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Biomedical subjects

David L Skaggs

Publications and source records attributed to David L Skaggs.

At least 19 recordsLinked to original sources

Developmental dysplasia of the hip.

Developmental dysplasia of the hip refers to a continuum of abnormalities in the immature hip that can range from subtle dysplasia to dislocation. The identification of risk factors, including breech presentation and family history, should heighten a physician's suspicion of developmental dysplasia of the hip. Diagnosis is made by physical examination. Palpable hip instability, unequal leg lengths, and asymmetric thigh skinfolds may be present in newborns with a hip dislocation, whereas gait abnormalities and limited hip abduction are more common in older children. The role of ultrasonography is controversial, but it generally is used to confirm diagnosis and assess hip development once treatment is initiated. Bracing is first-line treatment in children younger than six months. Surgery is an option for children in whom nonoperative treatment has failed and in children diagnosed after six months of age. It is important to diagnose developmental dysplasia of the hip early to improve treatment results and to decrease the risk of complications.

Hip Dislocation, Congenital↗

Cobalt chromium sublaminar wires for spinal deformity surgery.

STUDY DESIGN: Biomechanical analysis and retrospective chart review. OBJECTIVES: To determine the mechanical properties of cobalt chromium alloy wires and review the clinical application of the wires as sublaminar implants to correct spinal deformity. SUMMARY OF BACKGROUND DATA: Sublaminar wires are commonly used as anchors in spinal deformity surgery. In stainless steel instrumentation systems, single strand wires (Luque wires) may be retightened over time to take advantage of stress relaxation while correcting spinal deformity. Because of the mechanical properties of titanium, solid titanium wires are not used as sublaminar wires. Cobalt chromium alloy is a titanium compatible alloy that can be twisted in a similar fashion to stainless steel sublaminar wires. METHODS: Comparative tensile tests were performed using cobalt chromium alloy wires and Luque stainless steel wires. In addition, 22 consecutive posterior spinal fusions for idiopathic scoliosis were performed using cobalt chromium alloy wires as sublaminar implants. RESULTS: Yield and ultimate tensile loads for the cobalt chromium alloy wires are on average 66% (P < 0.001) and 60% (P < 0.001) higher, respectively, than those for the steel wires. Mean preoperative thoracic curve for patients with idiopathic scoliosis was 56 degrees +/- 15 degrees , which corrected to 19 degrees +/- 11 degrees (67% correction, P < 0.001) when cobalt chromium alloy wires were used as sublaminar implants. Mean preoperative lumbar curve was 52 degrees +/- 14 degrees , which corrected to 17 degrees +/- 8 degrees (68% correction, P < 0.001). There were no instrumentation failures, neurologic complications, or infections. CONCLUSIONS: The advantages of cobalt chromium alloy wire over steel wire include greater tensile strength and titanium compatibility. Cobalt chromium alloy solid wires may be used as sublaminar implants with titanium spinal instrumentation with excellent clinical results.

Adolescent↗

Temporary internal distraction as an aid to correction of severe scoliosis.

BACKGROUND: Halo traction is a well-recognized adjunct for correcting severe complex rigid scoliotic curves, but it is associated with complications and is contraindicated in the presence of fixed cervical instability, kyphosis, or stenosis. In addition, halo traction often requires prolonged hospital stays and is not welcomed by all families. These limitations led to consideration of temporary internal distraction as an alternative. METHODS: We retrospectively reviewed the records of children in whom severe scoliosis had been treated with temporary internal distraction. Our goals were to (1) assess whether the use of temporary internal distraction can aid in the correction of severe scoliosis and (2) identify complications associated with temporary internal distraction and compare them with those associated with halo traction. The mean preoperative curve was 104 degrees . All patients underwent initial posterior release of the rigid portion of the spine (with six also having anterior release) and placement of spinal instrumentation under distraction during spinal cord monitoring. Of the ten patients, four had one distraction procedure (i.e., the initial surgery [or first distraction] followed by definitive fusion and the remaining six had two distraction procedures (i.e., the initial surgery [or first distraction] followed by the second distraction) followed by definitive fusion. After distraction, all patients underwent posterior spinal fusion with definitive dual-rod fixation. The amount of correction was determined by measuring the curve on plain radiographs made preoperatively, after each internal distraction procedure, after definitive fusion, and at the time of final follow-up. RESULTS: Curve correction after use of internal distraction, and before definitive fusion, averaged 53% (from 104 degrees to 49 degrees ) (range, 39% [from 70 degrees to 43 degrees ] to 79% [from 70 degrees to 15 degrees ]). This method facilitated safe, gradual deformity correction in all ten patients. The mean time between the initial procedure and the definitive fusion was 2.4 weeks. The mean final curve correction was 80% (from 104 degrees to 20 degrees ) (range, 73% [from 131 degrees to 35 degrees ] to 91% [from 110 degrees to 10 degrees ]). No neurologic deficits or infections resulted. CONCLUSIONS: Temporary internal distraction is a viable alternative approach to maximizing curve correction in patients undergoing spinal fusion for severe scoliosis. LEVEL OF EVIDENCE: Therapeutic Level IV.

