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Selective thoracic fusion with segmental pedicle screw fixation in the treatment of thoracic idiopathic scoliosis: more than 5-year follow-up.

STUDY DESIGN: Retrospective study. OBJECTIVES: To evaluate outcomes of selective thoracic fusion with segmental pedicle screw fixation in thoracic idiopathic scoliosis with a minimum 5-year follow-up. SUMMARY OF BACKGROUND DATA: Segmental pedicle screw fixation has been proven to enable true segmental control and greater correction both in coronal and sagittal planes of scoliosis. However, there is no long-term study of selective thoracic fusion with segmental pedicle screw fixation in thoracic idiopathic scoliosis. METHODS: Two hundred and three thoracic idiopathic scoliosis patients with 236 thoracic curves subject to selective thoracic fusion with segmental pedicle screw fixation were analyzed. Mean patient age at the time of operation was 13.8 years (range: 8.9-18). RESULTS: The preoperative thoracic curve of 51 +/- 12 degrees was corrected to 16 +/- 7 degrees (69% correction, 3% loss of correction) at the most recent follow-up. The noninstrumented lumbar curve of 30 +/- 10 degrees was corrected to 10 +/- 8 degrees (66% correction, 5% loss of correction) at the most recent follow-up. The preoperative thoracic kyphosis of 18 +/- 11 degrees and the lumbar lordosis of 43 +/- 10 degrees were improved to 23 +/- 8 degrees and 46 +/- 9 degrees , respectively, at the most recent follow-up. There was no junctional kyphosis at the most recent follow-up. Coronal decompensation at the most recent follow-up occurred in 10 patients. Postoperative adding-on occurred in 17 patients, who were fused two levels short of the neutral vertebra. Of the 2,867 thoracic pedicle screws inserted in the thoracic level, 43 screws were found to be malpositioned (1.5%), but they did not cause neurologic complications or adversely affect the long-term results. CONCLUSIONS: Selective thoracic fusion with segmental pedicle screw fixation in thoracic idiopathic scoliosis had satisfactory radiographic and clinical outcomes after surgery and has been well-maintained for minimum 5-year follow-up. It is a safe and effective method for preservation of lumbar motion segments as well as for restoration and maintenance of both coronal and sagittal alignment.

Adolescent↗

A lumbar classification of scoliosis in the adult patient: preliminary approach.

STUDY DESIGN: Retrospective consecutive clinical review of 98 patients. OBJECTIVE: To create a preliminary approach to a clinically important classification of scoliosis in adult patients. SUMMARY OF BACKGROUND DATA: There is currently no accepted classification of scoliosis in adults. High prevalence rates of scoliosis in the elderly and recent studies of health impact support the need for a clinically relevant classification. METHODS: A total of 98 adult patients with scoliosis with a 2-year minimum treatment/follow-up were included. Patients were classified into one of 3 types of deformity based on the degree of lordosis (L1-S1) and frontal plane endplate obliquity of L3 on standing radiographs: type I = lordosis > 55 degrees, L3 obliquity < 15 degrees; type II = lordosis 35 degrees-55 degrees, L3 obliquity 15 degrees-25 degrees; and type III = lordosis < 35 degrees, L3 obliquity > 25 degrees. RESULTS: Curve patterns included thoracic, thoracolumbar, lumbar, thoracic, and lumbar (mean Cobb angle 30 degrees, standard deviation 19 degrees). Cobb angle revealed no correlation to visual analog pain score (VAS) or general health (36-Item Short-Form Health Survey). Significant correlation between endplate obliquity L3, L1-S1 lordosis and VAS was noted (P < 0.05). Mean pain scores of classified patients were: type I, VAS = 27.7; type II, VAS = 43.3; and type III, VAS = 47.1 (type I vs. III, P < 0.05). Surgical rates (failed minimum 3-month conservative care, including bracing, physical therapy, and pharmacological treatment) by group were: type I, 0%; type II, 9%; and type III, 22.7% (P = 0.002). CONCLUSIONS: A simple classification of adult scoliosis was developed based on frontal and sagittal plane standing radiographs. With increasing type (from I to III), self-reported pain and disability increased. This result was reflected in the treatment approach as well, with surgical rates increasing from types I to III. Further refinement is important to develop an all inclusive and sufficiently descriptive system.

