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"Anna G.U. Sawa"

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"Anna G.U. Sawa"

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Biomechanical Effects of Proximal Polyetheretherketone Rod Extension on the Upper Instrumented and Adjacent Levels in a Human Long-Segment Construct: A Cadaveric Model
Neurospine. 2022;19(3):828-837.   Published online September 30, 2022
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Biomechanical Effects of Proximal Polyetheretherketone Rod Extension on the Upper Instrumented and Adjacent Levels in a Human Long-Segment Construct: A Cadaveric Model
Neurospine. 2022;19(3):828-837.   Published online September 30, 2022
Close
Objective
The high mechanical stress zone at the sudden transition from a rigid to flexible region is involved in proximal junctional kyphosis (PJK) physiopathology. We evaluated the biomechanical performance of polyetheretherketone (PEEK) rods used as a nontraditional long semirigid transition phase from a long-segment metallic rod construct to the nonfused thoracic spine.
Methods
Pure moment range of motion (ROM) tests (7.5 Nm) were performed on 7 cadaveric spine segments followed by compression (200 N). Specimens were tested in the following conditions: (1) intact; (2) T10-pelvis pedicle screws and rods (PSRs); and (3) extending the proximal construct to T6 using PEEK rods (PSR+PEEK). T10–11 rod strain, T9 anterolateral bone strain, and T10 screw bending moments were analyzed.
Results
At the upper instrumented vertebra (UIV)+1, PSR+PEEK versus PSR significantly decreased ROM in flexion (115%, p = 0.02), extension (104%, p = 0.003), left lateral bending (46%, p = 0.02), and right lateral bending (63%, p = 0.008). Also, at UIV+1, PSR+PEEK versus intact significantly decreased ROM in flexion (111%, p = 0.01) and extension (105%, p = 0.003). The UIV+1 anterior column bone strain was significantly reduced with PSR+PEEK versus PSR during right lateral bending (p = 0.02). Rod strain polarities reversed with PEEK rods in all loading directions except compression.
Conclusion
Extending a long-segment construct using PEEK rods caused a decrease in adjacent-level hypermobility as a consequence of long-segment immobilization and also redistributed the strain on the UIV and adjacent levels, which might contribute to PJK physiopathology. Further studies are necessary to observe the clinical outcomes of this technique.

Citations

Citations to this article as recorded by  Crossref logo
  • Evaluation of Screw Loosening in Patients Undergoing Semi-rigid Stabilization with Polyetheretherketone (PEEK) Rods
    Nimetullah Alper Durmus, Ali Sahin, Sukru Oral, Halil Ulutabanca, Ahmet Kucuk, Rahmi Kemal Koc
    Indian Journal of Orthopaedics.2026; 60(6): 1537.     CrossRef
  • Proximal Junctional Kyphosis Prevention in Adult Spinal Deformity Surgery: A Technical Review of Tethering and Adjunctive Strategies
    Paritash Tahmasebpour, Pawel P. Jankowski, Jason Liang, Joshua Lin, Kyriakos D. Chatzis, Peter S. Tretiakov, Spencer Matthews, Louis Boissiere, John F. Burke, Christopher I. Shaffrey, Aaron Hockley, Peter Passias
    Operative Neurosurgery.2026;[Epub]     CrossRef
  • Relationship Between the Elastic Modulus of the Novel Pedicle Screw-Plate System and Biomechanical Properties Under Osteoporotic Condition: A Power-Law Regression Analysis Based on Parametric Finite Element Simulations
    Kaibin Wang, Chongyi Wang, Haipeng Si, Yanwei Zhang, Shaowei Sang, Runtong Zhang, Wencan Zhang, Junfei Chen, Chen Liu, Kunpeng Li, Bingtao Hu, Xiangyu Lin, Yunze Feng, Qingyang Fu, Zhihao Kang, Mingyu Xu, Dingxin Zhang, Wanlong Xu, Le Li
    Computer Methods and Programs in Biomedicine.2025; 265: 108760.     CrossRef
  • Optimizing Surgical Strategies for Preventing Proximal Junctional Complications: A Systematic Review and Meta-analysis of Operative Techniques in Adult Spinal Deformity
    HyungSub Jin, Kyung-Soo Suk, Byung Ho Lee, Si Young Park, Hak-Sun Kim, Seong-Hwan Moon, Sub-Ri Park, Namhoo Kim, Jae Won Shin, Ji-Won Kwon
    Neurospine.2025; 22(4): 1012.     CrossRef
  • A Biomechanical Comparison of 2 Different Topping-off Devices and Their Influence on the Sacroiliac Joint Following Lumbosacral Fusion Surgery
    Wei Fan, Song Yang, Jie Chen, Li-Xin Guo, Ming Zhang
    Neurospine.2024; 21(1): 244.     CrossRef
  • Application of Transverse Process Hooks at Distal Thoracic Vertebrae in Uppermost Vertebral Instrumentation for Adult Spinal Deformity Surgery: Special Focus on Delayed-Onset Neurologic Deficits
    Sun-Joon Yoo, Hyun-Jun Jang, Bong Ju Moon, Jeong-Yoon Park, Sung Uk Kuh, Dong-Kyu Chin, Keun-Su Kim, Jun Jae Shin, Yoon Ha, Kyung-Hyun Kim
    Neurospine.2024; 21(4): 1219.     CrossRef
  • Comparison of Cortical Bone Trajectory to Pedicle-Based Dynamic Stabilization: An Analysis of 291 Patients
    Chih-Chang Chang, Hsuan-Kan Chang, Chin-Chu Ko, Ching-Lan Wu, Yi-Hsuan Kuo, Tsung-Hsi Tu, Wen-Cheng Huang, Jau-Ching Wu
    Neurospine.2023; 20(1): 308.     CrossRef
  • Pelvic Incidence–Lumbar Lordosis Mismatch Is Predisposed to Adjacent Segment Degeneration After Single-Level Anterior Lumbar Interbody Fusion: A Retrospective Case-Control Study
    Sun Geon Yoon, Hyung Chang Lee, Sang-Min Lee
    Neurospine.2023; 20(1): 301.     CrossRef
  • 6,475 View
  • 184 Download
  • 9 Web of Science
  • 8 Crossref

