GPT-4 使心血管磁共振报告变得简单易懂。

IF 4.2 1区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS
Babak Salam, Dmitrij Kravchenko, Sebastian Nowak, Alois M Sprinkart, Leonie Weinhold, Anna Odenthal, Narine Mesropyan, Leon M Bischoff, Ulrike Attenberger, Daniel L Kuetting, Julian A Luetkens, Alexander Isaak
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引用次数: 0

摘要

背景:目的:评估 GPT-4 在将心血管磁共振(CMR)报告转化为医学外行人可理解的文本方面的性能:采用 GPT-4 架构的 ChatGPT 生成了 20 份不同 CMR 报告的三个不同解释版本,使用相同的提示 "用医学外行人可理解的语言解释放射学报告"(n=60)。两名心血管放射科医生对报告的可理解性、事实的正确性、相关结果的完整性以及是否存在潜在危害进行了评估,而 13 名非专业医务人员则以李克特量表(1 分 "非常不同意",5 分 "非常同意")对原始报告和 GPT-4 报告的可理解性进行了评估。可读性采用自动可读性指数(ARI)进行测量。统计分析采用线性混合效应模型(数值为中位数[四分位之间])和类内相关系数(ICC):GPT-4报告的平均生成时间为52秒±13秒,GPT-4报告的ARI得分较低(10 [9-12] vs 5 [4-6];pth级别或更高。放射医师对 GPT-4 报告的正确性(5 [4-5])、完整性(5 [5-5])和无潜在危害性(5 [5-5])的评分均达到较高水平;94%(113/120)的报告在事实正确性方面 "非常一致",81%(97/120)的报告在相关结果的完整性方面 "非常一致"。由同一原始报告生成的三份简化报告之间的外行人可理解性评分的测试-再测试一致性非常高(ICC:0.62; p结论:GPT-4 可以可靠地将复杂的 CMR 报告转化为更易懂、更易于普通人理解的语言,同时基本保持事实的正确性和完整性,因此有助于以通俗易懂的方式传达与患者相关的放射学信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generative Pre-trained Transformer 4 makes cardiovascular magnetic resonance reports easy to understand.

Background: Patients are increasingly using Generative Pre-trained Transformer 4 (GPT-4) to better understand their own radiology findings.

Purpose: To evaluate the performance of GPT-4 in transforming cardiovascular magnetic resonance (CMR) reports into text that is comprehensible to medical laypersons.

Methods: ChatGPT with GPT-4 architecture was used to generate three different explained versions of 20 various CMR reports (n = 60) using the same prompt: "Explain the radiology report in a language understandable to a medical layperson". Two cardiovascular radiologists evaluated understandability, factual correctness, completeness of relevant findings, and lack of potential harm, while 13 medical laypersons evaluated the understandability of the original and the GPT-4 reports on a Likert scale (1 "strongly disagree", 5 "strongly agree"). Readability was measured using the Automated Readability Index (ARI). Linear mixed-effects models (values given as median [interquartile range]) and intraclass correlation coefficient (ICC) were used for statistical analysis.

Results: GPT-4 reports were generated on average in 52 s ± 13. GPT-4 reports achieved a lower ARI score (10 [9-12] vs 5 [4-6]; p < 0.001) and were subjectively easier to understand for laypersons than original reports (1 [1] vs 4 [4,5]; p < 0.001). Eighteen out of 20 (90%) standard CMR reports and 2/60 (3%) GPT-generated reports had an ARI score corresponding to the 8th grade level or higher. Radiologists' ratings of the GPT-4 reports reached high levels for correctness (5 [4, 5]), completeness (5 [5]), and lack of potential harm (5 [5]); with "strong agreement" for factual correctness in 94% (113/120) and completeness of relevant findings in 81% (97/120) of reports. Test-retest agreement for layperson understandability ratings between the three simplified reports generated from the same original report was substantial (ICC: 0.62; p < 0.001). Interrater agreement between radiologists was almost perfect for lack of potential harm (ICC: 0.93, p < 0.001) and moderate to substantial for completeness (ICC: 0.76, p < 0.001) and factual correctness (ICC: 0.55, p < 0.001).

Conclusion: GPT-4 can reliably transform complex CMR reports into more understandable, layperson-friendly language while largely maintaining factual correctness and completeness, and can thus help convey patient-relevant radiology information in an easy-to-understand manner.

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来源期刊
CiteScore
10.90
自引率
12.50%
发文量
61
审稿时长
6-12 weeks
期刊介绍: Journal of Cardiovascular Magnetic Resonance (JCMR) publishes high-quality articles on all aspects of basic, translational and clinical research on the design, development, manufacture, and evaluation of cardiovascular magnetic resonance (CMR) methods applied to the cardiovascular system. Topical areas include, but are not limited to: New applications of magnetic resonance to improve the diagnostic strategies, risk stratification, characterization and management of diseases affecting the cardiovascular system. New methods to enhance or accelerate image acquisition and data analysis. Results of multicenter, or larger single-center studies that provide insight into the utility of CMR. Basic biological perceptions derived by CMR methods.
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