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  • Home
  • Tutorial
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  • News
  • About SnapMingle

    • SnapMingle
    • Founder
    • Brand
    • Stories
    • Contact
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Microscopic Diagnostic System: Multi-Scale Cellular Analysis Report (ระบบวิเคราะห์จุลทรรศน์อัจฉริยะ: สร้างรายงานเจาะลึกโครงสร้างเซลล์จากมาโครสู่โมเลกุล)
Prompt-112

Microscopic Diagnostic System: Multi-Scale Cellular Analysis Report (ระบบวิเคราะห์จุลทรรศน์อัจฉริยะ: สร้างรายงานเจาะลึกโครงสร้างเซลล์จากมาโครสู่โมเลกุล)

[INPUT OBJECT IMAGE]: {{USER_UPLOADED_IMAGE}}
[INPUT OBJECT TYPE]: ดอกบัว
[INPUT LANGUAGE]: Thai
---

System Instruction:
Generate a hyper-realistic, scientifically accurate "Microscopic Diagnostic Report" 
based on the [INPUT OBJECT IMAGE] and [INPUT OBJECT TYPE] provided above.

CRITICAL ACCURACY REQUIREMENT:
Analyze [INPUT OBJECT IMAGE] with maximum microscopic and structural precision.
All cellular structures, surface morphology, molecular arrangement, pigmentation,
and material microstructure MUST reflect the actual scientific reality of the object.
Cross-reference [INPUT OBJECT TYPE] to identify and label all scientifically correct
microscopic components at each magnification level.
Accuracy threshold: 99.99%. No fabricated structures. No speculative science.
NO human figures. NO researchers. NO diorama elements anywhere in the image —
this is a pure clinical microscopic diagnostic output only.

OBJECT CLASSIFICATION ENGINE:
Auto-detect object category from [INPUT OBJECT TYPE] and apply the correct
microscopy technique:

  IF PLANT / ORGANIC:
    → Apply: Confocal Fluorescence Microscopy + Bright-field histology
    → Focus: Cell wall structure, chloroplast distribution, stomata, 
             vascular bundle cross-section, intercellular space
    → Signal type: Autofluorescence overlay (green/red/blue channel separation)
    → Staining simulation: Safranin & Fast Green (lignin vs cellulose contrast)

  IF MINERAL / CRYSTAL / GEMSTONE:
    → Apply: Polarized Light Microscopy (PLM) + Scanning Electron Microscopy (SEM)
    → Focus: Crystal lattice, grain boundaries, inclusion pockets,
             cleavage planes, birefringence patterns
    → Signal type: Cross-polarized interference color overlay
    → Surface: SEM secondary electron contrast (topographic detail)

  IF SYNTHETIC MATERIAL / PLASTIC / METAL / COMPOSITE:
    → Apply: SEM (Scanning Electron Microscopy) + EDS elemental mapping
    → Focus: Surface grain structure, polymer chain alignment, 
             fiber weave pattern, fracture morphology, void distribution
    → Signal type: Elemental color mapping (each element = unique color)
    → Contrast: Backscattered electron contrast (density differentiation)

  IF FOOD / FRUIT / BIOLOGICAL TISSUE:
    → Apply: Histological staining simulation + Fluorescence microscopy
    → Focus: Cell membrane integrity, starch granules, sugar crystal formation,
             fiber network, oil droplet distribution
    → Signal type: H&E staining simulation (pink cytoplasm, purple nucleus)
    → Overlay: Water activity map, nutrient density gradient

OUTPUT LAYOUT (Strict Grid — 16:9 landscape):

┌──────────────────────────────────────────────────────────────────┐
│  [ภาพต้นฉบับ]      หัวข้อที่ตรวจ: {{INPUT OBJECT TYPE}}         │
│  (small box,        ประเภท: {{AUTO-CLASSIFIED CATEGORY}}         │
│   top-left)         เทคนิค: {{AUTO-SELECTED MICROSCOPY TYPE}}    │
├─────────────────────────┬────────────────────────────────────────┤
│  ผลกล้องจุลทัศน์ มุมที่ 1│  ผลกล้องจุลทัศน์ มุมที่ 2            │
│  MACRO SURFACE VIEW     │  LOW MAGNIFICATION (10x–40x)           │
│  กำลังขยาย: 1x–5x       │  กำลังขยาย: 10x–40x                   │
├─────────────────────────┼────────────────────────────────────────┤
│  ผลกล้องจุลทัศน์ มุมที่ 3│  ผลกล้องจุลทัศน์ มุมที่ 4            │
│  HIGH MAGNIFICATION     │  ULTRA-MICRO / MOLECULAR LEVEL         │
│  กำลังขยาย: 100x–400x   │  กำลังขยาย: 1000x–10000x              │
└─────────────────────────┴────────────────────────────────────────┘

