Single position circumferential fusion improves operative efficiency, reduces complications and length of stay compared with traditional circumferential fusion
Tài liệu tham khảo
Castellvi, 2014, Indirect decompression of lumbar stenosis with transpsoas interbody cages and percutaneous posterior instrumentation, Clin Orthop Relat Res, 472, 1784, 10.1007/s11999-014-3464-6
Cho, 2013, MRI measurement of neuroforaminal dimension at the index and supradjacent levels after anterior lumbar interbody fusion: a prospective study, Clin Orthop Surg, 5, 49, 10.4055/cios.2013.5.1.49
Hsieh, 2007, Anterior lumbar interbody fusion in comparison with transforaminal lumbar interbody fusion: implications for the restoration of foraminal height, local disc angle, lumbar lordosis, and sagittal balance, J Neurosurg Spine, 7, 379, 10.3171/SPI-07/10/379
Lang, 2017, Potential and limitations of neural decompression in extreme lateral interbody fusion-a systematic review, World Neurosurg, 101, 99, 10.1016/j.wneu.2017.01.080
Nomura, 2019, Quantitative analysis of indirect decompression in extreme lateral interbody fusion and posterior spinal fusion with a percutaneous pedicle screw system for lumbar spinal stenosis, J Spine Surg, 5, 266, 10.21037/jss.2019.06.03
Phillips, 2013, Adult degenerative scoliosis treated with XLIF: clinical and radiographical results of a prospective multicenter study with 24-month follow-up, Spine (Phila Pa 1976), 38, 1853, 10.1097/BRS.0b013e3182a43f0b
Rao, 2015, Indirect foraminal decompression after anterior lumbar interbody fusion: a prospective radiographic study using a new pedicle-to-pedicle technique, Spine J, 15, 817, 10.1016/j.spinee.2014.12.019
Shin, 2013, Microscopic anterior foraminal decompression combined with anterior lumbar interbody fusion, Spine J, 13, 1190, 10.1016/j.spinee.2013.07.458
Mobbs, 2013, Indications for anterior lumbar interbody fusion, Orthop Surg, 5, 153, 10.1111/os.12048
Cappuccino, 2010, Biomechanical analysis and review of lateral lumbar fusion constructs, Spine (Phila Pa 1976), 35, S361, 10.1097/BRS.0b013e318202308b
Madan, 2003, Comparison of instrumented anterior interbody fusion with instrumented circumferential lumbar fusion, Eur Spine J, 12, 567, 10.1007/s00586-002-0516-5
Nayak, 2013, Biomechanics of lateral plate and pedicle screw constructs in lumbar spines instrumented at two levels with laterally placed interbody cages, Spine J, 13, 1331, 10.1016/j.spinee.2013.03.048
Ozgur, 2006, Extreme Lateral Interbody Fusion (XLIF): a novel surgical technique for anterior lumbar interbody fusion, Spine J, 6, 435, 10.1016/j.spinee.2005.08.012
Mummaneni, 2004, Lumbar interbody fusion: state-of-the-art technical advances. Invited submission from the joint section meeting on disorders of the spine and peripheral nerves, March 2004, J Neurosurg Spine, 1, 24, 10.3171/spi.2004.1.1.0024
Schofferman, 2001, A prospective randomized comparison of 270 degrees fusions to 360 degrees fusions (circumferential fusions), Spine (Phila Pa 1976), 26, E207, 10.1097/00007632-200105150-00019
Beutler, 2003, Anterior lumbar fusion with paired BAK standard and paired BAK Proximity cages: subsidence incidence, subsidence factors, and clinical outcome, Spine J, 3, 289, 10.1016/S1529-9430(03)00061-5
2019, An updated report by the American Society of Anesthesiologists Task Force on Perioperative Visual Loss, the North American Neuro-Ophthalmology Society, and the Society for Neuroscience in Anesthesiology and Critical Care, Anesthesiology, 130, 12
Akinci, 2011, Effects of prone and jackknife positioning on lumbar disc herniation surgery, J Neurosurg Anesthesiol, 23, 318, 10.1097/ANA.0b013e31822b4f17
Alboog, 2019, Anesthetic management of complex spine surgery in adult patients: a review based on outcome evidence, Curr Opin Anaesthesiol, 32, 600, 10.1097/ACO.0000000000000765
Chui, 2018, Perioperative peripheral nerve injury after general anesthesia: a qualitative systematic review, Anesth Analg, 127, 134, 10.1213/ANE.0000000000003420
DePasse, 2015, Complications associated with prone positioning in elective spinal surgery, World J Orthop, 6, 351, 10.5312/wjo.v6.i3.351