Adult↗

Dual growing rod technique for the treatment of progressive early-onset scoliosis: a multicenter study.

STUDY DESIGN: A retrospective case review of children treated with dual growing rod technique at our institutions. Patients included had no previous surgery and a minimum of 2 years follow-up from initial surgery. OBJECTIVES: To determine the safety and effectiveness of the previously described dual growing rod technique in achieving and maintaining scoliosis correction while allowing spinal growth. SUMMARY OF BACKGROUND DATA: Historically, the growing rod techniques have used a single rod and the reported results have been variable. There has been no published study exclusively on the results of dual growing rod technique for early-onset scoliosis. METHODS: From 1993 to 2001, 23 patients underwent dual growing rod procedures using pediatric Isola instrumentation and tandem connectors. Diagnoses included infantile and juvenile idiopathic scoliosis, congenital, neuromuscular, and other etiologies. All had curve progression over 10 degrees following unsuccessful bracing or casting. Of 189 total procedures within the treatment period, 151 were lengthenings with an average of 6.6 lengthenings per patient. Analysis included age at initial surgery and final fusion (if applicable), number and frequency of lengthenings, and complications. Radiographic evaluation included measured changes in scoliosis Cobb angle, kyphosis, lordosis, frontal and sagittal balance, length of T1-S1 and instrumentation over the treatment period, and space available for lung ratio. RESULTS: The mean scoliosis improved from 82 degrees (range, 50 degrees-130 degrees) to 38 degrees (range, 13 degrees-66 degrees) after initial surgery and was 36 degrees (range, 4 degrees-53 degrees) at the last follow-up or post-final fusion. T1-S1 length increased from 23.01 (range, 13.80-31.20) to 28.00 cm (range, 19.50-35.50) after initial surgery and to 32.65 cm (range, 25.60-41.00) at last follow-up or post-final fusion with an average T1-S1 length increase of 1.21 cm per year (range, 0.13-2.59). Seven patients reached final fusion. The space available for lung ratio in patients with thoracic curves improved from 0.87 (range, 0.7-1.1) to 1.0 (range, 0.79-1.23, P = 0.01). During the treatment period, complications occurred in 11 of the 23 patients (48%), and they had a total of 13 complications. Four of these patients (17%) had unplanned procedures. Following final fusion, 2 patients required extensions of their fusions because of curve progression and lumbosacral pain. CONCLUSION: The dual growing rod technique is safe and effective. It maintains correction obtained at initial surgery while allowing spinal growth to continue. It provides adequate stability, increases the duration of treatment period, and has an acceptable rate of complication compared with previous reports using the single rod technique.

Bone Nails↗

The treatment of large (>70 degrees) thoracic idiopathic scoliosis curves with posterior instrumentation and arthrodesis: when is anterior release indicated?

