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The use of traction therapy in patients with spinal deformities at the stage of using functional corrective corsets

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Conservative treatment of patients with scoliosis and kyphoscoliotic spinal deformities is the most affordable and safe method of treatment. Non-surgical treatment of such patients takes a long period of time and includes the complex use of various factors, including physiotherapy, therapeutic gymnastics, swimming, massage, manual therapy, and the use of various types of functional corrective corsets. They are used on a regular basis until the bone growth zones are closed and/or deformity is sufficiently corrected. To evaluate the prospects of using traction therapy in patients with significant static spinal deformities using a functionally corrective corset to facilitate the period of adaptation to regular wearing of a functionally corrective corset, and to reduce pain and discomfort from pressure exerted by the pressure zones of the corset; to increase spinal mobility. The publication describes the experience of using traction therapy in 52 adolescent patients undergoing inpatient conservative treatment for severe static spinal deformities at the stage of using a functional corrective corset. As a result of the work, the following conclusions can be drawn: the use of traction therapy significantly reduces pain and discomfort associated with the use of a functionally corrective corset. There were no negative reactions or complications from the use of traction therapy. Traction therapy should be used in the complex conservative treatment of patients with scoliosis and kyphoscoliosis as an additional method at the stage of using functionally corrective corsets, including difficulties in adapting to corset treatment. Traction therapy can also be used to prepare a patient for an orthosis.

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  • Abstract
  • 10.1016/j.spinee.2019.05.335
318. Severe pediatric deformity surgery had frequent IOM alerts but a low rate of permanent deficits at two years
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  • 10.1097/brs.0b013e31819c133f
Treatment of Spinal Deformities in Patients With Diastrophic Dysplasia
  • Sep 1, 2009
  • Spine
  • Tuomas Jalanko + 4 more

A long-term, population based, retrospective follow-up study. To evaluate long-term outcomes of brace and surgical treatment for spinal deformities in patients with diastrophic dysplasia (DD). Literature on the brace treatment and surgery of spinal deformities in patients with DD is limited. All patients with DD undergoing either brace treatment or surgery for spinal deformity with a minimum of 2 years follow-up were identified in our country. Eight patients had undergone brace treatment and 12 had been treated operatively. Two patients had early progressive and the rest idiopathic-like scoliosis. Five patients underwent posterior only, 1 anterior only, and 6 anteroposterior surgery. Patients' mean age at the beginning of brace treatment was 6.9 (range, 0.9-12.7) years and at the time of surgery 13.4 (range, 6.5-20.1) years. The follow-up time averaged 17 (range, 6.6-44.3) years for the brace and 14.0 (range, 2.1-37.2) years for the surgical treatment group. The radiographic follow-up rate was 100%. Both thoracic and lumbar curves progressed during brace treatment (mean major curve progression 12%, range, -43%-53%). Before surgery, the mean Cobb angle of the thoracic curve was 68 degrees (range, 42 degrees-100 degrees) and 46 degrees (25 degrees-68 degrees) in the lumbar spine. At final follow-up visit, the mean correction was 23% (-6%-76%) for the thoracic curve and 25% (-68%-82%) for the lumbar curve. The correction of the major curve was higher in patients undergoing anteroposterior versus posterior only (40% vs. 13%, P = 0.017). Five (42%) operated patients had significant complications. The SRS-24 yielded 92 (79-103) points for the brace treatment and 93 (73-114) points for the surgical group, respectively. Brace treatment does not prevent progression of the spinal deformity in patients with DD. Anteroposterior surgery is indicated in patients with severe spinal deformities. The risk for major complications is high especially in patients with marked kyphosis.

  • Research Article
  • Cite Count Icon 101
  • 10.1007/s00586-016-4848-y
Halo-gravity traction in the treatment of severe spinal deformity: a systematic review and meta-analysis.
  • Nov 17, 2016
  • European spine journal : official publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society
  • Changsheng Yang + 7 more

