205
Views
0
CrossRef citations to date
0
Altmetric
ORIGINAL RESEARCH

Accuracy Evaluation Trial of Mixed Reality-Guided Spinal Puncture Technology

, , , , , , , , & show all
Pages 599-609 | Received 12 Apr 2023, Accepted 03 Jul 2023, Published online: 17 Jul 2023

References

  • Liu B, Liu S, Wang Y, et al. Enhanced recovery after intraspinal tumor surgery: a single-institutional randomized controlled study. World Neurosurg. 2020;136:e542–e552. doi:10.1016/j.wneu.2020.01.067
  • Beverly A, Kaye AD, Ljungqvist O, Urman RD. Essential elements of multimodal analgesia in enhanced recovery after surgery (ERAS) guidelines. Anesthesiol Clin. 2017;35:e115–e143. doi:10.1016/j.anclin.2017.01.018
  • Grant MC, Sommer PM, He C, et al. Preserved analgesia with reduction in opioids through the use of an acute pain protocol in enhanced recovery after surgery for open hepatectomy. Reg Anesth Pain Med. 2017;42:451–457. doi:10.1097/AAP.0000000000000615
  • Stubbs BM, Badcock KJM, Hyams C, Rizal FE, Warren S, Francis D. A prospective study of early removal of the urethral catheter after colorectal surgery in patients having epidural analgesia as part of the Enhanced Recovery After Surgery programme. Colorectal Dis. 2013;15:733–736. doi:10.1111/codi.12124
  • Weiss R, Pöpping DM. Is epidural analgesia still a viable option for enhanced recovery after abdominal surgery. Curr Opin Anaesthesiol. 2018;31:622–629. doi:10.1097/ACO.0000000000000640
  • Osseis M, Weyrech J, Gayat E, et al. Epidural analgesia combined with a comprehensive physiotherapy program after cytoreductive surgery and HIPEC is associated with enhanced post-operative recovery and reduces intensive care unit stay: a retrospective study of 124 patients. Eur J Surg Oncol. 2016;42:1938–1943. doi:10.1016/j.ejso.2016.06.390
  • Niu Z, Feng W, Lyu L, Dong H, Chu H. Improvement of recovery parameters using patient‐controlled epidural analgesia for video‐assisted thoracoscopic surgery lobectomy in enhanced recovery after surgery: a prospective, randomized single center study. Thorac Cancer. 2018;9:1174–1179. doi:10.1111/1759-7714.12820
  • Brown JK, Singh K, Dumitru R, Chan E, Kim MP. The benefits of enhanced recovery after surgery programs and their application in cardiothoracic surgery. Methodist DeBakey Cardiovasc J. 2018;14:77–88. doi:10.14797/mdcj-14-2-77
  • Cramm SL, Luckhurst C, Galls A, et al. Thoracic epidural-based Enhanced Recovery After Surgery (ERAS) pathway for Nuss repair of pectus excavatum shortened length of stay and decreased rescue intravenous opiate use. Pediatr Surg Int. 2021;37:1191–1199. doi:10.1007/s00383-021-04934-x
  • Harbaugh CM, Johnson KN, Kein CE, et al. Comparing outcomes with thoracic epidural and intercostal nerve cryoablation after Nuss procedure. J Surg Res. 2018;231:217–223. doi:10.1016/j.jss.2018.05.048
  • Duniec L, Nowakowski P, Kosson D, Łazowski T. Anatomical landmarks-based assessment of intravertebral space level for lumbar puncture is misleading in more than 30%. Anaesthesiol Intensive Ther. 2013;45:1–6. doi:10.5603/AIT.2013.0001
  • Oliveira de Filho GR, Gomes HP, da Fonseca MHZ, Hoffman JC, Pederneiras SG, Garcia JHS. Predictors of successful neuraxial block: a prospective study. Eur J Anaesthesiol. 2002;19:447–451. doi:10.1017/S0265021502000716
  • Qureshi AI, Khan AA, Malik AA, et al. Lumbar catheter placement using paramedian approach under fluoroscopic guidance. J Vasc Interv Neurol. 2016;8:55–62.
  • Belavy D, Ruitenberg MJ, Brijball RB. Feasibility study of real-time three-/four-dimensional ultrasound for epidural catheter insertion. Br J Anaesth. 2011;107:438–445. doi:10.1093/bja/aer157
  • Hu HZ, Feng XB, Shao ZW, et al. Application and prospect of mixed reality technology in medical field. Curr Med Sci. 2019;39:1–6. doi:10.1007/s11596-019-1992-8
  • Smith RT, Clarke TJ, Mayer W, Cunningham A, Matthews B, Zucco JE. Mixed reality interaction and presentation techniques for medical visualisations. Adv Exp Med Biol. 2020;1260:123–139.
