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Interferometric focusing of guide-stars for direct wavefront sensing

机译:引导星的干涉式聚焦,用于直接波前感测

摘要

Interferometric focusing (IF), rather than conventional geometric focusing, of excitation light onto a guide-star that is embedded deeply in tissue, increases its fluorescence intensity. The method can extend the depth of wavefront measurement and improve correction inside of tissues because of its ability to suppress both scattering of diffuse light and aberration of ballistic light. The results showed more than two times improvement in SNR and RMS error of the wavefront measurement. Although only ballistic light in the excitation path is corrected, the intensity after wavefront correction increased by 1.5 times. When applying IF to a two-photon microscope with a near infra-red laser, this method would further extend the measurement depth and achieve high SNR for the wavefront sensor.
机译:将干涉光聚焦到深埋在组织中的导星上,而不是常规的几何聚焦,而采用干涉式聚焦(IF)会增加其荧光强度。由于该方法具有抑制散射光的散射和弹道光的像差的能力,因此可以扩展波前测量的深度并改善组织内部的校正。结果表明,波前测量的SNR和RMS误差提高了两倍以上。尽管仅校正了激发路径中的弹道光,但波前校正后的强度增加了1.5倍。当将中频应用于具有近红外激光的双光子显微镜时,该方法将进一步扩展测量深度并为波前传感器实现高信噪比。

著录项

  • 公开/公告号US9360428B2

    专利类型

  • 公开/公告日2016-06-07

    原文格式PDF

  • 申请/专利权人 THE REGENTS OF THE UNIVERSITY OF CALIFORNIA;

    申请/专利号US201414769893

  • 发明设计人 JOEL A. KUBBY;XIAODONG TAO;

    申请日2014-03-14

  • 分类号G01N21/45;G01N21/64;G01N21/49;G02B21/16;G02B21/24;G02B21/36;G01N21/47;

  • 国家 US

  • 入库时间 2022-08-21 14:28:27

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