论文标题

中红外光热单活细胞成像超出视频速率

Mid-infrared photothermal single-live-cell imaging beyond video rate

论文作者

Ishigane, Genki, Toda, Keiichiro, Tamamitsu, Miu, Shimada, Hiroyuki, Badarla, Venkata Ramaiah, Ideguchi, Takuro

论文摘要

中红外技术的进步导致了miR光谱法的有前途的生物医学应用,例如液体活检或呼吸诊断。相反,由于缺乏空间分辨率和较大的吸水背景,在水性环境中很少使用miR显微镜在水性环境中使用。最近,事实证明,中红外光热(MIP)成像适用于2D和3D单细胞成像,并具有从可见光继承的高空间分辨率。但是,最大测量率限于几帧/s,从而限制了其使用范围。在这里,我们开发出比以前的MIP成像技术更高的宽场MIP定量相显微镜,具有两个高度的信噪比,并在视频速率上展示了单个Live细胞成像。我们首先通过在光热效应后通过数值模拟热传导来得出最佳系统设计。然后,我们使用自制的纳秒miR光学参数振荡器和高大容量能力图像传感器开发设计的系统。我们的高速和高空间分辨率的mir显微镜具有成为生命科学的新工具的巨大潜力,尤其是用于单活细胞分析的工具。

Advancement in mid-infrared (MIR) technology has led to promising biomedical applications of MIR spectroscopy, such as liquid biopsy or breath diagnosis. On the contrary, MIR microscopy has been rarely used for live biological samples in an aqueous environment due to the lack of spatial resolution and the large water absorption background. Recently, mid-infrared photothermal (MIP) imaging has proven to be applicable to 2D and 3D single-cell imaging with high spatial resolution inherited from visible light. However, the maximum measurement rate has been limited to several frames/s, limiting its range of use. Here, we develop a significantly-improved wide-field MIP quantitative phase microscope with two orders-of-magnitude higher signal-to-noise ratio than previous MIP imaging techniques and demonstrate single-live-cell imaging beyond video rate. We first derive optimal system design by numerically simulating thermal conduction following the photothermal effect. Then, we develop the designed system with a homemade nanosecond MIR optical parametric oscillator and a high full-well-capacity image sensor. Our high-speed and high-spatial-resolution MIR microscope has great potential to become a new tool for life science, in particular for single-live-cell analysis.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源