  • Parveau M, Adda M. 3iVClass: a new classification method for virtual, augmented and mixed realities. Procedia Comp Sci. 2018;141:263–270. doi:10.1016/j.procs.2018.10.180
  • Navarro-Martin A, Cacicedo J, Leaman O, et al. Comparative analysis of thermoplastic masks versus vacuum cushions in stereotactic body radiotherapy. Radiat Oncol. 2015;10:176. doi:10.1186/s13014-015-0484-7
  • Tanaka K, Irikoma S, Kokubo S. Identification of the lumbar interspinous spaces by palpation and verified by X-rays. Braz J Anesthesiol. 2013;63:245–248. doi:10.1016/S0034-7094(13)70224-1
  • Li M, Ni X, Xu Z, et al. Ultrasound-assisted technology versus the conventional landmark location method in spinal anesthesia for cesarean delivery in obese parturients: a randomized controlled trial. Anesth Analg. 2019;129:155–161. doi:10.1213/ANE.0000000000003795
  • Ye W, Zhang X, Li T, Luo C, Yang L. Mixed-reality hologram for diagnosis and surgical planning of double outlet of the right ventricle: a pilot study. Clin Radiol. 2021;76:237.e1–237.e7. doi:10.1016/j.crad.2020.10.017
  • Sun GC, Wang F, Chen XL, et al. Impact of virtual and augmented reality based on intraoperative MRI and functional neuronavigation in glioma surgery involving eloquent areas: a prospective controlled study. World Neurosurg. 2016;96:375–382. doi:10.1016/j.wneu.2016.07.107
  • Duff M, Chen Y, Cheng L, et al. Adaptive mixed reality rehabilitation improves quality of reaching movements more than traditional reaching therapy following stroke. Neurorehabil Neural Repair. 2013;27:306–315. doi:10.1177/1545968312465195
  • Sappenfield JW, Smith WB, Cooper LA, et al. Visualization improves supraclavicular access to the subclavian vein in a mixed reality simulator. Anesth Analg. 2018;127:83–89. doi:10.1213/ANE.0000000000002572
  • Wang J, Suenaga H, Hoshi K, et al. Augmented reality navigation with automatic marker-free image registration using 3-D image overlay for dental surgery. IEEE Trans Biomed Eng. 2014;61:1295–1304. doi:10.1109/TBME.2014.2301191
  • Sargsyan N, Bassy R, Wei X, et al. Augmented reality application to enhance training of lumbar puncture procedure: preliminary results. CAINE. 2019;63:189–196.
  • Freschi C, Parrini S, Dinelli N, Ferrari M, Ferrari V. Hybrid simulation using mixed reality for interventional ultrasound imaging training. Int J Comput Assist Radiol Surg. 2015;10:1109–1115. doi:10.1007/s11548-014-1113-x
  • Hui SK, Lusczek E, DeFor T, Dusenbery K, Levitt S. Three-dimensional patient setup errors at different treatment sites measured by the Tomotherapy megavoltage CT. Strahlenther Onkol. 2012;188:346–352. doi:10.1007/s00066-011-0066-z
  • Sasaki M, Nakamura M, Mukumoto N, Nakata M, Hiraoka M. Dosimetric impact of translational and rotational setup errors for spine stereotactic body radiotherapy: a phantom study. Med Dosim. 2018;43:320–326. doi:10.1016/j.meddos.2017.10.009
  • Uhl C, Hatzl J, Meisenbacher K, Zimmer L, Hartmann N, Böckler D. Mixed-reality-assisted puncture of the common femoral artery in a phantom model. J Imaging. 2022;16:47. doi:10.3390/jimaging8020047
  • McJunkin JL, Jiramongkolchai P, Chung W, et al. Development of a mixed reality platform for lateral skull base anatomy. Otol Neurotol. 2018;39:e1137–e1142. doi:10.1097/MAO.0000000000001995
  • Gibby JT, Swenson SA, Steve C, Rao R, Javan R. Head-mounted display augmented reality to guide pedicle screw placement utilizing computed tomography. Int J Comput Assist Radiol Surg. 2019;14:525–535. doi:10.1007/s11548-018-1814-7
  • Jia YT, Hou GZ, Si DW, Zhang TC, Liu XJ. Anatomical measurement and clinical significance of lumbar laminar space. J Hebei United Univ Health Sci. 2015;17:92–93.
  • Papaefthymiou M, Hildenbrand D, Papagiannakis G. A conformal geometric algebra code generator comparison for virtual character simulation in mixed reality. Adv Appl Clifford Al. 2017;27:2051–2066. doi:10.1007/s00006-016-0689-3