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Judgment of Slang Based on Character Feature and Feature Expression Based on Slang's Context Feature.

, , , and . SCDS, volume 652 of Communications in Computer and Information Science, page 280-288. Springer, (2016)

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Semi-Automatic Creation of Youth Slang Corpus and Its Application to Affective Computing., and . IEEE Trans. Affect. Comput., 7 (2): 176-189 (2016)An Approach for Conversion of Japanese Emoticons into Emoji Based on Character-Level Neural Autoencoder., , , and . FSDM, volume 320 of Frontiers in Artificial Intelligence and Applications, page 635-644. IOS Press, (2019)An Approach to Refine Translation Candidates for Emotion Estimation in Japanese-English Language., , , and . KEOD, page 74-83. SciTePress, (2015)Emotion Estimation Algorithm Based on Interpersonal Emotion Included in Emotional Dialogue Sentences., , , and . MICAI, volume 4827 of Lecture Notes in Computer Science, page 1035-1045. Springer, (2007)Reidentification of Persons Using Clothing Features in Real-Life Video., , , , and . Appl. Comput. Intell. Soft Comput., (2017)ASCII Art Classification based on Deep Neural Networks Using Image Feature of Characters., , , and . J. Softw., 13 (10): 559-572 (2018)Emotion Recognition of Emoticons Based on Character Embedding., , , and . J. Softw., 12 (11): 849-857 (2017)Prediction of Number of Likes and Retweets based on the Features of Tweet Text and Images., , , and . NLPIR, page 94-101. ACM, (2021)Emoticon-Based Emotion Analysis for Weibo Articles in Sentence Level., , , , and . MIWAI, volume 11248 of Lecture Notes in Computer Science, page 104-112. Springer, (2018)Extraction Japanese Slang from Weblog Data based on Script Type and Stroke Count., , , , and . KES, volume 35 of Procedia Computer Science, page 464-473. Elsevier, (2014)