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Influence of Lumbar Lordosis on Posterior Rod Strain in Long-Segment Construct During Biomechanical Loading: A Cadaveric Study
Neurospine. 2021;18(3):635-643.   Published online September 30, 2021
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Influence of Lumbar Lordosis on Posterior Rod Strain in Long-Segment Construct During Biomechanical Loading: A Cadaveric Study
Neurospine. 2021;18(3):635-643.   Published online September 30, 2021
Close
Objective
The lordotic shape of the lumbar spine differs substantially between individuals. Measuring and recording strain during spinal biomechanical tests is an effective method to infer stresses on spinal implants and predict failure mechanisms. The geometry of the spine may have a significant effect on the resultant force distribution, thereby directly affecting rod strain.
Methods
Seven fresh-frozen cadaveric specimens (T12-sacrum) underwent standard (7.5 Nm) nondestructive sagittal plane tests: flexion and extension. The conditions tested were intact and pedicle screws and rods (PSR) at L1-sacrum. The posterior right rod was instrumented with strain gauges between L3–4 (index level) and the L5–S1 pedicle screw. All specimens underwent lateral radiographs before testing. Lordotic angles encompassing different levels (L5–S1, L4–S1, L3–S1, L2–S1, and L1–S1) were measured and compared with rod strain. Data were analyzed using Pearson correlation analyses.
Results
Strong positive correlations were observed between lordosis and posterior rod strain across different conditions. The L3–S1 lordotic angle in the unloaded intact condition correlated with peak rod strain at L3–4 with PSR during flexion (R = 0.76, p = 0.04). The same angle in the unloaded PSR condition correlated with peak strain in the PSR condition during extension (R = -0.79, p = 0.04). The unloaded intact L2–S1 lordotic angle was significantly correlated with rod strain at L3–4 in the PSR condition during flexion (R = 0.85, p = 0.02) and extension (R = -0.85, p = 0.02) and with rod strain at L5–S1 in the PSR condition during flexion (R = 0.84, p = 0.04).
Conclusion
Lordosis measured on intact and instrumented conditions has strong positive correlations with posterior rod strain in cadaveric testing.

