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Biomedical subjects

Ming Wan

Publications and source records attributed to Ming Wan.

4 recordsLinked to original sources

[Effect of the compound of traditional Chinese drugs on gene expression of renal endothelin and its receptor of experimental diabetic nephropathy].

OBJECTIVE: To study the effect of the Compound of traditional Chinese drugs and Benazepril on gene expression of renal endothelin and its receptor of experimental diabetic nephropathy(DN). To discove the mechanism of the compound of traditional Chinese drugs in treating DN. METHOD: Streptozotocin DN model was built and influenced with the compound of traditional Chinese drugs and Benazepril. The changes of Upro, Glu, HbA1C and (PT-PCR) mRNA expression levels of ET-1, ETA-R of the renal cortex were tested, and thus the histopathological character of the kidney was analysed. RESULT: The compound of traditional Chinese drugs and Benazepril have significant difference from normal saline in the improvement of Upro, Glu, HbA1C. The compound of traditional Chinese drugs have significant difference from Benazepril in the improvement of Glu, HbA1C. The mRNA expression level of ET-1, ETA-R of the renal cortex of DN model was raised. After influenced by the compound of traditional Chinese drugs and Benazepril, the over-expression level de-creased (still higher than normal control ones). The compound of traditional Chinese drugs were more effective than Benazepril to inhibit the proliferation of the stalk region and the third cells. CONCLUSION: ET takes part in the process of diabetic glo-Merulosclerosis. Both the compound of traditional Chinese drugs and Benazepril can influence the expression quantity from the level of gene transcription of ET and its receptor. The compound of traditional Chinese drugs can not only reduce urinary albumin of DN, but also improve blood glucose, glycosylated hemoglubin. And it can inhibit nonenzymatic glucosylation of protein as well as the proliferation of the stalk region and the third cells.

Animals↗

Automatic centerline extraction for virtual colonoscopy.

In this paper, we introduce a concise and concrete definition of an accurate colon centerline and provide an efficient automatic means to extract the centerline and its associated branches (caused by a forceful touching of colon and small bowel or a deep fold in twisted colon lumen). We further discuss its applications on fly-through path planning and endoscopic simulation, as well as its potential to solve the challenging touching and colon collapse problems in virtual colonoscopy. Experimental results demonstrated its centeredness, robustness, and efficiency.

Algorithms↗

Interactive stereoscopic rendering of volumetric environments.

We present an efficient stereoscopic rendering algorithm supporting interactive navigation through large-scale 3D voxel-based environments. In this algorithm, most of the pixel values of the right image are derived from the left image by a fast 3D warping based on a specific stereoscopic projection geometry. An accelerated volumetric ray casting then fills the remaining gaps in the warped right image. Our algorithm has been parallelized on a multiprocessor by employing effective task partitioning schemes and achieved a high cache coherency and load balancing. We also extend our stereoscopic rendering to include view-dependent shading and transparency effects. We have applied our algorithm in two virtual navigation systems, flythrough over terrain and virtual colonoscopy, and reached interactive stereoscopic rendering rates of more than 10 frames per second on a 16-processor SGI Challenge.

Algorithms↗