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1.
J Arthroplasty ; 2024 Sep 02.
Artigo em Inglês | MEDLINE | ID: mdl-39233105

RESUMO

BACKGROUND: Prior open reduction and internal fixation (ORIF) of tibial plateau fracture (TPF) adds complexity to subsequent total knee arthroplasty (TKA). The purpose of this study was to compare the outcomes of patients undergoing a TKA following prior ORIF of TPF to patients undergoing a primary TKA for osteoarthritis and an aseptic revision TKA. METHODS: There were 52 patients who underwent primary TKA following prior ORIF of TPF between January 2009 and June 2021, who were included and matched in a 1:4 ratio to 208 patients undergoing primary TKA. A second 1:1 matched comparison to 52 aseptic revision TKA patients was also included. The Knee injury and Osteoarthritis Outcome Score for Joint Replacement scores were obtained preoperatively and at two years postoperatively. Independent t-tests and Chi-square tests were used for statistical comparisons. RESULTS: The TPF patients were significantly younger than both primary and revision cohorts (55 ± 14.0 versus 63 ± 16.3 versus 64 ± 9.5, P < 0.001). Compared to primary TKA patients, the TPF group had worse Knee injury and Osteoarthritis Outcome Score for Joint Replacement scores at two years (46.9 ± 18.5 versus 66.2 ± 17.8, P = 0.0152), higher rates of wound complications (15.4 versus 3.9%, P = 0.0020), and increased operative times (140.2 ± 45.3 versus 95.2 ± 25.7, P < 0.0001). Additionally, TPF patients were more likely to require a manipulation under anesthesia than both primary and revision patients (21.2 versus 5.8 versus 5.8%, P = 0.001). CONCLUSIONS: The TKAs following ORIF of TPF are more like revision TKAs than primary TKAs in terms of patient-reported outcomes, operative times, and wound complications. The rate of manipulation under anesthesia was higher than in both matched groups. These findings provide valuable information that can affect preoperative patient education and postoperative management regimens. They also emphasize the need for a conversion TKA code due to increased complexity and complications seen in this more difficult subset of TKAs.

2.
Front Neurol ; 15: 1427555, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-39099779

RESUMO

Spontaneous intracerebral hemorrhage (sICH) is associated with significant morbidity and mortality, with subsequent hematoma expansion (HE) linked to worse neurologic outcomes. Accurate, real-time predictions of the risk of HE could enable tailoring management-including blood pressure control or surgery-based on individual patient risk. Although multiple radiographic markers of HE have been proposed based on standard imaging, their clinical utility remains limited by a reliance on subjective interpretation of often ambiguous findings and a poor overall predictive power. Radiomics refers to the quantitative analysis of medical images that can be combined with machine-learning algorithms to identify predictive features for a chosen clinical outcome with a granularity beyond human limitations. Emerging data have supported the potential utility of radiomics in the prediction of HE after sICH. In this review, we discuss the current clinical management of sICH, the impact of HE and standard imaging predictors, and finally, the current data and potential future role of radiomics in HE prediction and management of patients with sICH.

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