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Photoacoustic spectroscopy based evaluation of breast cancer condition

机译:基于光声光谱的乳腺癌状况评估

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Photoacoustic spectroscopy, a hybrid of optics and acoustics has been gaining popularity in the biomedical field very fast. The main aim in the present study was to apply this technique to detect and distinguish breast tumor tissues from normal and hence develop a tool for clinical applications. There were 224 photoacoustic spectra recorded from 28 normal and 28 breast tumor tissues using PZT detector at 281nm pulsed laser excitations from Nd-YAG laser pumped frequency doubled dye laser system. The recorded time domain photoacoustic spectra were fast Fourier transformed into frequency domain patterns in the frequency region 0-1250kHz and from each pattern, 7 features (mean, median, mode, variance, standard deviation, area under the curve & spectral residual after fitting with 10th degree polynomial) were extracted using MATLAB algorithms. These features were then tested for their significance between normal and malignant conditions using Student T-test and two of them (variance, std. deviation) showing significant variation were selected for further discrimination analysis using supervised quadratic discriminate analysis (QDA). In QDA, 60 spectra from each of the normal and malignant were used for making the respective calibration sets and the remaining 52 spectra from each were used for the validation. The performance of the analysis tested for the frequency region 406.25 - 625.31 kHz, showed specificity and sensitivity values of 100% and 88.46% respectively suggesting possible application of the technique in breast tumor detection.
机译:光声光谱学是光学和声学的混合体,已在生物医学领域迅速普及。本研究的主要目的是将这种技术应用于检测和区分正常乳腺肿瘤组织,从而开发出一种用于临床的工具。 Nd-YAG激光泵浦倍频染料激光系统在281nm脉冲激光激发下,使用PZT检测器从28个正常和28个乳腺肿瘤组织记录了224个光声光谱。将记录的时域光声光谱快速傅立叶变换为0-1250kHz频率范围内的频域模式,并从每个模式中获得7个特征(均值,中位数,众数,众数,方差,标准偏差,曲线下面积和使用MATLAB算法提取10次多项式)。然后使用学生T检验对这些特征在正常和恶性条件之间的显着性进行了测试,并选择了其中两个表现出显着差异的特征(方差,标准偏差)用于有监督的二次判别分析(QDA)进行进一步的辨别分析。在QDA中,将来自正常和恶性肿瘤的60个光谱用于制作各自的校准组,并将来自每个恶性肿瘤和恶性肿瘤的其余52个光谱用于验证。针对406.25-625.31 kHz频率区域进行的分析性能测试表明,特异性和灵敏度分别为100%和88.46%,表明该技术可能在乳腺肿瘤检测中应用。

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