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Research Article

Enhanced recovery after spinal surgery protocol versus conventional care in non- insulin diabetic patients: A prospective randomized trial

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Pages 313-321 | Received 15 Mar 2023, Accepted 22 Mar 2023, Published online: 27 Mar 2023

References

  • Gramlich LM, Sheppard CE, Wasylak T, et al. Implementation of enhanced recovery after surgery: a strategy to transform surgical care across a health system. Implement Sci. 2017;12(1):67. DOI:10.1186/s13012-017-0597-5
  • Petraitis C. Enhanced recovery after surgery evidence-based practice perioperative guideline implementation for hepatectomy (DNP Scholarly Project, East Carolina University). 2020.
  • Carli F. Physiologic considerations of Enhanced Recovery After Surgery (ERAS) programs: implications of the stress response. Can J Anaesth. 2015;62(2):110–119.
  • Zhang CH, Yan BS, Xu BS, et al. Study on feasibility of enhanced recovery after surgery combined with mobile microendoscopic discectomy-transforaminal lumbar interbody fusion in the treatment of lumbar spondylolisthesis. Article in Chinese. Zhonghua Yi Xue Za Zhi. 2017;97(23):1790–1795. DOI:10.3760/cma.j.issn.0376-2491.2017.23.007
  • Wang MY, Chang PY, Grossman J. Development of an Enhanced Recovery After Surgery (ERAS) approach for lumbar spinal fusion. J Neurosurg Spine. 2017;26(4):411–418.
  • Elsarrag M, Soldozy S, Patel P, et al. Enhanced recovery after spine surgery: a systematic review. Neurosurg Focus. 2019;46(4):E3. DOI:10.3171/2019.1.FOCUS18700
  • Soffin EM, Beckman JD, Tseng A, et al. Enhanced recovery after lumbar spine fusion: a randomized controlled trial to assess the quality of patient recovery. Anesthesiology. 2020;133(2):350–363. DOI:10.1097/ALN.0000000000003346
  • Young R, Cottrill E, Pennington Z, et al. Experience with an enhanced recovery after spine surgery protocol at an academic community hospital. J Neurosurg Spine. 2020;34(4):680–687. DOI:10.3171/2020.7.SPINE20358
  • International Diabetes Federation (IDF). Diabetes Atlas. 7th ed. Brussels, Belgium: IDF; 2015.
  • Zhang X, Hou A, Cao J, et al. Association of diabetes mellitus with postoperative complications and mortality after non-cardiac surgery: a meta-analysis and systematic review. Front Endocrinol. 2022;13:841256.
  • Farrukh A, Higgins K, Singh B, et al. Can pre-operative carbohydrate loading be used in diabetic patients undergoing colorectal surgery? Br J Diabetes. 2014;14(3):102–104.
  • Li-Na G, Wang L, Wang F. Effectiveness and safety of preoperative oral carbohydrates in enhanced recovery after surgery protocols for patients with diabetes mellitus: a systematic review. BioMed Res Int. 2020;18:5623596.
  • Albalawi Z, Laffin M, Gramlich L, et al. Enhanced Recovery After Surgery (ERAS®) in individuals with diabetes: a systematic review. World J Surg. 2017;41(8):1927–1934.
  • Nagabhushan RM, Shetty AP, Dumpa SR, et al. Effectiveness and safety of batroxobin, tranexamic acid and a combination in reduction of blood loss in lumbar spinal fusion surgery. Spine. 2018;43(5):E267–273.
  • Oh SK, Lim BG, Won YJ, et al. Analgesic efficacy of erector spinae plane block in lumbar spine surgery: a systematic review and meta-analysis. J Clin Anesth. 2022;78:110647.
  • Lee CT, Lee TS, Chiu C-T. Mini-fluid challenge test predicts stroke volume and arterial pressure fluid responsiveness during spine surgery in prone position: a STARD-compliant diagnostic accuracy study. Medicine (Baltimore). 2020 Feb;99(6):e19031.
  • Myles PS, Weitkamp B, Jones K, et al. Validity and reliability of a postoperative quality of recovery score: the QoR-40. Br J Anaesth. 2000;84(1):11–15.
  • Aldrete JA. The post-anesthesia recovery score revisited. J Clin Anesth. 1995;7(1):89–91.
  • Guimarães-Pereira L, Costa M, Sousa G, et al. Quality of recovery after anaesthesia measured with QoR-40: a prospective observational study. Braz J Anesthesiol. 2016 Jul-Aug;66(4):369–375.