STUDY DESIGN: Retrospective clinical study from 2 centers. OBJECTIVE: To analyze the efficacy of posterior instrumentation and arthrodesis for thoracic idiopathic scoliosis curves more than 70 degrees. SUMMARY OF BACKGROUND INFORMATION: The increasing use of thoracoscopic techniques in deformity surgery has led several investigators to advocate anterior release followed by posterior instrumentation when treating "stiff" thoracic curves 60 degrees-70 degrees. To our knowledge, no study has been published to define indications for anterior surgery in thoracic idiopathic scoliosis. METHODS: This is a retrospective review of patients 20 years and younger, with idiopathic scoliosis and thoracic curves more than 70 degrees treated with isolated posterior instrumentation and arthrodesis at 2 institutions from 1989 to 1999. A total of 50 patients were identified, and 46 were available for minimum 2-year radiographic follow-up. Of the 50 patients, 44 had bend films taken before surgery. All patients were treated with third-generation segmental spinal instrumentation using a varied combination of hooks, wires, and screws. RESULTS: Average patient age at surgery was 14.4 years (range 10-20), and average radiographic follow-up was 4.4 years (range 2-11.5). Average preoperative thoracic curve was 75 degrees (range 70 degrees-88 degrees), and average bend was 47 degrees (range 28 degrees-60 degrees), a flexibility of 37%. Average postoperative curve was 25 degrees (range 10 degrees-46 degrees), and it was 27 degrees (range 11 degrees-46 degrees) at latest follow-up, a correction of 64%. The average length of surgery was 6.15 hours, mean hospital stay was 8 days, and average blood loss was 1100 cc. The Scoliosis Research Society 22 or 24 was available at a minimum of 2 years in 46 of 50 patients. Mean domain scores were: pain 4.4, self-image 4.3, function 4.3, mental health 4.3, satisfaction 4.7, and total 4.4. Complications included 1 pseudarthrosis, 1 implant removal for prominence, and 1 implant removal for late operative site pain. CONCLUSION: Using posterior surgery only, we have been able to at least equal the results reported in the literature by investigators using combined approaches. Isolated posterior instrumentation and arthrodesis achieve satisfactory cosmetic, radiographic, and patient-based outcomes in adolescents with idiopathic scoliosis with thoracic curves 70 degrees-90 degrees, without the added expense and morbidity of anterior release.

Adolescent↗

Pedicle rotation in scoliosis: a marker for occult intrathecal abnormalities.

STUDY DESIGN: The Perdriolle method was used to assess retrospectively radiographic pedicle rotation for association with occult intrathecal abnormalities in patients with scoliosis. OBJECTIVE: To determine if pedicle rotation can be predictive of underlying intrathecal abnormalities. SUMMARY OF BACKGROUND DATA: Scoliosis associated with intrathecal abnormalities is thought to produce less rotation than true idiopathic scoliosis. No supporting evidence was found in the literature. METHODS: A consecutive series of patients with a presenting diagnosis of idiopathic scoliosis were reviewed for anteroposterior radiographs and spinal magnetic resonance imaging (MRI). A blinded single examiner evaluated radiographic curve parameters. MRI reports were reviewed for the presence or absence of intrathecal abnormalities. RESULTS: A total of 78 MRIs included 15 intrathecal abnormalities and 63 normals. The abnormal MRI group had more males and apex left curves. Primary curve in the intrathecal abnormality group had a mean of 9.6 degrees of apical vertebrae rotation compared to 17.7 degrees in idiopathic curves (average 37 degrees and 40 degrees Cobb angles, respectively). Of angulation, 1 degrees correlated with 0.21 degrees and 0.34 degrees of rotation in intrathecal abnormality versus no abnormality groups, respectively. CONCLUSIONS: Curves with occult intrathecal pathology had significantly less rotation than those without. Pedicle rotation assessment is a useful adjuvant for identifying scoliosis with intrathecal abnormalities.

Adolescent↗

Spinal fusion after revision surgery for pseudarthrosis in adult scoliosis.

