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Vertebral coplanar alignment: a standardized technique for three dimensional correction in scoliosis surgery: technical description and preliminary results in Lenke type 1 curves
Vallespir, Gabriel Piza; Flores, Jesus Burgos; Trigueros, Ignacio Sanpera; Sierra, Eduardo Hevia; Fernandez, Pedro Domenech; Olaverri, Juan Carlos Rodriguez; Alonso, Manuel Garcia; Galea, Rafael Ramos; Francisco, Antonio Perez; Rodriguez de Paz, Beatriz; Carbonell, Pedro Gutierrez; Thomas, Javier Vicente; Lopez, Jose Luis Gonzalez; Paulino, Jose Ignacio Maruenda; Pitarque, Carlos Barrios; Garcia, Oscar Riquelme
STUDY DESIGN: Prospective multicentric study. OBJECTIVE: To present the preliminary results of an innovative method for standardized correction of scoliosis, vertebral coplanar alignment (VCA), based on a novel concept: the relocation of vertebral axis in a single plane. SUMMARY OF BACKGROUND DATA: Normal standing spine has no rotation in coronal or transverse planes, therefore X and Z axis of vertebrae are in the same plane: they are coplanar. VCA intends to relocate these axis in one plane, correcting rotation and translation, while X axis are returned to its normal posterior divergence in sagittal plane in thoracic spine. METHODS: Twenty-five consecutive adolescent idiopathic scoliosis patients (Lenke type 1) underwent posterior surgery with segmental pedicle screw fixation. Slotted tubes were attached to convex side screws. Two longitudinal rods were inserted through the end of tubes. Then, they were separated along the slots, driving the tubes into one plane, making the axis of the vertebrae coplanar and thus correcting transverse rotation and coronal translation. To obtain kyphosis, distal ends of the tubes were spread in thoracic spine. Correction was maintained by locking a definitive rod in the concave side, then tubes were retrieved and the convex side rod, inserted and tightened. Correction was assessed on preoperative and postoperative full-spine standing radiograph. Vertebral rotation was measured on computed tomography-scan and magnetic resonance imaging. RESULTS: Preoperative average thoracic curves of 61 degrees were corrected to 16 degrees (73%). Preoperative average thoracolumbar curves of 39 degrees were corrected to 12 degrees (70%). Preoperative average thoracic apical rotation of 24 degrees was corrected to 11 degrees (56%). Preoperative average thoracic kyphosis of 18 degrees remained unchanged after surgery; however, no patients had kyphosis <10 degrees after surgery. Rib hump improved from 30 to 11 mm (65%). There were no perioperative complications. CONCLUSION: VCA provided excellent correction of coronal and transverse planes with normalization of thoracic kyphosis in Lenke type 1 adolescent idiopathic scoliosis surgery
PMID: 18552675
ISSN: 1528-1159
CID: 104466
Using triggered electromyographic threshold in the intercostal muscles to evaluate the accuracy of upper thoracic pedicle screw placement (T3-T6) [Case Report]
Rodriguez-Olaverri, Juan C; Zimick, Nicholas C; Merola, Andrew; De Blas, Gema; Burgos, Jesus; Piza-Vallespir, Gabriel; Hevia, Eduardo; Vicente, Javier; Sanper, Ignacio; Domenech, Pedro; Regidor, Ignacio
STUDY DESIGN: A prospective clinical study of high thoracic pedicle screws monitored with triggered electromyographic (EMG) testing. OBJECTIVE: To evaluate the sensitivity of recording intercostal muscle potentials to assess upper thoracic screw placement. SUMMARY OF BACKGROUND DATA: Triggered EMG testing from rectus muscle recordings, which are innervated from T6 to T12, has identified medially placed thoracic pedicle screws. No clinical study has correlated an identical technique with the intercostal muscle for upper pedicle screws placed in the upper thoracic spine (T3-T6). METHODS: A total of 311 high thoracic screws were placed in 50 consecutive patients. Screws were placed from T3 to T6 and were evaluated using an ascending method of stimulation until a compound muscle action potential was obtained from the intercostal muscles. Screw position was then evaluated using computed tomography and results were compared with evoked EMG threshold values. RESULTS: Fifteen screws (5%) showed penetration on postoperative computed tomography scans. Eleven screws showed medial cortical breakthrough (3.6%), 6 had stimulation thresholds <or=6 mA, and 5 had stimulation thresholds between 6 and 10 mA. Stimulation values for all breached screws decreases 60% to 65% from their mean. Four screws (1.3%) showed lateral cortical breakthrough with stimulation thresholds >20 mA. Of the 296 screws with thresholds between 6 and 20 mA, 285 (91%) were within the vertebra. No postoperative neurologic complications were noted in any of the 50 patients. CONCLUSION: In this series, cortical violation is highly unlikely in patients whose stimulation threshold lies between 6 and 20 mA with values 60% to 65% decreased from the mean (98% negative predictive value). Although verification of screw placement should not depend solely on stimulation thresholds, pedicle screw stimulation provides rapid and useful intraoperative information on screw placement during procedures involving the use of thoracic pedicle screws
PMID: 18379388
ISSN: 1528-1159
CID: 104464
Perforation of the sigmoid colon in a rheumatoid arthritis patient treated with methylprednisolone pulses [Case Report]
Candelas, G; Jover, J A; Fernandez, B; Rodriguez-Olaverri, J C; Calatayud, J
We describe a 61 year-old caucasian male diagnosed with rheumatoid arthritis. He was started on methylprednisolone pulses because of a severe flare of symmetric polyarthritis while he was on weekly intramuscular methotrexate and low-dose oral prednisone. After the second pulse of methylprednisolone the patient suddenly developed severe abdominal pain with free air under the right hemidiaphragm in the chest roentgenogram. The emergency surgery revealed the perforation of a colonic diverticulum. We suggest that methylprednisolone pulses should be carefully used in those patients over 50 years of age and/or people with demonstrated or suspected diverticular disease
PMID: 9572644
ISSN: 0300-9742
CID: 104465