Built-in hyperspectral camera for smartphone in visible, near-infrared and middle-infrared lights region (second report): Sensitivity improvement of Fourier-spectroscopic imaging to detect diffuse reflection lights from internal human tissues for healthcare sensors

被引:1
|
作者
Kawashima, Natsumi [1 ]
Hosono, Satsuki [1 ]
Ishimaru, Ichiro [1 ]
机构
[1] Kagawa Univ, Fac Engn, Dept Intelligent Mech Syst Engn, 2217-20 Hayashi Cyo, Takamatsu, Kagawa 7610396, Japan
关键词
Smartphone Spectroscopy; Hyperspectral camera; Snapshot Fourier spectroscopy; Spatial phase-shift interferometer; Visible spectroscopy; Near-infrared spectroscopy; Mid-infrared spectroscopy; Unmanned Air Vehicle;
D O I
10.1117/12.2223392
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We proposed the snapshot-type Fourier spectroscopic imaging for smartphone that was mentioned in 1st. report in this conference. For spectroscopic components analysis, such as non-invasive blood glucose sensors, the diffuse reflection lights from internal human skins are very weak for conventional hyperspectral cameras, such as AOTF (Acousto-Optic Tunable Filter) type. Furthermore, it is well known that the spectral absorption of mid-infrared lights or Raman spectroscopy especially in long wavelength region is effective to distinguish specific biomedical components quantitatively, such as glucose concentration. But the main issue was that photon energies of middle infrared lights and light intensities of Raman scattering are extremely weak. For improving sensitivity of our spectroscopic imager, the wide-field-stop & beam-expansion method was proposed. Our line spectroscopic imager introduced a single slit for field stop on the conjugate objective plane. Obviously to increase detected light intensities, the wider slit width of the field stop makes light intensities higher, regardless of deterioration of spatial resolutions. Because our method is based on wavefront-division interferometry, it becomes problems that the wider width of single slit makes the diffraction angle narrower. This means that the narrower diameter of collimated objective beams deteriorates visibilities of interferograms. By installing the relative inclined phase-shifter onto optical Fourier transform plane of infinity corrected optical systems, the collimated half flux of objective beams derived from single-bright points on objective surface penetrate through the wedge prism and the cuboid glass respectively. These two beams interfere each other and form the infererogram as spatial fringe patterns. Thus, we installed concave-cylindrical lens between the wider slit and objective lens as a beam expander. We successfully obtained the spectroscopic characters of hemoglobin from reflected lights from human fingers.
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页数:6
相关论文
共 2 条
  • [1] Built-in hyperspectral camera for smartphone in visible, near-infrared and middle-infrared lights region (first report): Trial products of beans-size Fourier-spectroscopic line-imager and feasibility experimental results of middle infrared spectroscopic imaging
    Ishimaru, Ichiro
    Kawashima, Natsumi
    Hosono, Satsuki
    [J]. NEXT-GENERATION SPECTROSCOPIC TECHNOLOGIES IX, 2016, 9855
  • [2] Built-in hyperspectral camera for smartphone in visible, near-infrared and middle-infrared lights region (third report): Spectroscopic imaging for broad-area and real-time componential analysis system against local unexpected terrorism and disasters
    Hosono, Satsuki
    Kawashima, Natsumi
    Wollherr, Dirk
    Ishimaru, Ichiro
    [J]. NEXT-GENERATION SPECTROSCOPIC TECHNOLOGIES IX, 2016, 9855