Combined spatial frequency spectroscopy analysis with visible resonance Raman for optical biopsy of

来源 :JournalofInnovativeOpticalHealthSciences | 被引量 : 0次 | 上传用户:michael_zhang_x
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
The purpose of this study is to examine optical spatial frequency spectroscopy analysis (SFSA) combined with visible resonance Raman (VRR) spectroscopic method, for the first time, to discriminate human brain metastases of lung cancers adenocarcinoma (ADC) and squamous cell carcinoma (SCC) from normal tissues. A total of 31 label-free micrographic images of three types of brain tissues were obtained using a confocal micro-Raman spectroscopic system. VRR spectra of the corresponding samples were synchronously collected using excitation wavelength of 532nm from the same sites of the tissues. Using SFSA method, the difference in the randomness of spatial frequency structures in the micrograph images was analyzed using Gaussian function fitting. The standard deviations, σ calculated from the spatial frequencies of the micrograph images were then analyzed using support vector machine (SVM) classifier. The key VRR biomolecular fingerprints of carotenoids, tryptophan, amide II, lipids and proteins (methylene/methyl groups) were also analyzed using SVM classifier. All three types of brain tissues were identified with high accuracy in the two approaches with high correlation. The results show that SFSA–VRR can potentially be a dual-modal method to provide new criteria for identifying the three types of human brain tissues, which are on-site, real-time and label-free and may improve the accuracy of brain biopsy.
其他文献
为了修正静压气浮激光点云数据扫描误差,提出了一种基于不同扫描速度下所采集的点云数据,通过最小二乘法分区间建立误差预测模型实现对相应误差修正的新方法。实验结果表明,静压气浮三维测量仪的测量精度随气浮导轨扫描速度变化在特定范围内基本呈二次曲线变化关系,该误差修正方法能够快速、准确地实现静压气浮激光点云数据扫描误差的修正,具有较大的适用性和实际参考价值。
将适用于三维场景信息非对称采集和显示的赝像-正像转换(POC)算法应用于全息体视图打印,得到了采样平面与全息图平面的距离、采样间隔与全息单元尺寸比例不同时,采样图像和合成视差图像之间的像素匹配关系。分析了曝光光学系统参数和POC算法参数对体视图再现像视场角的影响,得到了场景深度和视场角之间的制约关系。实验通过在不同场景深度下三维物体的再现,验证了POC算法对全息体视图打印的适用性以及场景深度和视场
期刊
40-GHz clock modulated signal as a pump to improve the efficiency of four-wave mixing (FWM)-based wavelength conversion in a 26.5-km dispersion shifted fiber (DSF) is investigated. The experimental results demonstrate that the conjugated FWM component has
A new three-dimensional (3D) optical fluorescent tomographic imaging scheme is proposed with structured illumination and spatial Fourier-domain decomposition methods for the first time. In this spatial Fourier-decomposition optical fluorescence tomography
为了获得成分及性能连续变化的梯度涂层,采用2.5 kW半导体激光器和四路联动送粉系统,利用旁轴送粉方式,通过成形过程中实时改变Ni25/Ni60双组分自熔合金粉末及AlSi12/Fe62双金属自熔合金粉末的组分配比,在45#钢棒状基体上分别制备了宽度为9 mm的粉末组分连续变化的螺旋状梯度涂层。对涂层试样进行能量色散谱(EDS)、显微组织及显微硬度测试。结果表明,沿涂层制备方向,Ni25/Ni60梯度涂层中Cr元素含量和显微硬度连续降低;AlSi12/Fe62梯度涂层中Fe、Cr和Al等元素含量分别沿制备
Microwave photonics, a field that crosscuts microwave/millimeter-wave engineering with optoelectronics, has sparked great interest from research and commercial sectors. This multidisciplinary fusion can achieve ultrawide bandwidth and ultrafast speed that
期刊
介绍用非晶硅微型辐射热量计制成的160×120元非致冷红外焦平面阵列的特点和性能,该阵列集成在一个无铅芯片载体封装中,像素间距为25μm,适合于大批量生产。25μm像元结构得益于较小的热时间常数,该技术使我们能够设计出更高的热隔离性能,从而能以35μm技术为基础开发出25μm技术。通过采用新的像素设计和更进一步推动设计方法,在没有采用复杂昂贵的双层结构的前提下,保持了较高填充因子。从读出集成电路结构、封装、可操作性和光电性能入手对该探测器进行了介绍。为该探测器设计了一种新型集成读出电路。可以通过串行链接对
针对扩展目标联合估计运动状态和目标外形的问题,提出了一种基于星-凸形随机超曲面模型的扩展目标高斯混合概率密度滤波算法。该算法利用星-凸形随机超曲面模型对量测的扩散程度进行建模,同时利用约束对目标外形参数进行限制。在高斯混合概率假设密度的框架下,通过对量测模型下的量测似然、新息等参数的求解和更新递推实现扩展目标的跟踪。仿真实验表明,所提算法在保证跟踪有效性和可行性的同时提高了对扩展目标运动状态和目标外形的估计精度。
期刊
研究利用光纤中光致折变效应研制的光纤波导折射率沿轴向渐变的Taper器件的模式耦合特性.在标量场近似下,用本地模表示的方法分析在阶梯折射率分布光纤和平方律折射率光纤的轴向折射率渐变过渡结构中传输的基模向反向散射模和高价模的耦合。对阶梯折射李光纤两种不同折射率Taper结构的数值计算结果表明:在折射率变化相对缓慢情况下,这种折射率Taper耦合器的基模反向散射和向高阶模的耦合都很小;基模能够自适应地调节以适应波导折射率的渐变,具有优良的传输性能.