Halo-gravity traction has been reported to successfully assist in managing severe spinal deformity. This is a systematic review of all studies on halo-gravity traction in the treatment of spinal deformity to provide information for clinical practice. A comprehensive search was conducted for articles on halo-gravity traction in the treatment of spinal deformity according to the PRISMA guidelines. Appropriate studies would be included and analyzed. Preoperative correction rate of spinal deformity, change of pulmonary function and prevalence of complications were the main measurements. Sixteen studies, a total of 351 patients, were included in this review. Generally, the initial Cobb angle was 101.1° in the coronal plane and 80.5° in the sagittal plane, and it was corrected to 49.4° and 56.0° after final spinal fusion. The preoperative correction due to traction alone was 24.1 and 19.3%, respectively. With traction, the flexibility improved 6.1% but postoperatively the patients did not have better correction. Less aggressive procedures and improved pulmonary function were observed in patients with traction. The prevalence of traction-related complications was 22% and three cases of neurologic complication related to traction were noted. The prevalence of total complications related to surgery was 32% and that of neurologic complications was 1%. Partial correction could be achieved preoperatively with halo-gravity traction, and it may help decrease aggressive procedures, improve preoperative pulmonary function, and reduce neurologic complications. However, traction could not increase preoperative flexibility or final correction. Traction-related complications, although usually not severe, were not rare.

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  • 10.1097/brs.0b013e3181feab19
Management of Severe Spinal Deformity
  • Dec 1, 2010
  • Spine
  • Daniel J Sucato

Review of the literature and author';s experience with the treatment of severe spinal deformity. To define the anatomic and physiologic challenges in treating severe spinal deformity and to describe the preoperative, intraoperative, and postoperative strategies to achieve the optimal safe result. Severe pediatric spinal deformity is a relatively uncommon condition that often arises following treatment of early onset scoliosis. Patients most often present with severe clinical and radiographic deformity with poor pulmonary function. In contrast to the more common adolescent idiopathic scoliosis which is a primary spinal deformity, patients with severe spine deformity have the added chest wall deformity which may need to be addressed at the time of treatment. Previous literature has identified the challenges in the treatment of these patients and the higher risk for complications. A literature review and review of the author's personal experience in the treatment of these patients was performed. An assessment of the preoperative, intraoperative, and postoperative factors leading to an optimal result was analyzed and reported. The early evaluation should include a multidisciplinary approach from the orthopaedic surgeon, pulmonologist, anesthesiologist, and perhaps the neurologist to provide a baseline assessment. Advanced imaging of the spine with computed tomography is useful especially when previous surgery has been performed and/or when plain radiography is limited. Magnetic resonance imaging of the spinal cord and brain stem is important to ensure that no neural axis abnormalities are present and can determine if spinal cord compression is present. Severe spinal deformity should be distinguished from the more common adolescent idiopathic scoliosis deformity in that both the spine and the chest wall are affected. Preoperative halo-gravity traction is an invaluable tool to improve the flexibility of the spine and chest, to improve pulmonary function, and to stress the spinal cord while the patient is awake and provides feedback as to the neurologic assessment. Surgical treatment should be divided into 3 phases. First, anchor placement which should be predominantly pedicle screws placed in a segmental fashion and also use of reduction screws when performing vertebral column resections. Second, steps should be performed to increase the flexibility of the spine and chest with incremental releases from simple posterior soft tissue releases to posterior facet resections, to vertebral column resections for the most severe deformity. The third phase is the correction of the spine and chest wall deformity. Many strategies can be used to correct these deformities and relies on good anchor point fixation and good releases of the spine and chest wall. Provisional rod fixation is critical when performing resection of the spine to allow for safe correction of the deformity. Improvements in the clinical and radiographic appearance, pulmonary function, and self image are often dramatic. The treatment of severe spinal deformity is challenging and requires careful assessment of the patient by the orthopaedic surgeon, anesthesiologist, pulmonologist, and neurologist especially when neurologic deficits are present. Proper planning and execution of the correct surgical procedure for the surgeon provides an outstanding life-changing result in these patients.

  • Research Article
  • Cite Count Icon 2
  • 10.1007/s43390-020-00117-1
Development of a spring-based weight system for halo gravity traction for complex pediatric spinal deformity.
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  • Spine deformity
  • Henry Yu + 2 more

Development of a spring-based weight system for halo gravity traction for complex pediatric spinal deformity.

