Background Acute necrotizing pancreatitis (ANP) is associated with higher mortality and morbidity. We need a method which is accurate in predicting the prognosis, and when applied early in the disease process, can help in closer monitoring and early initiation of treatment for at-risk patients. Objectives The aim of this prospective study was to assess the extra pancreatic necrosis (EPN) volume in patients with ANP and compare it with outcome variables such as organ failure, death and need for intervention as well as to compare the predictive power of EPN volume with modified CT severity index (CTSI). Materials and Methods The study had 48 patients with clinical diagnosis of acute pancreatitis, who underwent Contrast enhanced CT (CECT) between 3–6 days of onset. In all these patients, EPN volume (in cubic centimetre) and modified CTSI score were calculated and compared with the patient outcome parameters such as duration of hospital/ICU stay, need for percutaneous/surgical intervention, evidence of infection and organ failure. The results were compared with assess the predictive power of EPN volume. Statistical analysis The analysis was done in SPSS version 16.0 for windows. Pearson Correlation was used to assess the significant relationship between selected objective variables. Results EPN volume (>/= to 360 cc) had a statistically significant correlation with outcome parameters as well as in predicting overall organ failure. In our study, Modified CTSI had no significant correlation with the above mentioned factors. Conclusions The volume of EPN calculated between 3rd and 6th day of onset of symptoms showed a significant correlation with the outcome in patients with ANP.
Objectives The aims of our study were to assess the comparability of conventional unenhanced images (CUIs) of hepatopancreaticobiliary system with virtual unenhanced images (VUIs) derived from arterial and portal venous phases acquired in a third-generation, dual-source, dual-energy CT (DECT), and also to assess the best dataset among these VUIs. We also calculated the radiation effective dose (ED) reduction by eliminating noncontrast acquisition. Materials and Methods 60 patients were included in our study. Unenhanced images in single energy and contrast-enhanced images in dual-energy mode were acquired. Arterial virtual unenhanced (AVU) and portal virtual unenhanced (PVU) images were generated and compared with CUI, using both objective and subjective methods. The ED was calculated separately for each phase. Statistical significance between difference in mean attenuation values were analyzed using ANOVA and unpaired student t-test. Results In our study, the difference in mean attenuation of liver, spleen, and pancreas between the three phases—CU, AVU, and PVU—were insignificant with p-value > 0.05. This indicates that the values were comparable. Among the VUI, AVU images were statistically superior in image quality. Elimination of noncontrast CT from triple phase abdominal imaging can achieve an average ED reduction of 39%. Conclusions We conclude that VUI generated in third-generation, dual-source DECT has diagnostic image quality and can replace the CUI in triple-phase studies, with a mean ED reduction by 39%. The VUI obtained from arterial phase is superior to those obtained from portal venous phase.
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