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Chen Tang

Publications and source records attributed to Chen Tang.

3 recordsLinked to original sources

Performance evaluation of partial differential equation models in electronic speckle pattern interferometry and the delta-mollification phase map method.

The ordinary differential equation (ODE) and partial differential equation (PDE) image- processing methods have been applied to reduce noise and enhance the contrast of electronic speckle pattern interferometry fringe patterns. We evaluate the performance of a few representative PDE denoising models quantitatively with two parameters called image fidelity and speckle index, and then we choose a good denoising model. Combining this denoising model with the ODE enhancement method, we make it possible to perform contrast enhancement and denoising simultaneously. Second, we introduce the delta-mollification method to smooth the unwrapped phase map. Finally, based on PDE image processing, delta mollification and some traditional techniques, an approach of phase extraction from a single fringe pattern is tested for computer-simulated and experimentally obtained fringe patterns. The method works well under a high noise level and limited visibility and can extract accurate phase values.

Journal Article↗

Contrast enhancement for electronic speckle pattern interferometry fringes by the differential equation enhancement method.

Electronic speckle pattern interferometry fringe patterns usually have poor contrast so it is important to enhance fringe contrast for the extraction of phase from a single fringe pattern. We present new enhancement methods based on differential equations (called DE enhancement methods) to electronic speckle pattern interferometry fringes. The DE enhancement methods transform the image processing to solve differential equations. With the proposed methods, the visibility of the correlation speckle fringe patterns can be improved significantly. We tested the proposed methods on computer-simulated speckle correlation fringes and experimentally obtained fringes, and we compared the new method with other contrast enhancement techniques. The experimental results illustrate the performance of this approach.

Journal Article↗

[Improvement of the general anesthesia method for microlaryngoscopic surgery with self-retaining laryngoscope: a study on 31 cases].

OBJECTIVE: To investigate the improvement of general anesthesia method for microlaryngoscopic surgery with self-retaining laryngoscope. METHOD: 31 cases with laryngeal lesion who had undergone the microlaryngoscopic operation with self-retaining by anesthesia were reviewed retrospectively from October 1, 1997 to December 31, 2000. RESULT: All patients undergone the microlaryngoscopic surgery and their specimens were examined by pathology, 30 cases were benign lesion, 1 case was squamous cell cancer of the vocal cord. Their voice recovers very satisfactorily except for 2 patients. There were no recurrence after 6-38 months follow-up. CONCLUSION: This study suggests that the general aneathesia with plastic jet ventilating tube controlling respiratory for microlaryngoscopic surgery is easier, more effective and safer than the other methods.

Adolescent↗