The aim of the study was to determine the effect of external beam radiotherapy (RT) in the treatment of extremity soft tissue sarcoma (STS) before or after limb‐sparing surgery (LSS) in a community‐based setting. Patients presenting to our institution from 1992 to 2010 and meeting eligibility criteria were stratified into low (G1) or high (G2, G3) pathologic grade and evaluated. Major complication events, including amputation, radiation‐induced sarcoma, and pathologic fracture, were assessed. Kaplan–Meier techniques and Cox proportional hazards regression models were used. One hundred and sixty‐two eligible patients underwent LSS for extremity STS (120 high grade, 42 low grade). Median time of follow‐up was 5.1 years (0.8–20.3 years). RT was administered to 111 patients. In unadjusted models, RT significantly decreased the risk of local recurrence (LR) in high‐grade STS patients (P = 0.005) and had a trend for improved recurrence‐free survival (RFS) (P = 0.069). In multivariable‐adjusted models, RT significantly improved time to LR (P = 0.001), RFS (P = 0.003), and overall survival (OS) (P = 0.003). Analysis of all patients showed those who underwent RT had a major complication rate (MCR) of 16.2%, compared to 3.9% in the no RT group (P = 0.037); however, the difference in MCR did not differ significantly when the analysis was restricted to high‐grade sarcomas. In our large experience of patients with extremity STS undergoing limb sparing surgery (LSS), RT significantly improved local recurrence (LR), RFS, and OS, in patients with high‐grade tumors. Efficacy benefits of RT should be weighed against potential complications. External beam RT should be considered in patients with resected high‐grade sarcomas.
Background: Ankle fractures are among the most common injuries treated by orthopaedic surgeons. Various postoperative rehabilitation strategies have been promoted, but the ability to improve patient-reported functional outcome has not been clearly demonstrated. We aim to evaluate outcomes associated with clinic-based, physical therapist-supervised rehabilitation (Formal-PT) compared to surgeon-directed rehabilitation (Home-PT). Methods: This prospective observational study included patients with operative bimalleolar or trimalleolar ankle fractures with or without dislocation (n = 80) at a Level I trauma center. Patients were prescribed PT per the surgeon's practice pattern. Patient-reported functional outcomes at 6 months and complication rates were compared between groups. Results: Of the 80 patients, 38 (47.5%) patients received Formal-PT; the remaining received Home-PT. Thirty-four patients (89.5%) attended ≥1 PT session. Number of sessions attended ranged from 1 to 36 (mean = 16). Receipt of Formal-PT did not differ by injury characteristics or demographics. Of patients with private insurance, 57% were prescribed Formal-PT vs 7% of uninsured patients (P = .033). FAAM and Combination SMFA scores at 6 months were similar between groups (Formal-PT: 69.7, 20.1; Home-PT: 70.9, 24.4; P = .868, .454, respectively). Postoperative complications were rare and equivalent between groups. Conclusions: Comparison of outcomes between patients with operatively treated displaced ankle fractures/dislocations with Formal-PT vs Home-PT showed no difference in SMFA and FAAM scores. These findings suggest patients receiving supervised PT produced a similar outcome to those under routine physician-directed rehabilitation at 6 months. The cost for therapy averaged $2012.96 per patient receiving Formal-PT.
While ion-selective electrodes (ISEs) based on anion ionophores with guanidine groups were reported in the past, their response mechanism was poorly understood. In this study, an ionophore with one guanidine group was prepared as a model compound, and the chloride and sulfate responses of ISE membranes containing this ionophore were investigated. The electrodes exhibit Nernstian responses resulting from a neutral or charged ionophore mode when added cationic or anionic sites are used, respectively. Based on this observation, it might be expected that membranes without added ionic sites exhibit Nernstian responses according to a charged carrier mechanism. However, experimental results show an apparently two -thirds Nernstian equilibrium response, which can be explained on the basis of the phase boundary model.
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