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Parametric standing wave generation of a shallow reflection plane in a nonrigid sample for use in a noninvasive blood glucose monitor

机译:非刚性样本中非刚性样本中浅反射平面的参数驻波生成

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摘要

When monitoring a moist sample using mid-infrared spectroscopy, its thickness must be to avoid light absorption from the water. Therefore, we propose an ultrasonic-assisted mid-infrared spectroscopic imaging method that can generate a reflection plane at a depth of from the surface of the sample by creating an ultrasonic standing wave. A frequency of 10 MHz is required to obtain an optical path length of in biological samples. However, because biological samples generally have high compressibility, attenuation of ultrasonic waves at this frequency is significant. We use agar as a biological phantom and observe that a reflection plane is generated inside by ultrasonic standing waves using optical coherence tomography. It is found that when the sample is vibrated with an 800-kHz ultrasonic wave, a reflection plane is generated at a depth shallower than the theoretically predicted value. We believe that the reflection plane is generated by parametric standing waves, which are based on parametric effect. We detect the waveform distortion using an acoustic emission sensor and confirm the higher harmonics that generate the observed reflection plane using a fast Fourier transform.
机译:使用中红外光谱法监测潮湿的样品时,其厚度必须避免从水中吸收光。因此,我们提出了一种超声辅助中红外光谱成像方法,该方法可以通过产生超声驻波来在距样品表面一定深度处生成反射平面。为了获得生物样品中的光程长度,需要10 MHz的频率。然而,由于生物样品通常具有高可压缩性,因此在该频率下超声波的衰减是显着的。我们将琼脂用作生物体模,并观察到使用光学相干断层扫描的超声波驻波在内部生成反射平面。发现当样品以800kHz超声波振动时,在比理论预测值浅的深度处产生反射面。我们认为,反射平面是由基于参量效应的参量驻波生成的。我们使用声发射传感器检测波形失真,并使用快速傅立叶变换确认生成观察到的反射平面的高次谐波。

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