Ghent University · Example Payload
Ghent Biblio Publication
UniversityHigher EducationEducationResearchResearch DataLibraryOpen DataIdentity FederationOAI-PMHBelgiumFlandersEurope
Ghent Biblio Publication is an example object payload from Ghent University, with 34 top-level fields. It illustrates the shape of data this provider's APIs accept or return.
Top-level fields
parentbiblio_idcitehandlearticle_typeauthortitle_idwos_idissueabstract_fullissnstatusdoijcrpublication_status_sortyearlanguagesubjectexternalcreated_byaffiliationfilewos_typevolumekeywordclassificationtypepagecopyright_statementdate_updatedpublication_statusabstractdate_created
Example Payload
{"parent":{"short_title":"J. Voice","title":"JOURNAL OF VOICE"},"biblio_id":"780271","cite":{"chicago-author-date":" <div class=\"csl-entry\">Maryn, Youri, Paul Corthals, Paul Van Cauwenberge, Nelson Roy, and Marc De Bodt. 2010. “Toward Improved Ecological Validity in the Acoustic Measurement of Overall Voice Quality: Combining Continuous Speech and Sustained Vowels.” <i>JOURNAL OF VOICE</i> 24 (5): 540–55. https://doi.org/10.1016/j.jvoice.2008.12.014.</div>\n","ieee":" <div class=\"csl-entry\">\n <div class=\"csl-left-margin\">[1]</div><div class=\"csl-right-inline\">Y. Maryn, P. Corthals, P. Van Cauwenberge, N. Roy, and M. De Bodt, “Toward improved ecological validity in the acoustic measurement of overall voice quality: combining continuous speech and sustained vowels,” <i>JOURNAL OF VOICE</i>, vol. 24, no. 5, pp. 540–555, 2010.</div>\n </div>\n","apa":" <div class=\"csl-entry\">Maryn, Y., Corthals, P., Van Cauwenberge, P., Roy, N., & De Bodt, M. (2010). Toward improved ecological validity in the acoustic measurement of overall voice quality: combining continuous speech and sustained vowels. <i>JOURNAL OF VOICE</i>, <i>24</i>(5), 540–555. https://doi.org/10.1016/j.jvoice.2008.12.014</div>\n","vancouver":" <div class=\"csl-entry\">\n <div class=\"csl-left-margin\">1. </div><div class=\"csl-right-inline\">Maryn Y, Corthals P, Van Cauwenberge P, Roy N, De Bodt M. Toward improved ecological validity in the acoustic measurement of overall voice quality: combining continuous speech and sustained vowels. JOURNAL OF VOICE. 2010;24(5):540–55.</div>\n </div>\n","fwo":" <div class=\"csl-entry\">Maryn, Youri, Paul Corthals, Paul Van Cauwenberge, Nelson Roy, and Marc De Bodt. 2010. “Toward Improved Ecological Validity in the Acoustic Measurement of Overall Voice Quality: Combining Continuous Speech and Sustained Vowels.” <i>JOURNAL OF VOICE</i> 24 (5): 540–555. doi:10.1016/j.jvoice.2008.12.014.</div>\n","mla":" <div class=\"csl-entry\">Maryn, Youri, et al. “Toward Improved Ecological Validity in the Acoustic Measurement of Overall Voice Quality: Combining Continuous Speech and Sustained Vowels.” <i>JOURNAL OF VOICE</i>, vol. 24, no. 5, 2010, pp. 540–55, doi:10.1016/j.jvoice.2008.12.014.</div>\n"},"handle":"http://hdl.handle.net/1854/LU-780271","article_type":"original","author":[{"ugent_id":["802002602363"],"affiliation":[{"ugent_id":"GE37","path":[{"ugent_id":"UGent"},{"ugent_id":"GE"},{"ugent_id":"GE37"}]}],"last_name":"Maryn","_id":"1B2AC726-F0EE-11E1-A9DE-61C894A0A6B4","biblio_id":"1B2AC726-F0EE-11E1-A9DE-61C894A0A6B4","first_name":"Youri","orcid_id":"0000-0003-1491-4068","name_last_first":"Maryn, Youri","name":"Youri Maryn"},{"name_last_first":"Corthals, Paul","name":"Paul Corthals","first_name":"Paul","biblio_id":"F5A2F41A-F0ED-11E1-A9DE-61C894A0A6B4","_id":"F5A2F41A-F0ED-11E1-A9DE-61C894A0A6B4","last_name":"Corthals","affiliation":[{"ugent_id":"GE37","path":[{"ugent_id":"UGent"},{"ugent_id":"GE"},{"ugent_id":"GE37"}]}],"ugent_id":["801001323297"]},{"_id":"F9436D48-F0ED-11E1-A9DE-61C894A0A6B4","last_name":"Van Cauwenberge","name_last_first":"Van Cauwenberge, Paul","name":"Paul Van