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Review of quantitative phase-digital holographic microscopy: promising novel imaging technique to resolve neuronal network activity and identify cellular biomarkers of psychiatric disorders

机译:定量相位数字全息显微术的回顾:有望解决神经元网络活动和鉴定精神疾病的细胞生物标志物的新颖成像技术

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摘要

Quantitative phase microscopy (QPM) has recently emerged as a new powerful quantitative imaging technique well suited to noninvasively explore a transparent specimen with a nanometric axial sensitivity. In this review, we expose the recent developments of quantitative phase-digital holographic microscopy (QP-DHM). Quantitative phase-digital holographic microscopy (QP-DHM) represents an important and efficient quantitative phase method to explore cell structure and dynamics. In a second part, the most relevant QPM applications in the field of cell biology are summarized. A particular emphasis is placed on the original biological information, which can be derived from the quantitative phase signal. In a third part, recent applications obtained, with QP-DHM in the field of cellular neuroscience, namely the possibility to optically resolve neuronal network activity and spine dynamics, are presented. Furthermore, potential applications of QPM related to psychiatry through the identification of new and original cell biomarkers that, when combined with a range of other biomarkers, could significantly contribute to the determination of high risk developmental trajectories for psychiatric disorders, are discussed.
机译:定量相显微镜(QPM)最近作为一种强大的新定量成像技术出现,非常适合无创地探索具有纳米轴向灵敏度的透明标本。在这篇综述中,我们揭示了定量相数字全息显微术(QP-DHM)的最新发展。定量相数字全息显微镜(QP-DHM)代表了一种重要且有效的定量相方法,用于探索细胞结构和动力学。在第二部分中,总结了细胞生物学领域中最相关的QPM应用。特别强调原始生物学信息,该信息可以从定量相位信号中得出。在第三部分中,介绍了利用QP-DHM在细胞神经科学领域获得的最新应用,即光学解决神经元网络活动和脊柱动力学的可能性。此外,还讨论了通过识别新的和原始的细胞生物标记物将QPM与精神病学相关的潜在应用,当与一系列其他生物标记物结合使用时,QPM可以显着有助于确定精神疾病的高风险发展轨迹。

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