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基于数字技术的葡萄酒成分摄入量评估新方法:一种用于从单视图图像确定玻璃杯中红酒量的深度学习模型。

Novel digital-based approach for evaluating wine components' intake: A deep learning model to determine red wine volume in a glass from single-view images.

作者信息

Cobo Miriam, Relaño de la Guía Edgard, Heredia Ignacio, Aguilar Fernando, Lloret-Iglesias Lara, García Daniel, Yuste Silvia, Recio-Fernández Emma, Pérez-Matute Patricia, Motilva M José, Moreno-Arribas M Victoria, Bartolomé Begoña

机构信息

Institute of Physics of Cantabria (IFCA), CSIC - UC, 39005, Santander, Cantabria, Spain.

Institute of Food Science Research (CIAL), CSIC-UAM, 28049, Madrid, Spain.

出版信息

Heliyon. 2024 Aug 2;10(15):e35689. doi: 10.1016/j.heliyon.2024.e35689. eCollection 2024 Aug 15.

Abstract

Estimation of wine components' intake (polyphenols, alcohol, etc.) through Food Frequency Questionnaires (FFQs) may be particularly inaccurate. This paper reports the development of a deep learning (DL) method to determine red wine volume from single-view images, along with its application in a consumer study developed via a web service. The DL model demonstrated satisfactory performance not only in a daily lifelike images dataset (mean absolute error = 10 mL), but also in a real images dataset that was generated through the consumer study (mean absolute error = 26 mL). Based on the data reported by the participants in the consumer study (n = 38), average red wine volume in a glass was 114 ± 33 mL, which represents an intake of 137-342 mg of total polyphenols, 11.2 g of alcohol, 0.342 g of sugars, among other components. Therefore, the proposed method constitutes a diet-monitoring tool of substantial utility in the accurate assessment of wine components' intake.

摘要

通过食物频率问卷(FFQ)来估算葡萄酒成分(多酚、酒精等)的摄入量可能特别不准确。本文报告了一种深度学习(DL)方法的开发,该方法可从单视图图像确定红酒的饮用量,并将其应用于通过网络服务开展的一项消费者研究中。该DL模型不仅在逼真的日常生活图像数据集(平均绝对误差 = 10 mL)中表现出令人满意的性能,而且在通过消费者研究生成的真实图像数据集(平均绝对误差 = 26 mL)中也表现良好。根据消费者研究中参与者(n = 38)报告的数据,一杯红酒的平均饮用量为114 ± 33 mL,其中包括137 - 342 mg的总多酚、11.2 g酒精、0.342 g糖以及其他成分。因此,所提出的方法构成了一种在准确评估葡萄酒成分摄入量方面具有重要实用价值的饮食监测工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edc1/11336811/838111faf1a9/gr1.jpg

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