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A photorealistic image of a lab setup with a digital microscope connected to a laptop displaying an AI interface for microplastic detection.

A photorealistic image of a lab setup with a digital microscope connected to a laptop displaying an AI interface for microplastic detection.

A highly detailed, futuristic scientific laboratory scene showing an AI-powered microplastic detection system in action. The focus is on a magnified microscope imaging station analyzing a filter membrane from drinking water. The membrane is placed under a USB digital microscope connected to a laptop. The membrane contains tiny glowing microplastic particles stained with Nile Red dye, emitting bright fluorescent colors such as neon orange, yellow, and red against a dark background. The particles vary in shape (fibers, fragments, irregular shards) and size, clearly visible under magnification. Next to the microscope, a modern laptop screen displays an AI computer vision interface running YOLOv8 object detection. The screen shows bounding boxes around detected microplastic particles with labels such as “plastic fragment,” “microfiber,” and “particle,” along with confidence scores (e.g., 0.92, 0.87). A real-time counter shows total microplastics detected and a simple analytics panel showing filtration efficiency comparison. The interface looks like a clean, advanced scientific dashboard with graphs, detection heatmaps, and numerical summaries. The UI is futuristic but realistic, similar to research lab software. The environment is a low-cost school laboratory setup: simple desk, compact microscope, filter membrane sample plates, small UV 365nm LED flashlight illuminating the sample, and basic lab tools. Despite the simplicity, the system looks highly innovative due to the AI Voir plus