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Annas GJ 《Lancet》2008,371(9627):1832-1833
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ERCP and MRCP--when and why   总被引:8,自引:0,他引:8  
Since the introduction of endoscopic retrograde cholangiopancreatography (ERCP) in the 1970s, gastroenterologists have a wide spectrum of diagnostic and therapeutic options in the biliopancreatic ductal system at their disposal. With its arrival in the 1990s, magnetic resonance cholangiopancreatography (MRCP) developed as a potent diagnostic tool in biliopancreatic pathology. Currently, MRCP is widely replacing diagnostic ERCP and thereby avoiding complications related to endoscopic technique.We summarize evidence-based data and demonstrate indications and differential indications for MRCP and ERCP in pancreatic disease. Complications related to the procedures and possible medical prevention are discussed. The feasibility of interventional endoscopy in pancreatic disease is reported in detail. The role of gastroenterologists in performing MRCP is outlined on the basis of practical examples.  相似文献   

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Nonequilibrium thermodynamics is combined with compartmental analysis to interpret albumin sieving and tracer experiments in terms of a permeability-surface product PS (permeation) and a solvent drag reflection coefficient σf (convection) for various blood-tissue barriers. The human whole-body albumin data of Lassen, Parving, and Rossing (Lassen, Parving, and Rossing, Microvasc. Res.7, i–iv (1974)), modified for nonliver tissues by Johnson and Levitt (Johnson &; Levitt, Microvasc. Res.9, 141 (1975)) lead to P ~ 1.8 × 10?8 cm sec?1 (based on a surface area per unit plasma volume of 700 cm?1) and to σf ~ 0.9, which imply, in agreement with Johnson and Levitt, that permeation is the dominant nonliver blood-tissue transport mechanism for albumin in the normal resting human. Similar values are derived from the dog paw muscle data of Garlick and Renkin (Garlick and Renkin, Amer. J. Physiol.219, 1595–1605 (1970)). The Casley-Smith (Casley-Smith, Microvasc. Res.9, 43–48 (1975)) mechanism of uphill albumin transport is verified as possible. It is tentatively inferred that lymph formation in resting tissue does not result from a small difference between a large fluid (volumetric) filtration and an almost equally large fluid reabsorption, either in the same capillary (Starling) or between different capillaries (Zweifach) (Zweifach, Circ. Res.34, 858–866 (1974)). Rather, reabsorption is negligibly small relative to filtration, and lymph flow is comparable to volumetric filtration.  相似文献   

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