Cauwenberge","biblio_id":"F9436D48-F0ED-11E1-A9DE-61C894A0A6B4","first_name":"Paul","ugent_id":["979776493590"],"affiliation":[{"ugent_id":"UGent","path":[{"ugent_id":"UGent"}],"name":"Ghent University"}]},{"first_name":"Nelson","name_last_first":"Roy, Nelson","name":"Nelson Roy","last_name":"Roy"},{"last_name":"De Bodt","_id":"F53F45D2-F0ED-11E1-A9DE-61C894A0A6B4","biblio_id":"F53F45D2-F0ED-11E1-A9DE-61C894A0A6B4","first_name":"Marc","name":"Marc De Bodt","name_last_first":"De Bodt, Marc","ugent_id":["801001147889","973840467042"],"affiliation":[{"path":[{"ugent_id":"UGent"}],"ugent_id":"UGent","name":"Ghent University"}]}],"title":"Toward improved ecological validity in the acoustic measurement of overall voice quality: combining continuous speech and sustained vowels","_id":"780271","wos_id":"000281710100004","issue":"5","abstract_full":[{"text":"To improve ecological validity, perceptual and instrumental assessment of disordered voice, including overall voice quality, should ideally sample both sustained vowels and continuous speech. This investigation assessed the utility of combining both voice contexts for the purpose of auditory-perceptual ratings as well as acoustic measurement of overall voice quality. Sustained vowel and continuous speech samples from 251 subjects with (n = 229) or without (n = 22) various voice disorders were concatenated and perceptually rated on overall voice quality by five experienced voice clinicians. After removing the nonvoiced segments within the continuous speech samples, the concatenated samples were analyzed using 13 acoustic measures based on fundamental frequency perturbation, amplitude perturbation, spectral and cepstral analyses. Stepwise multiple regression analysis yielded a six-variable acoustic model for the multiparametric measurement of overall voice quality of the concatenated samples (with a cepstral measure as the main contributor to the prediction of overall voice quality). The correlation of this model with mean ratings of overall voice quality resulted in r(s) = 0.78. A cross-validation approach involving the iterated internal cross-correlations with 30 subgroups of 100, 50, and 10 samples confirmed a comparable degree of association. Furthermore, the ability of the model to distinguish voice-disordered from vocally normal participants was assessed using estimates of diagnostic precision including receiver operating characteristic (ROC) curve analysis, sensitivity, and specificity, as well as likelihood ratios (LRs), which adjust for base-rate differences between the groups. Depending on the cutoff criteria employed, the analyses revealed an impressive area under ROC = 0.895 as well as respectable sensitivity, specificity, and LR. The results support the diagnostic utility of combining voice samples from both continuous speech and sustained vowels in acoustic and perceptual analysis of disordered voice. The findings are discussed in relation to the extant literature and the need for further refinement of the acoustic algorithm.","lang":"eng"}],"issn":["0892-1997"],"status":"public","doi":["10.1016/j.jvoice.2008.12.014"],"jcr":{"category_rank":"20/41","eigenfactor":0.00355,"category":"OTORHINOLARYNGOLOGY","total_cites":1835,"category_quartile":2,"impact_factor":1.108,"impact_factor_5yr":1.475,"prev_impact_factor":1.587,"prev_category_vigintile":6,"prev_category_decile":3,"prev_category_quartile":2,"immediacy_index":0.26,"category_decile":5,"category_vigintile":10},"publication_status_sort":2,"year":"2010","language":["eng"],"subject":["Medicine and Health Sciences"],"external":0,"created_by":{"ugent_id":["801001323297"],"affiliation":[{"path":[{"ugent_id":"UGent"},{"ugent_id":"GE"},{"ugent_id":"GE37"}],"ugent_id":"GE37"}],"_id":"F5A2F41A-F0ED-11E1-A9DE-61C894A0A6B4","last_name":"Corthals","name_last_first":"Corthals, Paul","name":"Paul