STUDY DESIGN: A retrospective study. OBJECTIVE.: To decipher the incidence, characteristics, functional outcomes, and complications of spinal fusion after revision surgery for recurrent pseudarthrosis in adult patients with scoliosis. SUMMARY OF BACKGROUND DATA: While the rate of spinal fusion has been examined in the past, there have been no studies that have examined the incidence, characteristics, functional outcomes, and complications of spinal fusion after pseudarthrosis repair in adult patients with scoliosis. MATERIALS AND METHODS: A total of 132 patients with failed spinal fusion surgery for adult scoliosis and painful pseudarthroses were studied. Each patient had an average of 3.7 spinal surgeries before undergoing revision at our institution. In addition to clinical assessment and imaging studies, pseudarthrosis was confirmed intraoperatively in all patients. All patients underwent reinstrumentation and fusion along with adjunctive procedures as needed. Spinal fusion was assessed clinically and radiographically after surgery for a minimum of 40 months. Subjective functional outcomes and complications associated with the procedures were also studied. RESULTS: The overall incidence of spinal fusion after revision surgery for pseudarthrosis in adult scoliosis was 90%. There was a propensity for pseudarthrosis to recur at the thoracolumbar and lumbosacral junctions. Increasing thoracolumbar kyphosis and loss of sagittal balance were significant risk factors for recurrent pseudarthrosis after revision surgery (mean thoracolumbar kyphosis of 23 degrees and mean sagittal balance of 7.9 cm anteriorly associated with persistent pseudarthrosis). Additionally, patients with multiple preoperative sites of pseudarthroses were at a higher risk for continued pseudarthrosis after surgery. Cigarette smoking, age, and surgical approach did not have any significant correlation with pseudarthrosis. Seventy-two percent of patients were satisfied with the outcome and 80% would have chosen to undergo surgery again if necessary. Thirty-three percent of patients who underwent surgery had some complication related to the surgery. CONCLUSION: Revision surgery for pseudarthrosis repair in adult scoliosis is most successful at attaining fusion when thoracolumbar and overall sagittal alignment are restored as much as possible.

Adult↗

Mechanical modulation of vertebral growth in the fusionless treatment of progressive scoliosis in an experimental model.

STUDY DESIGN: Wedging of apical spinal segments was measured during creation and correction of an experimental scoliosis in a goat model. OBJECTIVES: To create and correct apical vertebral wedge deformities in a progressive experimental scoliosis model by purely mechanical means. SUMMARY OF BACKGROUND DATA: The creation and correction of vertebral wedge deformities has been previously described in a rat tail model using external fixation. METHODS: Experimental scoliosis was created in 14 goats using a posterior asymmetric tether with convex rib resection and concave rib tethering. After a period of up to 13 weeks, all tethers were removed and goats were randomized into treated (n = 8) and untreated (n = 6) groups. Treated goats underwent anterior thoracic stapling with four shape memory alloy staples along the convexity of the maximal curvature. Goats were followed for an additional 7 to 13 weeks during treatment. Serial radiographs were used to document progression or correction of the maximal scoliotic deformity as well as to measure the wedging of the apical spinal segment (two adjacent vertebrae and the intervening disc). RESULTS: During the tethering period, all goats achieved a progressive, structural, lordoscoliotic curve of significant magnitude (mean: 61 degrees, range: 49 to 73 degrees). Wedging of the apical spinal segment measured 11.1 degrees at the beginning and 22.4 degrees at the end of the tethering period. The increase in apical spinal segment wedging of +11.3 degrees (10.7 degrees vertebral/0.6-degree disc) was significant (P = 0.001). During the treatment period, the scoliosis in the stapled goats measured 56.8 degrees at the beginning and 43.4 degrees at the end for an average correction of -13.4 degrees (range: 0 to-22 degrees) (P = 0.001), whereas the untreated goats measured 67.0 degrees at the beginning and 59.8 degrees at the end for an average correction of -7.2 degrees (range: +7 to -21 degrees) (P = 0.19). Additionally, wedging of the apical spinal segment in the stapled goats measured 22.5 degrees at the beginning and 20.3 degrees at the end for an average correction of -2.2 degrees (-0.6 degrees vertebral/-1.6-degree disc); wedging of the apical vertebral segment in the untreated goats measured 22.3 degrees at the beginning and 25.8 degrees at the end of the treatment period for an average progression of +3.5 degrees (3.5 degrees vertebral/0.0-degree disc). The difference in apical spinal segment correction versus progression in the stapled (-2.2 degrees) versus control (+3.5 degrees) goats was significant (P < 0.05). CONCLUSIONS: This study demonstrates the ability to create wedge deformities at the apex of an experimental scoliosis in a large animal model and to control the progression of these deformities using anterior thoracic staples.

