[1] |
BAYMAN E O, PAREKH K R, KEECH J, et al. A prospective study of chronic pain after thoracic surgery[J]. Anesthesiology, 2017, 126(5):938-951. doi:10.1097/ALN.0000000000001576.
|
[2] |
YANG J, HAO Z, LI W, et al. The efficacy and safety of paravertebral block combined with parecoxib during video-assisted thoracic surgery:A randomized controlled trial[J]. J Pain Res, 2020, 13:355-366. doi:10.2147/JPR.S244787.
|
[3] |
CHIN K J, EL-BOGHDADLY K. Mechanisms of action of the erector spinae plane (ESP) block:a narrative review[J]. Can J Anaesth, 2021, 68(3):387-408. doi:10.1007/s12630-020-01875-2.
|
[4] |
DAUTZENBERG K, ZEGERS M J, BLEEKER C P, et al. Unpredictable Injectate spread of the erector spinae plane block in human cadavers[J]. Anesth Analg, 2019, 129(5):e163-e166. doi:10.1213/ANE.0000000000004187.
|
[5] |
COŞARCAN S K, DOĞAN A T, ERÇELEN Ö, et al. Superior costotransverse ligament is the main actor in permeability between the layers? Target-specific modification of erector spinae plane block[J]. Reg Anesth Pain Med, 2020, 45(8):674-675. doi:10.1136/rapm-2019-101031.
|
[6] |
CHIN K J, LIRK P, HOLLMANN M W, et al. Mechanisms of action of fascial plane blocks:a narrative review[J]. Reg Anesth Pain Med, 2021, 46(7):618-628. doi:10.1136/rapm-2020-102305.
|
[7] |
ZHAO H, XIN L, FENG Y. The effect of preoperative erector spinae plane vs. paravertebral blocks on patient-controlled oxycodone consumption after video-assisted thoracic surgery:A prospective randomized,blinded,non-inferiority study[J]. J Clin Anesth, 2020, 62:109737. doi:10.1016/j.jclinane.2020.109737.
|
[8] |
FINNERTY D T, MCMAHON A, MCNAMARA J R, et al. Comparing erector spinae plane block with serratus anterior plane block for minimally invasive thoracic surgery:a randomised clinical trial[J]. Br J Anaesth, 2020, 125(5):802-810. doi:10.1016/j.bja.2020.06.020.
|
[9] |
MYLES P S, MYLES D B, GALAGHER W, et al. Minimal clinically important difference for three quality of recovery scales[J]. Anesthesiology, 2016, 125(1):39-45. doi:10.1097/ALN.0000000000001158.
|
[10] |
RANGANATH Y S, RAMANUJAM V, ONODERA Y, et al. Impact of paravertebral blocks on analgesic and non-analgesic outcomes after video-assisted thoracoscopic surgery:A propensity matched cohort study[J]. PLoS One, 2021, 16(5):e0252059. doi:10.1371/journal.pone.0252059.
|
[11] |
张冉, 金佳, 田龙, 等. 胸椎旁神经阻滞对全麻胸腔镜肺部手术患者术中低血压的影响[J]. 中华麻醉学杂志, 2020, 40(5):528-532.
|
|
ZHANG R, JIN J, TIAN L, et al. Effect of thoracic paravertebral block on intraoperative hypotension in patients undergoing thoracoscopic lung surgery under general anesthsia[J]. Chin J Anesthesiol, 2020, 40(5):528-532. doi:10.3760/cma.j.cn131073.20191020.00504.
|
[12] |
GREGORY A, STAPELFELDT W H, KHANNA A K, et al. Intraoperative hypotension is associated with adverse clinical outcomes after noncardiac surgery[J]. Anesth Analg, 2021, 132(6):1654-1665. doi:10.1213/ANE.0000000000005250.
|
[13] |
XU X M, HU X W, WU Y, et al. Effects of different BP management strategies on postoperative delirium in elderly patients undergoing hip replacement:A single center randomized controlled trial[J]. J Clin Anesth, 2020, 62:109730. doi:10.1016/j.jclinane.2020.109730.
|
[14] |
YANG H M, CHOI Y J, KWON H J, et al. Comparison of injectate spread and nerve involvement between retrolaminar and erector spinae plane blocks in the thoracic region:A cadaveric study[J]. Anaesthesia, 2018, 73(10):1244-1250. doi:10.1111/anae.14408.
|
[15] |
SHIBATA Y, KAMPITAK W, TANSATIT T. The novel costotransverse foramen block technique:distribution characteristics of injectate compared with erector spinae plane block[J]. Pain Physician, 2020, 23(3):E305-E314.
|
[16] |
李东白, 宋阳阳, 张晓萍, 等. 麻醉因素对胸腔镜术后患者转归的影响:不同镇痛方式的比较[J]. 中华麻醉学杂志, 2020, 40(3):326-329.
|
|
LI D B, SONG Y Y, ZHANG X P, et al. Effect of anesthesia factor on postoperative outcome in patients undergoing thoracoscopy:a comparison between different analgesic methods[J]. Chin J Anesthesiol, 2020, 40(3):326-329. doi:10.3760/cma.j.cn131073.20190609.00318.
|