Spitzer Philipp, Zierhofer Clemens, Hochmair Erwin
University of Innsbruck, Institute of Applied Physics, Technikerstrasse 25, 6020 Innsbruck, Austria.
Biomed Eng Online. 2006 Feb 22;5:13. doi: 10.1186/1475-925X-5-13.
Experimental results are commonly fitted by determining parameter values of suitable mathematical expressions. In case a relation exists between different data sets, the accuracy of the parameters obtained can be increased by incorporating this relationship in the fitting process instead of fitting the recordings separately.
An algorithm to fit multiple measured curves simultaneously was developed. The method accounts for parameters that are shared by some curves. It can be applied to either linear or nonlinear equations. Simulated noisy "measurement results" were created to compare the introduced method to the "straight forward" way of fitting the curves separately.
The analysis of the simulated measurements confirm, that the introduced method yields more accurate parameters compared to the ones gained by fitting the measurements separately. Therefore it needs more computer time. As an example, the new fitting algorithm is applied to the measurements of the evoked compound action potentials (ECAP) of the auditory nerve: This leads to promising ideas to reduce artefacts generated by the measuring process.
The introduced fitting algorithm uses the relationship between multiple measurement results to increase the accuracy of the parameters. Its application in the field of ECAP measurements is promising and should be further investigated.
实验结果通常通过确定合适数学表达式的参数值来拟合。如果不同数据集之间存在某种关系,那么在拟合过程中纳入这种关系,而非单独拟合各记录,所获得参数的准确性会得以提高。
开发了一种同时拟合多条测量曲线的算法。该方法考虑了部分曲线共享的参数。它可应用于线性或非线性方程。创建了模拟噪声“测量结果”,以便将引入的方法与分别拟合曲线的“直接”方法进行比较。
对模拟测量的分析证实,与单独拟合测量值所获得的参数相比,引入的方法能产生更准确的参数。因此,它需要更多的计算机时间。例如,新的拟合算法应用于听神经诱发复合动作电位(ECAP)的测量:这为减少测量过程中产生的伪迹带来了有前景的思路。
引入的拟合算法利用多个测量结果之间的关系来提高参数的准确性。其在ECAP测量领域的应用前景良好,应进一步研究。