Right Forearm and Hand of One Western Gorilla (Gorilla gorilla) for Comparison with Humans with Respect to Motions of the Thumb and Fingers

Fig. 14. Grasping pattern of the hand. A. Grasping a bough of the tree; B. Holding a piece of fruit. Sketches are drawn imitating the hand motion shown in movies of NHK BS TV program (Yamagiwa, 2012).

opencc-by-4.0Aug 2021View details →
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Fig. 13. Knuckle walk. A in Anatomical Study of the Right Forearm and Hand of One Western Gorilla (Gorilla gorilla) for Comparison with Humans with Respect to Motions of the Thumb and Fingers

Fig. 13. Knuckle walk. A. The trunk tilts backward because of longer forelimbs; B. The knuckle walk of gorillas is walking with MP joints in extension and PIP joints in deep flexion bearing the weight on the dorsal aspects of the middle phalanges of the hands. Sketches are drawn imitating the walking style shown in movies of NHK BS TV program (Yamagiwa, 2012).

opencc-by-4.0Aug 2021View details →
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Fig. 12 in Anatomical Study of the Right Forearm and Hand of One Western Gorilla (Gorilla gorilla) for Comparison with Humans with Respect to Motions of the Thumb and Fingers

Fig. 12. Dorsal aspect of the metacarpophalangeal joint. A. A shallow groove (white arrows) is seen along the dorsal margin of the articular cartilage of the metacarpal head; B. The dorsal edge of the proximal phalanx base sits in the groove by extending the MP joint passively; C. Grooves are deep enough at the 3rd and 4th metacarpals (white arrows), but not at the 2nd and 5th in the skeletal specimen of another gorilla stored in National Museum of Nature and Science.

opencc-by-4.0Aug 2021View details →
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Fig. 11. Extensor apparatus and retaining ligaments. A in Anatomical Study of the Right Forearm and Hand of One Western Gorilla (Gorilla gorilla) for Comparison with Humans with Respect to Motions of the Thumb and Fingers

Fig. 11. Extensor apparatus and retaining ligaments. A. Extensor apparatus consists of two components: extrinsic compornent (dark green) and intrinsic component (light green). Ligamentous structures are shown in orange color. The interosseous hood is the proximal hood-like portion of the aponeurotic expansion of the interosseous tendon (a thick arrow). (modified from Tubiana and Valentin, 1964); B. On the radial side of the middle finger, the interosseous hood is shown. Adherent to the proximal margin of this interosseous hood, a sagittal band expands between DTML and EDC tendon; C. The oblique retinacular ligament (ORL) is well developed at the radial aspect.

opencc-by-4.0Aug 2021View details →
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Fig. 9. Underdeveloped EIP. A in Anatomical Study of the Right Forearm and Hand of One Western Gorilla (Gorilla gorilla) for Comparison with Humans with Respect to Motions of the Thumb and Fingers

Fig. 9. Underdeveloped EIP. A small slender muscle sitting at the dorsoradial aspect of the ulna is judged to be underdeveloped EIP muscle although its tendon attaches to the dorsal aspect of the wrist (a white block arrow).

opencc-by-4.0Aug 2021View details →
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Fig. 7 in Anatomical Study of the Right Forearm and Hand of One Western Gorilla (Gorilla gorilla) for Comparison with Humans with Respect to Motions of the Thumb and Fingers

Fig. 7. Innervation of intrinsic muscles by the radial bundle of UABM. The radial bundle first gives off branches to the hypothenar muscles and to the lumbrical muscles of the little and ring fingers (marked with asterisks), and then to interossei (4th DI, 3rd PI and 3rd DI, 2nd PI).

opencc-by-4.0Aug 2021View details →
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Fig. 15 in Anatomical Study of the Right Forearm and Hand of One Western Gorilla (Gorilla gorilla) for Comparison with Humans with Respect to Motions of the Thumb and Fingers

Fig. 15. The mechanism to block hyperextension of the MP joint with the function of the sagittal band. A. When the finger is flexed, the sagittal band passes over the joint axis of the metacarpal head in coordination with the distalward movement of the extensor tendon; B. When the MP joint is extended and surpasses the range of extension, the traction force of the finger extensor is blocked with the tightened sagittal band that transmits the force palmarward so that the proximal phalanx base does not move further to hyperextension.

opencc-by-4.0Aug 2021View details →
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Fig. 5 in Anatomical Study of the Right Forearm and Hand of One Western Gorilla (Gorilla gorilla) for Comparison with Humans with Respect to Motions of the Thumb and Fingers