Animals↗

Postoperative analgesia after anterior correction of thoracic scoliosis: a prospective randomized study comparing continuous double epidural catheter technique with intravenous morphine.

STUDY DESIGN: Prospective randomized comparative study of two techniques for postoperative analgesia. OBJECTIVE: Assess the efficacy of two epidural catheters compared with intravenous morphine after anterior correction of thoracic scoliosis. SUMMARY OF BACKGROUND DATA: Spine surgery with anterior thoracotomy can cause severe postoperative pain. Continuous epidural analgesia through two epidural catheters was shown to be effective after posterior scoliosis correction. The efficacy of this technique has still not been demonstrated in this surgical context. METHODS: Thirty adolescent patients with thoracic idiopathic scoliosis scheduled for anterior correction were prospectively randomized into morphine (M) or epidural (E) group. In the E group, two epidural catheters were placed transforaminally after scoliosis correction. The immediate postoperative analgesia was performed with remifentanil in all patients until the first postoperative morning (T0 = begin of study), when either continuous intravenous morphine (M group) or continuous epidural ropivacaine 0.3% (E group) was initiated. Pain at rest and in motion, morphine consumption, sensory level, motor blockade, nausea/vomiting, pruritus, bowel function, and patient satisfaction were assessed. RESULTS: In the E group, there was significantly less pain at rest and in motion, less rescue morphine consumption, improved bowel activity, and higher patient satisfaction. The incidence of side effects was significantly higher in M group. CONCLUSIONS: Two epidural catheters provide better postoperative analgesia with fewer side effects and higher patient satisfaction after anterior instrumentation of thoracic scoliosis.

Adolescent↗

Magnetic resonance imaging abnormalities of neural axis in Lenke type 1 idiopathic scoliosis.

STUDY DESIGN: Patients with Lenke type 1 single thoracic idiopathic scoliosis were included in this prospective study. All patients had preoperative magnetic resonance imaging (MRI). OBJECTIVE: To examine the frequency of neural axis abnormalities and the need for preoperative MRI in this group of patients. SUMMARY OF BACKGROUND DATA: Because of the increasing use of MRI, neural axis abnormalities have been reported in association with certain clinical and radiologic findings in idiopathic scoliosis cases. METHODS: A total of 104 patients (49 juvenile onset and 55 adolescent onset), older than 10 years, were included in the study. The association of neural axis abnormalities with pes cavus, abnormal deep tendon reflexes, age of onset, presence of pain, severity of the frontal plane deformity, and sagittal contours were investigated. RESULTS: All 7 patients with a neural axis abnormality on MRI had an early onset disease, and 6 of them had back pain. Thus, age of onset and back pain seem to be predictive of these abnormalities. Frequency of MRI abnormalities was as high as 45% for patients with back pain in addition to a type IC curve. CONCLUSION: In patients with juvenile idiopathic scoliosis and back pain, preoperative MRI should be performed to eliminate the risk of postoperative neurologic deficits, even if the scoliosis is Lenke type 1. However, in patients with Lenke type 1 idiopathic scoliosis, preoperative MRI studies seem unnecessary if intraoperative neural monitoring is to be performed.

Adolescent↗

Idiopathic scoliosis: identification of candidate regions on chromosome 19p13.