Citations

Citations to this article as recorded by  Crossref logo
  • Machine learning models for predicting treatment outcomes in chronic non-specific back pain patients undergoing lumbar extension traction
    Ibrahim M. Moustafa, Dilber Uzun Ozsahin, Mubarak Taiwo Mustapha, Shima Zadeh, Iman Khowailed, Paul A. Oakley, Deed E. Harrison
    Scientific Reports.2026;[Epub]     CrossRef
  • Acute pelvic fixation failure in adult spinal deformity-risk factors and tips and pearls for management
    Kari Odland, Christopher T. Martin
    Seminars in Spine Surgery.2026; 38(2): 101254.     CrossRef
  • Impact of transforaminal lumbar interbody fusion on rod load: a comparative biomechanical analysis between a cadaveric instrumentation and simulated bone fusion
    Maximilian Heumann, Chencheng Feng, Lorin M. Benneker, Maarten Spruit, Christian Mazel, Jan Buschbaum, Boyko Gueorguiev, Manuela Ernst
    Medical Engineering & Physics.2025; 139: 104339.     CrossRef
  • Comparison of posterior trans-intervertebral osteotomy and pedicle Subtraction osteotomy for the correction of thoracolumbar kyphotic deformity secondary to ankylosing spondylitis
    Lijin Zhou, Honghao Yang, Jie Wang, Yiqi Zhang, Yunsheng Wang, Yong Hai
    Journal of Orthopaedic Surgery and Research.2025;[Epub]     CrossRef
  • Analysis of the association between lumbar paraspinal muscle atrophy, facet joint degeneration, and degenerative lumbar scoliosis
    Jiangkai Yu, Cong Zhang, Yan Zhou, Chengming Li
    European Journal of Medical Research.2025;[Epub]     CrossRef
  • Biomechanical evaluation of multi-rod constructs to stabilize an S1 pedicle subtraction osteotomy (PSO): a finite element analysis
    Niloufar Shekouhi, Sudharshan Tripathi, Vijay K. Goel, Alekos A. Theologis
    Spine Deformity.2024; 12(2): 313.     CrossRef
  • Torque forces of expandable titanium vertebral body replacement cages during expansion and subsidence in the osteoporotic lumbar spine
    Krishnan Sircar, Maximilian Weber, Sebastian G. Walter, Nadine Ott, Andreas Prescher, Peer Eysel, Nikolaus Kernich
    Clinical Biomechanics.2024; 114: 106239.     CrossRef
  • How common is acute pelvic fixation failure after adult spine surgery? A single-center study of 358 patients
    Nathan J. Lee, Paul J. Park, Varun Puvanesarajah, William E. Clifton, Kevin Kwan, Cole R. Morrissette, Jaques L. Williams, Michael W. Fields, Eric Leung, Fthimnir M. Hassan, Peter D. Angevine, Christopher E. Mandigo, Joseph M. Lombardi, Zeeshan M. Sardar,
    Journal of Neurosurgery: Spine.2023; 38(1): 91.     CrossRef
  • Cross-link augmentation enhances CFR-PEEK short fixation in lumbar metastasis stabilization
    Simone Borrelli, Giovanni Putame, Alberto L. Audenino, Cristina Bignardi, Andrea Ferro, Stefano Marone, Mara Terzini
    Frontiers in Bioengineering and Biotechnology.2023;[Epub]     CrossRef
  • Radiological Outcomes of Unilateral Laminotomy for Bilateral Decompression in Lumbar Spinal Stenosis With and Without Discectomy
    Hyun-Seo Cho, Se-Hoon Kim, Jeong Su Han, Bum-Joon Kim
    World Neurosurgery.2023; 175: e1307.     CrossRef
  • Mechanical Failure After Total En Bloc Spondylectomy and Salvage Surgery
    Shin Won Kwon, Chun Kee Chung, Young Il Won, Woon Tak Yuh, Sung Bae Park, Seung Heon Yang, Chang Hyun Lee, John M. Rhee, Kyoung-Tae Kim, Chi Heon Kim
    Neurospine.2022; 19(1): 146.     CrossRef
  • Incidence, mechanism, and protective strategies for 2-year pelvic fixation failure after adult spinal deformity surgery with a minimum six-level fusion
    Nathan J. Lee, Gerard Marciano, Varun Puvanesarajah, Paul J. Park, William E. Clifton, Kevin Kwan, Cole R. Morrissette, Jaques L. Williams, Michael Fields, Fthimnir M. Hassan, Peter D. Angevine, Christopher E. Mandigo, Joseph M. Lombardi, Zeeshan M. Sarda
    Journal of Neurosurgery: Spine.2022; : 1.     CrossRef
  • 9,690 View
  • 126 Download
  • 12 Web of Science
  • 12 Crossref

