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Analysis of nocturnal oxygen saturation recordings using kernel entropy to assist in sleep apnea-hypopnea diagnosis

机译:使用核仁熵分析夜间血氧饱和度记录,以协助睡眠呼吸暂停-呼吸不足的诊断

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In this study, a new entropy measure known as kernel entropy (KerEnt), which quantifies the irregularity in a series, was applied to nocturnal oxygen saturation (SaO2) recordings. A total of 96 subjects suspected of suffering from sleep apnea-hypopnea syndrome (SAHS) took part in the study: 32 SAHS-negative and 64 SAHS-positive subjects. Their SaO2 signals were separately processed by means of KerEnt. Our results show that a higher degree of irregularity is associated to SAHS-positive subjects. Statistical analysis revealed significant differences between the KerEnt values of SAHS-negative and SAHS-positive groups. The diagnostic utility of this parameter was studied by means of receiver operating characteristic (ROC) analysis. A classification accuracy of 81.25% (81.25% sensitivity and 81.25% specificity) was achieved. Repeated apneas during sleep increase irregularity in SaO2 data. This effect can be measured by KerEnt in order to detect SAHS. This non-linear measure can provide useful information for the development of alternative diagnostic techniques in order to reduce the demand for conventional polysomnography (PSG).
机译:在这项研究中,一种新的熵测度被称为核熵(KerEnt),它可以量化一系列不规则性,并将其应用于夜间氧饱和度(SaO 2 )记录。共有96名怀疑患有睡眠呼吸暂停低通气综合征(SAHS)的受试者参加了该研究:32名SAHS阴性和64名SAHS阳性受试者。他们的SaO 2 信号通过KerEnt分别处理。我们的结果表明,较高程度的不规则性与SAHS阳性受试者有关。统计分析显示,SAHS阴性和SAHS阳性组的KerEnt值之间存在显着差异。通过接收器工作特性(ROC)分析研究了该参数的诊断效用。实现了81.25%的分类精度(81.25%的灵敏度和81.25%的特异性)。睡眠期间反复呼吸暂停会增加SaO 2 数据的不规则性。为了检测SAHS,KerEnt可以测量此效果。这种非线性测量可以为开发替代诊断技术提供有用的信息,从而减少对常规多导睡眠图(PSG)的需求。

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