Citation: | LI Min, ZHENG Shumin, ZHANG Hongxia, DAI Chengcheng, LIU Chao, YU Peng. The correlation between uterine artery ultrasound parameters, serum PIGF level and the risk of preeclampsia during pregnancy[J]. Chinese Journal of General Practice, 2025, 23(2): 257-260. doi: 10.16766/j.cnki.issn.1674-4152.003880 |
[1] |
肖燕璇, 张立力, 黎嘉琪, 等. 单胎子痫前期孕妇产前体质量指数与母婴结局关系探讨[J]. 实用医学杂志, 2023, 39(18): 2357-2361.
XIAO Y X, ZHANG L L, LI J Q, et al. Relationship between prenatal body mass index and pregnancy outcomes in singleton pregnant women with preeclampsia[J]. The J Pract Med, 2023, 39(18): 2357-2361.
|
[2] |
石莉, 符小艳, 王丽, 等. 不同绒毛膜性质双胎与子痫前期的临床研究[J]. 新医学, 2021, 52(9): 709-712.
SHI L, FU X Y, WANG L, WU D C. Clinical study of the association between preeclampsia and chorionicity of twin pregnancies[J]. New Med, 2021, 52(9): 709-712.
|
[3] |
王霞, 王群华, 吴明珠, 等. 基于生化指标的重度子痫前期辅助诊断模型构建[J]. 实用妇产科杂志, 2023, 39(8): 603-608.
WANG X, WANG Q H, WU M Z, et al. Construction of Assistant Diagnostic Model for Severe Preeclampsia in Pregnancy Based on Biochemical Indicators[J]. The J Pract Obstet Gynecol, 2023, 39(8): 603-608.
|
[4] |
KIFLE M M, DAHAL P, VATISH M, et al. The prognostic utility of soluble fms-like tyrosine kinase-1 (sFlt-1) and placental growth factor (PIGF) biomarkers for predicting preeclampsia: a secondary analysis of data from the INSPIRE trial[J]. BMC Pregnancy Childbirth, 2022, 22(1): 520. doi: 10.1186/s12884-022-04817-6
|
[5] |
乐杰. 妇产科学[M]. 7版. 北京: 人民卫生出版社, 2008: 92-103.
YUE J. Obstetrics and gynecology[M]. 7th Ed. Beijing: People' s Medical Publishing House, 2008: 92-103.
|
[6] |
张霞, 徐晓敏. 子痫前期孕妇子宫动脉SD、THBS1与凝血功能障碍的相关性[J]. 中华全科医学, 2023, 21(12): 2074-2076. doi: 10.16766/j.cnki.issn.1674-4152.003293
ZHANG X, XU X M. Correlation between uterine artery SD, THBS1 and coagulation dysfunction in pregnant women with preeclampsia[J]. Chinese Journal of General Practice, 2023, 21(12): 2074-2076. doi: 10.16766/j.cnki.issn.1674-4152.003293
|
[7] |
莫蕾, 钟萍. 孕早中期孕妇肠道菌群差异与子痫前期发病关系的研究[J]. 中国全科医学, 2022, 25(20): 2489-2492.
MO L, ZHONG P. Study on the Relationship between Intestinal Microflora Differences and the Incidence of Preeclampsia in Pregnant Women in the Early and Middle Stages of Pregnancy[J]. Chinese General Practice, 2022, 25(20): 2489-2492.
|
[8] |
樊海霞, 杨瑞敏, 尹佳园, 等. 多血流参数联合预测子痫前期患者胎儿不良妊娠结局的临床价值[J]. 河北北方学院学报: 自然科学版, 2021, 37(12): 15-18.
FAN H X, YANG R M, YIN J Y, et al. Clinical Value of Multiple Blood Flow Parameters in Predicting Fetal Adverse Pregnancy Outcome in Patients with Preeclampsia[J]. Journal of Hebei North University (Natural Science Edition), 2021, 37(12): 15-18.
|
[9] |
庄万祝, 戚怀钻, 张果, 等. 早发重度子痫前期患者子宫动脉血流动态监测对胎儿生长受限的预测效能[J]. 中国妇产科临床杂志, 2023, 24(5): 526-527.
ZHUANG W Z, QI H Z, ZHANG G, et al. Predictive efficacy of uterine artery flow dynamics monitoring in fetal growth restriction in patients with early onset severe preeclampsia[J]. Chin Clini J Obstet Gynecol, 2023, 24(5): 526-527.
|
[10] |
黄杨, 孟琳, 吕慧, 等. 血清PIGF、sFlt-1及PLGF水平对妊娠期高血压的预测效能及与子痫前期发病的关系[J]. 广东医学, 2023, 44(3): 284-287.
