Background Recent studies of panniculectomy outcomes have reported variable complication rates ranging from 8.65% to 56%. Meanwhile, reported abdominoplasty complication rates are considerably lower (~4%). This discrepancy may be attributable to inaccurate inclusion of abdominoplasty patients in panniculectomy cohorts. We performed the current study to better characterize panniculectomy complication rates at a large tertiary care center. Methods We performed a retrospective review of patients who underwent abdominoplasty or panniculectomy at the Johns Hopkins Hospitals between 2010 and 2017. Patients were identified by Common Procedural Terminology codes (15847/17999, 15830) confirmed via the operative note. We examined postoperative complication rates including surgical site infection, seroma formation, wound dehiscence, readmission/reoperation, and postoperative length of stay (LOS). We used parametric and nonparametric methods to determine differences between abdominoplasty and panniculectomy outcomes, as well as logistic regression analysis to evaluate factors associated with patient outcomes following panniculectomy. Results Of the 306 patients included, 103 underwent abdominoplasty while 203 underwent panniculectomy. Initial complication rates following abdominoplasty and panniculectomy were 1.94% and 12.8%, respectively (P = 0.002). Thirty-day complication rates were 9.7% for abdominoplasty and 21.2% for panniculectomy (P = 0.012). The median LOS was 1 day (interquartile range, 0–1 day) for abdominoplasty and 2 days (interquartile range, 1–4 days) for panniculectomy (P = 0.002). No statistically significant differences in complication rates at 6 months and 1 year were observed. Conclusions Panniculectomy offers many functional benefits including improved hygiene and enhanced mobility. However, this study demonstrates that panniculectomy patients may have significantly higher complication rates initially and 30 days postoperatively and longer LOS than individuals undergoing abdominoplasty.
OBJECTIVEIn this study, the authors aimed to determine 1) whether the use of intraoperative electrocorticography (ECoG) affects outcomes and complication rates of children undergoing resective epilepsy surgery; 2) which patient- and epilepsy-related variables might influence ECoG-based surgical strategy; and 3) what the predictors of epilepsy surgery outcomes are.METHODSOver a period of 12 years, data were collected on pediatric patients who underwent tailored brain resections in the Motol Epilepsy Center. In patients in whom an abnormal ECoG pattern (e.g., spiking, suppression burst, or recruiting rhythm) was not observed beyond presurgically planned resection margins, the authors did not modify the surgical plan (group A). In those with significant abnormal ECoG findings beyond resection margins, the authors either did (group B) or did not (group C) modify the surgical plan, depending on the proximity of the eloquent cortex or potential extent of resection. Using Fisher’s exact test and the chi-square test, the 3 groups were compared in relation to epilepsy surgery outcomes and complication rate. Next, multivariate models were constructed to identify variables associated with each of the groups and with epilepsy surgery outcomes.RESULTSPatients in group C achieved significantly lower rates of seizure freedom compared to groups A (OR 30.3, p < 0.001) and B (OR 35.2, p < 0.001); groups A and B did not significantly differ (p = 0.78). Patients in whom the surgical plan was modified suffered from more frequent complications (B vs A+C, OR 3.8, p = 0.01), but these were mostly minor (duration < 3 months; B vs A+C, p = 0.008). In all cases, tissue samples from extended resections were positive for the presence of the original pathology. Patients with intended modification of the surgical plan (groups B+C) suffered more often from daily seizures, had a higher age at first seizure, had intellectual disability, and were regarded as MR-negative (p < 0.001). Unfavorable surgical outcome (Engel class II–IV) was associated with focal cortical dysplasia, incomplete resection based on MRI and/or ECoG findings, negative MRI finding, and inability to modify the surgical plan when indicated.CONCLUSIONSIntraoperative ECoG serves as a reliable tool to guide resection and may inform the prognosis for seizure freedom in pediatric patients undergoing epilepsy surgery. ECoG-based modification of the surgical plan is associated with a higher rate of minor complications. Children in whom ECoG-based modification of the surgical plan is indicated but not feasible achieve significantly worse surgical outcomes.
A new class of nitrosocarbonyl precursors, O-substituted hydroxamic acids with pyrazolone leaving groups (OHPY), is described.These compounds generate nitrosocarbonyl intermediates, which upon hydrolysis release nitroxyl (azanone, HNO) under physiologically relevant conditions. Pyrazolones have been used to confirm the generation of nitrosocarbonyls by competitive trapping to form isomeric N-substituted hydroxamic acids (NHPY) via an N-selective nitrosocarbonyl aldol reaction. The rate of nitrosocarbonyl release from OHPY donors is impacted by donor substituents, including the pyrazolone leaving group.
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