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从连续语音中自动提取形态句法测量值,区分非流利/语法障碍型和失语法型进行性失语症变异。

Discriminating nonfluent/agrammatic and logopenic PPA variants with automatically extracted morphosyntactic measures from connected speech.

机构信息

University of California, San Francisco Memory and Aging Center, CA, USA; Ruth S. Ammon College of Education and Health Sciences, Department of Communication Sciences and Disorders, Adelphi University, Garden City, NY, USA.

Heinz College of Information Systems and Public Policy, Carnegie Mellon University, Pittsburgh, PA, USA.

出版信息

Cortex. 2024 Apr;173:34-48. doi: 10.1016/j.cortex.2023.12.013. Epub 2024 Feb 1.

Abstract

Morphosyntactic assessments are important for characterizing individuals with nonfluent/agrammatic variant primary progressive aphasia (nfvPPA). Yet, standard tests are subject to examiner bias and often fail to differentiate between nfvPPA and logopenic variant PPA (lvPPA). Moreover, relevant neural signatures remain underexplored. Here, we leverage natural language processing tools to automatically capture morphosyntactic disturbances and their neuroanatomical correlates in 35 individuals with nfvPPA relative to 10 healthy controls (HC) and 26 individuals with lvPPA. Participants described a picture, and ensuing transcripts were analyzed via part-of-speech tagging to extract sentence-related features (e.g., subordinating and coordinating conjunctions), verbal-related features (e.g., tense markers), and nominal-related features (e.g., subjective and possessive pronouns). Gradient boosting machines were used to classify between groups using all features. We identified the most discriminant morphosyntactic marker via a feature importance algorithm and examined its neural correlates via voxel-based morphometry. Individuals with nfvPPA produced fewer morphosyntactic elements than the other two groups. Such features robustly discriminated them from both individuals with lvPPA and HCs with an AUC of .95 and .82, respectively. The most discriminatory feature corresponded to subordinating conjunctions was correlated with cortical atrophy within the left posterior inferior frontal gyrus across groups (p < .05). Automated morphosyntactic analysis can efficiently differentiate nfvPPA from lvPPA. Also, the most sensitive morphosyntactic markers correlate with a core atrophy region of nfvPPA. Our approach, thus, can contribute to a key challenge in PPA diagnosis.

摘要

形态句法评估对于表征非流利/语法障碍型原发性进行性失语症(nfvPPA)患者非常重要。然而,标准测试容易受到主试者偏差的影响,并且常常无法区分 nfvPPA 和 logopenic 变异型进行性失语症(lvPPA)。此外,相关的神经特征仍未得到充分探索。在这里,我们利用自然语言处理工具自动捕捉 35 名 nfvPPA 患者相对于 10 名健康对照(HC)和 26 名 lvPPA 患者的形态句法障碍及其神经解剖学相关性。参与者描述了一张图片,随后的转录本通过词性标注进行分析,以提取与句子相关的特征(例如,从属和并列连词)、与动词相关的特征(例如,时态标记)和与名词相关的特征(例如,主格和所有格代词)。梯度提升机用于使用所有特征对组间进行分类。我们通过特征重要性算法确定了最具区分性的形态句法标记,并通过基于体素的形态计量学检查其神经相关性。nfvPPA 患者产生的形态句法元素少于其他两组。这些特征能够分别将他们与 lvPPA 患者和 HC 患者很好地区分开来,AUC 分别为.95 和.82。最具区分性的特征对应于从属连词,与各组左后下额回的皮质萎缩相关(p<0.05)。自动形态句法分析可以有效地将 nfvPPA 与 lvPPA 区分开来。此外,最敏感的形态句法标记与 nfvPPA 的一个核心萎缩区域相关。因此,我们的方法可以为 PPA 诊断中的一个关键挑战做出贡献。

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