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Author Spotlight: Noninvasive Cerebral Blood Flow Determination in Human Functional Brain Region for Diagnosis of Neurological Disorders
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Region Assisted Sketch Colorization
Summary
This study introduces the Region-Assisted Sketch Coloring (RASC) method to improve automatic sketch colorization. RASC enhances region-wise feature perception, reducing artifacts and expanding color patterns for better results.
Area of Science:
- Computer Vision
- Artificial Intelligence
- Image Processing
Background:
- Automatic sketch colorization is challenging due to its ill-posed nature.
- Existing methods suffer from limited color patterns and artifacts like color bleeding.
- Traditional convolutional structures inadequately utilize regional sketch information.
Purpose of the Study:
- To propose a novel method, Region-Assisted Sketch Coloring (RASC), for improved sketch colorization.
- To address limitations of existing methods by enhancing regional feature utilization.
- To reduce artifacts and expand color patterns in generated images.
Main Methods:
- Introduced an intermediate 'Region Map' representation to capture sketch's regional information.
- Employed a sketch encoder to extract hierarchical feature maps.
- Utilized a coarse-to-fine decoder with Region-based Modulation (RM) blocks and a Region Formulation module.
Main Results:
- The RASC method effectively enhances perception of region-wise features beyond pixel-wise features.
- Accurately captures inner-region local style and inter-region global context dependency.
- Achieved superior performance over state-of-the-art methods on synthetic and real sketch datasets, with fewer artifacts and diverse color patterns.
Conclusions:
- The proposed RASC method significantly advances automatic sketch colorization.
- Explicitly formulating regional information is key to overcoming existing challenges.
- RASC offers a promising direction for generating more realistic and artifact-free colorized sketches.
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