Adolescent↗

Causes of intoeing gait in children with cerebral palsy.

BACKGROUND: Intoeing is a frequent gait problem in children with cerebral palsy. It is essential to determine the cause(s) of intoeing when surgical intervention is being planned. The purpose of this study was to evaluate the prevalence of various causes of intoeing in children with cerebral palsy and to determine whether the causes differ between children with bilateral and those with unilateral involvement. METHODS: The cause of intoeing gait was examined retrospectively, with use of gait analysis, in 412 children with cerebral palsy (587 involved sides). The causes were evaluated separately for the children with bilateral involvement (diplegia or quadriplegia) and those with hemiplegia. RESULTS: Overall, the most common causes of intoeing were internal hip rotation (322 of 587 sides) and internal tibial torsion (296 of 587 sides). Pes varus contributed to intoeing of thirty-five of the eighty-two involved limbs of the patients with hemiplegia and of forty-two of the 505 limbs of the patients with diplegia or quadriplegia. Multiple causes of intoeing were noted in 215 of the 587 involved limbs, including 176 of the 505 limbs of the patients with bilateral involvement and thirty-nine of the eighty-two involved limbs of the patients with hemiplegia. The most common causes of intoeing in the subjects with bilateral involvement were internal hip rotation (288 of 505), internal tibial torsion (261 of 505), and internal pelvic rotation (ninety-two of 505). The most common causes in the hemiplegic children were internal tibial torsion (thirty-five of eighty-two), pes varus (thirty-five of eighty-two), internal hip rotation (thirty-four of eighty-two), and metatarsus adductus (twenty of eighty-two). CONCLUSIONS: More than one-third of children with cerebral palsy have multiple causes of intoeing. Pes varus commonly contributes to intoeing by children with hemiplegic cerebral palsy but rarely contributes to intoeing by those with diplegia or quadriplegia. These findings should be carefully considered prior to surgical correction of the intoeing gait of these patients.

Adolescent↗

Pearls and pitfalls in the evaluation of pediatric congenital and developmental disorders.

Orthopaedic surgeons who treat children should have a thorough understanding of pediatric congenital and developmental disorders. It is paramount to develop approaches to these disorders that minimize risks to the patient and lessen the possibility of litigation against the treating physician. It is important to be aware of safe and effective approaches to specific conditions that highlight pearls and potential pitfalls of treatment.

Child↗

The effect of scoliosis surgery on lung function in the immediate postoperative period.