Fig. 5. Palmar aspect of the proximal phalanx. An osseous crest is seen along each edge of the palmar aspect of the phalanx and the groove is formed between those crests. The head of the proximal phalanx slants palmarward.

opencc-by-4.0Aug 2021View details →
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Fig. 3. Underdeveloped thumb flexor. A in Anatomical Study of the Right Forearm and Hand of One Western Gorilla (Gorilla gorilla) for Comparison with Humans with Respect to Motions of the Thumb and Fingers

Fig. 3. Underdeveloped thumb flexor. A. The tendon of the thumb flexor is much thinner than that of FDS or FDP; B. Its muscle belly (uFPL) bifurcates from the distal portion of FDP muscle of the index finger; C. Pulling FDP index finger at its myotendinous junction with a retractor revealed that the thumb and the index finger were flexed simultaneously.

opencc-by-4.0Aug 2021View details →
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Fig. 4. Finger flexor sheath and pulley system. A in Anatomical Study of the Right Forearm and Hand of One Western Gorilla (Gorilla gorilla) for Comparison with Humans with Respect to Motions of the Thumb and Fingers

Fig. 4. Finger flexor sheath and pulley system. A. The entire sheath of the finger flexor of the ring finger is shown with the names of individual pulleys. The very thick and wide A2′ pulley (a white thick arrow) is located between A2 and C1; B. The inner surface of the sheath showing that A2′ pulley is twice as wide as A3.

opencc-by-4.0Aug 2021View details →
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Fig. 2 in Anatomical Study of the Right Forearm and Hand of One Western Gorilla (Gorilla gorilla) for Comparison with Humans with Respect to Motions of the Thumb and Fingers

Fig. 2. The subcutaneous structures of the palm. A. The palmar aponeurosis is absent except for its most distal parts: natatory ligaments (white arrows); B. The ligamentous fibers (white arrows) arising from the distal margin of the flexor retinaculum; C. Ligamentous septum (a white arrow) along the flexor tendon formed with those ligamentous fibers.

opencc-by-4.0Aug 2021View details →
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Fig. 10 in Anatomical Study of the Right Forearm and Hand of One Western Gorilla (Gorilla gorilla) for Comparison with Humans with Respect to Motions of the Thumb and Fingers

Fig. 10. The insertions of the first dorsal interosseous muscle. A. The distal portion of the 1st DI muscle is voluminously muscular and passes into the tendinous portion of the interosseous hood at the level of the proximal portion of the proximal phalanx; B. The tendinous insertion to the proximal phalanx base is exposed by reflect- ing the extensor apparatus. The tendon has been divided to explore the deeper structure and then re-sutured.

opencc-by-4.0Aug 2021View details →
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Figure 9. The impossible figure (right) is not noticeable as such at first glance-Gestalt Processing in Human-Robot Interaction: A Novel Account for Autism Research

<p>In the lexical domain a similar effect of holistic word processing is described in (Anstis,<br> 2005b). The viewers were presented with pairs of three-letter words in quick succession and asked<br> to report if the upper halves of the successively presented words were identical. Surprisingly, even<br> when the upper halves of the words were orthographically identical, the error rate was reliably<br> higher than expected and in comparison with matching identical successive words. As the author of<br> the study Stuart Anstis points out: &ldquo;students were processing the words not as separable parts, but<br> holistically as perceptual units that could not be perceptually split apart. These results show that in<br> normal circumstances, the visual system cannot, or does not, divide words into upper and lower<br> halves&rdquo; (Anstis, 2005b, p. 239).The author relates the results of his study to studies of visual<br> perception of faces as evidence that the mechanism of holistic processing in the visual and the<br> lexical domains is essentially the same.</p>

opencc-by-4.0Aug 2015View details →
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Figure 8. Machine faces, perceived as more figure-like(left) and less figure-like (right)-Gestalt Processing in Human-Robot Interaction: A Novel Account for Autism Research

<p>In an experimental study on visual perception, addressing directly Gestalt phenomena, a new<br> Gestalt cue for figure-ground assignment was introduced (Vechera et al., 2002). The foreground<br> versus the background organization is a strong determinant for decisions on objects seen among<br> image elements. A well-known set of perceptual cues that are often called Gestalt cues are the size<br> or area, the symmetry and the convexity vs. concavity judgments. It is generally assumed that<br> figures are &lsquo;small, symmetrical and convex&rsquo;. The authors asked the question whether these cues are<br> all that are necessary for a region of the image to be judged as a figure. The main result of this study<br> is that regions in the lower portion of a stimulus array appear more figure-like than regions in the<br> upper portion of the display.</p>

opencc-by-4.0Aug 2015View details →
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Figure 6. Noticeable subjective response to the distorted face to the right-Gestalt Processing in Human-Robot Interaction: A Novel Account for Autism Research