STUDY DESIGN: We performed genomic screening, statistical linkage analysis, and fine mapping of 202 families with at least 2 individuals with idiopathic scoliosis. OBJECTIVE: To identify regions on chromosome 19p13 statistically linked to the phenotypic expression of idiopathic scoliosis. SUMMARY OF BACKGROUND DATA: Idiopathic scoliosis is a common structural curvature of the spine affecting otherwise healthy children. Presently, no clear consensus exists regarding the underlying abnormality or genetic determinants of this disease. METHODS: Model-independent linkage analysis of qualitative and quantitative traits related to scoliosis was used to screen genotyping data from 391 markers in 202 families (1198 individuals). Subsets of families with probands having a curve > or = 30 degrees were dichotomized based on the most likely mode of inheritance for each family (autosomal dominant or X-linked dominant). Fine mapping was performed to show linkage to candidate regions on chromosome 19. RESULTS: When the threshold of disease was set at a curvature of > or = 30 degrees, qualitative linkage analysis revealed significant results at 2 successive markers on chromosome 19. CONCLUSION: The data confirm a previously reported genetic locus on chromosome 19 as potentially significant in the etiology of idiopathic scoliosis.

Chromosome Mapping↗

Recovery of pulmonary function following endoscopic anterior scoliosis correction: evaluation at 3, 6, 12, and 24 months after surgery.

STUDY DESIGN: A series of patients with scoliosis undergoing endoscopic anterior instrumentation and fusion undertaking repeated pulmonary function assessments. OBJECTIVE: To assess recovery of pulmonary function in the 2 years following endoscopic anterior scoliosis correction. SUMMARY OF BACKGROUND DATA: Recent studies have found that pulmonary function returns to preoperative levels 12-24 months following endoscopic anterior scoliosis correction, and a small improvement in forced expiratory volume (FEV1) has also been reported. METHODS: A series of 44 patients with endoscopic anterior scoliosis correction had pulmonary function tests before surgery, and at 3, 6, 12, and 24 months after surgery. Forced vital capacity (FVC), FEV1, and total lung capacity (TLC) were measured. Nonparametric statistical analysis was used to investigate changes in pulmonary function between successive assessments. RESULTS: Pulmonary function decreased by approximately 10% at 3 months after surgery. At 24 months after surgery, FVC and FEV1 recovered to 5% to 8% higher than preoperative levels, while TLC returned to preoperative levels. Statistically significant improvements in most pulmonary function values occurred between 3 and 6, and 6-12 months. Improvements in mean FVC, FEV1, and TLC continue between 12 and 24 months, although only the increase in absolute FVC for this time is statistically significant. CONCLUSIONS: Endoscopic anterior scoliosis surgery has no lasting negative effect on pulmonary function, and with prolonged follow-up, pulmonary capacity improves beyond preoperative levels.

Adolescent↗

Analysis of patients with nonambulatory neuromuscular scoliosis surgically treated to the pelvis with intraoperative halo-femoral traction.

STUDY DESIGN: Retrospective case-control study. OBJECTIVES: To compare patients treated with and without intraoperative halo-femoral traction to assess neuromuscular spinal deformity correction as well as the safety of the technique. SUMMARY OF BACKGROUND DATA: Optimal sitting balance can be achieved in nonambulatory neuromuscular patients with pelvic obliquity by maneuvering a Galveston-type rod or inserting screws into the iliac wings; however, this is often clinically challenging because of the small, soft bone-stock in the pelvis of these patients. METHODS: A total of 40 patients with nonambulatory neuromuscular scoliosis were treated surgically with a T2 or T3-sacrum instrumented posterior spinal fusion. There were 20 patients (12 who underwent posterior spinal fusion-alone and 8 anterior/posterior spinal fusion) who had intraoperative halo-femoral traction performed unilaterally on the high side iliac wing compared to a control group of 20 patients (15 who underwent posterior spinal fusion-alone and 5 anterior/posterior spinal fusion) operatively treated without halo-femoral traction. Each group had 14 patients with spastic (cerebral palsy) scoliosis, and 6 with flaccid (muscular dystrophy) scoliosis deformities. Minimum follow-up for all patients was 2 years (range 3-12). RESULTS: Preoperative lumbar scoliosis averaged 87 degrees (range 30 degrees-141 degrees) in the halo-femoral traction group and 67 degrees (range 28 degrees-108 degrees) in the control group (P = 0.012). Postoperative lumbar Cobb decreased to 35 degrees (range 15 degrees-60 degrees) in the halo-femoral traction group and 32 degrees (range 4 degrees-66 degrees) in the control group (P = 0.181). Preoperative pelvic obliquity averaged 26 degrees (range 8 degrees-47 degrees) in the halo-femoral traction group and 17 degrees (range 8 degrees-44 degrees) in the control group (P = 0.017); postoperative averaged 6 degrees (range 1 degrees-23 degrees) in the halo-femoral traction group and 7 degrees (range 0 degrees-27 degrees) in the control group. Average pelvic obliquity correction was 78% in the halo-femoral traction group and 52% in the control group (P = 0.001). There were no intraoperative or postoperative halo-femoral traction apparatus-related complications noted (pin cut-out, femoral fractures, pin-sight infections, etc.). CONCLUSIONS: Intraoperative use of halo-femoral traction during the surgical treatment of patients with nonambulatory neuromuscular scoliosis provided significantly improved lumbar curve and pelvic obliquity correction. Intraoperative halo-femoral traction had no associated perioperative complications.