STUDY DESIGN: Prospective, single-cohort study. OBJECTIVES: To determine the immediate change in pulmonary function test (PFT) in children following scoliosis surgery. SUMMARY OF BACKGROUND DATA: The number of pediatric scoliosis surgeries is increasing each year because of recent advances in spinal instrumentation, surgical techniques, and improved perioperative monitoring. Pulmonary function decreases immediately following scoliosis surgery, but the extent of this decrease is not well documented in pediatric patients. To use preoperative PFTs to assess the risk of postoperative complications, knowledge of the postoperative decline in PFT is necessary. METHODS: We measured preoperative and daily postoperative PFT in 24 children who had scoliosis surgery (age 12.7 +/- 2.7 [SD] years) from January 2002 to June 2003. There were 10 male and 14 female patients. Two (8%) patients had congenital scoliosis, 11 (46%) had idiopathic scoliosis, 9 (38%) had scoliosis due to a neuromuscular disease, and 2 (8%) had kyphoscoliosis. Fifteen (62%) patients had posterior spinal fusion (PSF), 5 (21%) had anterior spinal fusion (ASF), and 4 (17%) had both ASF and PSF performed. PFT parameters (forced expiratory volume in 1 second [FEV1], forced vital capacity [FVC], FEV1/FVC, and forced expiratory rate between 25% and 75% of FVC [FEF25%-75%]) were measured before surgery and daily after surgery by bedside spirometry until hospital discharge. RESULTS: PFT declined up to 60% after surgery. The PFT nadir is at 3 days. PFT values remained significantly decreased at 1 week, with values at about half of preoperative baseline. No patient required postoperative mechanical ventilation > or =3 days. There was no statistical significance between the degree of decline in PFT with etiology of either the scoliosis or the type of surgery performed. CONCLUSIONS: Our study found that patients are still at risk for postoperative complications as long as 1 week postoperatively and that PFTs do not return to near baseline until 1 to 2 months after surgery. The postoperative decrease in PFT should be considered during preoperative prediction of postoperative risk.

Adolescent↗

Preoperative predictors of prolonged postoperative mechanical ventilation in children following scoliosis repair.

Scoliosis is associated with progressive restrictive lung disease and an increased risk of pulmonary complications following surgical correction. Identification of higher risks for prolonged postoperative mechanical ventilation (MV) improves postoperative care. Our objective was to determine if preoperative pulmonary function tests (PFT) predict prolonged postoperative MV (defined as MV >or=3 days). We correlated preoperative PFT (forced expired volume in 1 sec, FEV1; vital capacity, VC; inspiratory capacity, IC; maximal inspiratory pressure, MIP; total lung capacity, TLC; and residual volume, RV) and postoperative MV days in 125 patients who had scoliosis surgery (aged 13.7 +/- 3.0 (SD) years) from January 1990-July 2001. We had 71 male and 54 female patients. Scoliosis types were 13 congenital, 27 idiopathic, 57 neuromuscular, 23 syndrome/tumor, and 5 kyphoscoliosis. Forty patients (32%) had postoperative MV >or=3 days. Independent factors likely requiring postoperative MV >or=3 days were neuromuscular scoliosis (P < 0.001) and FEV1 <40% predicted. Independent factors most likely were: neuromuscular scoliosis with preoperative FEV1 <40% predicted (P < 0.01). Independent factors most unlikely were: idiopathic scoliosis (P < 0.002). VC <60% predicted, IC <30 ml/kg, TLC <60% predicted, and MIP <60 cm H2O correlated with postoperative MV >or=3 days (P < 0.05). We found no association between RV and postoperative MV. FEV1 <40% predicted, VC <60% predicted, IC <30 ml/kg, TLC <60% predicted, MIP <60 cm H2O, and neuromuscular disease each correlated with prolonged postoperative MV. Neuromuscular disease or a preoperative FEV(1) <40% predicted were more likely, and older children with neuromuscular disease and FEV1 <40% predicted were most likely to require prolonged postoperative MV (P < 0.01). Clearly FEV1, and possibly VC, IC, TLC, and MIP, may increase accuracy in predicting the need for prolonged postoperative MV.

Adolescent↗

Access to urologic care for children in California: Medicaid versus private insurance.

OBJECTIVES: To compare the access to urologic care for a child with cryptorchidism insured by Medi-Cal versus one insured by private insurance. Medi-Cal (California State Medicaid) is a joint state and federal health insurance program that plays a significant role in providing healthcare coverage to low-income children. METHODS: A total of 54 randomly chosen urology offices throughout California were surveyed by telephone to determine whether the office accepted pediatric patients, accepted Medi-Cal, and when the earliest appointment date would be for a patient with Medi-Cal versus one with private insurance. RESULTS: Of the 46 practices that accepted pediatric patients, 96% offered a new patient appointment to a child with private insurance, but only 41% were willing to offer an appointment to a child with Medi-Cal (P < 0.0001). Of the offices that would not see a child with Medi-Cal, 75% were unable to recommend a urology office that might accept Medi-Cal. CONCLUSIONS: Children insured by Medi-Cal have significantly less access to necessary urologic care compared with children with private insurance.