  • Abstract
  • 10.1016/j.spinee.2019.05.238
223. Surgery for severe pediatric spinal deformity has a significant rate of revision: a prospective multicenter cohort study
  • Aug 22, 2019
  • The Spine Journal
  • Munish C Gupta + 14 more

223. Surgery for severe pediatric spinal deformity has a significant rate of revision: a prospective multicenter cohort study

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  • Research Article
  • Cite Count Icon 2
  • 10.17816/ptors545-15
Loss of temperature and pain sensation as risk marker of neurological complications in surgical correction of severe spinal deformity
  • Dec 28, 2017
  • Pediatric Traumatology, Orthopaedics and Reconstructive Surgery
  • Elena N Shchurova + 2 more

Background. Treatment of severe spinal deformity remains a challenging surgical problem, with an iatrogenic injury to the spinal cord being a critical complication. There is a high risk of neurological deficit following surgical correction of a severe spinal deformity.
 Aim. To determine the relationship between the extent of disturbed thermal and pain sensations at Th1-S2 dermatomas and the intensity of the spinal cord pathways’ responses to surgical correction of the severe spinal deformity.
 Material and methods. We reviewed 58 patients with severe spinal deformities of different etiologies (mean age, 15.7±0.8 years). All patients underwent surgical deformity correction followed by thoracic/thoracolumbar spine fixation by using a variety of internal transpedicular fixations. Intraoperative neurophysiological monitoring (IONM) with transcranial motor-evoked potentials (MEPs) was used during operative interventions. Preoperative and postoperative thermal and pain sensations were assessed in Th1-S2 dermatomas to the right and left by using an electrical aesthesiometer.
 Results. The extent of disturbed preoperative and postoperative thermal and pain sensations in Th1-S2 dermatomas before and after correction of spinal deformities correlated with the response type scale (I–V) of the spinal cord pathways to the surgical correction we offered. Correlation between the response type and characteristics of thermal and pain sensations was mostly revealed by the test results for the thermal pain threshold (thermal analgesia). The incidence of postoperative thermal analgesia increased monotonically from patients with response type I (persistent MEP form and amplitude-time parameters close to the baseline) to patients with response type V (higher risk of neurological complications). The overall rate of thermal analgesia increased after surgical correction of the spinal deformity relative to the baseline and was higher (≤8%) in patients with response type V.
 Conclusions. Surgeons and neurophysiologists who perform IONM should give careful attention to patients with severe spinal deformity who exhibit marked postoperative thermal analgesia.

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  • 10.1016/j.wneu.2017.01.118
Posterior Only Vertebral Column Resection for the Treatment of Severe Spinal Deformities in Pediatric Patients: A Retrospective Case Series.
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Posterior Only Vertebral Column Resection for the Treatment of Severe Spinal Deformities in Pediatric Patients: A Retrospective Case Series.

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  • 10.3760/cma.j.issn.0529-5815.2012.04.011
Analysis of neurological deficits complications in the treatment of spinal deformity with posterior spinal osteotomy
  • Apr 1, 2012
  • Chinese journal of surgery
  • Xiao-Ping Wang + 5 more

To investigate the incidence and causes of neurologic deficits complications in the treatment of spinal deformity with posterior spinal osteotomy. From January 2007 to December 2010, 321 cases of scoliosis or kyphosis patients were treated with posterior spinal osteotomy. There were 124 male and 197 female with an average age of (19 ± 11) years (2 - 56 years). The average preoperative main Cobb angle was 108° ± 33° (48° - 175°), the average kyphotic angle was 74° ± 29° (53° - 170°) before operation. Pedicle subtraction osteotomy was used in 226 cases, 95 cases with vertebral column resection. Pedicle screw-rod system was used for fixation. The patients were monitored by Somatosensory-evoked potentials monitoring and Stagnara wake-up test. There were 11 cases with varying degrees of new neurologic deficits and the total incidence was 3.4%. The causes were as followed, spinal translation in 2 cases, compromised by close of resected areas in 2 cases, residual bone compression in 1 case, inadvertent operation in 2 cases, screw malposition in 1 case, hematoma compression in 1 case and spine elongation in 2 cases. There was significant difference between the patients with preexisting neurologic deficits (20.0%) and the patients with intact neurologic function (2.6%) (χ(2) = 13.060, P = 0.011), no significant differences in different classes of the age, etiology, deformity, osteotomy type and surgical type (P > 0.05). But the incidence of neurologic deficits was 4.6% in congenital scoliosis, 7.1% in neuromuscular scoliosis, 5.1% in kyphosis, 5.9% in adult deformity and 5.9% in Cobb angle more than 100°, which was higher than other classes. All the 11 cases were given emergent Methylprednisolone, neurotrophic drugs and hyperbaric oxygen therapy, 4 cases were underwent surgical exploration again. After treatment, 7 cases recovered completely, 2 cases recovered partially and 2 cases failed to improve at the last follow-up. Severe spinal deformity could be effectively treated with posterior spinal osteotomy. But the procedure is technical demanding and risky for neurologic deficits. The high risk factor is preexisting neurologic deficits.

