TY - JOUR
T1 - A memristor-based intelligent system for embryonic metabolic monitoring and diagnostic assessment
AU - Wang, Mengna
AU - Sun, Bai
AU - Zhou, Guangdong
AU - Cui, Yu
AU - Cao, Zelin
AU - Wang, Kun
AU - Gao, Kaikai
AU - Ma, Hui
AU - Zhang, Xinyu
AU - Chen, Xiaoliang
AU - Yang, Wenting
AU - Tong, Guoqing
N1 - Publisher Copyright:
Copyright © 2025. Published by Elsevier B.V.
PY - 2026/6
Y1 - 2026/6
N2 - It is well known that the assisted reproduction has become the only means for couples with reproductive defects to have a child. However, the optimal embryo transfer in existing assisted reproductive technologies mainly relies on morphological evaluation, and there is currently a lack of precise detection techniques for selecting grade embryos. To address this blank, an innovative embryo detection method based on a memristor with memristive-sensing effect was firstly developed by analyzing the culture medium from different grade embryos, achieving the quantitative and real-time monitoring based on the metabolic and ROS activity. Specifically, it is found that the device can operate through the redistribution of interfacial surface charges induced by OH–/H+ ions adsorption, exhibiting a distance resistance state transition (SET voltage: -1.7 V to +1.4 V at room temperature). Exceptionally low signal fluctuation was also demonstrated by the device in embryo culture medium testing, where the coefficient of variation remained below 20%. Therefore, by integrating innovative memristive-sensing technology, it is aimed to establish an objective, data-driven alternative to conventional morphological assessment, thereby significantly improving the embryos selection accuracy and clinical pregnancy rate.
AB - It is well known that the assisted reproduction has become the only means for couples with reproductive defects to have a child. However, the optimal embryo transfer in existing assisted reproductive technologies mainly relies on morphological evaluation, and there is currently a lack of precise detection techniques for selecting grade embryos. To address this blank, an innovative embryo detection method based on a memristor with memristive-sensing effect was firstly developed by analyzing the culture medium from different grade embryos, achieving the quantitative and real-time monitoring based on the metabolic and ROS activity. Specifically, it is found that the device can operate through the redistribution of interfacial surface charges induced by OH–/H+ ions adsorption, exhibiting a distance resistance state transition (SET voltage: -1.7 V to +1.4 V at room temperature). Exceptionally low signal fluctuation was also demonstrated by the device in embryo culture medium testing, where the coefficient of variation remained below 20%. Therefore, by integrating innovative memristive-sensing technology, it is aimed to establish an objective, data-driven alternative to conventional morphological assessment, thereby significantly improving the embryos selection accuracy and clinical pregnancy rate.
KW - Embryo valuation
KW - Ion adsorption
KW - Memristive-sensing
KW - Reproductive medicine
KW - Smart medicine
UR - https://www.scopus.com/pages/publications/105025677808
U2 - 10.1016/j.snr.2025.100421
DO - 10.1016/j.snr.2025.100421
M3 - 文章
AN - SCOPUS:105025677808
SN - 2666-0539
VL - 11
JO - Sensors and Actuators Reports
JF - Sensors and Actuators Reports
M1 - 100421
ER -