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A parametric Probabilistic Context-Free Grammar for food intake analysis based on continuous meal weight measurements

机译:基于连续膳食重量测量的食物摄入量分析的参数概率无上下文语法

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Monitoring and modification of eating behaviour through continuous meal weight measurements has been successfully applied in clinical practice to treat obesity and eating disorders. For this purpose, the Mandometer, a plate scale, along with video recordings of subjects during the course of single meals, has been used to assist clinicians in measuring relevant food intake parameters. In this work, we present a novel algorithm for automatically constructing a subject's food intake curve using only the Mandometer weight measurements. This eliminates the need for direct clinical observation or video recordings, thus significantly reducing the manual effort required for analysis. The proposed algorithm aims at identifying specific meal related events (e.g. bites, food additions, artifacts), by applying an adaptive pre-processing stage using Delta coefficients, followed by event detection based on a parametric Probabilistic Context-Free Grammar on the derivative of the recorded sequence. Experimental results on a dataset of 114 meals from individuals suffering from obesity or eating disorders, as well as from individuals with normal BMI, demonstrate the effectiveness of the proposed approach.
机译:通过连续测量膳食重量来监测和改变饮食行为已在临床实践中成功地用于治疗肥胖和饮食失调。为此目的,平板式的Mandometer以及单餐过程中对象的视频记录已被用于协助临床医生测量相关的食物摄入参数。在这项工作中,我们提出了一种新颖的算法,仅使用Mandometer重量测量值即可自动构建受试者的食物摄入曲线。这样就无需进行直接的临床观察或录像,从而大大减少了分析所需的人工。所提出的算法旨在通过应用使用Delta系数的自适应预处理阶段来识别与膳食相关的特定事件(例如,咬伤,食物添加物,人工制品),然后基于参数的概率上下文无关文法对事件的派生进行事件检测。记录的顺序。来自肥胖或饮食失调的个体以及BMI正常的114顿饭的数据集的实验结果证明了该方法的有效性。

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