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    • 4. 发明申请
    • VIBRATIONAL PHOTOACOUSTIC TOMOGRAPHY USING RAMAN LASER
    • 使用拉曼激光的振动光电图像
    • US20140200434A1
    • 2014-07-17
    • US14156946
    • 2014-01-16
    • Ji-Xin Cheng
    • Ji-Xin Cheng
    • A61B5/00
    • A61B5/0095
    • A method of noninvasively imaging tissue within a body includes irradiating the tissue using an imaging laser including a Raman-based laser tuner, the radiation including a plurality of laser pulses, each having energy greater than 100 mJ; receiving an acoustic signal generated by vibrational energy in the tissue, wherein the vibrational energy is a result of selective overtone excitation of molecules in the tissue by the radiation; and automatically converting the acoustic signal to an image representative of the tissue using a processor. An imaging system includes an imaging laser configured to irradiate tissue with a plurality of laser pulses using a Raman-based laser tuner. An ultrasonic transducer receives an acoustic signal generated by vibrational energy in the tissue due to overtone excitation by the radiation. A processor is configured to automatically produce an image representative of the tissue using the received acoustic signal.
    • 一种在体内非侵入性地成像组织的方法包括使用包括基于拉曼的激光调谐器的成像激光器照射组织,该辐射包括多个激光脉冲,每个激光脉冲具有大于100mJ的能量; 接收由所述组织中的振动能产生的声信号,其中所述振动能是由所述辐射对所述组织中的分子的选择性泛音激励的结果; 并使用处理器自动地将声信号转换成代表组织的图像。 一种成像系统包括:成像激光器,被配置为使用基于拉曼的激光调谐器来照射具有多个激光脉冲的组织。 超声换能器由于辐射的泛音激励而接收由组织中的振动能产生的声信号。 处理器被配置为使用所接收的声信号自动产生代表组织的图像。
    • 7. 发明申请
    • SYSTEM AND METHOD FOR MULTIPLEX SPECTROSCOPIC IMAGING
    • 多光谱成像系统与方法
    • US20140218726A1
    • 2014-08-07
    • US14171052
    • 2014-02-03
    • Ji-Xin ChengMikhail N. SlipchenkoRobert A. Oglesbee
    • Ji-Xin ChengMikhail N. SlipchenkoRobert A. Oglesbee
    • G01N21/65
    • G01N21/65G01J3/02G01J3/2803
    • A system for measuring an sample includes an illumination source providing electromagnetic radiation pulses at a selected temporal frequency. A microscope focuses the radiation to interact with the sample and produce resultant electromagnetic radiation. A disperser disperses wavelengths of the resultant radiation onto optical sensors, and respective resonant amplifiers amplify signals having the selected temporal frequency. Optical detection apparatus includes the optical sensors, resonant amplifiers, and disperser. The resonant amplifiers amplify portion(s) of their inputs having a selected temporal frequency and attenuate other portion(s). A method of analyzing constituents of a sample includes contemporaneously irradiating the sample with narrowband light and broadband light, the optical power of either modulated at a selected temporal frequency; dispersing wavelengths of resultant light across the optical detectors; and filtering respective signals from the optical detectors to provide spectrum data including signals corresponding to the selected temporal frequency.
    • 用于测量样本的系统包括以选定的时间频率提供电磁辐射脉冲的照明源。 显微镜将放射线与样品相互作用并产生电磁辐射。 分散器将所得辐射的波长分散到光学传感器上,并且相应的谐振放大器放大具有所选择的时间频率的信号。 光学检测装置包括光学传感器,谐振放大器和分散器。 谐振放大器放大其输入的具有选定时间频率的部分,并衰减其它部分。 分析样品成分的方法包括同时以窄带光和宽带光照射样品,以选定的时间频率调制的光功率; 将所得光的波长分散在光学检测器上; 并且对来自光学检测器的各个信号进行滤波以提供包括对应于选定的时间频率的信号的频谱数据
    • 8. 发明授权
    • System and method for polarization coherent anti-stokes Raman scattering microscopy
    • 用于偏振相干反斯托克斯拉曼散射显微镜的系统和方法
    • US06798507B2
    • 2004-09-28
    • US10186104
    • 2002-06-27
    • Xiaoling Sunney XieJi-Xin Cheng
    • Xiaoling Sunney XieJi-Xin Cheng
    • G01J344
    • G01J3/44G01N21/65G01N2021/653
    • Systems and methods are disclosed for detecting a nonlinear coherent field induced in a microscopic sample. The system includes in an embodiment, a first source for generating a first polarized electromagnetic field at a first frequency and a second source for generating a second polarized electromagnetic field at a second frequency that is different from the first frequency. The system further includes optics for combining the first polarized electromagnetic field and the second polarized electromagnetic field in a collinear fashion such that the difference in polarization angles is &phgr; wherein &phgr; is not equal to zero. The optics further direct the combined electromagnetic field toward a common focal volume. The system also includes a polarization sensitive detector for detecting a nonlinear coherent field that is generated responsive to the first and second polarized electromagnetic fields in the focal volume.
    • 公开了用于检测在微观样品中诱导的非线性相干场的系统和方法。 该系统在一个实施例中包括用于产生第一频率的第一极化电磁场的第一源和用于产生与第一频率不同的第二频率的第二极化电磁场的第二源。 该系统还包括用于以共线方式组合第一极化电磁场和第二极化电磁场的光学器件,使得偏振角的差是phi,其中phi不等于零。 光学器件进一步将组合的电磁场引向公共焦点体积。 该系统还包括用于检测响应于焦点体积中的第一和第二极化电磁场产生的非线性相干场的偏振敏感检测器。