California↗

The effect of surgical delay on acute infection following 554 open fractures in children.

BACKGROUND: Traditional recommendations hold that open fractures in both children and adults require urgent surgical debridement for a number of reasons, including the preservation of soft-tissue viability and vascular status as well as the prevention of infection. Following the widespread use of early administration of antibiotics, a number of single-institution studies challenged the belief that urgent surgical debridement decreases the risk of acute infection. METHODS: We performed a retrospective, multicenter study of open fractures that had been treated at six tertiary pediatric medical centers between 1989 and 2000. The standard protocol at each medical center was for all children to be given intravenous antibiotics upon arrival in the emergency department. The medical records of all children with open fractures were reviewed to identify the location of the fracture, the interval between the injury and the time of surgery, the Gustilo and Anderson classification, and the occurrence of acute infection. RESULTS: The analysis included 554 open fractures in 536 consecutive patients who were eighteen years of age or younger. The overall infection rate was 3% (sixteen of 554). The infection rate was 3% (twelve of 344) for fractures that had been treated within six hours after the injury, compared with 2% (four of 210) for those that had been treated at least seven hours after the injury; this difference was not significant (p = 0.43). When the fractures were separated according to the Gustilo and Anderson classification system, there were no significant differences in the infection rate between those that had been treated within six hours after the injury and those that had been treated at least seven hours after the injury. Specifically, these infection rates were 2% (three of 173) and 2% (two of 129), respectively, for type-I fractures, 3% (three of 110) and 0% (zero of forty-four), respectively, for type-II fractures, and 10% (six of sixty-one) and 2% (two of thirty-seven), respectively, for type-III fractures (p > 0.05 for all three comparisons). CONCLUSIONS: In the present retrospective, multicenter study of children with Gustilo and Anderson type-I, II, and III open fractures, the rates of acute infection were similar regardless of whether surgery was performed within six hours after the injury or at least seven hours after the injury. The findings of the present study suggest that, in children who receive early antibiotic therapy following an open fracture, surgical debridement within six hours after the injury offers little benefit over debridement within twenty-four hours after the injury with regard to the prevention of acute infection.

Acute Disease↗

Comparison of the volume of scoliosis surgery between spine and pediatric orthopaedic fellowship-trained surgeons in New York and California.

BACKGROUND: Controversy exists regarding the optimal fellowship training experience for surgeons who perform scoliosis surgery in pediatric patients. While many studies have demonstrated that higher surgical volumes are associated with superior outcomes, the volume of scoliosis procedures performed by pediatric orthopaedic-trained surgeons as opposed to spine surgery-trained surgeons has not been reported. METHODS: Validated, statewide hospital discharge databases from the states of New York and California were utilized to examine the volume of spinal fusion procedures performed for the treatment of scoliosis in patients who were eighteen years of age or less. Fellowship training of surgeons in New York who had performed more than fifty procedures from 1992 to 2001 (that is, more than five procedures per year) was determined, and the operative volumes of surgeons who had received pediatric orthopaedic as opposed to spine fellowship training were compared. Hospitals in California with either type of fellowship program were identified, and the operative volumes of hospitals and fellows with pediatric orthopaedic or spine fellowship training from 1995 to 1999 were compared. RESULTS: Among the 228 surgeons in New York who had performed one or more spinal fusion procedures in patients eighteen years of age or less from 1992 to 2001, only 13% (thirty) had performed more than five procedures per year. However, these thirty surgeons accounted for 75% (3858) of all 5136 procedures in this age-group. Surgeons who had completed a pediatric orthopaedic fellowship had performed a mean of 14.5 procedures per physician per year, whereas those who had completed a spine fellowship had performed a mean of 10.5 procedures per physician per year. Surgeons who had not completed either type of fellowship had performed a mean of 14.4 procedures per physician per year. In California, the mean annual volume of scoliosis procedures from 1995 to 1999 was 59.0 procedures per year at hospitals with pediatric orthopaedic fellowship programs and 15.7 procedures per year at those with spine surgery programs. The mean number of procedures per fellow at hospitals with pediatric orthopaedic fellowship programs was 31.6 procedures per fellow per year, and the mean number at hospitals with spine surgery programs was 12.7 procedures per fellow per year. Over time, there was a significant increase in the number of procedures per year at hospitals with both types of fellowship programs, but the percentage increase was greater for hospitals with pediatric orthopaedic fellowship programs than for hospitals with spine surgery fellowship programs (45.2% compared with 13.5%). CONCLUSIONS: These data indicate that, on the average, a large number of surgeons in New York performed five scoliosis procedures per year or fewer. Among higher-volume surgeons in New York, those with pediatric orthopaedic fellowship training performed more scoliosis procedures on children and adolescents than those with orthopaedic spine training did. In California, the volume of scoliosis procedures at hospitals with pediatric orthopaedic fellowship programs was nearly four times greater than that at hospitals with spine fellowship programs and the volume of procedures per fellow was more than two times greater, and this disparity is widening over time. These data are an important element in establishing what type of fellowship best prepares surgeons for scoliosis surgery.

