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利用超声背向散射信号和 Nakagami 统计分布评估局部白内障硬度。

Using ultrasound backscattering signals and Nakagami statistical distribution to assess regional cataract hardness.

作者信息

Caixinha Miguel, Jesus Danilo A, Velte Elena, Santos Mário J, Santos Jaime B

出版信息

IEEE Trans Biomed Eng. 2014 Dec;61(12):2921-9. doi: 10.1109/TBME.2014.2335739. Epub 2014 Jul 8.

DOI:10.1109/TBME.2014.2335739
PMID:25014952
Abstract

This study aims to analyze the protein aggregates spatial distribution for different cataract degrees, and correlate this information with the lens acoustical parameters and by this way, assess the cataract regional hardness. Different cataract degrees were induced ex vivo in porcine lenses. A 25 MHz ultrasonic transducer was used to obtain the acoustical parameters (velocity, attenuation, and backscattering signals). B-scan and Nakagami images were constructed. Also, lenses with different cataract degrees were sliced in two regions (nucleus and cortex), for fibers and collagen detection. A significant increase with cataract formation was found for the velocity, attenuation, and brightness intensity of the B-scan images and Nakagami m parameter ( ). The acoustical parameters showed a good to moderate correlation with the m parameter for the different stages of cataract formation. A strong correlation was found between the protein aggregates in the cortex and the m parameter. Lenses without cataract are characterized using a classification and regression tree, by a mean brightness intensity ≤0.351, a variance of the B-scan brightness intensity ≤0.070, a velocity ≤1625 m/s, and an attenuation ≤0.415 dB/mm·MHz (sensitivity: 100% and specificity: 72.6%). To characterize different cataract degrees, the m parameter should be considered. Initial stages of cataract are characterized by a mean brightness intensity >0.351 and a variance of the m parameter >0.110. Advanced stages of cataract are characterized by a mean brightness intensity >0.351, a variance of the m parameter ≤0.110, and a mean m parameter >0.374. For initial and advanced stages of cataract, a sensitivity of 78.4% and a specificity of 86.5% are obtained.

摘要

本研究旨在分析不同白内障程度下蛋白质聚集体的空间分布,并将此信息与晶状体声学参数相关联,以此评估白内障区域硬度。在猪晶状体上离体诱导出不同程度的白内障。使用25MHz超声换能器获取声学参数(速度、衰减和后向散射信号)。构建了B扫描图像和 Nakagami图像。此外,将不同白内障程度的晶状体切成两个区域(核和皮质),用于检测纤维和胶原蛋白。发现随着白内障形成,B扫描图像的速度、衰减和亮度强度以及 Nakagami m参数( )显著增加。声学参数与白内障形成不同阶段的m参数显示出良好到中等程度的相关性。在皮质中的蛋白质聚集体与m参数之间发现了强相关性。对于无白内障的晶状体,使用分类回归树进行特征描述,其平均亮度强度≤0.351,B扫描亮度强度方差≤0.070,速度≤1625m/s,衰减≤0.415dB/mm·MHz(灵敏度:100%,特异性:72.6%)。为了表征不同的白内障程度,应考虑m参数。白内障初期的特征是平均亮度强度>0.351且m参数方差>0.110。白内障晚期的特征是平均亮度强度>

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