首页> 外文会议>Conference on Biomedical Thermoacoustics, Optoacoustics, and Acousto-Optics >Three-dimensional in vivo near-infrared photoacoustic tomography of whole small animal head
【24h】

Three-dimensional in vivo near-infrared photoacoustic tomography of whole small animal head

机译:全部小动物头部的三维近红外光声断层扫描

获取原文

摘要

A three-dimensional in vivo near-infrared photoacoustic tomography imaging system was newly designed and built to visualize the structure of a whole small animal head. For high sensitivity, a single flat 2.25MHz low frequency transducer, whose active element size is 6mm, was employed. To increase the penetration depth of light, a wavelength of 804nm in the NIR range, which matches the oxy- and deoxy-hemoglobin isosbestic point, was chosen. To avoid strong photoacoustic signal generation from the skin surface, we applied dark field illumination. To illuminate efficiently, we split the laser light into two beams, which were delivered to an animal by two mirrors and were finally homogenized by two ground glasses. To complete the dark field illumination, the transducer was located in the middle of two light sources. Two key devices for the in vivo imaging were rotating devices and animal holders. The rotating devices were composed of two parts, located at the top and bottom, which rotated at the same angular speed. The holders were composed of a head holder and a body holder. Both holders fixed the animal firmly to reduce motion artifacts. This system achieved radial resolution of up to 260μm. We accomplished successful in vivo imaging of arterial and venous vessels deeply, as well as superficially, with the animal head of up to 1.7cm diameter. The technique forms a basis for functional imaging, such as measurement of the oxygen consumption ratio in the brain, which is a vital parameter in a brain disease research.
机译:一种三维体内近红外光声断层摄影成像系统是新设计和建造的可视化的整体小动物头的结构。高灵敏度,单个平坦的2.25MHz的低频换能器,它的有源元件尺寸为6mm,被采用。为了提高光的穿透深度,在NIR范围,其中氧合血红蛋白和脱氧血红蛋白等吸光点相匹配804nm的波长,被选。为了避免从皮肤表面强的光声信号的产生,我们应用暗场照明。为了有效地照亮,我们将激光分成两束,这是由两个反射镜递送至动物并最终通过两个接地眼镜均化。为完成此暗场照明,所述换能器定位于两个光源的中间。用于体内成像的两种关键器件被旋转装置和动物的持有人。旋转装置被由两个部分组成,位于所述顶部和底部,其在相同的角速度旋转。的持有人组成的头保持器和身体托座的。两夹持器固定在所述动物牢固地减少运动伪影。该系统实现了高达260μm的径向分辨率。我们成功地完成在动脉和静脉血管深深的活体成像,以及表面上,具有高达1.7厘米直径的动物头。该技术形成的基础功能成像,如氧消耗率在大脑中,这是在脑疾病研究生命参数的测量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号