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Spectrum analysis of photoacoustic imaging data from prostate adenocarcinoma tumors in a murine model

机译:小鼠模型中前列腺腺癌光声成像数据的频谱分析

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Spectrum analysis of the radio-frequency signals from photoacoustic imaging is performed to generate parameters for tissue characterization that are calibrated for the response of the imaging system. Calibrated photoacoustic spectra were obtained by dividing the photoacoustic spectra from tissue by the spectrum of a point absorber. The resulting quasi-linear spectra were fit by linear regression, and midband fit, slope, and intercept were computed from the best-fit line. These spectral parameters were compared between tumors resulting from a prostate adenocarcinoma model and adjacent normal tissue in a murine model. The mean midband fit and intercept showed significant differences between regions of tumor and adjacent normal tissue. These initial results suggest that such frequency-domain analysis can provide a quantitative method for tissue characterization using photoacoustic imaging.
机译:执行来自光声成像的射频信号的频谱分析,以生成用于组织表征的参数,这些参数已针对成像系统的响应进行了校准。通过将来自组织的光声光谱除以点吸收器的光谱来获得校准的光声光谱。通过线性回归拟合得到的准线性光谱,并从最佳拟合线计算中频带拟合,斜率和截距。在由前列腺腺癌模型引起的肿瘤与鼠模型中相邻的正常组织之间比较了这些光谱参数。平均中频带贴合度和截距显示出肿瘤区域与相邻正常组织之间的显着差异。这些初步结果表明,这种频域分析可以为使用光声成像的组织表征提供定量方法。

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