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H Over

Publications and source records attributed to H Over.

At least 19 recordsLinked to original sources

Atomic-scale structure and catalytic reactivity of the RuO(2)(110) surface

The structure of RuO(2)(110) and the mechanism for catalytic carbon monoxide oxidation on this surface were studied by low-energy electron diffraction, scanning tunneling microscopy, and density-functional calculations. The RuO(2)(110) surface exposes bridging oxygen atoms and ruthenium atoms not capped by oxygen. The latter act as coordinatively unsaturated sites-a hypothesis introduced long ago to account for the catalytic activity of oxide surfaces-onto which carbon monoxide can chemisorb and from where it can react with neighboring lattice-oxygen to carbon dioxide. Under steady-state conditions, the consumed lattice-oxygen is continuously restored by oxygen uptake from the gas phase. The results provide atomic-scale verification of a general mechanism originally proposed by Mars and van Krevelen in 1954 and are likely to be of general relevance for the mechanism of catalytic reactions at oxide surfaces.

Journal Article↗

Transrectal ultrasound in the diagnosis and management of inflammatory bowel disease.

BACKGROUND AND STUDY AIMS: To aim of the present study was to determine the value of transrectal ultrasonography (TRUS) in the assessment of disease activity in ulcerative colitis patients, and in differentiating between mucosal inflammation and transmural inflammation. PATIENTS AND METHODS: TRUS examinations were used to study 30 control individuals and 76 patients with inflammatory bowel disease, including 50 cases of ulcerative colitis and 26 of Crohn's disease. A rigid linear endorectal probe was used to examine the rectal wall. RESULTS: In the 30 control individuals, the rectal wall showed five layers, with a mean total diameter of 2.6 mm. There were significant differences between patients with quiescent ulcerative colitis, active ulcerative colitis, and control individuals with regard to the total rectal wall thickness (P<0.001), submucosal thickness (P<0.001) and mucosal thickness (P<0.001). Using cut-off values, differentiation between active ulcerative colitis and remission ulcerative colitis was found to be 100% specific and 73 % sensitive for submucosal thicknesses. TRUS revealed a 100% specificity in differentiating between remission ulcerative colitis and control cases based on the total rectal wall thickness, submucosal, and mucosal thicknesses. In the differential diagnosis of active and remission ulcerative colitis, an increase in submucosal wall thickness and the existence of arterial and venous capillary flow in the submucosa were found to be specific and more sensitive than the other parameters. TRUS examination revealed transmural inflammation in 21 of the 26 Crohn's disease patients, and mucosal inflammation in all 50 of the ulcerative colitis patients. CONCLUSION: TRUS is a reliable and easy method of assessing ulcerative colitis activity and differentiating between rectal diseases.

Adult↗