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High-throughput lensfree 3D tracking of human sperms reveals rare statistics of helical trajectories

机译:高通量无透镜3D人体精子跟踪揭示了螺旋形轨迹的罕见统计数据

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摘要

Dynamic tracking of human sperms across a large volume is a challenging task. To provide a high-throughput solution to this important need, here we describe a lensfree on-chip imaging technique that can track the three-dimensional (3D) trajectories of > 1,500 individual human sperms within an observation volume of approximately 8–17 mm3. This computational imaging platform relies on holographic lensfree shadows of sperms that are simultaneously acquired at two different wavelengths, emanating from two partially-coherent sources that are placed at 45° with respect to each other. This multiangle and multicolor illumination scheme permits us to dynamically track the 3D motion of human sperms across a field-of-view of > 17 mm2 and depth-of-field of approximately 0.5–1 mm with submicron positioning accuracy. The large statistics provided by this lensfree imaging platform revealed that only approximately 4–5% of the motile human sperms swim along well-defined helices and that this percentage can be significantly suppressed under seminal plasma. Furthermore, among these observed helical human sperms, a significant majority (approximately 90%) preferred right-handed helices over left-handed ones, with a helix radius of approximately 0.5–3 μm, a helical rotation speed of approximately 3–20 rotations/s and a linear speed of approximately 20–100 μm/s. This high-throughput 3D imaging platform could in general be quite valuable for observing the statistical swimming patterns of various other microorganisms, leading to new insights in their 3D motion and the underlying biophysics.
机译:动态跟踪大量人类精子是一项艰巨的任务。为了提供满足这一重要需求的高通量解决方案,在这里我们描述了一种无透镜片上成像技术,该技术可以在大约8-17 mm <的观察体积内跟踪> 1,500个人类精子的三维(3D)轨迹。 sup> 3 。该计算成像平台依赖于在两个不同波长下同时采集的精子的全息无透镜阴影,这些阴影是由相对于彼此成45°放置的两个部分相干的光源发出的。这种多角度和多色照明方案使我们能够在> 17 mm 2 的视野和大约0.5-1 mm的亚微米视野中动态跟踪人类精子的3D运动定位精度。该无透镜成像平台提供的大量统计数据表明,仅约4–5%的活动性人类精子沿着明确的螺旋状游泳,并且在精浆中该百分比可以被显着抑制。此外,在这些观察到的人类螺旋状精子中,绝大多数(约90%)首选右旋螺旋而不是左旋螺旋,螺旋半径约为0.5–3μm,螺旋旋转速度约为3–20旋转/ s,线速度约为20–100μm/ s。通常,这种高通量3D成像平台对于观察各种其他微生物的统计游泳模式非常有价值,从而可以在其3D运动和潜在的生物物理学方面获得新的见解。

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