The data indicate that RLP particles are elevated in diabetic subjects. To achieve optimal reduction of risk for cardiovascular disease, treatment of elevated RLP values, along with the control of LDL cholesterol levels, should be considered.
Remnants of triglyceride-rich lipoproteins of both intestinal and liver origin are considered atherogenic, but they have been difficult to isolate and measure. An assay has been developed that allows the measurement of remnant-like particle cholesterol (RLP-C) and triglyceride (RLP-TG). RLP-C and RLP-TG concentrations were measured in >3000 fasting plasma samples obtained from participants in exam cycle 4 of the Framingham Offspring Study and stored at −80 °C. After exclusions, comparisons were made for 2821 samples (1385 women, 1436 men; mean age, 52 years). For women, the mean RLP-C and RLP-TG values were 0.176 ± 0.058 mmol/L (6.8 ± 2.3 mg/dL) and 0.204 ± 0.159 mmol/L (18.1 ± 14.1 mg/dL), respectively; for men, the mean values were 0.208 ± 0.096 mmol/L (8.0 ± 3.7 mg/dL) and 0.301 ± 0.261 mmol/L (26.7 ± 23.1 mg/dL), respectively. Women had significantly lower RLP-C and RLP-TG values (P <0.0001) than men; premenopausal women had significantly lower values than postmenopausal women (P <0.0001); and younger subjects (<50 years) had significantly lower values than older individuals (P <0.0001). The 75th percentile values for RLP-C and RLP-TG were 0.186 mmol/L (7.2 mg/dL) and 0.225 mmol/L (19.9 mg/dL), respectively, for women, and 0.225 mmol/L (8.7 mg/dL) and 0.346 mmol/L (30.6 mg/dL) for men. These data provide reference ranges for use in the evaluation of RLP-C and RLP-TG as potential indicators of risk for coronary heart disease.
Emergency general surgery patients have increased ICU needs in terms of length of stay, ventilator usage, and continuous renal replacement therapy usage compared with other services, perhaps due to the higher percentage of transfers and emergent surgery required. These patients represent a distinct population. Understanding their resource needs will allow for better deployment of hospital resources.
Reconstruction of the abdominal wall to repair ventral hernias continues to pose a challenge to surgeons due to relatively high rates of recurrence and morbidity. In 1990, Ramirez pioneered a technique of components separation of the abdominal wall for ventral hernia repair. Although an effective hernia repair, the mobilization of skin and subcutaneous tissue endangers the blood supply and predisposes midline skin to necrosis. The goal of this study is to determine whether releasing incisions in the transversus abdominis fascia and posterior rectus sheath provide adequate mobilization of the abdominal wall necessary for ventral hernia repair, thus paving the way for a laparoscopic component separation technique. Ten fresh cadavers were used and one side of the abdomen underwent the conventional Ramirez components separation: midline incision, dissection of skin and subcutaneous tissue off the anterior abdominal wall, and incisions in the external oblique aponeurosis and posterior rectus sheath, while the other side received incisions in the transversus abdominis fascia and the posterior rectus sheath with no undermining of the skin. The amount of fascial translation was measured after each incision. Incising only the external oblique aponeurosis produced greater mobilization of the abdominal wall at the level of the umbilicus (P = 0.02) and anterior superior iliac spine (ASIS, P = 0.029) than releasing only transversus abdominis fascia. More importantly, there was no statistically significant difference in the amount of release produced by the complete internal-release components separation versus the conventional technique. In order to test the feasibility of performing the procedure laparoscopically, one additional cadaver underwent a laparoscopic transversus abdominis fascia release. The procedure was successful and resulted in comparable amounts of fascial release as the other 10 cadavers. From this study, it appears technically feasible to perform a laparoscopic components separation to repair a ventral hernia and the procedure produces the same amount of release as the conventional open component separation technique.
Intensive care unit (ICU) readmissions are associated with increased resource use. Defining predictors may improve resource use. Surgical ICU patients requiring readmission will have different characteristics than those who do not. We conducted a retrospective cohort study of a prospectively maintained database. The Acute Physiology and Chronic Health Evaluation (APACHE) IV quality database identified patients admitted January 1 through December 31, 2011. Patients were divided into groups: NREA = patients admitted to the ICU, discharged, and not readmitted versus REA = patients admitted to the ICU, discharged, and readmitted. Comparisons were made at index admission, not readmission. Categorical variables were compared by Fisher's exact testing and continuous variables by t test. Multivariate logistic regression identified independent predictors of readmission. There were 765 admissions. Seventy-seven patients required readmission 94 times (12.8% rate). Sixty-two patients died on initial ICU admission. Admission severity of illness was significantly higher (APACHE III score: 69.54 ± 21.11 vs 54.88 ± 23.48) in the REA group. Discharge acute physiology scores were equal between groups (47.0 ± 39.2 vs 44.2 ± 34.0, P = nonsignificant). In multivariate analysis, REA patients were more likely admitted to emergency surgery (odds ratio, 1.9; 95% confidence interval, 1.01 ± 3.5) more likely to have a history of immunosuppression (2.7, 1.4 ± 5.3) or higher Acute Physiology Score (1.02; 1.0 ± 1.03) than NREA. Patients who require ICU readmission have a different admission profile than those who do not “bounce back.” Understanding these differences may allow for quality improvement projects such as instituting different discharge criteria for different patient populations.
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