[1]郝伟,张琰,录亚鹏,等.驱动压导向个体化呼气末正压对小儿腹腔镜手术中肺保护以及术后肺不张的影响研究[J].临床小儿外科杂志,2022,21(05):468-473.[doi:10.3760/cma.j.cn101785-202111021-013]
 Hao Wei,Zhang Yan,Lu Yapeng,et al.Effect of driving pressure-guided individualized positive end-expiratory pressure titration on lung pro- tection and postoperative atelectasis during laparoscopy in children[J].Journal of Clinical Pediatric Surgery,2022,21(05):468-473.[doi:10.3760/cma.j.cn101785-202111021-013]
点击复制

驱动压导向个体化呼气末正压对小儿腹腔镜手术中肺保护以及术后肺不张的影响研究

参考文献/References:

[1] 陈小林, 刘志新, 陈乜明, 等. 腹腔镜下自制缝针腹膜内补片治疗儿童复发性腹股沟疝的诊治分析[J]. 临床小儿外科杂志,2017,16(3):273-276. DOI:10. 3969/j. issn. 1671-6353. 2017. 03. 018. Chen XL, Liu ZX, Chen MM, et al. Clinical experiences of trea- ting recurrent pediatric inguinal hernia laparoscopically with home-made stitches[J]. J Clin Ped Sur,2017,16(3):273-276. DOI:10. 3969/j. issn. 1671-6353. 2017. 03. 018.
[2] 许光, 周崇高, 王海阳, 等. 腹腔镜与开腹手术治疗3 月龄以内婴儿先天性食管裂孔疝的对比研究[J]. 临床小儿外科杂志,2019, 18(1):39-44. DOI:10. 3969/j. issn. 1671-6353. 2019. 01. 009. Xu G, Zhou CG, Wang HY, et al. A comparative study of laparos- copy versus open surgery for congenital hiatal hernia in infants aged under 3 months[J]. J Clin Ped Sur,2019,18(1):39-44. DOI:10. 3969/j. issn. 1671-6353. 2019. 01. 009.
[3] Acosta CM, Sara T, Carpinella M, et al. Lung recruitment pre- vents collapse during laparoscopy in children:A randomised con- trolled trial[J]. Eur J Anaesthesiol, 2018, 35(8):573-580. DOI:10. 1097/EJA. 0000000000000761.
[4] Song IK, Kim EH, Lee JH, et al. Effects of an alveolar recruit- ment manoeuvre guided by lung ultrasound on anaesthesia-in- duced atelectasis in infants:a randomised, controlled trial[J]. Anaesthesia,2017, 72(2):214-222. DOI:10. 1111/anae. 13713.
[5] Mini G, Ray BR, Anand RK, et al. Effect of driving pressure- guided positive end-expiratory pressure (PEEP) titration on postoperative lung atelectasis in adult patients undergoing elec- tive major abdominal surgery:A randomized controlled trial[J]. Surgery,2021,170(1):277-283. DOI:10. 1016/j. surg. 2021. 01. 047.
[6] Lellouche F, Dionne S, Simard S, et al. High tidal volumes in me- chanically ventilated patients increase organ dysfunction after cardiac surgery[J]. Anesthesiology,2012,116(5):1072-1082. DOI:10. 1097/ALN. 0b013e3182522df5.
[7] 曹鹏, 宋正杰, 程静林. 驱动压导向的个体化呼气末正压通气对腹腔镜手术患者的肺保护作用[J]. 实用临床医药杂志, 2021,25(10):40-44. DOI:10. 7619/jcmp. 20210459. Cao P, Song ZJ, Cheng JL. Effect of individualized positive end expiratory pressureguided by driving pressure on lung protection in patients undergoing laparoscopic surgery[J]. Journal of Clini- cal Medicine in Practice,2021,25(10):40-44. DOI:10. 7619/jcmp. 20210459.
[8] 李辉, 季成叶, 宗心南, 等. 中国0~18岁儿童、青少年体块指数的生长曲线[J]. 中华儿科杂志, 2009, 47(7):493-498. DOI:10. 3760/cma. j. issn. 0578-1310. 2009. 07. 004. Li H, Ji CY, Zong XN, et al. Body mass index growth carves for Chinese children and adolescents aged 0 to 18 years[J]. Chinese Journal of Pediatrics, 2009, 47(7):493-498. DOI:10. 3760/cma. j. issn. 0578-1310. 2009. 07. 004.
[9] Park M, Ahn HJ, Kim JA, et al. Driving pressure during thoracic surgery:a randomized clinical trial[J]. Anesthesiology, 2019, 130(3):385-393. DOI:10. 1097/ALN. 0000000000002600.
[10] Lee JH, Choi S, Ji SH, et al. Effect of an ultrasound-guided lung recruitment manoeuvre on postoperative atelectasis in children:A randomised controlled trial[J]. Eur J Anaesthesiol,2020,37(8):719-727. DOI:10. 1097/EJA. 0000000000001175.
[11] Ruszkai Z, Kiss E, László I, et al. Effects of intraoperative PEEP optimization on postoperative pulmonary complications and the in- flammatory response:study protocol for a randomized controlled trial[J]. Trials,2017, 18(1):375. DOI:10. 1186/s13063-017-2116-z.
[12] Kilpatrick B, Slinger P. Lung protective strategies in anaesthesia[J]. Br J Anaesth, 2010, 105(Suppl 1):i108-116. DOI:10. 1093/bja/aeq299.
[13] Fernandez-Bustamante A, Frendl G, Sprung J, et al. Postoperative pulmonary complications, early mortality, and hospital stay follow- ing noncardiothoracic surgery:a multicenter study by the perioper- ative research network investigators[J]. JAMA Surg, 2017, 152(2):157-166. DOI:10. 1001/jamasurg. 2016. 4065.
