EP1136811A1

Method and device for measuring internal information of scattering absorber

Abstract

A method and a device for measuring internal information of a scattering absorber, wherein a pulsed light with a plurality of specified wavelengths or a modulated light with a plurality of specified frequencies is shone into a scattering absorber (1) to be measured from a light source (5), an outgoing light is detected by a photodetector (7), and then internal information is operated and calculated by a signal processing unit (8) and a processing unit (9), whereby internal information of the scattering absorber is obtained by calculating an absorption coefficient difference, by a spectroscopic measuring method (MVS method) using an optical path length average and dispersion or equivalent physical quantities and by utilizing an MBL low-based time-resolved integration measuring (TIS) method and a phase modulation measuring (PMS) method to thereby enable high-accuracy, high-speed measurement of internal information of a scattering absorber (1).

EP1136811A1, drawing sheet 1
Sheet 1 of 71

Term

Term ended

Projected expiry passed 5 November 2019, 6.9 years ago.

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22 claims: 4 independent, 18 dependent

  1. 1
    A measuring method of internal information of a scattering medium, comprising:a light injecting step of injecting pulsed light of two or more predetermined wavelengths into a scattering medium at a light injection position;a light detecting step of detecting the light of said two or more predetermined wavelengths having propagated inside said scattering medium, at a photodetection position to acquire a photodetection signal;a signal processing step of acquiring waveform data indicating a temporal change of intensity of the detected light, based on said photodetection signal;a mean pathlength and variance computing step of performing an operation to compute a mean pathlength of plural photons composing said detected light, and a variance, based on said waveform data;and an absorption coefficient difference calculating step of calculating a difference between absorption coefficients at said predetermined wavelengths, based on a predetermined relation holding among said mean pathlength, said variance, and the difference between the absorption coefficients at said two or more predetermined wavelengths.
  2. 7
    A measuring method of internal information of a scattering medium, comprising:a light injecting step of injecting modulated light of two or more predetermined wavelengths modulated at a predetermined frequency, into a scattering medium at a light injection position;a light detecting step of detecting said light of said two or more predetermined wavelengths having propagated inside said scattering medium, at a photodetection position to acquire a photodetection signal;a signal processing step of extracting a signal of said predetermined frequency component from said photodetection signal;a group delay and second-partial-derivative-of-logarithm-of-amplitude computing step of computing a group delay of the signal of said predetermined frequency component and a second partial derivative of logarithm of amplitude with respect to the modulation frequency, based on said signal of the predetermined frequency component;and an absorption coefficient difference calculating step of calculating a difference between absorption coefficients at said predetermined wavelengths, based on a predetermined relation holding among said group delay, said second partial derivative of logarithm of amplitude with respect to the modulation frequency, and the difference between the absorption coefficients at said two or more predetermined wavelengths.
  3. 12
    A measuring apparatus of internal information of a scattering medium, comprising:light injecting means for injecting pulsed light of two or more predetermined wavelengths into a scattering medium at a light injection position;light detecting means for detecting the light of said two or more predetermined wavelengths having propagated inside said scattering medium, at a photodetection position to acquire a photodetection signal;signal processing means for acquiring waveform data indicating a temporal change of intensity of the detected light, based on said photodetection signal;mean pathlength and variance computing means for performing an operation to compute a mean pathlength of plural photons composing said detected light, and a variance, based on said waveform data;and absorption coefficient difference calculating means for calculating a difference between absorption coefficients at said predetermined wavelengths, based on a predetermined relation holding among said mean pathlength, said variance, and the difference between the absorption coefficients at said two or more predetermined wavelengths.
  4. 18
    A measuring apparatus of internal information of a scattering medium, comprising:light injecting means for injecting modulated light of two or more predetermined wavelengths modulated at a predetermined frequency, into a scattering medium at a light injection position;light detecting means for detecting said light of said two or more predetermined wavelengths having propagated inside said scattering medium, at a photodetection position to acquire a photodetection signal;signal processing means for extracting a signal of said predetermined frequency component from said photodetection signal;group delay and second-partial-derivative-of-logarithm-of-amplitude computing means for computing a group delay of the signal of said predetermined frequency component and a second partial derivative of logarithm of amplitude with respect to the modulation frequency, based on said signal of the predetermined frequency component;and absorption coefficient difference calculating means for calculating a difference between absorption coefficients at said predetermined wavelengths, based on a predetermined relation holding among said group delay, said second partial derivative of logarithm of amplitude with respect to the modulation frequency, and the difference between the absorption coefficients at said two or more predetermined wavelengths.