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Deep fluorescent imaging with large field of view using automatic guide star selection

机译:使用自动导星选择的大视野深度荧光成像

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The refractive index heterogeneity severely limits the imaging performance of optical microscopy in deep tissue. Adaptive optics (AO) is currently widely used to recover the diffraction-limited resolution at depth. However, there is a tradeoff between the time resolution and spatial resolution, which makes it difficult to achieve the real-time imaging in deep tissue. This is partially because that the effective correction area of conventional AO is limited with a single guide star (GS). Therefore, the using of multiple guide stars is a potential solution to increase the corrected field of view. Here we report an automatic selection algorithm of multiple guide stars and demonstrate the feasibility by implementing this method in the system of conjugate adaptive optical correction with multiple GSs. The simulation results indicate that compared with the case of the single guide star, high-resolution imaging can be obtained in most imaging areas with automatically selected 9 guide stars. Further, we can obtain optimally numbers and positions of the guide stars automatically and expect larger area aberrations. Therefore, this method has the great potential in in vivo deep tissue imaging.
机译:折射率异质性严重限制了光学显微镜在深部组织中的成像性能。自适应光学(AO)当前广泛用于恢复深度受限的衍射分辨率。然而,在时间分辨率和空间分辨率之间存在折衷,这使得难以在深层组织中实现实时成像。部分原因是常规AO的有效校正区域受到单个导星(GS)的限制。因此,使用多个引导星是增加校正视场的潜在解决方案。在这里,我们报告了多个制导星的自动选择算法,并通过在具有多个GS的共轭自适应光学校正系统中实施该方法论证了可行性。仿真结果表明,与单颗导星相比,在大多数成像区域中使用自动选择的9颗导星可获得高分辨率成像。此外,我们可以自动获得最佳的导星数和位置,并期望更大的像差。因此,该方法在体内深层组织成像中具有巨大的潜力。

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