1 |
Nag DS, Samaddar DP, Chatterjee A, et al. Vasopressors in obstetric anesthesia: A current perspective [J]. World J Clin Cases, 2015, 3(1): 58-64.
|
2 |
谢幸. 妇产科学 [M]. 北京: 人民卫生出版社, 2017: 44.
|
3 |
郭曲练, 姚尚龙. 临床麻醉学 [M]. 北京: 人民卫生出版社, 2016: 337
|
4 |
陈烨,邹聪华,陈彦青. 术前体位改变对剖宫产腰麻后引起低血压的预测分析 [J]. 中国医学创新, 2017, 14(30): 19-22.
|
5 |
陈良,刘建宁. 变换体位引起的血压改变预测剖宫产腰麻仰卧位低血压综合征的发生 [J]. 临床麻醉学杂志, 2011, 27(7): 699-700.
|
6 |
Sahin L, Cesur M, Sahin M, et al. Maintenance of the parturient in the left lateral position after spinal anesthesia with plain levobupivacaine for cesarean section reduces hypotension: a randomized study [J]. Clin Exp Obstet Gynecol, 2017, 44(1): 77-80.
|
7 |
Higuchi H, Takagi S, Zhang K, et al. Effect of lateral tilt angle on the volume of the abdominal aorta and inferior vena cava in pregnant and nonpregnant women determined by magnetic resonance imaging [J]. Anesthesiology, 2015, 122(2): 286-293.
|
8 |
Hasanin A, Soryal R, Kaddah T, et al. Hemodynamic effects of lateral tilt before and after spinal anesthesia during cesarean delivery: an observational study [J]. BMC Anesthesiol, 2018, 18(1): 8.
|
9 |
Kinsella SM, Carvalho B, Dyer RA, et al. International consensus statement on the management of hypotension with vasopressors during caesarean section under spinal anaesthesia [J]. Anaesthesia, 2018, 73(1): 71-92.
|
10 |
Kinsella SM, Harvey NL. A comparison of the pelvic angle applied using lateral table tilt or pelvic wedge at elective caesarean section [J]. Anaesthesia, 2012, 67(12): 1327-1331.
|
11 |
郭然,薛勤,胡永明, 等. 腰麻剖宫产不同左倾位下腔静脉内径变化及低血压的关系 [J].临床麻醉学杂志, 2013, 29(8): 771-773.
|
12 |
Hajian P, Nikooseresht M, Lotfi T. Comparison of 1- and 2-Minute Sitting Positions Versus Immediately Lying Down on Hemodynamic Variables After Spinal Anesthesia with Hyperbaric Bupivacaine in Elective Cesarean Section [J]. Anesth Pain Med, 2017, 7(2): e43462.
|
13 |
Hasanin A, Aiyad A, Elsakka A, et al. Leg elevation decreases the incidence of post-spinal hypotension in cesarean section: a randomized controlled trial [J]. BMC Anesthesiol, 2017, 17(1): 60.
|
14 |
Keesakul C, Sae-Ngow P, Euaraksakul P, et al. The Effect of Reverse Trendelenburg Position on Incidence of Hypotension after Spinal Anesthesia [J]. J Med Assoc Thai, 2016, 99(12): 1322-1327.
|
15 |
Loubert C. Fluid and vasopressor management for Cesarean delivery under spinal anesthesia: Continuing professional development [J]. Can J Anaesth, 2012, 59(6): 604-619.
|
16 |
Rout CC, Rocke DA, Levin J, et al. Areevaluation of the role of crystalloid preload in the prevention of hypotension associated with spinal anesthesia for elective cesarean section [J]. Anesthesiology, 1993, 79(2): 262-269.
|
17 |
Ouerghi S, Bougacha MA, Frikha N, et al. Combined use of crystalloid preload and low dose spinal anesthesia for preventing hypotension in spinal anesthesia for cesarean delivery: a randomized controlled trial [J]. MiddleEast J Anaesthesiol, 2010, 20(5): 667-672.
|
18 |
Dyer RA, Farina Z, Joubert IA, et al. Crystalloid preload versus rapid crystalloid administration after induction of spinalanaesthesia (coload) for elective caesarean section [J]. Anaesth Intensive Care, 2004, 32(3): 351-357.
|
19 |
Dahlgren G, Granath F, Wessel H, et al. Prediction of hypotension during spinal anesthesia for cesarean section and its relation to the effect of crystalloid or colloid preload [J]. Int J Obstet Anesth, 2007, 16(2): 128-134.