  • Shida D, Wakamatsu K, Tanaka Y, et al. The postoperative patient-reported quality of recovery in colorectal cancer patients under enhanced recovery after surgery using QoR-40. BMC Cancer. 2015;15(1):799.
  • Soffin EM, Vaishnav AS, Wetmore DS, et al. Design and implementation of an Enhanced Recovery After Surgery (ERAS) program for minimally invasive lumbar decompression spine surgery: initial experience. Spine. 2019;44(9):E561–70. DOI:10.1097/BRS.0000000000002905
  • Brusko GD, Kolcun JPG, Heger JA, et al. Reductions in length of stay, narcotics use, and pain following implementation of an enhanced recovery after surgery program for 1- to 3-level lumbar fusion surgery. Neurosurg Focus. 2019;46(4):E4. DOI:10.3171/2019.1.FOCUS18692
  • Gornitzky AL, Flynn JM, Muhly WT, et al. A rapid recovery pathway for adolescent idiopathic scoliosis that improves pain control and reduces time to inpatient recovery after posterior spinal fusion. Spine Deform. 2016;4(4):288–295.
  • Debono B, Corniola MV, Pietton R, et al. Benefits of enhanced recovery after surgery for fusion in degenerative spine surgery: impact on outcome, length of stay, and patient satisfaction. Neurosurg Focus. 2019;46(4):E6.
  • Soffin EM, Wetmore DS, Barber LA, et al. An enhanced recovery after surgery pathway: association with rapid discharge and minimal complications after anterior cervical spine surgery. Neurosurg Focus. 2019;46(4):E9.
  • Angus M, Jackson K, Smurthwaite G, et al. The implementation of Enhanced Recovery After Surgery (ERAS) in complex spinal surgery. J Spine Surg. 2019;5(1):116–23 10.
  • Smith J, Probst S, Calandra C, et al. Enhanced Recovery After Surgery (ERAS) program for lumbar spine fusion. Perioper Med. 2019;8(1):4. DOI:10.1186/s13741-019-0114-2
  • Maheshwari K, Avitsian R, Sessler DI, et al. Multimodal analgesic regimen for spine surgery: a randomized placebo-controlled trial. Anesthesiology. 2020;132(5):992–1002. DOI:10.1097/ALN.0000000000003143
  • Liu MJ, Zhou XY, Yao YB, et al. Postoperative analgesic efficacy of erector Spinae plane block in patients undergoing lumbar spinal surgery: a systematic review and Meta-analysis. Pain Ther. 2021;10(1):333–347.
  • Garg B, Mehta N, Bansal T, et al. Design and implementation of an enhanced recovery after surgery protocol in elective lumbar spine fusion by posterior approach: a retrospective, comparative study. Spine. 2021;46(12):E679–687.
  • Gruskay JA, Fu M, Bohl DD, et al. Factors affecting length of stay after elective posterior lumbar spine surgery: a multivariate analysis. Spine J. 2015;15(6):1188–1195.
  • Vlug MS, Bartels SA, Wind J, et al. Collaborative LAFA study group: which fast track elements predict early recovery after colon cancer surgery? Colorectal Dis. 2012;14(8):1001–1008.
  • Zakaria HM, Bazydlo M, Schultz L, et al. Ambulation on postoperative day #0 is associated with decreased morbidity and adverse events after elective lumbar spine surgery: analysis from the Michigan Spine Surgery Improvement Collaborative (MSSIC). Neurosurgery. 2020;87(2):320–328. DOI:10.1093/neuros/nyz501
  • Aono H, Ohwada T, Kaneko H, et al. The post-operative changes in the level of inflammatory markers after posterior lumbar interbody fusion. J Bone Joint Surg. 2007;89(11):1478–1481.
  • Mari G, Crippa J, Costanzi A, et al. ERAS protocol reduces IL-6 secretion in colorectal laparoscopic surgery: results from a randomized clinical trial. Surg Laparosc Endosc Percutan Tech. 2016;26(6):444–448.
  • Smith MD, McCall J, Plank L, et al. Preoperative carbohydrate treatment for enhancing recovery after elective surgery. Cochrane Database Syst Rev. 2014;14(8): Article ID CD009161. DOI:10.1002/14651858.CD009161.pub2
  • Ljungqvist O. Eras–enhanced recovery after surgery: moving evidence-based perioperative care to practice. JPEN J Parenter Enteral Nutr. 2014 Jul;38(5):559–566.