PANEL RENDERING SPECIFICATIONS:

Panel 1 — Macro Surface View (มุมที่ 1 | 1x–5x):
- Stereo microscope aesthetic — shallow depth of field, photorealistic surface
- Show full object surface texture at near-naked-eye scale
- Ultra-sharp focus on surface topology: bumps, pores, ridges, cracks, coatings
- Lighting: raking oblique light from one side to reveal surface relief
- Background: clean black specimen stage
- Thai labels: overall surface feature names with hairline leader lines
- Include: magnification indicator circle showing region selected for Panel 2
- Scale bar: mm range
- Color rendering: true-color photorealistic — no false color at this level
- NO human figures of any kind

Panel 2 — Low Magnification (มุมที่ 2 | 10x–40x):
- Bright-field or stereo compound microscope aesthetic
- Reveal first layer of internal/surface microstructure
- Show: cell arrangement, grain pattern, fiber orientation, crystal facets
- Depth of field: shallow — sharp center, soft bokeh at edges
- Apply appropriate staining or contrast technique per object classification
- Thai labels: microstructural feature names (scientifically accurate)
- Include: zoom-in indicator box linking back to Panel 1 region
- Scale bar: 100μm–1mm range
- Vignette border: subtle circular darkening (authentic microscope optics)
- NO human figures of any kind

Panel 3 — High Magnification (มุมที่ 3 | 100x–400x):
- Compound light microscope or confocal/fluorescence aesthetic
- Reveal individual cells, crystal sub-units, polymer chains, fiber strands
- Apply full staining simulation:
    Organic: fluorescence channels (nucleus=blue, cytoplasm=green, wall=red)
    Mineral: cross-polarized interference colors
    Synthetic: SEM grayscale with EDS elemental color overlay
    Food/tissue: H&E simulation (purple nuclei, pink cytoplasm)
- Thai labels: subcellular / sub-grain structures (scientifically correct names)
- Include: zoom-in indicator box linking to Panel 2 region
- Scale bar: 10μm–100μm range
- Circular vignette frame: authentic optical microscope field of view
- NO human figures of any kind

Panel 4 — Ultra-Micro / Molecular Level (มุมที่ 4 | 1000x–10000x):
- SEM (Scanning Electron Microscopy) or TEM (Transmission Electron Microscopy) aesthetic
- Pure clinical scientific visualization — grayscale SEM base with false-color overlay
- Reveal: molecular arrangement, crystal lattice rows, cell membrane ultrastructure,
          polymer backbone, atomic surface topology
- Contrast: SEM secondary electron contrast for topography
            OR TEM bright-field for internal ultrastructure
- False color overlay: highlight key molecular/atomic features
  (each material component = unique assigned color)
- Thai labels: molecular/atomic structure names (scientifically correct)
- Include: EDS spectrum bar at bottom of panel (elemental composition chart)
- Scale bar: 1nm–1μm range
- Background: authentic SEM dark gray gradient
- Glowing cyan scan reference lines connecting key structural points,
  labeled "Micro-scan" in Thai at each point
- NO human figures. NO researchers. NO lab coats. NO diorama elements.
  This panel is 100% object-only ultra-microscopic clinical visualization.

MAGNIFICATION PROGRESSION LOGIC:
Each panel must show a logical zoom-in from the previous:
Panel 1 → Panel 2 → Panel 3 → Panel 4
A small indicator box/circle in each panel marks the EXACT region
that is magnified in the next panel, creating a clear zoom chain.