<p>Quite surprisingly, if the distortion is viewed in the normal upward position, it evokes strong<br> emotional response to the distorted face to the right in figure 6.</p>

opencc-by-4.0Aug 2015View details →
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FIG. 9. – Right mandible from a in Dog burials associated with Human burials in the West Indies during the early pre-Columbian Ceramic Age (500 BC-600 AD)

FIG. 9. – Right mandible from a Canis familiaris exhibiting scorching on the alveolar surface of the canine and the premolars from Gare-Maritime de Basse-Terre (GMBT 1698 d us1008H2dec1), Early Saladoid level (500 BC – 700 AD).

opencc-by-4.0Dec 2013View details →
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Dataset Literature Review Online Business and Human Rights

<p>Bahwa data ini digunakan untuk membuat penelitian sesuai dengan tinjauan literatur dengan kata kunci online business AND human rights.&nbsp;</p>

opencc-by-4.0Nov 2022View details →
zenodo40/100

Ginkgo Chauvel's left and right superficial white matter atlas of the human brain

<p><strong>Superficial Chauvel&#39;s human white matter atlas.</strong></p> <p>The left and right superficial white matter atlases of the human brain were built upon a cohort of 39 in vivo human magnetic resonance imaging (MRI) scans from the Human Connectome Project (HCP), registered on a template space (the MNI ICBM152 2009c non-linear<br> asymmetric template). The construction of this atlas is based on the analysis of the anatomical and diffusion MRI dataset using the&nbsp; tractography and fiber clustering tools available from the Ginkgo toolbox (CEA, NeuroSpin, BAOBAB, GAIA, Ginkgo Team, <a href="https://framagit.org/cpoupon/gkg">https://framagit.org/cpoupon/gkg</a>). The atlas can be visualized using the BrainVISA/Anatomist viewer available at <a href="https://brainvisa.info/web/download.html">https://brainvisa.info/web/download.html</a>.<br> The left hemisphere atlas is composed of&nbsp;733 superficial white matter bundles and the right hemisphere atlas of 632 superficial white matter bundles.</p> <p><br> <br> The 38 cortical regions considered for the left and right hemispheres were : the anterior/middle/posterior superior frontal gyrus (aSFG/mSFG/pSFG) ; the anterior and posterior middle frontal gyrus (aMFG/pMFG) ; the anterior/middle/posterior inferior frontal gyrus (aIFG/mIFG/pIFG) ; the medial lateral orbitofrontal cortex (mOFC/ lOFC) ; the superior, middle, inferior precentral gyrus (sPrCG / mPrCG / iPrCG) ; the Paracentral Lobule (PCL) ; the anterior and posterior insula (alns / plns) ; the anterior, posterior superior temporal gyrus (aSTG/pSTG) ; the anterior, posterior middle temporal gyrus (aMTG/pMTG) ; the anterior and posterior inferior temporal gyrus (aITG, pITG) ; the anterior and posterior fusiform gyrus (aFFG/pFFG) ; the superior, middle and inferior postcentral gyrus (sPoCG/mPoCG/iPoCG) ; the superior parietal lobule (SPL) ; the supramarginal gyrus (SMG) ; the angular gyrus (AnG) ; the Precuneus (PCun) ; the cuneus (Cun) ; the Lingual Gyrus (LG) ; the superior, middle, inferior occipital gyrus (sOG / mOG/ iOG) ; the entorhinal Cortex (EnC) ; the parahippocampal gyrus (PHC).<br> <br> The atlas is provided using the Anatomist *.bundles/*.bundlesdata format for which metainformation can be found in the *.bundles file among which:<br> - the labels of the different white matter bundles (&#39;labels&#39; entry) following the syntactic rule&nbsp; &quot;&lt;right/left&gt;_&lt;roi1&gt;_&lt;roi2&gt;_&lt;clusterId&gt;&quot;,<br> - the number of streamlines populating each white matter bundle (&#39;curve3d_counts&#39; entry), in the same order as the &#39;labels&#39; key,<br> - the total number of white matter bundles (&#39;item_count&#39; entry),<br> - the total number of streamlines (&#39;curves_count&#39; entry)</p> <p>&nbsp;</p> <p>&nbsp;</p>

opencc-by-4.0Feb 2023View details →

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Allen Brain Atlas

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

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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

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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

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openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record