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首页> 外文期刊>Applied optics >Application of spatially modulated near-infrared structured light to study changes in optical properties of mouse brain tissue during heatstress
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Application of spatially modulated near-infrared structured light to study changes in optical properties of mouse brain tissue during heatstress

机译:空间调制近红外结构光在热臂中小鼠脑组织光学性质研究变化的应用

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摘要

Heat stress (HS) is a medical emergency defined by abnormally elevated body temperature that causes biochemical, physiological, and hematological changes. The goal of the present research was to detect variations in optical properties (absorption, reduced scattering, and refractive index coefficients) of mouse brain tissue during HS by using near-infrared (NIR) spatial light modulation. NIR spatial patterns with different spatial phases were used to differentiate the effects of tissue scattering from those of absorption. Decoupling optical scattering from absorption enabled the quantification of a tissue's chemical constituents (related to light absorption) and structural properties (related to light scattering). Technically, structured light patterns at low and high spatial frequencies of six wavelengths ranging between 690 and 970 nm were projected onto the mouse scalp surface while diffuse reflected light was recorded by a CCD camera positioned perpendicular to the mouse scalp. Concurrently to pattern projection, brain temperature was measured with a thermal camera positioned slightly off angle from the mouse head while core body temperature was monitored by thermocouple probe. Data analysis demonstrated variations from baseline measurements in a battery of intrinsic brain properties following HS. (C) 2017 Optical Society of America
机译:热应激(HS)是由异常升高的体温定义的医疗紧急情况,导致生化,生理和血液学变化。本研究的目的是通过使用近红外线(NIR)空间光调制来检测HS期间小鼠脑组织的光学性质(吸收,降低散射和折射率系数)的变化。具有不同空间阶段的奈尔空间模式用于区分组织散射从吸收的影响。从吸收的去耦光学散射使得量化组织的化学成分(与光吸收)和结构性质(与光散射有关)的定量。从技术上,在690和970nm之间的六个波长的低和高空间频率下的结构光图案被投射到鼠标头皮表面上,同时通过垂直于鼠标头皮的CCD摄像机记录漫反射光。同时以图案投影,用热摄像机测量脑温度,热摄像机定位从小鼠头部略微切开角度,而通过热电偶探针监测核心体温。数据分析证明了在HS之后的内在脑性质的电池中的基线测量中的变化。 (c)2017年光学学会

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  • 来源
    《Applied optics》 |2017年第32期|共7页
  • 作者单位

    Ariel Univ Dept Elect &

    Elect Engn IL-40700 Ariel Israel;

    Ariel Univ Dept Elect &

    Elect Engn IL-40700 Ariel Israel;

    Ariel Univ Dept Elect &

    Elect Engn IL-40700 Ariel Israel;

    Ariel Univ Dept Chem Engn &

    Biotechnol IL-40700 Ariel Israel;

    Ariel Univ Dept Elect &

    Elect Engn IL-40700 Ariel Israel;

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  • 正文语种 eng
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