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Glucose concentration measuring method and apparatus with short coherence source and heterodyne interferometer

  • US 5,835,215 A
  • Filed: 05/15/1997
  • Issued: 11/10/1998
  • Est. Priority Date: 05/16/1996
  • Status: Expired due to Term
First Claim
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1. A glucose concentration measuring method, comprising the steps of:

  • i) splitting a low coherence light beam, which has been radiated out of a predetermined light source, into a signal light beam and a reference light beam, each of which travels along one of two different optical paths,ii) modulating at least either one of said signal light beam and said reference light beam such that a slight difference in frequency may occur between them,iii) irradiating said signal light beam to the eyeball lying at a predetermined position,iv) causing a first backward scattered light beam of said signal light beam having been irradiated to the eyeball, said first backward scattered light beam coming from an interface between the cornea and the anterior aqueous chamber of the eyeball, and said reference light beam to interfere with each other by adjusting an optical path length of said reference light beam, a first interference light beam being thereby obtained,v) measuring an intensity of said first interference light beam,vi) calculating an intensity of said first backward scattered light beam from the intensity of said first interference light beam,vii) causing a second backward scattered light beam of said signal light beam having been irradiated to the eyeball, said second backward scattered light beam coming from an interface between the anterior aqueous chamber and the crystalline lens of the eyeball, and said reference light beam to interfere with each other by adjusting the optical path length of said reference light beam, a second interference light beam being thereby obtained,viii) measuring an intensity of said second interference light beam,ix) calculating an intensity of said second backward scattered light beam from the intensity of said second interference light beam,x) obtaining light absorption characteristics of constituents of the aqueous humor, which fills the anterior aqueous chamber, from the intensity of said first backward scattered light beam and the intensity of said second backward scattered light beam,xi) obtaining light absorption characteristics of the constituents of the aqueous humor with respect to each of a plurality of other low coherence light beams, which are of wavelength bands different from the wavelength band of said low coherence light beam, in the same manner, andxii) calculating a concentration of glucose in the constituents of the aqueous humor from the light absorption characteristics, which have been obtained with respect to the plurality of said low coherence light beams.

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