  • Research Article
  • Cite Count Icon 69
  • 10.1007/s00586-011-1749-y
Thoracic pedicle subtraction osteotomy in the treatment of severe pediatric deformities
  • Apr 6, 2011
  • European Spine Journal
  • Georgios Bakaloudis + 9 more

The traditional surgical treatment of severe spinal deformities, both in adult and pediatric patients, consisted of a 360° approach. Posterior-based spinal osteotomy has recently been reported as a useful and safe technique in maximizing kyphosis and/or kyphoscoliosis correction. It obviates the deleterious effects of an anterior approach and can increase the magnitude of correction both in the coronal and sagittal plane. There are few reports in the literature focusing on the surgical treatment of severe spinal deformities in large pediatric-only series (age <16 years old) by means of a posterior-based spinal osteotomy, with no consistent results on the use of a single posterior-based thoracic pedicle subtraction osteotomy in the treatment of such challenging group of patients. The purpose of the present study was to review our operative experience with pediatric patients undergoing a single level PSO for the correction of thoracic kyphosis/kyphoscoliosis in the region of the spinal cord (T12 and cephalad), and determine the safety and efficacy of posterior thoracic pedicle subtraction osteotomy (PSO) in the treatment of severe pediatric deformities. A retrospective review was performed on 12 consecutive pediatric patients (6 F, 6 M) treated by means of a posterior thoracic PSO between 2002 and 2006 in a single Institution. Average age at surgery was 12.6 years (range, 9-16), whereas the deformity was due to a severe juvenile idiopathic scoliosis in seven cases (average preoperative main thoracic 113°; 90-135); an infantile idiopathic scoliosis in two cases (preoperative main thoracic of 95° and 105°, respectively); a post-laminectomy kypho-scoliosis of 95° (for a intra-medullar ependimoma); an angular kypho-scoliosis due to a spondylo-epiphisary dysplasia (already operated on four times); and a sharp congenital kypho-scoliosis (already operated on by means of a anterior-posterior in situ fusion). In all patients a pedicle screws instrumentation was used, under continuous intra-operative neuromonitoring (SSEP, NMEP, EMG). At an average follow-up of 2.4 years (range, 2-6) the main thoracic curve showed a mean correction of 61°, or a 62.3% (range, 55-70%), with an average thoracic kyphosis of 38.5° (range, 30°-45°), for an overall correction of 65% (range, 60-72%). Mean estimated intra-operative blood loss accounted 19.3 cc/kg (range, 7.7-27.27). In a single case (a post-laminectomy kypho-scoliosis) a complete loss of NMEP occurred, promptly assessed by loosening of the initial correction, with a final negative wake-up test. No permanent neurologic damage, or instrumentation related complications, were observed. According to our experience, posterior-based thoracic pedicle subtraction osteotomies represent a valuable tool in the surgical treatment of severe pediatric spinal deformities, even in revision cases. A dramatic correction of both the coronal and sagittal profile may be achieved. Mandatory the use of a pedicle screws-only instrumentation and a continuous intra-operative neuromonitoring to obviate catastrophic neurologic complications.

