Zheng Chuanjian, Zhang Shaohui, Yang Delong, Chen Zixuan, Li Xiaoqiong, Hao Qun
Opt Lett. 2024 Sep 1;49(17):4859-4862. doi: 10.1364/OL.533430.
We present a single-shot intensity diffraction tomography method via polarization-multiplexed LED illumination. Three LED elements covered with 0°, 45°, and 135° linear polarizers, respectively, are lit up simultaneously to illuminate the sample with illumination angles matching the numerical aperture of the objective. The scattering field of the sample is recorded on a single intensity image with a polarization sensor, and three intensity images corresponding to the three LED elements are decoupled from the intensity image by using a pre-calibrated intensity transform matrix. After a slice-wise deconvolution procedure, the 3D complex refractive index distribution of the sample can be recovered. To demonstrate the performance of our method, we perform experiments on a USAF absorption resolution target, rat hippocampal cell lines, and spongy spicule. These imaging results show that our method can achieve 3D tomography for various biomedical samples with a near incoherent diffraction-limited lateral resolution of 690 nm and an axial resolution of 4.68 μm.
我们提出了一种通过偏振复用发光二极管(LED)照明的单次强度衍射层析成像方法。分别覆盖有0°、45°和135°线性偏振器的三个LED元件同时点亮,以与物镜数值孔径相匹配的照明角度照射样品。样品的散射场用偏振传感器记录在一张强度图像上,通过使用预先校准的强度变换矩阵,从该强度图像中解耦出与三个LED元件对应的三张强度图像。经过逐切片去卷积过程后,可恢复样品的三维复折射率分布。为了证明我们方法的性能,我们对美国空军吸收分辨率靶标、大鼠海马细胞系和海绵骨针进行了实验。这些成像结果表明,我们的方法能够以690 nm的近非相干衍射极限横向分辨率和4.68 μm的轴向分辨率,对各种生物医学样品实现三维层析成像。