Pınar, 2018, The effect of spinal versus general anesthesia on intraocular pressure in lumbar disc surgery in the prone position: a randomized, controlled clinical trial, J Clin Anesth, 46, 54, 10.1016/j.jclinane.2018.01.026
Olsen, 2003, Risk factors for surgical site infection in spinal surgery, J Neurosurg, 98, 149
Olsen, 2008, Risk factors for surgical site infection following orthopaedic spinal operations, J Bone Joint Surg Am, 90, 62, 10.2106/JBJS.F.01515
Sanfilippo, 2015, Perspectives on the importance of postoperative ileus, Curr Med Res Opin, 31, 675, 10.1185/03007995.2015.1027184
Voyadzis, 2013, Minimally invasive lumbar transfacet screw fixation in the lateral decubitus position after extreme lateral interbody fusion: a technique and feasibility study, J Spinal Disord Tech, 26, 98, 10.1097/BSD.0b013e318241f6c3
Drazin, 2015, Simultaneous lateral interbody fusion and posterior percutaneous instrumentation: early experience and technical considerations, Biomed Res Int, 2015, 10.1155/2015/458284
Thomas, 2016
Ziino, 2018, Single position versus lateral-then-prone positioning for lateral interbody fusion and pedicle screw fixation, J Spine Surg, 4, 717, 10.21037/jss.2018.12.03
Ouchida, 2019, Anatomic evaluation of retroperitoneal organs for lateral approach surgery: a prospective imaging study using computed tomography in the lateral decubitus position, Eur Spine J, 28, 835, 10.1007/s00586-018-5803-x
Fineberg, 2014, Incidence and risk factors for postoperative ileus following anterior, posterior, and circumferential lumbar fusion, Spine J, 14, 1680, 10.1016/j.spinee.2013.10.015
Al Maaieh, 2014, Multivariate analysis on risk factors for postoperative ileus after lateral lumbar interbody fusion, Spine (Phila Pa 1976), 39, 688, 10.1097/BRS.0000000000000238
Oikawa, 2017, Anatomical evaluation of lumbar nerves using diffusion tensor imaging and implications of lateral decubitus for lateral transpsoas approach, Eur Spine J, 26, 2804, 10.1007/s00586-017-5082-y
Buckland, 2018, Psoas morphology differs between supine and sitting magnetic resonance imaging lumbar spine: implications for lateral lumbar interbody fusion, Asian Spine J, 12, 29, 10.4184/asj.2018.12.1.29
Schwarz, 2004, Selective jejunal manipulation causes postoperative pan-enteric inflammation and dysmotility, Gastroenterology, 126, 159, 10.1053/j.gastro.2003.10.060
Lopez-Picado, 2017, Determination of perioperative blood loss: accuracy or approximation?, Anesth Analg, 125, 280, 10.1213/ANE.0000000000001992
Kollberg, 2019, Accuracy of visually estimated blood loss in surgical sponges by members of the surgical team, Aana j, 87, 277
Horowitz, 2018, Risk factors, additional length of stay, and cost associated with postoperative ileus following anterior lumbar interbody fusion in elderly patients, World Neurosurg, 115, e185, 10.1016/j.wneu.2018.04.006
Kiely, 2016, The incidence and risk factors for post-operative ileus after spinal fusion surgery: a multivariate analysis, Int Orthop, 40, 1067, 10.1007/s00264-016-3148-9
Artinyan, 2008, Prolonged postoperative ileus-definition, risk factors, and predictors after surgery, World J Surg, 32, 1495, 10.1007/s00268-008-9491-2
Andersen, 2016, Relative blood loss and operative time can predict length of stay following orthognathic surgery, Int J Oral Maxillofac Surg, 45, 1209, 10.1016/j.ijom.2016.05.015
English, 2019, Importance of estimated blood loss in resource utilization and complications of hysterectomy for benign indications, Obstet Gynecol, 133, 650, 10.1097/AOG.0000000000003182
Mahadevan, 2010, Revision total hip replacement: predictors of blood loss, transfusion requirements, and length of hospitalisation, J Orthop Traumatol, 11, 159, 10.1007/s10195-010-0105-z
Wang, 2020, Radiation exposure in posterior lumbar fusion: a comparison of ct image-guided navigation, robotic assistance, and intraoperative fluoroscopy, Global Spine Journal
Hiyama, 2019, Comparison of radiological changes after single- position versus dual- position for lateral interbody fusion and pedicle screw fixation, BMC Musculoskelet Disord, 20, 601, 10.1186/s12891-019-2992-3
Ashayeri, 2019