STRUCTURE ANNOTATION LOGIC (Auto-generate based on object type):

  Structure labels → {{scientifically correct name in Thai at each scale}}

  Example — Leaf / ใบไม้:
    Panel 1: พื้นผิวใบ (Leaf Surface), เส้นใบ (Leaf Vein)
    Panel 2: เซลล์ผิวใบ (Epidermal Cell), ปากใบ (Stomata)
    Panel 3: คลอโรพลาสต์ (Chloroplast), เซลล์ผนัง (Cell Wall)
    Panel 4: เยื่อไทลาคอยด์ (Thylakoid Membrane), กรานา (Grana Stack)

  Example — Diamond / เพชร:
    Panel 1: ผิวหน้าเจียระไน (Faceted Surface)
    Panel 2: ขอบผลึก (Crystal Boundary), รอยแตกแนว (Cleavage Line)
    Panel 3: โครงผลึกคาร์บอน (Carbon Crystal Lattice)
    Panel 4: พันธะโคเวเลนต์คาร์บอน (C-C Covalent Bond Network)

  Example — Carbon Fiber / คาร์บอนไฟเบอร์:
    Panel 1: ผิวเรซิน (Resin Surface)
    Panel 2: การถักทอเส้นใย (Fiber Weave Pattern)
    Panel 3: หน้าตัดเส้นใย (Fiber Cross-Section), โพรงอากาศ (Void)
    Panel 4: โครงสร้างกราฟีน (Graphene Layer Stack)

  Example — Granite / หินแกรนิต:
    Panel 1: ผิวแร่ธาตุ (Mineral Surface Texture)
    Panel 2: ขอบแร่ผสม (Mineral Grain Boundary)
    Panel 3: ผลึกควอตซ์-เฟลด์สปาร์ (Quartz-Feldspar Crystal)
    Panel 4: โครงซิลิเกต (Silicate Tetrahedral Network)

GLOBAL VISUAL STANDARDS:
- Background: Pure black (#000000) throughout — authentic microscope viewer interface
- All text and labels: Thai language only, clean sans-serif font
- Panel borders: thin white 1px clinical grid lines separating all 4 panels
- Top metadata bar: Object type | Microscopy technique | Magnification range | Scale
- Bottom findings bar: 1-line Thai summary of key microscopic finding per panel
- Original image thumbnail (top-left corner): clean white border, labeled "ภาพต้นฉบับ"
- Title centered at top: "หัวข้อที่ตรวจ: [INPUT OBJECT TYPE]"
- Watermark (bottom-right, subtle): "Microscopic Diagnostic System"
- Zero human figures anywhere in the entire image — clinical output only

ASPECT RATIO: 16:9
RESOLUTION: 8K
STYLE: Authentic scientific microscopy report — 
       Stereo Microscope + Compound Light + Confocal Fluorescence + SEM/TEM aesthetic
Published: February 22, 2026
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Full Prompt

prompt.txt
[INPUT OBJECT IMAGE]: {{USER_UPLOADED_IMAGE}}
[INPUT OBJECT TYPE]: ดอกบัว
[INPUT LANGUAGE]: Thai
---

System Instruction:
Generate a hyper-realistic, scientifically accurate "Microscopic Diagnostic Report" 
based on the [INPUT OBJECT IMAGE] and [INPUT OBJECT TYPE] provided above.

CRITICAL ACCURACY REQUIREMENT:
Analyze [INPUT OBJECT IMAGE] with maximum microscopic and structural precision.
All cellular structures, surface morphology, molecular arrangement, pigmentation,
and material microstructure MUST reflect the actual scientific reality of the object.
Cross-reference [INPUT OBJECT TYPE] to identify and label all scientifically correct
microscopic components at each magnification level.
Accuracy threshold: 99.99%. No fabricated structures. No speculative science.
NO human figures. NO researchers. NO diorama elements anywhere in the image —
this is a pure clinical microscopic diagnostic output only.

OBJECT CLASSIFICATION ENGINE:
Auto-detect object category from [INPUT OBJECT TYPE] and apply the correct
microscopy technique:

  IF PLANT / ORGANIC:
    → Apply: Confocal Fluorescence Microscopy + Bright-field histology
    → Focus: Cell wall structure, chloroplast distribution, stomata, 
             vascular bundle cross-section, intercellular space
    → Signal type: Autofluorescence overlay (green/red/blue channel separation)
    → Staining simulation: Safranin & Fast Green (lignin vs cellulose contrast)

  IF MINERAL / CRYSTAL / GEMSTONE:
    → Apply: Polarized Light Microscopy (PLM) + Scanning Electron Microscopy (SEM)
    → Focus: Crystal lattice, grain boundaries, inclusion pockets,
             cleavage planes, birefringence patterns
    → Signal type: Cross-polarized interference color overlay
    → Surface: SEM secondary electron contrast (topographic detail)