Adolescent↗

Iatrogenic intraspinal epidermoid tumor: two cases and a review of the literature.

STUDY DESIGN: Two cases of patients whom intraspinal epidermoid tumors presented and were successfully removed 6 years after neonatal lumbar puncture are reported. OBJECTIVE: To describe the presentation of this type of spinal tumor and strategies for diagnosis and treatment. SUMMARY OF BACKGROUND DATA: Cells iatrogenically implanted into the spinal canal during lumbar puncture can slowly grow until symptomatic. Diagnosis can be difficult and is often delayed. MRI appears to offer some advantages in diagnosis provided that gadolinium is used. Treatment is by surgical excision. METHODS: The first patient, a 6-year-old boy, presented with severe episodic hip pain of unknown etiology. MRI of the lumbar spine revealed a 1-cm epidermoid at L1-L2. The second child, a 6-year-old girl, presented with low back pain and dragging of the feet. MRI revealed a mass at L3. RESULTS: In both cases, complete excision via lumbar laminectomy was performed. Both patients were asymptomatic at the 1-year follow-up with resolution of preoperative weakness. CONCLUSIONS: This study highlights an uncommon but not rare tumor that may present to the spine specialist in a variety of ways. The diagnosis is often delayed. The advent of MRI has improved the ease and accuracy of diagnosis. Complete excision is usually possible and is curative.

Carcinoma, Squamous Cell↗

Preoperative polysomnograms and infant pulmonary function tests do not predict prolonged postoperative mechanical ventilation in children following scoliosis repair.

Our objective was the identification of children with scoliosis at higher risk of prolonged postoperative mechanical ventilation (MV) permits improved pre- and perioperative respiratory care to reduce postoperative complications. Pulmonary function testing (PFT) predicts prolonged postoperative MV in children who can reliably perform PFT, but some children cannot perform PFT. The objective of this study was to determine if polysomnography (PSG) or infant pulmonary function testing (IPFT) could predict prolonged postoperative MV (defined as MV >3 days) in children undergoing scoliosis surgery who could not reliably perform PFT. We studied 110 patients (age range, 10.8 +/- 4.9 [SD] years) who had preoperative PSG, and 18 patients (age range, 4.0 +/- 2.9 [SD] years) who had preoperative IPFT prior to undergoing any type of scoliosis repair by the Children's Hospital of Los Angeles Division of Orthopedic Surgery from January 1990- July 2001. The following information was reviewed and correlated: preoperative PSG parameters (baseline and nadir S(aO(2) ), baseline and peak P(ETCO(2) ), and apnea hypopnea index [AHI]), preoperative IPFT parameters (respiratory system compliance [C(rs)], respiratory system resistance [R(rs)], tidal volume [V(T)], and FRC), and length of postoperative MV. Twenty-seven patients (25%) who had PSG and 5 patients (28%) who had IPFT required postoperative MV >3 days. There was no association between baseline and nadir S(aO(2) ) <or= 92%, baseline and peak P(ETCO(2) ), or AHI, and length of postoperative MV. There was no association between IPFT (C(rs), R(rs), V(T), and FRC) and length of postoperative MV. We conclude that neither PSG nor IPFT can predict the need for prolonged postoperative MV following scoliosis surgery in children who could not reliably perform PFT.

Adolescent↗

Lateral-entry pin fixation in the management of supracondylar fractures in children.

