Objective To develop and validate Raman metabolic footprint analysis to determine chromosome euploidy and aneuploidy in embryos fertilized in vitro. Design Retrospective study. Setting Academic hospital. Patient(s) Unselected assisted reproductive technology population. Intervention(s) To establish the analysis protocol, spent embryo culture medium samples with known genetic outcomes from 87 human embryos were collected and measured with the use of Raman spectroscopy. Individual Raman spectra were analyzed to find biologic components contributing to either euploidy or aneuploidy. To validate the protocol via machine-learning algorithms, additional 1,107 Raman spectra from 123 embryo culture media (61 euploidy and 62 aneuploidy) were ana...
In recent years, the uptake of assisted reproductive techniques such as in vitro fertilisation has r...
Regenerative therapies are predicated on our ability to achieve controlled and reproducible expansio...
Introduction: Mesenchymal stem cells (MSCs) are multipotent progenitor cells that have been identifi...
Objective To develop and validate Raman metabolic footprint analysis to determine chromosome euploid...
Introduction: Light microscopy has remained the primary tool for the assessment of embryo quality a...
Objective: To predict the reproductive potential of embryos via Raman spectroscopy evaluation of th...
Embryo quality is crucial to the outcome of in vitro fertilization (IVF); however, the ability to pr...
Embryo viability quantification is an important topic for in vitro fertilization researchers. This s...
Purpose: This study aimed to establish a non-invasive predicting model via Raman spectroscopy for ev...
Raman spectroscopy provides opportunities for non-invasive, non-destructive, label-free analysis of ...
Background: Human pluripotent stem cells, including embryonic stem cells and induced pluripotent ste...
The characterisation of stem cell differentiation is currently performed using invasive/destructive ...
The clinical use of stem cells in cell-based therapeutics for degenerative diseases requires develop...
Over recent years, the application of assisted reproductive techniques in the treatment of infertili...
Raman microspectroscopy is a non-destructive, label-free technique that offers information-rich mole...
In recent years, the uptake of assisted reproductive techniques such as in vitro fertilisation has r...
Regenerative therapies are predicated on our ability to achieve controlled and reproducible expansio...
Introduction: Mesenchymal stem cells (MSCs) are multipotent progenitor cells that have been identifi...
Objective To develop and validate Raman metabolic footprint analysis to determine chromosome euploid...
Introduction: Light microscopy has remained the primary tool for the assessment of embryo quality a...
Objective: To predict the reproductive potential of embryos via Raman spectroscopy evaluation of th...
Embryo quality is crucial to the outcome of in vitro fertilization (IVF); however, the ability to pr...
Embryo viability quantification is an important topic for in vitro fertilization researchers. This s...
Purpose: This study aimed to establish a non-invasive predicting model via Raman spectroscopy for ev...
Raman spectroscopy provides opportunities for non-invasive, non-destructive, label-free analysis of ...
Background: Human pluripotent stem cells, including embryonic stem cells and induced pluripotent ste...
The characterisation of stem cell differentiation is currently performed using invasive/destructive ...
The clinical use of stem cells in cell-based therapeutics for degenerative diseases requires develop...
Over recent years, the application of assisted reproductive techniques in the treatment of infertili...
Raman microspectroscopy is a non-destructive, label-free technique that offers information-rich mole...
In recent years, the uptake of assisted reproductive techniques such as in vitro fertilisation has r...
Regenerative therapies are predicated on our ability to achieve controlled and reproducible expansio...
Introduction: Mesenchymal stem cells (MSCs) are multipotent progenitor cells that have been identifi...