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Biomechanics of Circumferential Cervical Fixation Using Posterior Facet Cages: A Cadaveric Study
Neurospine. 2021;18(1):188-196.   Published online March 31, 2021
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Biomechanics of Circumferential Cervical Fixation Using Posterior Facet Cages: A Cadaveric Study
Neurospine. 2021;18(1):188-196.   Published online March 31, 2021
Close
Objective
Anterior cervical discectomy and fusion (ACDF) is a common procedure for the treatment of cervical disease. Circumferential procedures are options for multilevel pathology. Potential complications of multilevel anterior procedures are dysphagia and pseudarthrosis, whereas potential complications of posterior surgery include development of cervical kyphosis and postoperative chronic neck pain. The addition of posterior cervical cages (PCCs) to multilevel ACDF is a minimally invasive option to perform circumferential fusion. This study evaluated the biomechanical performance of 3-level circumferential fusion with PCCs as supplemental fixation to anteriorly placed allografts, with and without anterior plate fixation.
Methods
Nondestructive flexibility tests (1.5 Nm) performed on 6 cervical C2–7 cadaveric specimens intact and after discectomy (C3–6) in 3 instrumented conditions: allograft with anterior plate (G+P), PCC with allograft and plate (PCC+G+P), and PCC with allograft alone (PCC+G). Range of motion (ROM) data were analyzed using 1-way repeated-measures analysis of variance.
Results
All instrumented conditions resulted in significantly reduced ROM at the 3 instrumented levels (C3–6) compared to intact spinal segments in flexion, extension, lateral bending, and axial rotation (p < 0.001). No significant difference in ROM was found between G+P and PCC+G+P conditions or between G+P and PCC+G conditions, indicating similar stability between these conditions in all directions of motion.
Conclusion
All instrumented conditions resulted in considerable reduction in ROM. The added reduction in ROM through the addition of PCCs did not reach statistical significance. Circumferential fusion with anterior allograft, without plate and with PCCs, has comparable stability to ACDF with allograft and plate.

Citations

Citations to this article as recorded by  Crossref logo
  • Biomechanical effects of supplemental posterior cervical stabilization in one-to three-level anterior cervical discectomy and fusion: a finite element analysis of construct length–dependent stress shielding and adjacent segment mechanics
    Junwei Zhang, Tairui Zhang, Maji Sun, Yang Sun, Shuo Feng, Jun Sun, Feng Yuan
    Frontiers in Bioengineering and Biotechnology.2026;[Epub]     CrossRef
  • Clinical Implementation of Tissue-Sparing Posterior Cervical Fusion: Addressing Market Access Challenges
    Morgan P. Lorio, Pierce D. Nunley, Joshua E. Heller, Bruce M. McCormack, Kai-Uwe Lewandrowski, Jon E. Block
    Journal of Personalized Medicine.2024; 14(8): 837.     CrossRef
  • Overloaded vertebral body: a unique radiographic phenomenon following multilevel anterior cervical discectomy and fusion
    Shihao Chen, Kangkang Huang, Hao Liu, Tingkui Wu, Junbo He, Minghe Yao, Beiyu Wang
    Journal of Orthopaedic Surgery and Research.2023;[Epub]     CrossRef
  • Unilateral spacer distraction of the subaxial cervical facet joint for the treatment of fixed coronal malalignment of the craniovertebral junction
    Luis E. Carelli, Alderico Girão, Ígor Cechin, Juan P. Cabrera
    Journal of Craniovertebral Junction and Spine.2022; 13(2): 121.     CrossRef
  • Biomechanical Effect of Disc Height on the Components of the Lumbar Column at the Same Axial Load: A Finite-Element Study
    Jae-Gyeong Jeong, Sungwook Kang, Gu-Hee Jung, Mingoo Cho, Hyunsoo Kim, Kyoung-Tae Kim, Dong-Hee Kim, Jong-Moon Hwang, V. E. Sathishkumar
    Journal of Healthcare Engineering.2022; 2022: 1.     CrossRef
  • 9,210 View
  • 161 Download
  • 5 Web of Science
  • 5 Crossref