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使用偏最小二乘法对1型糖尿病患者群体的多焦视网膜电图进行分析,揭示了视网膜功能变化的空间和时间分布。

Analysis of multifocal electroretinograms from a population with type 1 diabetes using partial least squares reveals spatial and temporal distribution of changes to retinal function.

作者信息

Wright Tom, Cortese Filomeno, Nilsson Josefin, Westall Carol

机构信息

Department of Clinical Neuroscience, Institute of Neuroscience and Physiology, The Sahlgrenska Academy at the University of Gothenburg, Göteborg, Sweden.

出版信息

Doc Ophthalmol. 2012 Aug;125(1):31-42. doi: 10.1007/s10633-012-9330-5. Epub 2012 May 20.

Abstract

Spatial-temporal partial least squares (ST-PLS) is a multivariate statistical analysis that has improved the analysis of modern imaging techniques. Multifocal electroretinograms (mfERGs) contain a large amount of data, and averaging and grouping have been used to reduce the amount of data to levels that can be handled using traditional statistical methods. In contrast, using all acquired data points, ST-PLS enables statistically rigorous testing of changes in waveform shape and in the distributed signal related to retinal function. We hypothesise that ST-PLS will improve analysis of the mfERG. Two mfERG protocols, a 103 hexagon clinical protocol and a slow-flash mfERG (sf-mfERG) protocol, were recorded from an adolescent population with type 1 diabetes and an age similar control population. The standard mfERGs were analysed using a template-fitting algorithm and the sf-mfERG using a signal-to-noise measure. The results of these traditional analysis techniques are compared with those of the ST-PLS analysis. Traditional analysis of the mfERG recordings revealed changes between groups for implicit time but not amplitude; however, the spatial location of these changes could not be identified. In contrast, ST-PLS detected significant changes between groups and displayed the spatial location of these changes on the retinal map and the temporal location within the mfERG waveforms. ST-PLS confirmed that changes to diabetic retinal function occur before the onset of clinical pathology. In addition, it revealed two distinct patterns of change depending on whether the multifocal paradigm was optimised to target outer retinal function (photoreceptors) or middle/inner retinal function (collector cells).

摘要

时空偏最小二乘法(ST-PLS)是一种多元统计分析方法,它改进了现代成像技术的分析。多焦视网膜电图(mfERG)包含大量数据,平均和分组已被用于将数据量减少到可以使用传统统计方法处理的水平。相比之下,ST-PLS使用所有采集到的数据点,能够对与视网膜功能相关的波形形状和分布信号的变化进行严格的统计测试。我们假设ST-PLS将改进mfERG的分析。从患有1型糖尿病的青少年人群和年龄相仿的对照人群中记录了两种mfERG方案,一种是103六边形临床方案,另一种是慢闪光mfERG(sf-mfERG)方案。使用模板拟合算法分析标准mfERG,使用信噪比测量分析sf-mfERG。将这些传统分析技术的结果与ST-PLS分析的结果进行比较。mfERG记录的传统分析显示,两组之间在隐含时间上有变化,但在振幅上没有变化;然而,这些变化的空间位置无法确定。相比之下,ST-PLS检测到两组之间的显著变化,并在视网膜地图上显示了这些变化的空间位置以及mfERG波形内的时间位置。ST-PLS证实糖尿病视网膜功能的变化发生在临床病理出现之前。此外,它还揭示了两种不同的变化模式,这取决于多焦模式是针对外视网膜功能(光感受器)还是中/内视网膜功能(收集细胞)进行优化。

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本文引用的文献

1
ISCEV standard for clinical multifocal electroretinography (mfERG) (2011 edition).
Doc Ophthalmol. 2012 Feb;124(1):1-13. doi: 10.1007/s10633-011-9296-8. Epub 2011 Oct 30.
2
Acute hypoglycemia decreases central retinal function in the human eye.
Vision Res. 2011 Jul 15;51(14):1623-6. doi: 10.1016/j.visres.2011.05.003. Epub 2011 May 12.
3
Multifocal electroretinograms predict onset of diabetic retinopathy in adult patients with diabetes.
Invest Ophthalmol Vis Sci. 2011 Feb 9;52(2):772-7. doi: 10.1167/iovs.10-5931. Print 2011 Feb.
4
Complications of type 1 diabetes.
Endocrinol Metab Clin North Am. 2010 Sep;39(3):625-40. doi: 10.1016/j.ecl.2010.05.009.
5
Partial Least Squares (PLS) methods for neuroimaging: a tutorial and review.
Neuroimage. 2011 May 15;56(2):455-75. doi: 10.1016/j.neuroimage.2010.07.034. Epub 2010 Jul 23.
6
Multifocal ERG defects associated with insufficient long-term glycemic control in adolescents with type 1 diabetes.
Invest Ophthalmol Vis Sci. 2010 Oct;51(10):5297-303. doi: 10.1167/iovs.10-5200. Epub 2010 May 19.
7
The temporal interaction of modality specific and process specific neural networks supporting simple working memory tasks.
Neuropsychologia. 2009 Jul;47(8-9):1954-63. doi: 10.1016/j.neuropsychologia.2009.03.007. Epub 2009 Mar 13.
8
ISCEV Standard for full-field clinical electroretinography (2008 update).
Doc Ophthalmol. 2009 Feb;118(1):69-77. doi: 10.1007/s10633-008-9155-4. Epub 2008 Nov 22.
9
Local diabetic retinopathy prediction by multifocal ERG delays over 3 years.
Invest Ophthalmol Vis Sci. 2008 Apr;49(4):1622-8. doi: 10.1167/iovs.07-1157.
10
A comparison of signal detection techniques in the multifocal electroretinogram.
Doc Ophthalmol. 2008 Sep;117(2):163-70. doi: 10.1007/s10633-008-9121-1. Epub 2008 Mar 7.

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