[14] Tusman G, B?hm SH, Warner DO, et al. Atelectasis and perioper- ative pulmonary complications in high-risk patients[J]. Curr Opin Anaesthesiol,2012,25(1):1-10. DOI:10. 1097/ACO. 0b013e32834dd1 eb.
[15] Brower RG, Matthay MA, Morris A, et al. Ventilation with lower tidal volumes as compared with traditional tidal volumes for acute lung injury and the acute respiratory distress syndrome[J]. N En- gl J Med, 2000, 342(18):1301-1308. DOI:10. 1056/NE- JM200005043421801.
[16] Lee JH, Bae JI, Jang YE, et al. Lung protective ventilation during pulmonary resection in children:a prospective, single-centre, ran- domised controlled trial[J]. Br J Anaesth, 2019, 122(5):692-701. DOI:10. 1016/j. bja. 2019. 02. 013.
[17] Zhu C, Zhang S, Dong J, et al. Effects of positive end-expiratory pressure/recruitment manoeuvres compared with zero end-expira- tory pressure on atelectasis in children:A randomised clinical trial[J]. Eur J Anaesthesiol, 2021, 38(10):1026-1033. DOI:10. 1097/EJA. 0000000000001451.
[18] Wirth S, Artner L, Broβ T, et al. Intratidal recruitment/derecruit- ment persists at low and moderate positive end-expiratory pressure in paediatric patients[J]. Respir Physiol Neurobiol,2016,234:9-13. DOI:10. 1016/j. resp. 2016. 08. 008.
[19] Jang YE, Ji SH, Kim EH, et al. Effect of regular alveolar recruit- ment on intraoperative atelectasis in paediatric patients ventilated in the prone position:a randomised controlled trial[J]. Br J An- aesth, 2020, 124(5):648-655. DOI:10. 1016/j. bja. 2020. 01. 022.
[20] Pelosi P, Croci M, Ravagnan I, et al. The effects of body mass on lung volumes, respiratory mechanics, and gas exchange during general anesthesia[J]. Anesth Analg, 1998, 87(3):654-660. DOI:10. 1097/00000539-199809000-00031.
[21] Godeau D, Petit A, Richard I, et al. Return-to-work, disabilities and occupational health in the age of COVID-19[J]. Scand J Work Environ Health, 2021, 47(5):408-409. DOI:10. 5271/sjweh. 3960.
[22] Lee JH, Ji SH, Lee HC, et al. Evaluation of the intratidal compli- ance profile at different PEEP levels in children with healthy lungs:a prospective, crossover study[J]. Br J Anaesth,2020,125(5):818-825. DOI:10. 1016/j. bja. 2020. 06. 046.
[23] Pereira SM, Tucci MR, Morais C, et al. Individual positive end-ex- piratory pressure settings optimize intraoperative mechanical ven- tilation and reduce postoperative atelectasis[J]. Anesthesiology, 2018,129(6):1070-1081. DOI:10. 1097/ALN. 0000000000002435.
[24] Neto AS, Hemmes SN, Barbas CS, et al. Association between driv- ing pressure and development of postoperative pulmonary compli- cations in patients undergoing mechanical ventilation for general anaesthesia:a meta-analysis of individual patient data[J]. Lancet Respir Med,2016,4(4):272-280. DOI:10. 1016/S2213-2600(16) 00057-6.
[25] 孟玉洁, 聂丽霞, 曹志萍, 等. 驱动压导向个体化呼气末正压对机器人辅助前列腺癌根治术老年患者术中肺功能的影响[J]. 中华老年医学杂志, 2020, 39(8):931-935. DOI:10. 3760/cma. j. issn. 0254-9026. 2020. 08. 018. Meng YJ, Nie LX, Cao ZP, et al. Effects of driving pressure- guided individualized positive end-expiratory pressure on intraop- erative pulmonary function in elderly patients undergoing robot- assisted laparoscopic radical prostatectomy[J]. Chinese Journal of Geriatrics,2020, 39(8):931-935. DOI:10. 3760/cma. j. issn. 0254-9026. 2020. 08. 018.
[26] Rauf A, Sachdev A, Venkataraman ST, et al. Dynamic airway driving pressure and outcomes in children with acute hypoxemic respiratory failure[J]. Respir Care, 2021, 66(3):403-409. DOI:10. 4187/respcare. 08024.
[27] Acosta CM, Maidana GA, Jacovitti D, et al. Accuracy of transtho- racic lung ultrasound for diagnosing anesthesia-induced atelectasis in children[J]. Anesthesiology,2014,120(6):1370-1379. DOI:10. 1097/ALN. 0000000000000231.
[28] Yu X, Zhai Z, Zhao Y, et al. Performance of lung ultrasound in detecting peri-operative atelectasis after general anesthesia[J]. Ultrasound Med Biol,2016,42(12):2775-2784. DOI:10. 1016/j. ultrasmedbio. 2016. 06. 010.
[29] Park S, Lee JH, Kim HJ, et al. Optimal positive end-expiratory pressure to prevent anaesthesia-induced atelectasis in infants:A prospective, randomised, double-blind trial[J]. Eur J Anaesthesi- ol,2021,38(10):1019-1025. DOI:10. 1097/EJA. 0000000000001483.

