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首页> 外文期刊>Applied mathematics and computation >Deconvolving an estimate of breath measured blood alcohol concentration from biosensor collected transdermal ethanol data
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Deconvolving an estimate of breath measured blood alcohol concentration from biosensor collected transdermal ethanol data

机译:用生物传感器收集的经皮乙醇数据对呼吸测量的血液中酒精浓度的估计值进行反卷积

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摘要

Biosensor measurement of transdermal alcohol concentration in perspiration exhibits significant variance from subject to subject and device to device. Short duration data collected in a controlled clinical setting is used to calibrate a forward model for ethanol transport from the blood to the sensor. The calibrated model is then used to invert transdermal signals collected in the field (short or long duration) to obtain an estimate for breath measured blood alcohol concentration. A distributed parameter model for the forward transport of ethanol from the blood through the skin and its processing by the sensor is developed. Model calibration is formulated as a nonlinear least squares fit to data. The fit model is then used as part of a spline based scheme in the form of a regularized, non-negatively constrained linear deconvolution. Fully discrete, steepest descent based schemes for solving the resulting optimization problems are developed. The adjoint method is used to accurately and efficiently compute requisite gradients. Efficacy is demonstrated on subject field data. (C) 2007 Elsevier Inc. All rights reserved.
机译:生物传感器对汗液中透皮酒精浓度的测量结果在受试者与受试者之间以及装置与装置之间显示出显着差异。在受控的临床环境中收集的短期数据用于校准乙醇从血液向传感器传输的正向模型。然后,将校准后的模型用于反转在野外(短期或长期)收集的透皮信号,以获得对呼吸测得的血液酒精浓度的估算值。建立了一个分布式参数模型,用于乙醇从血液中向前输送到皮肤,并通过传感器对其进行处理。将模型校准公式化为适合数据的非线性最小二乘法。然后将拟合模型以正则化,非负约束线性反卷积的形式用作基于样条的方案的一部分。开发了用于解决最终优化问题的基于完全离散,最陡下降的方案。伴随方法用于准确有效地计算必要的梯度。在受试者领域数据上证明了功效。 (C)2007 Elsevier Inc.保留所有权利。

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