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166 results for “dialects”
Effectiveness Study of a Dialectical Behavioral Treatment for Adolescents With Emotional Instability and Their Families
ClinicalTrials.gov study NCT02991586. IPD Sharing: NO. Countries: 1. Publications: 1.
Efficacy of Dialectical Behavior Therapy Versus CAMS-informed Supportive Psychotherapy on Self Harming Behavior
ClinicalTrials.gov study NCT01512602. IPD Sharing: Not stated. Countries: 1. Publications: 4.
Dialectical Behavioral Therapy in Juvenile Justice
ClinicalTrials.gov study NCT05583279. IPD Sharing: YES. Countries: 1. Publications: 32.
Dialectical Behavior Therapy Rutgers University Research Program
ClinicalTrials.gov study NCT03123198. IPD Sharing: NO. Countries: 1. Publications: 2.
Dialectical Cognitive Traumatherapy (DCT) on Patients With Severe PTSD Following Sexual Abuse
ClinicalTrials.gov study NCT00481000. IPD Sharing: Not stated. Countries: 1. Publications: 2.
Dialectical Behavior Therapy vs Enhanced Usual Care for Suicidal and Self-harming Adolescents. 10 Year Follow-up
ClinicalTrials.gov study NCT04298190. IPD Sharing: NO. Countries: 1. Publications: 1.
Adaptive evolution of honeybee dance dialects
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Data from: Female, but not male, tropical sparrows respond more strongly to the local song dialect: implications for population divergence.
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Data from: Nestling and adult sparrows respond differently to conspecific dialects
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Ultrasound Investigation of Irish Palatalization (Phase 1, Connacht dialect)
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Data from: Translocation experiments show dialects are socially learned in marmoset monkeys
The acoustic properties of vocalizations in common marmosets differ between populations. These differences may be the result of social vocal learning, but they can also result from environmental or genetic differences between populations. We performed translocation experiments to separately quantify the influence of a change in the physical environment (experiment 1), and a change in the social environment (experiment 2) on the acoustic properties of calls from individual captive marmosets. If population differences were due to genetic differences, we expected no change in the vocalizations of the translocated marmosets. If differences were due to environmental factors, we expected vocalizations to permanently change contingent with environmental changes. If social learning was involved, we expected that the vocalizations of animals translocated to a new population with a different dialect would become more similar to the new population. In experiment 1, we translocated marmosets to a different physical environment without changing the social composition of the groups or their neighbours. Immediately after the translocation to the new facility, one out of three call types showed a significant change in call structure, but 5-6 weeks later, the calls were no longer different from before the translocation. Thus, the novel physical environment did not induce long lasting changes in the vocalizations of the marmosets. In experiment 2, we translocated marmosets to a new population with a different dialect. Importantly, our previous work had shown that these two populations differed significantly in vocalization structure. The translocated marmosets were still housed in their original social group, but after translocation they were surrounded by the vocalizations from neighbouring groups of the new population. The vocal distance between the translocated individuals and the new population decreased for two out of three call types over 16 weeks. Thus, even without direct social contact or interaction, the vocalizations of the translocated animals converged towards the new population, indicating that common marmosets can modify their calls due to acoustic input from conspecifics alone, via crowd vocal learning. To our knowledge, this is the first study able to distinguish between different explanations for vocal dialects as well as to show crowd vocal learning in a primate species.
Extraordinary variation in a simple song: No geographical patterns in initial phrase variation of the Yellowhammer, a passerine with pronounced dialects
<p>Geographical variation of birdsong is used to study various topics from cultural evolution to mechanisms responsible for reproductive barriers or song acquisition. In species with pronounced dialects, however, patterns of variation in nondialect parts of the song are usually overlooked. We focused on the individually variable initial phrase of the song of the Yellowhammer (Emberiza citrinella), a common Palearctic passerine which became a model species for dialect research. We used a quantitative method to compare the similarity of initial phrases from the repertoires of 237 males recorded at different spatial scales in a central European country covering all main dialect types. We hypothesized that patterns of initial phrase sharing and/or phrase similarity are affected by dialect boundaries and geographical proximity (i.e. that birds from the same dialect regions use more similar phrases or share them more often). Contrary to our expectations, initial phrase variation seems unrelated to dialects, as we did not find higher similarity either among recordings from the same dialect areas or among those from the same locality. Interestingly, despite the immense variability of phrase types detected (only 16% of 368 detected initial phrase types were shared between at least 2 males), a relatively high proportion of males (45%) was involved in sharing, and males using the same initial phrase were located anywhere from tens of meters to hundreds of kilometers apart. The patterns of variation suggest that precise copying during song learning as well as improvisation play important roles in forming individual repertoires in the Yellowhammer. Our data also confirm previous indications that the repertoires of Yellowhammer males (i.e. the composition of initial phrases) are individually unique and temporally stable. This makes the species a good candidate for individual acoustic monitoring, useful for detailed population or behavioral studies without the need for physical capture and marking of males.</p>
"KITSDEUTSCH" AS A NEW DIALECT IN A GERMAN COUNTRY
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Figure 8. Robert J.G in Finding the world's oldest mammals: sieving, dialectical materialism, and squabbles
Figure 8. Robert J.G. ('Bob') Savage (1927–1998), pictured about 1980.
THE HISTORY OF THE STUDY OF UZBEK DIALECTS
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A. Dunst Network and Table Dialectics of Liberation.zip
<p>CSV- file for and PNG image of social network for the "Congress on the Dialectics of Liberation" in London, July 15-30, 1967</p>
THE ROLE OF UZBEK DIALECTS ON PRONUNCIATION OF ENGLISH LANGUAGE, PROBLEMS AND SOLUTIONS
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A expresión da 2Sg do pretérito perfecto de indicativo no noroeste ibérico... ou como xorde a diversidade dialectal (dataset)
<p>Fonte/Sources:</p> <p><em>ALGa</em> = Instituto da Lingua Galega (1990): <em>Atlas Lingüístico Galego. Vol. 1. Morfoloxía verbal</em>. A. Coruña: Barrié de la Maza.</p> <p><em>ALPI</em> = García Mouton, Pilar (coord.), Inés Fernández-Ordóñez, David Heap, Maria Pilar Perea, João Saramago, Xulio Sousa, 2016, <em>ALPI-CSIC [www.alpi.csic.es], edición dixital de Navarro Tomás, Tomás (dir.), Atlas Lingüístico de la Península Ibérica, Madrid, CSIC</em>. Cuestión ALPI 384 "Varriches xa?/¿Has barrido ya?; Cuestión ALPI 385: "A que hora chegaches? / ¿A qué hora has llegado?". Só se inclúen as respostas con tempos simples; non se inclúen as respostas cos tempos compostos</p>
Figures and data associated with the article: Rendaku in place names across Japanese dialects
<p>The rendaku morphophonological alternation between voiceless and voiced obstruents in compounds is largely irregular, but it is observed in all Japanese dialects. However, whether dialectal differences in frequencyof rendaku exist has never been investigated. As a first step toward elucidating dialectal differences in the occurrence of rendaku, we examined the rendaku rate of six morphemes in place names from all Japan. The results of our exploratory study indicate that there is no clear geographical pattern in the differences in rendaku frequency, and that it varies between morphemes.</p> <p>The rendaku rate for each region was plotted on a map of Japan with a gradient color. A lighter color indicates a higher rate of rendaku, and a darker color a lower one. White color indicates the absence of data, i.e. no place name containing the morpheme under study was found in the prefecture.</p>
Darija Dialect Moroccan DirLkit
<p>DirLkit</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
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International Brain Laboratory public data
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OpenNeuro
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