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A Japanese Masked Language Model for Academic Domain.

, , , , and . SDP@COLING, page 152-157. Association for Computational Linguistics, (2022)

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Using Natural Language Processing to Develop an Automated Orthodontic Diagnostic System., , , , , and . CoRR, (2019)Region-attentive multimodal neural machine translation., , , and . Neurocomputing, (2022)SAPPHIRE: Simple Aligner for Phrasal Paraphrase with Hierarchical Representation., , and . LREC, page 6861-6867. European Language Resources Association, (2020)Building a Non-Trivial Paraphrase Corpus Using Multiple Machine Translation Systems., , and . ACL (Student Research Workshop), page 36-42. Association for Computational Linguistics, (2017)Comparing BERT-based Reward Functions for Deep Reinforcement Learning in Machine Translation., , and . WAT@COLING, page 37-43. International Conference on Computational Linguistics, (2022)Distinct Label Representations for Few-Shot Text Classification., , , and . ACL/IJCNLP (2), page 831-836. Association for Computational Linguistics, (2021)Evaluation Dataset and System for Japanese Lexical Simplification., and . ACL (Student Research Workshop), page 35-40. The Association for Computer Linguistics, (2015)Text Classification with Negative Supervision., , , , and . ACL, page 351-357. Association for Computational Linguistics, (2020)Noun Paraphrasing Based on a Variety of Contexts., and . PACLIC, page 644-649. The PACLIC 28 Organizing Committee and PACLIC Steering Committee / ACL / Department of Linguistics, Faculty of Arts, Chulalongkorn University, (2014)RUSE: Regressor Using Sentence Embeddings for Automatic Machine Translation Evaluation., , and . WMT (shared task), page 751-758. Association for Computational Linguistics, (2018)