|
20 |
Tamilselvan P, Fernando R, Bray J, et al. The effects of crystalloid and colloid preload on cardiac output in the parturient cesarean delivery under spinal anesthesia: A randomized trial [J]. Anesth Analg, 2009, 109(6): 1916-1921.
|
21 |
Varshney R, Jain G. Comparison of colloid preload versus coload under low dose spinal anesthesia for cesarean delivery [J]. Anesth Essays RES, 2013, 7(3): 376-380.
|
22 |
Siddik-Sayyid SM, Nasr VG, Taha SK, et al. A randomized trial comparing colloid preload to coload during spinal anesthesia for elective cesarean delivery [J]. Anesth Analg, 2009, 109(4): 1219-1224.
|
23 |
Ripollés Melchor J, Espinosa Á, Martínez Hurtado E, et al. Colloids versus crystalloids in the prevention of hypotension induced by spinal anesthesia in elective cesarean section. A systematic review and meta-analysis [J]. Minerva Anestesiol, 2015, 81(9): 1019-1030.
|
24 |
Mercier FJ, Diemunsch P, Ducloy-Bouthors AS, et al. 6% Hydroxyethyl starch (130/0.4) vs Ringer′s lactate preloading before spinal anaesthesia for Caesarean delivery: therandomized,double blind,multicentre caesar trial [J]. Br J Anaesth, 2014, 113(3): 459-467.
|
25 |
Kroll K, Pähtz V, Kniemeyer O. Elucidating the fungal stress response by proteomics [J]. J Proteomics, 2014, 97: 151-163.
|
26 |
Marcus MA, Vertommen JD, Van Aken H, et al. Hemodynamic effects of intravenous isoproterenol versus epinephrine in the chronic maternal-fetal sheep preparation [J]. Anesth Analg, 1996, 82(5): 1023-1026.
|
27 |
Ngan Kee WD, Khaw KS, Tan PE. Placental transfer and Fetal metabolic effects of phenylephrine and ephedrine during spinal anesthesia for cesarean delivery [J]. Anesthesiology, 2009, 111(3): 506-512.
|
28 |
Prakash S, Pramanik V, Chellani H, et al. Maternal and neonatal effects of bolus administration of ephedrine and phenylephrine during spinal anaesthesia for caesarean delivery: a randomised study [J]. Int J Obstet Anesth, 2010, 19(1): 24-30.
|
29 |
Soxhuku-Isufi A, Shpata V, Sula H. Maternal and Neonatal Effects of Vasopressors Used for Treating Hypotension after Spinal Anesthesia for Caesarean Section:A Randomized Controlled Study [J]. Open Access Maced J Med Sci, 2016, 4(1): 54-58.
|
30 |
Mohta M, Aggarwal M, Sethi AK, et al. Randomized double-blind comparison of ephedrine andphenylephrine for management of post-spinal hypotension in potential fetal compromise [J]. Int J Obstet Anesth, 2016, 27: 32-40.
|
31 |
Ali MA, Ismail S, Sohaib M, et al. A double-blind randomized control trial to compare the effect of varying doses of intrathecal fentanyl on clinical efficacy and side effects in parturients undergoing cesarean section [J]. J Anaestesiol Clin Pharmacol, 2018, 34(2): 221-226.
|
32 |
Alimian M, Mohseni M, Faiz SHR. The Effect of Different Doses of Intrathecal Hyperbaric Bupivacaine Plus Sufentanil in Spinal Anesthesia for Cesarean Sections [J]. Anesth Pain Med, 2017, 7(6): e14426
|
33 |
Farzi F, Mirmansouri A, Naderi Nabi B, et al. Comparing the Effect of Adding Fentanyl, Sufentanil, and Placebo with Intrathecal Bupivacaine on Duration of Analgesia and Complications of Spinal Anesthesia in Patients Undergoing Cesarean Section [J]. Anesth Pain Med, 2017, 7(5): e12738.
|
34 |
Sun Y, Xu Y. Comparative Evaluation of Intrathecal Bupivacaine Alone, Bupivacaine-fentanyl, and Bupivacaine-dexmedetomidine in Caesarean Section [J]. Drug Res (Stuttg), 2015, 65(9): 468-472.
|
35 |
Benhamou D, Wong C. Neuraxial anesthesia for cesarean delivery: What criteria define the ″optimal″ technique? [J]. Anesth Analg, 2009, 109(5): 1370-1373.
|