Adolescent↗

Factors of thoracic cage deformity that affect pulmonary function in adolescent idiopathic thoracic scoliosis.

STUDY DESIGN: This clinical study examined the association between pulmonary function and thoracic cage deformities in scoliosis. OBJECTIVE: To determine the factors in spinal and thoracic cage deformities that affect pulmonary function in scoliosis. SUMMARY OF BACKGROUND DATA: Pulmonary function in scoliosis has generally been evaluated in terms of lateral spinal curvature. No previous report has evaluated changes in pulmonary function taking into consideration measurements reflecting not only spinal curvature but also thoracic cage deformities, although scoliosis is a three-dimensional deformity. METHODS: A total of 109 patients (mean age, 14.2 years) with adolescent idiopathic right thoracic scoliosis (mean lateral spinal curvature, 37.7 degrees) had full assessment of pulmonary function and a radiographic evaluation from radiographs of the whole spine, Moiré topography, and thoracic computed tomography. RESULTS: Multiple regression analysis (stepwise method) was performed at each vertebral level from T3-T12 to identify the factor that most strongly affects %VC. The correlation coefficient was highest at T9 and next highest at T8, with values of 0.641 (r2 = 0.411, P < 0.0001) and 0.625 (r2 = 0.390, P < 0.0001), respectively. At T9, multiple regression analysis showed that the sagittal diameter of the thoracic cage and the total lung area were identified as factors that most strongly affect %VC. Similarly, the sagittal diameter of the thoracic cage and the rotation angle to the sagittal plane were identified at T8. CONCLUSIONS: The factors that reduced %VC were the sagittal diameter of the thoracic cage, total lung area and vertebral rotation at the T8 and T9 levels.

Adolescent↗

Locomotor skills and balance strategies in adolescents idiopathic scoliosis.

