[Imaging of the small intestine using an aqueous solution of methylcellulose].
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Biomedical subjects
Publications and source records attributed to H Fuchs.
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An online FORTRAN program for the quantitative analysis of energy dispersive X-ray spectra from thin biological specimens is presented. The methods of background suppression by digital filtering and peak deconvolution by linear least-squares fitting with measured peak profiles are used. The continuum quantitation method for spectra from thin biological sections as proposed by Hall is applied. The performance of the computer program, utilizing the facilities of a disk operating system, is demonstrated. The routines were optimized for speed, resulting in a run-time of less than 5 seconds on a 16 bit minicomputer for a full quantitation for 7 elements of an energy dispersive thin section X-ray spectrum, including an optional absorption correction. Since no assembly language subroutines are implemented, the restrictions for the use of the program with different computer systems are minimized.
Monomeric C1s (Mr, 85,000; s20,w, 4.3S), a subcomponent of first component of complement (C1), the dimer (Mr, 170,000; s20,w, 6.7 S) of C1r, another subcomponent, and the tetrameric complex (C1r,C1s)2 (Mr, 340,000; s20,w, 8.7 S) are elongated molecules. Hydrodynamic equivalents of cylindrical shape have a diameter of 3.3 nm and lengths of 20 nm for C1s, 36 nm for (C1r)2, and 64 nm for (C1r,C1s)2. In electron micrographs the C1r,C1s complex appears as a chain composed of six to eight globular domains with a contour length of 51 nm. A structure is proposed in which (C1r)2 forms a core to which C1s protomers are associated at both ends. The C1 complex (s20,w, 16.3 S) reconstituted from C1q, C1r, and C1s dissociates under the conditions used for electron microscopy. Some features of the C1 complex are revealed in the dissociation products.
The recent development of versatile instrumentation has removed a serious obstacle for the use of frozen-hydrated bulk specimens in studies of biological problems. Methods for freezing, fracturing, mounting, etching, and coating are now known and offer a wide spectrum of technical possibilities to choose from for a particular application. However, progress in biological studies is still limited by the problems encountered during the analysis. In order to keep the X-ray source volume commensurate with the size of cells, low accelerating voltages have to be used. Poor peak to background ratios are, thereby, obtained and the sensitivity of the method is deteriorated. Superficial freeze-drying improves the peak to background ratios, but it is no expedient because of the difficulty in determining the degree of dehydration. The most serious problem is specimen charging which occurs even after coating. The degree of charging is not uniform, neither within the sample nor between specimen and standard. Therefore, the determination of relative concentrations becomes uncertain.
The computed tomography gives direct visualisation of the pancreas in a transverse section. Form, size, and changed consistency of the organ can be diagnosed. Being a non-invasive technique it does not stress the patient, and can be applied to the severly ill with acute haemorrhagic pancreatitis. Other indications are chronic pancreatitis, pancreatic abscess, pseudo-cyst and cancer. The differential diagnosis of cancer, especially from chronic pancreatitis, may be difficult. Further methods of investigation such as arteriography or endoscopic retrograde pancreatography may also have to be used.
The transmural inflammation in Crohn's disease, the variable localization of the disease and the tendency to a descending spread, all lead to a multitude of possible fistulae, the presence of which is often difficult to demonstrate. This is a report on 5 unusual fistula systems: in 2 cases entero-enteral (one of which with hydronephrosis), 1 case of rectovaginal fistula, 1 case of a branched fistula system in the right buttock, 1 case of fistulae between an abscess system in the spleen "bed" and the greater curvature of the stomach. A radiological and endoscopic diagnosis is important since surgically opened fistula systems heal only with great difficulty or not at all.
1. Total lipids, total cholesterol, cholesterol esters, phospholipids, triglycerides and free fatty acids as well as the fatty acids profiles of the different lipid classes were determined in serum, lipomatous and normal adipose tissue. Triglycerides were elevated in patient L's serum. The distribution of serum lipoproteins in this patient's serum showed a type IV according to Fredrickson. All other lipid parameters were within the normal range. Palmitoleic acid was increased nearly in all lipid fractions of the patients' sera as well as in the lipids of lipomatous subcutaneous adipose tissue. 2. The lipomatous adipose tissues of the patients showing no histological abnormalities revealed higher levels of cyclic AMP than normal subcutaneous adipose tissue. 3. Serum uric acid was normal (patient E.), between the normal and pathological range (patient L.) and elevated (patient W.). Urinary uric acid excretion was increased in all three patients. 4. 14C-glycine was overincorporated into urinary uric acid in all three patients. 5. Adenine phosphoribosyltransferase activities in the hemolysates were within the normal range. A decrease of hypoxanthine-guanine phosphoribosyltransferase activities could be demonstrated in two patients' (e., w.) erythrocytes. Erythrocyte phosphoribosylpyrophate synthetase activity was slightly increased in patient L.'s and twice the normal value in patient W.'s erythrocytes.
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