BACKGROUND: There has been controversy regarding the optimal pin configuration in the management of supracondylar humeral fractures in children. A crossed-pin configuration may be mechanically more stable than lateral pins in torsional loading, but it is associated with a risk of iatrogenic injury to the ulnar nerve. Previous clinical studies have suggested that lateral pins provide sufficient fixation of unstable supracondylar fractures. However, these studies were retrospective and subject to patient-selection bias. METHODS: A displaced supracondylar humeral fracture was fixed with only lateral-entry pins in 124 consecutively managed children. Medical records and radiographs were reviewed to identify any complications, including loss of fracture reduction, iatrogenic ulnar nerve injury, infection, loss of motion of the elbow, and the need for additional surgery. In addition, eight displaced supracondylar humeral fractures that had been reduced and fixed with lateral pins at other institutions and had lost reduction were analyzed to determine the causes of the failures. RESULTS: Sixty-nine children had a type-2 fracture, according to Wilkins's modification of Gartland's classification system; forty-three (62%) of those fractures were stabilized with two pins and twenty-six (38%), with three pins. Fifty-five children had a type-3 fracture; nineteen (35%) of those fractures were stabilized with two pins and thirty-six (65%), with three pins. A comparison of perioperative and final radiographs showed no loss of reduction of any fracture. There was also no clinically evident cubitus varus, hyperextension, or loss of motion. There were no iatrogenic nerve palsies, and no patient required additional surgery. One patient had a pin-track infection. Our analysis of the eight clinical and radiographic failures of lateral pin fixation that were not part of the consecutive series showed that the loss of fixation was due to fundamental technical errors. CONCLUSIONS: In this large, consecutive series without selection bias, the use of lateral-entry pins alone was effective for even the most unstable supracondylar humeral fractures. There were no iatrogenic ulnar nerve injuries, and no reduction was lost. The important technical points for fixation with lateral-entry pins are (1) maximize separation of the pins at the fracture site, (2) engage the medial and lateral columns proximal to the fracture, (3) engage sufficient bone in both the proximal segment and the distal fragment, and (4) maintain a low threshold for use of a third lateral-entry pin if there is concern about fracture stability or the location of the first two pins.

Adolescent↗

Botulinum toxin as an adjunct to serial casting treatment in children with cerebral palsy.

BACKGROUND: Although botulinum toxin A is frequently used to augment serial casting in the treatment of soft-tissue contractures in children with cerebral palsy, its effectiveness for this purpose has not been evaluated. The purpose of the present study was to determine whether botulinum toxin A injection increases the efficacy of serial casting. METHODS: A prospective, randomized trial was undertaken to compare serial casting only with serial casting combined with botulinum toxin A (Botox) injection for the treatment of ankle equinus contractures in twenty-three children with cerebral palsy. Range-of-motion testing, spasticity assessment, and computerized gait analysis were performed as long as twelve months after treatment. RESULTS: There was no difference between the groups with regard to the duration of casting required to correct the equinus contracture. Both groups maintained a significant improvement in passive ankle dorsiflexion throughout the follow-up period, although the group managed with casting and Botox had a significant loss of dorsiflexion when the values at six, nine, and twelve months were compared with the value at three months. Peak dorsiflexion during the stance and swing phases was significantly improved in both groups at three months but only in the group managed with casting alone at twelve months. Plantar flexor spasticity was significantly decreased at three months in both groups, but it was significantly decreased at six, nine, and twelve months only in the group managed with casting alone. Spasticity was significantly greater in the group managed with casting and Botox than it was in the group managed with casting only at six, nine, and twelve months. CONCLUSIONS: The present study demonstrates the efficacy of serial casting in the treatment of equinus contractures in children with cerebral palsy who are able to walk. Contrary to our hypothesis, the addition of botulinum toxin A to a serial casting regimen led to earlier recurrence of spasticity, contracture, and equinus during gait. The results of the present study suggest that botulinum toxin combined with serial casting for the treatment of fixed contractures will lead to a recurrence of plantar flexor spasticity and equinus contracture by six months in this patient population. While previous research has indicated that the injection of botulinum toxin A is superior to casting for the treatment of dynamic equinus, the present study suggests that serial casting alone is preferable for the treatment of fixed equinus contractures in children with cerebral palsy.

Adolescent↗