STUDY DESIGN: Locomotor balance control assessment was performed to study the effect of idiopathic scoliosis on head-trunk coordination in 17 patients with adolescent idiopathic scoliosis (AIS) and 16 control subjects. OBJECTIVE: The aim of this study was to explore the functional effects of structural spinal deformations like idiopathic scoliosis on the balance strategies used during locomotion. SUMMARY OF BACKGROUND DATA: Up to now, the repercussion of the idiopathic scoliosis on head-trunk coordination and balance strategies during locomotion is relatively unknown. METHODS: Seventeen patients with AIS (mean age 14 years 3 months, 10 degrees < Cobb angle > 30 degrees) and 16 control subjects (mean age 14 years 1 month) were tested during various locomotor tasks: walking on the ground, walking on a line, and walking on a beam. Balance control was examined in terms of rotation about the vertical axis (yaw) and on a frontal plane (roll). Kinematics of foot, pelvis, trunk, shoulder, and head rotations were measured with an automatic optical TV image processor in order to calculate angular dispersions and segmental stabilizations. RESULTS: Decreasing the walking speed is the main adaptive strategy used in response to balance problems in control subjects as well as patients with AIS. However, patients with AIS performed walking tasks more slowly than normal subjects (around 15%). Moreover, the pelvic stabilization is preserved, despite the structural changes affecting the spine. Lastly, the biomechanical defect resulting from idiopathic scoliosis mainly affects the yaw head stabilization during locomotion. CONCLUSIONS: Patients with AIS show substantial similarities with control subjects in adaptive strategies relative to locomotor velocity as well as balance control based on segmental stabilization. In contrast, the loss of the yaw head stabilization strategies, mainly based on the use of vestibular information, probably reflects the presence of vestibular deficits in the patients with AIS.

Adolescent↗

Correlation of scoliosis and pulmonary function in Duchenne muscular dystrophy.

Pulmonary function was correlated with patient age and degree of thoracic scoliosis in 25 patients with Duchenne muscular dystrophy in a retrospective, longitudinal study. The observed forced vital capacity (FVC) was found to peak at approximately the age when standing ceases, then to decline rapidly. Thoracolumbar curves were found to be insignificant in adversely affecting pulmonary function in patients with Duchenne muscular dystrophy. Percent FVC was found to be the parameter of pulmonary function that was most strongly correlated with age and scoliosis measurements. In addition, age and thoracic scoliosis together were better predictors of percent FVC than either one alone. Each 1 year of age had approximately the same negative influence on percent FVC that each 10 degrees of thoracic scoliosis had; both decreased percent FVC by approximately 4%. A regression equation for percent FVC is presented which predicts that the patient who has had scoliosis progression halted by spinal fusion would, subsequent to the surgery, show a slower rate of decline of percent FVC and that this rate is quantifiable, predictable, and dependent solely on the patient's advancing age. Therefore, early spinal instrumentation and fusion is advocated in the patient with Duchenne muscular dystrophy.

Adolescent↗

Scoliosis due to epilepsia partialis continua.

A case is reported of scoliosis in a boy with epilepsia partialis continua, an unusual disorder with virtually constant episodes of seizures of only part of the body. The scoliosis appeared to be due to the seizure disorder. The epilepsy seriously inhibited conventional scoliosis management. The patient's scoliosis problem was finally solved by salvage surgery and intensive seizure medication supervision. Scoliosis management in complex seizure disorders presents special and unusual problems.

Anticonvulsants↗

Natural history of scoliosis in congenital heart disease.

We defined the natural history of scoliosis in congenital heart disease (CHD) with respect to the risk of progression and indications for treatment. We reviewed radiographs of 48 children with CHD and scoliosis. Thirty-seven had developmental scoliosis (77%), and 11 (23%) had congenital scoliosis. Children with congenital scoliosis can be managed in the same way as children without CHD. Developmental curves less than 30 degrees in children aged greater than 10 years showed no progression. Developmental curves greater than 30 degrees with onset in children aged less than 10 years and progression greater than 9 degrees per year require treatment.

Adolescent↗

Scoliosis and vertical ocular muscle paresis.

Patients with a head tilt from a vertical ocular muscle paresis can often be shown to have an accompanying scoliosis. The scoliosis is usually mild and is postural or compensatory. Although this association is quite common, it is very rarely commented upon, because the relationship between the spinal and the ocular problem is little known. It is important because if such a patient presents with a scoliosis, the patient can be spared extensive investigations if the ocular muscle paresis is of long standing and the Orthopaedic surgeon will know he is, most likely, dealing with a mild scoliosis, and one that has a cause. If the ocular muscle paresis is operated upon early enough it may be possible to remove the head tilt and have a good influence upon the scoliosis. Six patients illustrating these points are discussed.

Adult↗