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一种实时角膜双折射补偿葡萄糖传感偏振计的研制。

Development of a real-time corneal birefringence compensated glucose sensing polarimeter.

作者信息

Cameron Brent D, Anumula Harini

机构信息

Department of Bioengineering, University of Toledo, Toledo, Ohio 43606-3390, USA.

出版信息

Diabetes Technol Ther. 2006 Apr;8(2):156-64. doi: 10.1089/dia.2006.8.156.

Abstract

BACKGROUND

As is well known, in order to optimally manage diabetes mellitus, monitoring blood glucose levels several times daily is recommended so appropriate actions can be taken to maintain these levels within a near-normal physiologic range. One technique that shows promise is the use of optical polarimetry. This technique has the potential to noninvasively measure physiological glucose levels in the eye that are correlated to blood glucose concentrations. To date, the main factor limiting in vivo polarimetric glucose measurements is corneal birefringence, which tends to mask the glucose signature. In this investigation, a method to compensate for the effects of corneal birefringence is demonstrated, thus allowing for polarimetric glucose measurements in samples with time-varying birefringence contributions.

METHODS

In this paper, using a custom-designed laser-based optical polarimetry system with an integrated birefringence compensator, noninvasive glucose measurements in the physiological range are accurately measured within various birefringent samples similar in structure to the eye.

RESULTS

Using the laser-based polarimetric approach, it is shown that glucose levels within the physiological range in the presence of significant varying birefringence can be accurately predicted with as low as 13.84 mg/dL error.

CONCLUSIONS

The ability to compensate for corneal birefringence effects provides promise for the eventual development of a commercial home-based noninvasive polarimetric glucose monitor.

摘要

背景

众所周知,为了优化糖尿病管理,建议每日多次监测血糖水平,以便采取适当行动将这些水平维持在接近正常的生理范围内。一种有前景的技术是光学偏振测量法。该技术有潜力无创测量与血糖浓度相关的眼内生理葡萄糖水平。迄今为止,限制体内偏振葡萄糖测量的主要因素是角膜双折射,它往往会掩盖葡萄糖信号。在本研究中,展示了一种补偿角膜双折射影响的方法,从而能够在具有随时间变化的双折射贡献的样本中进行偏振葡萄糖测量。

方法

在本文中,使用定制设计的基于激光的光学偏振测量系统,该系统带有集成双折射补偿器,在结构与眼睛相似的各种双折射样本中准确测量了生理范围内的无创葡萄糖水平。

结果

使用基于激光的偏振测量方法表明,在存在显著变化双折射的情况下,生理范围内的葡萄糖水平能够以低至13.84mg/dL的误差被准确预测。

结论

补偿角膜双折射影响的能力为最终开发基于家庭的商业无创偏振葡萄糖监测仪带来了希望。

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