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Analyzing the Granularity and Cost of Annotation in Clinical Sequence Labeling

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arxiv 2108.09913 v1 pith:ASIKRO2D submitted 2021-08-23 cs.CL

classification cs.CL
keywords sequencegranularityannotationlabelingperformanceadditionalclinicalfeatures
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Well-annotated datasets, as shown in recent top studies, are becoming more important for researchers than ever before in supervised machine learning (ML). However, the dataset annotation process and its related human labor costs remain overlooked. In this work, we analyze the relationship between the annotation granularity and ML performance in sequence labeling, using clinical records from nursing shift-change handover. We first study a model derived from textual language features alone, without additional information based on nursing knowledge. We find that this sequence tagger performs well in most categories under this granularity. Then, we further include the additional manual annotations by a nurse, and find the sequence tagging performance remaining nearly the same. Finally, we give a guideline and reference to the community arguing it is not necessary and even not recommended to annotate in detailed granularity because of a low Return on Investment. Therefore we recommend emphasizing other features, like textual knowledge, for researchers and practitioners as a cost-effective source for increasing the sequence labeling performance.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. MIRA-Ev:A Benchmark for Granular Evidence Detection and Relational Reasoning in Clinical Exams

    cs.CL 2026-07 conditional novelty 6.0 of 10

    MIRA-Ev is a Spanish/English/Basque benchmark that annotates clinical exam cases with span-level evidence, claims, and support/attack relations so models can be scored on reasoning quality, not just answer accuracy.

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