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An in vivo bioelectronic tongue for sweetness detection using rat gustatory perception based on brain-computer interface

机译:一种基于脑电脑界面的大鼠诱惑感知的甜味检测中的一种体内生物电子榫

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The detection of sweetness is of great significance due to flavor and health concerns. In this study, an in vivo bioelectronic tongue for sweetness detection is constructed using rat gustatory system and implantable microelectrode array. By recording extracellular potentials in “sweet hotspot” within rat gustatory cortex, sweetener-evoked response patterns are generated by neural decoding algorithms. The results show that sweetener stimulation can cause a significant increase in the power spectral density of the local field potentials signal at 50–80 Hz, and its dynamic response in the time domain can be used for identification and classification of sweetness. Meanwhile, quantitative study shows that power of response signal is dose-dependent and the detection range covers sugar contents of daily beverages. Comparisons with results of human taste panelists also confirm that this in vivo bioelectronic tongue can work across species and has the potential to mimic human taste and evaluate sweetness in practical applications.
机译:由于风味和健康问题,甜味的检测具有重要意义。在该研究中,使用大鼠料理系统和可植入的微电极阵列构建用于甜度检测的体内生物电子榫舌。通过在大鼠味道皮质内的“甜热点”中的细胞外电位,通过神经解码算法产生甜味剂诱发的响应模式。结果表明,甜味剂刺激会在50-80Hz处导致局域电位信号的功率谱密度显着增加,时域中的动力响应可用于鉴定和分类甜味。同时,定量研究表明,响应信号的功率是依赖性的,检测范围涵盖日常饮料的糖含量。与人类品味小组成员结果的比较也证实,在体内生物电子舌中可以在物种中工作,并有可能模仿人类的味道并评估实际应用中的甜味。

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