Sukegawa Sachi, Yamamoto Yuka, Sato Keisuke, Tanaka Satomi, Tanaka Toshitaka, Mitsuhashi Naoki
Department of Obstetrics and Gynecology, Juntendo University Shizuoka Hospital, 1129 Nagaoka, Izunokuni-sh, Shizuoka, 479-2211, Japan.
Department of Cardiology, Shizuoka Children's Hospital, Shizuoka, Japan.
J Med Ultrason (2001). 2019 Apr;46(2):267-272. doi: 10.1007/s10396-018-0905-y. Epub 2018 Oct 4.
In fetal critical aortic stenosis (AS), a double reverse pattern in the pulmonary veins (PVs) is associated with a poor prognosis. We evaluated the hemodynamic changes using PV Doppler and the left atrium area/cardiac area (LA/CA) ratio in a fetus at 28 weeks of gestation with critical AS complicated with hydrops fetalis, polyhydramnios, and cardiac abnormality. A markedly enlarged LA and severe mitral regurgitation with critical AS were detected, with LA/CA ratio = 0.40 and double reverse pattern with forward/reverse velocity time integral ratio (FRVR) = 1.18 on PV Doppler. After amniotic reduction at 31 weeks, the LA/CA ratio decreased (0.24) and the FRVR in PV increased (7.11). Forward flow through the fetal aorta was seen spontaneously, and hydrops fetalis was relieved with LA volume reduction. A male neonate weighing 2171 g was delivered via cesarean section at 36 weeks with an Apgar score of 5 and 6 at 1 and 5 min, respectively. He required atrial septal opening and bilateral pulmonary artery banding after birth, followed by Norwood operation. The double reverse pattern in PVs might be reversible. The change in FRVR in PVs and LA/CA ratio would be helpful in understanding the hemodynamic change in fetal critical AS.
在胎儿严重主动脉瓣狭窄(AS)中,肺静脉(PVs)的双反向血流模式与预后不良相关。我们使用PV多普勒及左心房面积/心面积(LA/CA)比值,对一名孕28周、患有严重AS并合并胎儿水肿、羊水过多及心脏异常的胎儿进行血流动力学变化评估。检测到左心房明显增大及严重主动脉瓣狭窄合并严重二尖瓣反流,LA/CA比值为0.40,PV多普勒显示双反向血流模式,正向/反向速度时间积分比值(FRVR)为1.18。在孕31周进行羊水减量后,LA/CA比值降低(0.24),PV的FRVR升高(7.11)。胎儿主动脉出现自发前向血流,随着左心房容积减小,胎儿水肿得到缓解。一名体重2171g的男婴于孕36周剖宫产出生,1分钟和5分钟时Apgar评分分别为5分和6分。出生后他需要进行房间隔造口术和双侧肺动脉束带术,随后进行诺伍德手术。PVs的双反向血流模式可能是可逆的。PVs中FRVR及LA/CA比值的变化有助于理解胎儿严重AS的血流动力学变化。