HUANG Y, MENG L, LV H, et al. Correlation analysis of serum PIGF, sFlt-1 and PLGF in early pregnancy with preeclampsia[J]. Guangdong Medical Journal, 2023, 44(3): 284-287.
|
[11] |
徐小芬, 徐彬彬. 血清可溶性类fms酪氨酸激酶-1血管内皮生长因子胎盘生长因子在高危子痫前期产妇中的表达及其与病情严重程度的相关性[J]. 中国妇幼保健, 2022, 37(5): 895-897.
XU X F, XU B B. Expression of serum soluble fms tyrosine kinase-1 vascular endothelial growth factor and placental growth factor in high-risk preeclampsia women and its correlation with the severity of the disease[J]. Maternal & Child Health Care of China, 2022, 37(5): 895-897.
|
[12] |
储华, 陆艳, 刘明松. 孕期子宫动脉超声参数动态分析与子痫前期风险的相关性研究[J]. 中华全科医学, 2022, 20(9): 1545-1547. doi: 10.16766/j.cnki.issn.1674-4152.002645
CHU H, LU Y, LIU M S. The correlation between the dynamic analysis of uterine artery ultrasound parameters during pregnancy and the risk of preeclampsia[J]. Chinese Journal of General Practice, 2022, 20(9): 1545-1547. doi: 10.16766/j.cnki.issn.1674-4152.002645
|
[13] |
PANDA S, JANTE V, DAS A, et al. Unveiling preeclampsia prognosis: uterine artery doppler indices in low-risk pregnancies[J]. Cureus, 2023, 15(9): e46060. DOI: 10.7759/cureus.46060.
|
[14] |
王媛, 闫国珍, 李一凡, 等. 妊娠8~10^(+6)周平均子宫动脉搏动指数对低危人群不良妊娠结局的预测价值[J]. 中国超声医学杂志, 2023, 39(8): 922-926.
WANG Y, YAN G Z, LI Y F, et al. Predictive value of mean uterine artery pulsation index at 8 to 10^(+6) weeks gestation for adverse pregnancy outcomes in low-risk population[J]. Chin J Ultra Med, 2023, 39(8): 922-926.
|
[15] |
钟敏, 肖慧彬, 朱艳宾, 等. sEng和ADMA联合子宫动脉PI对早发型子痫前期的预测[J]. 中国妇产科临床杂志, 2020, 21(5): 486-488.
ZHONG M, XIAO H B, ZHU Y B, et al. The combined application of ADMA, sEng and uterine artery doppler pulsatility index in the prediction of early-onset preeclampsia[J]. Chin Clini J Obstet Gynecol, 2020, 21(5): 486-488.
|
[16] |
方婕, 何洁, 吴侠霏, 等. 基于生物信息学筛选的CEBPA在子痫前期胎盘组织的表达及对滋养细胞上皮间质转化的影响[J]. 实用妇产科杂志, 2022, 38(5): 358-363.
FANG J, HE J, WU X F, et al. Expression of CEBPA in Preeclampsia Placenta and Its Effect on Trophoblast Epithelial-Mesenchymal Transition Based on Bioinformatics Analysis[J]. The J Pract Obstet Gynecol, 2022, 38(5): 358-363.
|
[17] |
孙文苑, 马利娟, 吴思沂, 等. 孕中期血清sFlt-1、PIGF和补体系统激活因子对子痫前期危险因素孕妇发生子痫前期的预测价值[J]. 中国妇产科临床杂志, 2020, 21(5): 489-491.
SUN W Y, MA L J, WU S Y, et al. Predictive value of serum sFlt-1, PIGF and complement system activators for preeclampsia in the second trimester pregnant women with preeclampsia risk factors[J]. Chin Clini J Obstet Gynecol, 2020, 21(5): 489-491.
|
[18] |
CHEN Y, PAN X, XIANG G, et al. More need to optimize the prediction model of sFlt-1/PIGF ratio and ambulatory blood pressure monitoring in preeclampsia[J]. Hypertens Res, 2024, 47(5): 1438-1439.
|
[19] |
玉娟, 贾音, 王慧丽, 等. 单胎妊娠孕妇子痫前期的影响因素分析[J]. 北京医学, 2023, 45(6): 521-524.
ZHANG L H, LI X H, FENG K D, et al. Changes and Diagnostic Efficacy of NfL and PLGF in Patients with Preeclampsia[J]. Beijing Medical Journal, 2023, 45(6): 521-524.
|
[20] |
CICIU E, PAȘATU-CORNEA A M, DUMITRU S, et al. Utility of sFtl-1 and placental growth factor ratio for adequate preeclampsia management[J]. Healthcare (Basel), 2023, 11(3): 381.
|