  • Research Article
  • Cite Count Icon 1
  • 10.17816/vto568950
Evaluation of the effectiveness of preoperative halo-traction in patients with severe spinal deformities using dynamography
  • Dec 15, 2023
  • N N Priorov Journal of Traumatology and Orthopedics
  • Sergey V Kolesov + 4 more

BACKGROUND: Surgical treatment is the main method of treatment for patients with severe forms of idiopathic scoliosis. In severe spinal deformities, halo-traction can be used as a preoperative preparation stage. However, it is difficult to assess the results of traction preparation in rigid deformities. Nevertheless, the Tergumed Pegasus 3D biofeedback device can be used to assess changes in spinal mobility.&#x0D; AIM: To evaluate the effectiveness of preoperative halo-traction preparation in patients with severe spinal deformities using dynamography.&#x0D; MATERIALS AND METHODS: We prospectively analysed the results of 15 patients with severe spinal scoliotic deformities preoperatively. All patients received halo-traction while standing in a walking frame or sitting in a wheelchair as a preoperative preparation. We calculated the deformity mobility index, measured the volume of movement and static strength of spinal muscles in three planes using the dynamographic method before and after traction preparation. The data were statistically analysed using the Wilcoxon test.&#x0D; RESULTS: Changes in the mobility index before and after preoperative preparation were statistically insignificant (p 0.05). Analysis of changes in the spinal movement volume revealed an increase in the range of motion in almost all dimensions, except for extension and lateral bending to the convex side of the deformity. A statistically significant increase in the movement volume was observed in axial rotations to the convex and concave sides of the deformity, and in lateral bends to the concave side (p 0.05), while spinal flexion showed a statistically insignificant improvement. The study of static spinal muscle strength showed an increase in strength in all angles, but statistically significant changes were found in lateral bending to the convex and concave sides, turning to the convex side, and back extension.&#x0D; CONCLUSION: The data obtained demonstrate an increase in the strength of the spinal muscles after halo-gravity training, as well as an increase in mobility. Dynamography has been shown to be effective in assessing preoperative halotraction preparation in patients with severe spinal deformities, but further studies with a higher level of evidence are required.

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  • Research Article
  • Cite Count Icon 54
  • 10.2174/1874325001711011521
Management of Spinal Deformities and Evidence of Treatment Effectiveness.
  • Dec 29, 2017
  • The Open Orthopaedics Journal
  • Josette Bettany-Saltikov + 3 more

Introduction:The review evaluates the up-to-date evidence for the treatment of spinal deformities, including scoliosis and hyperkyphosis in adolescents and adults.Material and Methods:The PubMed database was searched for review articles, prospective controlled trials and randomized controlled trials related to the treatment of spinal deformities. Articles on syndromic scoliosis were excluded and so were the articles on hyperkyphosis of the spine with causes other than Scheuermann’s disease and osteoporosis. Articles on conservative and surgical treatments of idiopathic scoliosis, adult scoliosis and hyperkyphosis were also included. For retrospective papers, only studies with a follow up period exceeding 10 years were included.Results:The review showed that early-onset idiopathic scoliosis has a worse outcome than late-onset idiopathic scoliosis, which is rather benign. Patients with AIS function well as adults; they have no more health problems when compared to patients without scoliosis, other than a slight increase in back pain and aesthetic concern. Conservative treatment of adolescent idiopathic scoliosis (AIS) using physiotherapeutic scoliosis-specific exercises (PSSE), specifically PSSR and rigid bracing was supported by level I evidence. Yet to date, there is no high quality evidence (RCT`s) demonstrating that surgical treatment is superior to conservative treatment for the management of AIS. For adult scoliosis, there are only a few studies on the effectiveness of PSSEs and a conclusion cannot as yet be drawn.For hyperkyphosis, there is no high-quality evidence for physiotherapy, bracing or surgery for the treatment of adolescents and adults. However, bracing has been found to reduce thoracic hyperkyphosis, ranging from 55 to 80° in adolescents. In patients over the age of 60, bracing improves the balance score, and reduces spinal deformity and pain. Surgery is indicated in adolescents and adults in the presence of progression of kyphosis, refractory pain and loss of balance.Discussion:The available evidence reviewed has suggested that different approaches are needed towards the management of different spinal deformities. Specific exercises should be prescribed in children and adolescents with a Cobb angle in excess of 15°. In progressive curves, they should be used in conjunction with bracing. Clarity regarding differences and similarities is given as to what makes PSSE and PSSR specific exercises. As AIS is relatively benign in nature, conservative treatment should be tried when the curve is at a surgical threshold, before surgery is considered. Similarly, bracing and exercises should be prescribed for patients with hyperkyphosis, particularly when the lumbar spine is afflicted. Surgery should be considered only when the symptoms cannot be managed conservatively.Conclusion:There is at present high quality evidence in support of the conservative treatment of AIS. The current evidence supports the use of PSSE, especially those using PSSR, together with bracing in the treatment of AIS. In view of the lack of medical consequences in adults with AIS, conservative treatment should be considered for curves exceeding the formerly assumed range of conservative indications.There is, however a lack of evidence in support of any treatment of choice for hyperkyphosis in adolescents and spinal deformities in adults. Yet, conservative treatment should be considered first. Yet to date, there is no high quality evidence (RCT`s) demonstrating that surgical treatment is superior to conservative treatment for the management of AIS and hyperkyphosis. Additionally, surgery needs to be considered with caution, as it is associated with a number of long-term complications.

