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Non-invasive determination of murine placental and foetal functional parameters with multispectral optoacoustic tomography

机译:多光谱光声层析成像非侵入性测定鼠胎盘和胎儿功能参数

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Despite the importance of placental function in embryonic development, it remains poorly understood and challenging to characterize, primarily due to the lack of non-invasive imaging tools capable of monitoring placental and foetal oxygenation and perfusion parameters during pregnancy. We developed an optoacoustic tomography approach for real-time imaging through entire ~4 cm cross-sections of pregnant mice. Functional changes in both maternal and embryo regions were studied at different gestation days when subjected to an oxygen breathing challenge and perfusion with indocyanine green. Structural phenotyping of the cross-sectional scans highlighted different internal organs, whereas multi-wavelength acquisitions enabled non-invasive label-free spectroscopic assessment of blood-oxygenation parameters in foeto-placental regions, rendering a strong correlation with the amount of oxygen administered. Likewise, the placental function in protecting the embryo from extrinsically administered agents was substantiated. The proposed methodology may potentially further serve as a probing mechanism to appraise embryo development during pregnancy in the clinical setting.
机译:尽管胎盘功能在胚胎发育中很重要,但对它的了解仍然很少,并且很难表征,这主要是由于缺乏能够在怀孕期间监测胎盘和胎儿氧合和灌注参数的非侵入性成像工具。我们开发了一种光声层析成像方法,可通过妊娠小鼠的整个〜4 cm横截面进行实时成像。当接受氧气呼吸挑战并用吲哚菁绿灌注时,研究了不同妊娠日母体和胚胎区域的功能变化。横断面扫描的结构表型突出显示了不同的内部器官,而多波长采集可以对胎盘胎盘区域的血液氧合参数进行无创无标签光谱评估,从而与所施用的氧气量密切相关。同样,证实了胎盘在保护胚胎免于外用药物的作用。所提出的方法可能在临床环境中进一步充当评估怀孕期间胚胎发育的探测机制。

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