Corthals","first_name":"Paul","biblio_id":"F5A2F41A-F0ED-11E1-A9DE-61C894A0A6B4"},"affiliation":[{"name":"Department of Oto-rhino-laryngology and logopaedic-audiologic sciences (ceased 1-10-2018)","ugent_id":"GE19","path":[{"ugent_id":"UGent"},{"ugent_id":"GE"},{"ugent_id":"GE19"}]},{"path":[{"ugent_id":"UGentAssoc"},{"ugent_id":"HOGENT"}],"ugent_id":"HOGENT","name":"University College Ghent"}],"file":[{"access":"restricted","kind":"fullText","content_type":"application/pdf","url":"https://biblio.ugent.be/publication/780271/file/2090498.pdf","size":"874672","_id":"2090498","thumbnail_url":"https://biblio.ugent.be/publication/780271/file/2090498/thumbnail.png","name":"Maryn_2010_JV_24_5_540.pdf","sha256":"0590f3a5564846a562024b0189c549c146849a8173877d91917681deab4416e8"},{"kind":"fullText","sha256":"34fc6390270fb3144e98ecd29917e360207b3169c3ef075039b83e01388618f3","size":"876428","_id":"786802","access":"private"}],"wos_type":"Article","volume":"24","keyword":["DYSPHONIC VOICE","AERODYNAMIC MEASUREMENTS","PERCEPTUAL EVALUATION","VISUAL ANALOG SCALE","BREATHY VOCAL QUALITY","CEPSTRAL PEAK PROMINENCE","Continuous speech","Sustained vowel","Harmonics-to-noise ratio","Spectral measure","Cepstral measure","Perceptual rating","Overall voice quality","Multivariate acoustic measurement","PATHOLOGICAL VOICE","NORMAL SPEAKERS","GRBAS SCALE","RELIABILITY","Amplitude perturbation"],"classification":"A1","type":"journalArticle","page":{"last":"555","first":"540"},"copyright_statement":"No license (in copyright)","date_updated":"2026-03-31 14:26:32","publication_status":"published","abstract":["To improve ecological validity, perceptual and instrumental assessment of disordered voice, including overall voice quality, should ideally sample both sustained vowels and continuous speech. This investigation assessed the utility of combining both voice contexts for the purpose of auditory-perceptual ratings as well as acoustic measurement of overall voice quality. Sustained vowel and continuous speech samples from 251 subjects with (n = 229) or without (n = 22) various voice disorders were concatenated and perceptually rated on overall voice quality by five experienced voice clinicians. After removing the nonvoiced segments within the continuous speech samples, the concatenated samples were analyzed using 13 acoustic measures based on fundamental frequency perturbation, amplitude perturbation, spectral and cepstral analyses. Stepwise multiple regression analysis yielded a six-variable acoustic model for the multiparametric measurement of overall voice quality of the concatenated samples (with a cepstral measure as the main contributor to the prediction of overall voice quality). The correlation of this model with mean ratings of overall voice quality resulted in r(s) = 0.78. A cross-validation approach involving the iterated internal cross-correlations with 30 subgroups of 100, 50, and 10 samples confirmed a comparable degree of association. Furthermore, the ability of the model to distinguish voice-disordered from vocally normal participants was assessed using estimates of diagnostic precision including receiver operating characteristic (ROC) curve analysis, sensitivity, and specificity, as well as likelihood ratios (LRs), which adjust for base-rate differences between the groups. Depending on the cutoff criteria employed, the analyses revealed an impressive area under ROC = 0.895 as well as respectable sensitivity, specificity, and LR. The results support the diagnostic utility of combining voice samples from both continuous speech and sustained vowels in acoustic and perceptual analysis of disordered voice. The findings are discussed in relation to the extant literature and the need for further refinement of the acoustic algorithm."],"date_created":"2009-11-12 17:42:03"}
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