  • Research Article
  • Cite Count Icon 3
  • 10.19723/j.issn.1671-167x.2020.05.013
Clinical efficacy of short-term halo-pelvic traction combined with surgery in the treatment of severe spinal deformities
  • Oct 18, 2020
  • Journal of Peking University. Health sciences
  • C D Li + 8 more

To evaluate the clinical efficacy of short-term halo-pelvic traction (HPT) combined with surgery in the treatment of severe spinal deformities. In the study, 24 patients diagnosed as severe spinal deformity accepted the treatment of one-stage short-term HPT and two-stage surgery from January 2015 to May 2018 in our orthopedics department. 24 cases (9 males and 15 females) were retrospectively reviewed. The average age of the cohort was (28.8±10.0) years (12-48 years). The height, scoliosis angle, kyphosis angle, the height difference of shoulders, the height difference of crista iliaca, C7PL-CSVL and the perpendicular distance of S1 and the convex point of the patients were assessed at pre-traction, post-traction and post-surgery. The paired t test was used to analyze the difference among pre-traction, post-traction and post-surgery. The average traction time of 24 cases was (2.5±1.1) weeks (1-5 weeks). The height of pre-traction and post-traction were (141.7±11.2) cm (116-167 cm) and (154.1±9.5) cm (136-176 cm) respectively, showing significant difference (P < 0.05), and the increased height was (12.4±4.6) cm (4-20 cm). The average scoliosis angle before traction was 104.9°±35.0°(25°-158°), and it was significantly decreased in post-traction[64.8°±21.0°(19°-92°)] and post-surgery[39.3°±17.0° (10°-70°)] (P < 0.05). The traction's coronal correction rate was 37.2%±10.9% (11.9%-51.2%) and the total coronal correction rate was 61.9%±12.6%(26.9%-79.0%). The average kyphosis angle before traction was 106.9°±29.2°(54°-163°), and it was significantly decreased in post-traction [63.1°±17.1°(32°-92°)] and post-surgery [39.0°±16.8°(10°-68°)](P < 0.05). The traction's sagittal correction rate was 40.0%±10.7%(16.7%-55.5%) and the total sagittal correction rate was 64.3%±10.7%(49.0%-87.5%). The average C7PL-CSVL before traction was (3.2±2.8) cm, and it was significantly decreased in post-traction [(2.5±2.5) cm] (P < 0.05). The perpendicular distance of S1 and the convex point before traction was (10.5±4.8) cm, and it was significantly decreased in post-traction[(8.4±3.5) cm] (P < 0.05). The one-stage short-term HPT combined with two-stage surgery is a safe and effective procedure for severe spinal deformities. The clinical efficacy is satisfactory and the complication is relatively less.

  • Research Article
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  • 10.1016/j.wneu.2018.09.135
Surgical Outcome Comparison of Posterior Vertebral Column Resection with or without Anterior Column Support in Treatment of Yang’s Type A Severe Thoracic Spinal Deformity
  • Sep 27, 2018
  • World Neurosurgery
  • Zi-Fang Huang + 5 more

Surgical Outcome Comparison of Posterior Vertebral Column Resection with or without Anterior Column Support in Treatment of Yang’s Type A Severe Thoracic Spinal Deformity

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  • 10.1016/j.fjmd.2013.04.008
The clinical significance of rapid prototyping technique in complex spinal deformity surgery—Case sharing and literature review
  • Aug 1, 2013
  • Formosan Journal of Musculoskeletal Disorders
  • Zhou-Liang Song + 3 more

The clinical significance of rapid prototyping technique in complex spinal deformity surgery—Case sharing and literature review

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