相似文献/References:

[1]郑凯,胡敏.腹腔镜在小儿肠套叠复位术中的应用[J].临床小儿外科杂志,2008,7(01):16.
[2]宋连杰,李贵斌,李龙,等.腹腔镜在睾丸未触及诊断治疗中的应用[J].临床小儿外科杂志,2008,7(03):27.
[3]田琪 董亮 王晓晔 崔华雷. 腹腔镜在小儿卵巢良性畸胎瘤手术中的应用[J].临床小儿外科杂志,2011,10(04):258.
 [J].Journal of Clinical Pediatric Surgery,2011,10(05):258.
[4]于增文 李索林 李英超 徐伟立 时保军. 腹腔镜脾切除联合胃食管周围血管离断术治疗小儿门静脉高压症[J].临床小儿外科杂志,2011,10(04):267.
 [J].Journal of Clinical Pediatric Surgery,2011,10(05):267.
[5]张振强高群黄河陈晨张燕敏赛恺. 儿童阑尾脓肿的腹腔镜治疗[J].临床小儿外科杂志,2011,10(04):286.
 [J].Journal of Clinical Pediatric Surgery,2011,10(05):286.
[6]杨全安 邓素勤. 小儿急性阑尾炎的腹腔镜手术治疗[J].临床小儿外科杂志,2011,10(04):310.
 [J].Journal of Clinical Pediatric Surgery,2011,10(05):310.
[7]戴康临 陶强 陈快 陶俊峰 樊伟 雷俊 黄金狮. 新生儿腹腔镜下胆总管囊肿根治术体会[J].临床小儿外科杂志,2011,10(04):316.
 [J].Journal of Clinical Pediatric Surgery,2011,10(05):316.
[8]黄河 戚士芹 高群 陈晨 卢贤映 未德成. 腹腔镜辅助改良Soave术根治小儿先天性巨结肠[J].临床小儿外科杂志,2012,11(02):112.
[9]桂容花 彭旭 周福金 曲朝晖 张媛 马海峰. 腹腔镜与开腹手术治疗儿童坏疽性阑尾炎的比较[J].临床小儿外科杂志,2012,11(02):120.
[10]张友波 郑志刚 李聪 潘东山. 经脐单孔腹腔镜辅助美克尔憩室切除术12例[J].临床小儿外科杂志,2012,11(05):362.
 [J].Journal of Clinical Pediatric Surgery,2012,11(05):362.

备注/Memo

收稿日期:2021-11-10。
基金项目:兰州大学第二医院“萃英科技创新”计划(CY2019-BJ07、CY2020-BJ10)
通讯作者:王迎斌,Email:wangyingbin6@163.com

更新日期/Last Update: 1900-01-01