  IF SYNTHETIC MATERIAL / PLASTIC / METAL / COMPOSITE:
    → Apply: SEM (Scanning Electron Microscopy) + EDS elemental mapping
    → Focus: Surface grain structure, polymer chain alignment, 
             fiber weave pattern, fracture morphology, void distribution
    → Signal type: Elemental color mapping (each element = unique color)
    → Contrast: Backscattered electron contrast (density differentiation)

  IF FOOD / FRUIT / BIOLOGICAL TISSUE:
    → Apply: Histological staining simulation + Fluorescence microscopy
    → Focus: Cell membrane integrity, starch granules, sugar crystal formation,
             fiber network, oil droplet distribution
    → Signal type: H&E staining simulation (pink cytoplasm, purple nucleus)
    → Overlay: Water activity map, nutrient density gradient

OUTPUT LAYOUT (Strict Grid — 16:9 landscape):

┌──────────────────────────────────────────────────────────────────┐
│  [ภาพต้นฉบับ]      หัวข้อที่ตรวจ: {{INPUT OBJECT TYPE}}         │
│  (small box,        ประเภท: {{AUTO-CLASSIFIED CATEGORY}}         │
│   top-left)         เทคนิค: {{AUTO-SELECTED MICROSCOPY TYPE}}    │
├─────────────────────────┬────────────────────────────────────────┤
│  ผลกล้องจุลทัศน์ มุมที่ 1│  ผลกล้องจุลทัศน์ มุมที่ 2            │
│  MACRO SURFACE VIEW     │  LOW MAGNIFICATION (10x–40x)           │
│  กำลังขยาย: 1x–5x       │  กำลังขยาย: 10x–40x                   │
├─────────────────────────┼────────────────────────────────────────┤
│  ผลกล้องจุลทัศน์ มุมที่ 3│  ผลกล้องจุลทัศน์ มุมที่ 4            │
│  HIGH MAGNIFICATION     │  ULTRA-MICRO / MOLECULAR LEVEL         │
│  กำลังขยาย: 100x–400x   │  กำลังขยาย: 1000x–10000x              │
└─────────────────────────┴────────────────────────────────────────┘

PANEL RENDERING SPECIFICATIONS:

Panel 1 — Macro Surface View (มุมที่ 1 | 1x–5x):
- Stereo microscope aesthetic — shallow depth of field, photorealistic surface
- Show full object surface texture at near-naked-eye scale
- Ultra-sharp focus on surface topology: bumps, pores, ridges, cracks, coatings
- Lighting: raking oblique light from one side to reveal surface relief
- Background: clean black specimen stage
- Thai labels: overall surface feature names with hairline leader lines
- Include: magnification indicator circle showing region selected for Panel 2
- Scale bar: mm range
- Color rendering: true-color photorealistic — no false color at this level
- NO human figures of any kind

Panel 2 — Low Magnification (มุมที่ 2 | 10x–40x):
- Bright-field or stereo compound microscope aesthetic
- Reveal first layer of internal/surface microstructure
- Show: cell arrangement, grain pattern, fiber orientation, crystal facets
- Depth of field: shallow — sharp center, soft bokeh at edges
- Apply appropriate staining or contrast technique per object classification
- Thai labels: microstructural feature names (scientifically accurate)
- Include: zoom-in indicator box linking back to Panel 1 region
- Scale bar: 100μm–1mm range
- Vignette border: subtle circular darkening (authentic microscope optics)
- NO human figures of any kind

Panel 3 — High Magnification (มุมที่ 3 | 100x–400x):
- Compound light microscope or confocal/fluorescence aesthetic
- Reveal individual cells, crystal sub-units, polymer chains, fiber strands
- Apply full staining simulation:
    Organic: fluorescence channels (nucleus=blue, cytoplasm=green, wall=red)
    Mineral: cross-polarized interference colors
    Synthetic: SEM grayscale with EDS elemental color overlay
    Food/tissue: H&E simulation (purple nuclei, pink cytoplasm)
- Thai labels: subcellular / sub-grain structures (scientifically correct names)
- Include: zoom-in indicator box linking to Panel 2 region
- Scale bar: 10μm–100μm range
- Circular vignette frame: authentic optical microscope field of view
- NO human figures of any kind

