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本文引用的文献

1
Non-invasive transabdominal measurement of placental oxygenation: a step toward continuous monitoring.胎盘氧合的非侵入性经腹测量:迈向连续监测的一步。
Biomed Opt Express. 2021 Jun 15;12(7):4119-4130. doi: 10.1364/BOE.424969. eCollection 2021 Jul 1.
2
Evaluation of the human placenta optical scattering properties using continuous wave and frequency-domain diffuse reflectance spectroscopy.应用连续波和频域漫反射光谱技术评估人胎盘的光散射特性。
J Biomed Opt. 2020 Nov;25(11). doi: 10.1117/1.JBO.25.11.116001.
3
Gestational Hypertension and Preeclampsia: ACOG Practice Bulletin, Number 222.妊娠期高血压与子痫前期:美国妇产科医师学会实践通报,第 222 号。
Obstet Gynecol. 2020 Jun;135(6):e237-e260. doi: 10.1097/AOG.0000000000003891.
4
Hemodynamic Responses of the Placenta and Brain to Maternal Hyperoxia in Fetuses with Congenital Heart Disease by Using Blood Oxygen-Level Dependent MRI.利用血氧水平依赖 MRI 研究先天性心脏病胎儿母体高氧血症时胎盘和脑的血液动力学反应。
Radiology. 2020 Jan;294(1):141-148. doi: 10.1148/radiol.2019190751. Epub 2019 Nov 5.
5
Mechanisms of early placental development in mouse and humans.鼠类和人类早期胎盘发育的机制。
Nat Rev Genet. 2020 Jan;21(1):27-43. doi: 10.1038/s41576-019-0169-4. Epub 2019 Sep 18.
6
Continuous non-invasive optical monitoring of cerebral blood flow and oxidative metabolism after acute brain injury.急性脑损伤后脑血流和氧化代谢的连续无创性光学监测。
J Cereb Blood Flow Metab. 2019 Aug;39(8):1469-1485. doi: 10.1177/0271678X19846657. Epub 2019 May 14.
7
A roadmap for the clinical implementation of optical-imaging biomarkers.光学成像生物标志物临床应用的路线图。
Nat Biomed Eng. 2019 May;3(5):339-353. doi: 10.1038/s41551-019-0392-5. Epub 2019 Apr 29.
8
Trophoblast organoids as a model for maternal-fetal interactions during human placentation.滋养层类器官作为人类胎盘发生过程中母胎相互作用的模型。
Nature. 2018 Dec;564(7735):263-267. doi: 10.1038/s41586-018-0753-3. Epub 2018 Nov 28.
9
AIUM-ACR-ACOG-SMFM-SRU Practice Parameter for the Performance of Standard Diagnostic Obstetric Ultrasound Examinations.美国医学超声学会(AIUM)、美国放射学会(ACR)、美国妇产科医师学会(ACOG)、母胎医学学会(SMFM)和放射学会(SRU)关于标准诊断性产科超声检查实施的实践参数。
J Ultrasound Med. 2018 Nov;37(11):E13-E24. doi: 10.1002/jum.14831. Epub 2018 Oct 11.
10
Maternal vascular malperfusion of the placental bed.胎盘床的母体血管灌注不良。
APMIS. 2018 Jul;126(7):551-560. doi: 10.1111/apm.12833.

通过同时进行漫射光学光谱和超声成像来无创监测人体胎盘的血氧。

Non-invasive monitoring of blood oxygenation in human placentas via concurrent diffuse optical spectroscopy and ultrasound imaging.

机构信息

Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, PA, USA.

Division of Neurology, Children's Hospital of Philadelphia, Philadelphia, PA, USA.

出版信息

Nat Biomed Eng. 2022 Sep;6(9):1017-1030. doi: 10.1038/s41551-022-00913-2. Epub 2022 Aug 15.

DOI:10.1038/s41551-022-00913-2
PMID:35970929
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9944515/
Abstract

Direct assessment of blood oxygenation in the human placenta can provide information about placental function. However, the monitoring of placental oxygenation involves invasive sampling or imaging techniques that are poorly suited for bedside use. Here we show that placental oxygen haemodynamics can be non-invasively probed in real time and up to 4.2 cm below the body surface via concurrent frequency-domain diffuse optical spectroscopy and ultrasound imaging. We developed a multimodal instrument to facilitate the assessment of the properties of the anterior placenta by leveraging image-reconstruction algorithms that integrate ultrasound information about the morphology of tissue layers with optical information on haemodynamics. In a pilot investigation involving placentas with normal function (15 women) or abnormal function (9 women) from pregnancies in the third trimester, we found no significant differences in baseline haemoglobin properties, but statistically significant differences in the haemodynamic responses to maternal hyperoxia. Our findings suggest that the non-invasive monitoring of placental oxygenation may aid the early detection of placenta-related adverse pregnancy outcomes and maternal vascular malperfusion.

摘要

直接评估人体胎盘的血氧含量可以提供有关胎盘功能的信息。然而,监测胎盘氧合需要侵入性采样或成像技术,这些技术不适合床边使用。在这里,我们展示了可以通过同时进行频域漫射光学光谱和超声成像,在身体表面以下 4.2 厘米的深度实时非侵入性探测胎盘氧合动力学。我们开发了一种多模态仪器,通过利用将组织层的超声信息与血液动力学的光学信息相结合的图像重建算法,促进对前胎盘特性的评估。在一项涉及来自晚期妊娠正常功能(15 名女性)或异常功能(9 名女性)胎盘的试点研究中,我们发现基线血红蛋白特性没有显著差异,但母体高氧血症的血液动力学反应存在统计学显著差异。我们的研究结果表明,非侵入性监测胎盘氧合可能有助于早期发现与胎盘相关的不良妊娠结局和母体血管功能不全。