2011Unpublished venueRequires access

New-Styled System Based on Hyperspectral Imaging

Yana Guan, Qingli Li, Hongying Liu, Liang Xu, Z. Q. Zhu

Open publisher page 10 citations

Abstract

A new-styled molecular hyperspectral imaging system (MHIS) based on acousto-optic tunable filter (AOTF) was introduced in this paper. This system consists of a Charge-coupled Device (CCD) camera, microscopy, AOTF, and a RF driver. Real-time images are obtained both at multiple, continuous wavelengths and at relatively narrow spectral bandwidths to generate a 3D data including one spectral and two spatial dimensions. AOFT cell covers the spectral band from 550nm to 1000nm with a spectral resolution range of 2nm-6nm. This work presents principle and structure of MHIS as well as its characteristics. The analysis results show that MHIS is promising in biomedical and early diagnosis.

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What this paper is about

A new-styled molecular hyperspectral imaging system (MHIS) based on acousto-optic tunable filter (AOTF) was introduced in this paper. This system consists of a Charge-coupled Device (CCD) camera, microscopy, AOTF, and a RF driver. Real-time images are obtained both at multiple, continuous wavelengths and at relatively narrow spectral bandwidths to generate a 3D data including one spectral and two spatial dimensions. AOFT cell covers the spectral band from 550nm to 1000nm with a spectral resolution range of 2nm-6nm. This work presents principle and structure of MHIS as well as its characteristics. The analysis results show that MHIS is promising in biomedical and early diagnosis.

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Available abstract

A new-styled molecular hyperspectral imaging system (MHIS) based on acousto-optic tunable filter (AOTF) was introduced in this paper. This system consists of a Charge-coupled Device (CCD) camera, microscopy, AOTF, and a RF driver. Real-time images are obtained both at multiple, continuous wavelengths and at relatively narrow spectral bandwidths to generate a 3D data including one spectral and two spatial dimensions. AOFT cell covers the spectral band from 550nm to 1000nm with a spectral resolution range of 2nm-6nm. This work presents principle and structure of MHIS as well as its characteristics. The analysis results show that MHIS is promising in biomedical and early diagnosis.

Key concepts: Hyperspectral imaging, Spectral resolution, Full spectral imaging, Image resolution, Spectral imaging, Optics, Remote sensing, Optical filter

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