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Quantitative ultrasound and the pancreas: Demonstration of early detection capability

机译:定量超声和胰腺:早期检测能力的证明

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Identifying real-time changes in tissues via quantitative ultrasound (QUS) approaches are clinically significant, particularly if QUS changes correspond to early detection of disease or provide early assessment of treatment success. Thus, understanding sequential steps in disease progression is key for success. Cerulein-induced inflammation of the pancreas (pancreatitis) in rodent models causes a significant release of pancreatic enzymes into blood, and it induces interstitial edema and inflammatory cell infiltration into the pancreas. This degree of pancreatitis is relatively mild: all animals survive the induction of pancreatitis that resolves itself in ~7 days. This makes this model an excellent one for studying ultrasonic attenuation coefficient (AC: dB/cm-MHz) and backscatter coefficient (BSC: 1/cm-sr) over time. The edematous stroma, cell shrinkage and death, followed by repopulation by dedifferentiated acinar cells, has certain similarities with the morphologies of some forms of pancreatic carcinoma (PCa).
机译:通过定量超声(QUS)方法识别组织中的实时变化在临床上很重要,特别是如果QUS变化对应于疾病的早期检测或提供治疗成功的早期评估。因此,了解疾病进展中的顺序步骤是成功的关键。在啮齿动物模型中,由小分子蛋白诱导的胰腺炎症(胰腺炎)导致胰腺酶大量释放到血液中,并诱导组织间水肿和炎症细胞浸入胰腺。胰腺炎的程度相对较轻:所有动物在诱导胰腺炎后都能存活,并在约7天之内自行消退。这使得该模型成为研究随时间推移的超声衰减系数(AC:dB / cm-MHz)和反向散射系数(BSC:1 / cm-sr)的极佳模型。水肿性间质,细胞萎缩和死亡,然后由去分化的腺泡细胞重新聚集,与某些形式的胰腺癌(PCa)的形态具有某些相似性。

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