[1] |
李俊. 全髋关节置换术与半髋关节置换术治疗股骨颈骨折的疗效比较[J]. 临床医学研究与实践, 2018, 3(3): 77. |
[2] |
丁志国. 全髋关节置换术在老年股骨颈骨折患者中的应用效果及对预后的影响研究[J]. 中西医结合心血管病电子杂志, 2018, 6(4): 84. doi: 10.3969/j.issn.2095-6681.2018.04.066 |
[3] |
CHENG YW, XU F, LI J. Identification of volume parameters monitored with a noninvasive ultrasonic cardiac output monitor for predicting fluid responsiveness in children after congenital heart disease surgery[J]. Medicine(Baltimore), 2018, 97(39): e12289. |
[4] |
LIN TW, LUO CF, LIN CC, et al. Utilization of bioreactance technique as indicator for preload responsiveness during living donor liver donation[J]. Transplant Proc, 2014, 46(3): 669. doi: 10.1016/j.transproceed.2013.11.051 |
[5] |
REN H, SONG B, LI P, et al. The effects of high-volume hemofiltration by different ultrasound directing on extra vascular lung water index in patients with septic shock[J]. Iran J Public Health, 2018, 47(9): 1245. |
[6] |
TIRALONGO GM, PISANI I, VASAPOLLO B, et al. Effect of a nitric oxide donor on maternal hemodynamics in fetal growth restriction[J]. Ultrasound Obstet Gynecol, 2018, 51(4): 514. doi: 10.1002/uog.17454 |
[7] |
ELGENDY A, SEPPELT IM, LANE AS. Comparison of continous-wave Doppler ultrasound monitor and echocardiography to assess cardiac output in intensive care patients[J]. Crit Care Resusc, 2017, 19(3): 222. |
[8] |
HALILOČLU M, BILGILI B, KARARMAZ A, et al. The value of internal jugular vein collapsibility index in sepsis[J]. Ulus Travma Acil Cerrahi Derg, 2017, 23(4): 294. |
[9] |
VALENSISE H, TIRALONGO GM, PISANI I, et al. Maternal hemodynamics early in labor: a possible link with obstetric risk?[J]. Ultrasound Obstet Gynecol, 2018, 51(4): 509. doi: 10.1002/uog.17447 |
[10] |
SU BC, LUO CF, CHANG WY, et al. Corrected flow time is a good indicator for preload responsiveness during living donor liver donation[J]. Transplant Proc, 2014, 46(3): 672. doi: 10.1016/j.transproceed.2013.11.021 |
[11] |
GAGLIARDI G, TIRALONGO GM, LOPRESTI D, et al. Screening for pre-eclampsia in the first trimester: role of maternal hemodynamics and bioimpedance in non-obese patients[J]. Ultrasound Obstet Gynecol, 2017, 50(5): 584. doi: 10.1002/uog.17379 |
[12] |
HODGSON LE, VENN R, FORNI LG, et al. Measuring the cardiac output in acute emergency admissions: use of the non-invasive ultrasonic cardiac output monitor(USCOM) with determination of the learning curve and inter-rater reliability[J]. J Intensive Care Soc, 2016, 17(2): 122. |
[13] |
HODGSON LE, FORNI LG, VENN R, et al. A comparison of the non-invasive ultrasonic cardiac output monitor(USCOM) with the oesophageal Doppler monitor during major abdominal surgery[J]. J Intensive Care Soc, 2016, 17(2): 103. doi: 10.1177/1751143715610785 |
[14] |
WONGSIRIMETHEEKUL T, KHOSITSETH A, LERTBUNRIAN R. Non-invasive cardiac output assessment in critically ill paediatric patients[J]. Acta Cardiol, 2014, 69(2): 167. doi: 10.1080/AC.69.2.3017298 |
[15] |
BELTRAMO F, MENTEER J, RAZAVI A, et al. Validation of an ultrasound cardiac output monitor as a bedside tool for oediatric patients[J]. Pediatr Cardiol, 2016, 37(1): 177. |
[16] |
TIRALONGO GM, LO PD, PISANI I, et al. Assessment of total vascular resistance and total body water in normotensive women during the first trimester of pregnancy. A key for the prevention of preeclampsia[J]. Pregnancy Hypertens, 2015, 5(2): 193. |
[17] |
CHAN CP, LI YL, AGARWAL N, et al. Learning profiles for noninvasive transcutaneous Doppler ultrasound[J]. Eur J Emerg Med, 2015, 22(2): 128. |