STRUCTURED

Fazer miniatura de coisas/moleculas

Contributed by rmfsantos@uefs.br

Improved by Laravel Company · 2026-09-07

Improved prompt:

Prompt:
${input_object}: (Any complex physical object or technological artifact)
${input_language}: ${language_selected}

System Instruction:
Produce a hyper-detailed, scientifically accurate, and artistically refined "Autopsy View" cross-section diorama based on the ${input_object} specified above. Utilize the following structured approach to procedurally dissect and visualize the object:

Semantic Analysis & Annotation:

  1. Analyze the ${input_object}. Identify its ACTUAL physical, biological, or mechanical structure. Break it down into 3 logical and realistic structural layers that make anatomical or engineering sense for the given object.

  2. Conduct a thorough scientific or technical naming analysis. For each layer, determine the most accurate and specific scientific or technical term available in the domain of the object's construction. Translate these terms into ${input_language} with 100% accuracy, preserving the technical nuance.

Container & Layout:

  • Environment: Set the scene on a clean, white medical/engineering laboratory examination table with sterile blue paper or transparent film lining the surface, allowing the object to be clearly visible from below.
  • Arrangement: Organize the dissected layers in a strict, left-to-right anatomical or technical chart format, ensuring a clear progression from the external view on the far left, through cross-sections in the center, to magnified details on the right.

Typography & Text Integration:

  • Text Labels: The scientific or technical labels (in ${input_language}) must be integrated directly into the image, floating cleanly above or beside their respective layers. Use a consistent, professional medical or engineering diagram typography style.
  • Connection Lines: Include glowing Magenta Scan Lines connecting the dissected parts. Label these lines as "Scanner" or "MRI-scan" (translated to ${input_language}) using the same typography style.

Micro-Narrative & Interactive Elements:

  • Scale and Perspective: The ${input_object} must be depicted as significantly larger than the human researchers, treating it as a patient or a highly complex artifact on an operating table.
  • Researchers: Depict dozens of figures in 1:87 (HO Scale) or 1:64 (N Scale) miniature, wearing white lab coats, surgical masks, and magnifying headlamps. Include a variety of ethnic and gender representations.
  • Equipment: Include scale-appropriate tools such as microscopes, tiny scalpels, laser cutters, and MRI machines or other scanners that are actively interacting with the object, casting magnified images or scan results onto nearby display screens.
  • Interaction: The figures must be actively engaged in analyzing and diagnosing the object through a variety of interactions, such as taking samples, consulting holographic or physical charts displaying text in ${input_language}, and discussing findings with colleagues.

Visual Syntax & Material Physics:

  • Material Rendering: Utilize photorealistic rendering techniques to depict the object's ACTUAL materials accurately, contrasting them with the sterile, clean materials of the laboratory equipment. For organics, include moisture, textures, and translucency; for metals, include metallic reflections and scratches; for textiles, include fibrous textures and patterns.
  • Lighting & Shadows: Use soft, even lighting to cast shadows that indicate a bright, surgical operating theater environment. Shadows should be cast by both the object and the equipment onto the sterile paper or surface.

Output & Technical Requirements:

  • Output Format: ONE image file only.
  • Aspect Ratio: 1:1 square aspect ratio to fit standard medical or technical report layouts.
  • Resolution: 8k resolution (7680x7680 pixels or equivalent) to ensure the highest level of detail is preserved for both the object and the miniature figures.
  • Style: "Gray's Anatomy" or Technical Blueprint aesthetic, combining the rigor of scientific illustration with the visual appeal of a detailed architectural drawing.

Please ensure the image adheres strictly to these guidelines, providing a masterpiece of scientific visualization that captures the essence of the ${input_object} and its internal structure.

Original prompt (before our improvements)

Prompt: ${input_object}: (anything you want to be the subject) ${input_language}: English (any language you want) --- System Instruction: Generate a hyper-realistic, scientifically accurate "Autopsy" cross-section diorama based on the ${input_object} provided above. Use the following logic to procedurally dissect the object and populate the scene: Semantic Analysis & Text Annotations: Analyze the ${input_object} and determine its ACTUAL physical, biological, or mechanical structure. Break it down into 3 logical and realistic structural layers. ALL visible text labels, UI overlays, and diagram annotations in the image MUST be written in ${input_language}: - Layer 1 (Outer Shell/Barrier): The outermost protective barrier, casing, or skin. Label this with its scientifically accurate or technical name (translated to ${input_language}). - Layer 2 (Intermediate/Functional Layer): The secondary layer, internal mechanism, functional tissue, or core substance. Label this with its scientifically accurate or technical name (translated to ${input_language}). - Layer 3 (Inner Core/Network): The innermost core, central structure, or internal transport network. Label this with its scientifically accurate or technical name (translated to ${input_language}). Container: - The Surface: A clean, white medical/engineering examination table with sterile blue paper lining. Layout & Typography: - The dissected layers must be arranged in a strict Anatomical/Technical Chart format (left to right progression). The external view on the far left, cross-sections in the center, magnified details on the right. - Text Integration: The anatomical/structural text labels (in ${input_language}) must float cleanly above or beside their respective layers, looking like professional medical or engineering diagrams. - The Connections: Glowing Magenta Scan Lines must connect the dissected parts. Label these lines as "Scanner" or "MRI-scan" (translated to ${input_language}). The Micro-Narrative: CRITICAL: The object is massive compared to the scientists/engineers. Treat the object like a patient or a highly complex artifact on an operating table. - The Researchers: Dozens of tiny 1:87 Scale (HO Scale) Researchers in white lab coats, surgical masks, and magnifying headlamps. - The Equipment: Include scale-appropriate tools (e.g., microscopes, tiny scalpels, laser cutters, MRI machines scanning the object). - The Interaction: The figures must be actively analyzing and diagnosing (e.g., taking samples, consulting holographic charts displaying text in ${input_language}). Visual Syntax & Material Physics: - Material Accuracy: Photorealistic rendering of the object's ACTUAL materials (e.g., glistening moisture for organics, metallic reflections for machines, fibrous textures for woven items) contrasting with sterile medical/lab equipment. - Shadows: Cast soft and even, indicating bright, surgical operating theater lighting. Output: ONE image, 1:1 Aspect Ratio, Macro Photography, "Gray's Anatomy" or Technical Blueprint Aesthetic, 8k Resolution.