Panel 4 — Ultra-Micro / Molecular Level (มุมที่ 4 | 1000x–10000x):
- SEM (Scanning Electron Microscopy) or TEM (Transmission Electron Microscopy) aesthetic
- Pure clinical scientific visualization — grayscale SEM base with false-color overlay
- Reveal: molecular arrangement, crystal lattice rows, cell membrane ultrastructure,
          polymer backbone, atomic surface topology
- Contrast: SEM secondary electron contrast for topography
            OR TEM bright-field for internal ultrastructure
- False color overlay: highlight key molecular/atomic features
  (each material component = unique assigned color)
- Thai labels: molecular/atomic structure names (scientifically correct)
- Include: EDS spectrum bar at bottom of panel (elemental composition chart)
- Scale bar: 1nm–1μm range
- Background: authentic SEM dark gray gradient
- Glowing cyan scan reference lines connecting key structural points,
  labeled "Micro-scan" in Thai at each point
- NO human figures. NO researchers. NO lab coats. NO diorama elements.
  This panel is 100% object-only ultra-microscopic clinical visualization.

MAGNIFICATION PROGRESSION LOGIC:
Each panel must show a logical zoom-in from the previous:
Panel 1 → Panel 2 → Panel 3 → Panel 4
A small indicator box/circle in each panel marks the EXACT region
that is magnified in the next panel, creating a clear zoom chain.

STRUCTURE ANNOTATION LOGIC (Auto-generate based on object type):

  Structure labels → {{scientifically correct name in Thai at each scale}}

  Example — Leaf / ใบไม้:
    Panel 1: พื้นผิวใบ (Leaf Surface), เส้นใบ (Leaf Vein)
    Panel 2: เซลล์ผิวใบ (Epidermal Cell), ปากใบ (Stomata)
    Panel 3: คลอโรพลาสต์ (Chloroplast), เซลล์ผนัง (Cell Wall)
    Panel 4: เยื่อไทลาคอยด์ (Thylakoid Membrane), กรานา (Grana Stack)

  Example — Diamond / เพชร:
    Panel 1: ผิวหน้าเจียระไน (Faceted Surface)
    Panel 2: ขอบผลึก (Crystal Boundary), รอยแตกแนว (Cleavage Line)
    Panel 3: โครงผลึกคาร์บอน (Carbon Crystal Lattice)
    Panel 4: พันธะโคเวเลนต์คาร์บอน (C-C Covalent Bond Network)

  Example — Carbon Fiber / คาร์บอนไฟเบอร์:
    Panel 1: ผิวเรซิน (Resin Surface)
    Panel 2: การถักทอเส้นใย (Fiber Weave Pattern)
    Panel 3: หน้าตัดเส้นใย (Fiber Cross-Section), โพรงอากาศ (Void)
    Panel 4: โครงสร้างกราฟีน (Graphene Layer Stack)

  Example — Granite / หินแกรนิต:
    Panel 1: ผิวแร่ธาตุ (Mineral Surface Texture)
    Panel 2: ขอบแร่ผสม (Mineral Grain Boundary)
    Panel 3: ผลึกควอตซ์-เฟลด์สปาร์ (Quartz-Feldspar Crystal)
    Panel 4: โครงซิลิเกต (Silicate Tetrahedral Network)

GLOBAL VISUAL STANDARDS:
- Background: Pure black (#000000) throughout — authentic microscope viewer interface
- All text and labels: Thai language only, clean sans-serif font
- Panel borders: thin white 1px clinical grid lines separating all 4 panels
- Top metadata bar: Object type | Microscopy technique | Magnification range | Scale
- Bottom findings bar: 1-line Thai summary of key microscopic finding per panel
- Original image thumbnail (top-left corner): clean white border, labeled "ภาพต้นฉบับ"
- Title centered at top: "หัวข้อที่ตรวจ: [INPUT OBJECT TYPE]"
- Watermark (bottom-right, subtle): "Microscopic Diagnostic System"
- Zero human figures anywhere in the entire image — clinical output only

ASPECT RATIO: 16:9
RESOLUTION: 8K
STYLE: Authentic scientific microscopy report — 
       Stereo Microscope + Compound Light + Confocal Fluorescence + SEM/TEM aesthetic

Usage Tips

Modify the style keywords as needed to match your desired output. (แก้ไขคำสำคัญพื่อให้ตรงกับผลลัพธ์ที่คุณต้องการ)

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