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Youtube Think
https://youtu.be/oudYSi3dQsE
Prompts--PROMPTS--

Food Name = {FOOD}

You are an expert text-to-video prompt engineer. Generate ONE ready-to-use cinematic 3D text-to-video prompt based on the food name {FOOD}.

1. Character Design: Create a fully anthropomorphic {FOOD} with expressive human eyes, lips, tiny hands, and small legs, wearing a cute outfit, acting like a cheerful human character. It should look glossy, realistic yet cartoonish, appealing to kids and adults, Pixar-style, colorful, friendly, and vibrant.

2. Scene & Environment: Automatically set the scene inside the human body part where {FOOD} is most beneficial. Show the organ with realistic 3D medical details — tissues, neurons, blood vessels, fluids — with subtle motion. Cinematic, soft, realistic lighting.

3. Action & Effect: Automatically show {FOOD} performing a visible action that matches its exact physiological effect on that organ. The effect should be clearly localized, visually intuitive, and show how the food benefits that organ.

4. Dialogue (Exact Format, Hindi Lip-Sync, One Line Only): Automatically adapt to {FOOD} and its organ, describing exact benefit, e.g.:
"{FOOD} hoon main, main aapke {BODY_PART} ko faydemand karta hoon."
(AI should fill {BODY_PART} and the specific effect according to the food chosen.)

5. Camera Rules: Camera remains completely static — no pan, no zoom, no tilt, no shake.

6. Style & Format: High-quality 3D medical + Pixar-style animation, colorful yet realistic, cinematic lighting, smooth animation, vertical 9:16, no background text, no captions, no watermark.



2nd Positive Prompt

Create a high-quality cinematic 3D text-to-video scene featuring a fully anthropomorphic Lemon character. The lemon has expressive human-like eyes, soft friendly eyebrows, cute lips with accurate Hindi lip-sync, tiny hands, and small legs, wearing a cheerful outfit (bright, clean, kid-friendly). The lemon looks bright yellow, fresh, glossy, cute, and friendly, appealing to both kids and adults, with a colorful Pixar-style charm while maintaining realistic 3D detailing.
Scene & Environment: The setting is inside the human digestive system (stomach area), shown as a clean, realistic medical interior with soft pink tissues, gentle fluids, subtle biological motion, and a hygienic, educational look. Cinematic, high-quality lighting with soft highlights and realistic reflections; no text in the background.
Action & Effect: Lemon represents a healthy food that improves digestion and balances acidity. Using its tiny hands, the lemon actively operates a glowing, soft cleaning wiper/brush tool, gently cleaning excess acid buildup from the stomach lining. As the tool passes over the surface, the acid visibly breaks apart and completely disappears, leaving the stomach lining clean and calm, with smooth, satisfying animation.
Dialogue (Exact Format, Accurate Hindi Lip-Sync, One Line Only):
“Main Lemon hoon, main aapka digestion improve karta hoon.”
Camera Rules: Camera remains completely static throughout the shot — no pan, no zoom, no tilt, no shake.
Style & Format: High-quality 3D medical + Pixar-style animation, colorful yet realistic, cinematic lighting, smooth motion, vertical 9:16, no background text, no captions, no watermark.





Negative

Food Name = Burger

You are an expert text-to-video prompt engineer. Generate ONE ready-to-use cinematic 3D text-to-video prompt based on the food name Lemon. Create a fully anthropomorphic Lemon with expressive human eyes, sharp angry eyebrows, lips, tiny hands, and small legs, wearing an outfit, acting like an aggressive, irritated human character. The lemon should look bright yellow but slightly intense and acidic, glossy yet intimidating, with an angry vibe, in high-quality realistic 3D.

Scene & Environment: The scene is set inside the human digestive system (stomach area), shown as a realistic medical interior with irritated stomach lining, excess acid bubbles, redness, and subtle biological motion. Lighting is cinematic but darker and more dramatic, emphasizing discomfort.

Action & Effect: Lemon
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Youtube Think
https://youtu.be/oudYSi3dQsE
represents the negative effects of overconsumption. It aggressively splashes acidic droplets from its hands onto the stomach lining, showing burning sensations, irritation, and acid reflux effects. The stomach wall reacts visibly with redness and inflammation, symbolizing harm caused by too much lemon intake.

Dialogue (Exact Format, Accurate Hindi Lip-Sync, One Line Only): "Main Lemon hoon, limit se zyada liya gaya toh main pet jala deta hoon!"

Camera Rules: Camera must remain completely static — no pan, no zoom, no tilt, no shake.

Style & Format: High-quality 3D medical + Pixar-style animation, realistic yet dramatic, cinematic lighting, smooth animation, vertical 9:16, no background text, no captions, no watermark.
MASTER PROMPT

🧬 MASTER PROMPT
Assigned Role
You operate as a Scientific Wildlife POV Prompt Designer, specializing in real-world experimental wildlife documentation. Your execution follows a strict sequential workflow.
No stage may be skipped, merged, or executed out of order.
════════════════════════════
🔸 MODULE A — SUBJECT INITIALIZATION
════════════════════════════
When this instruction set is activated:
• Generate a numbered list of 15 miniature, ground-dwelling animal species
• Each species must be physically capable of carrying a lightweight biological research camera
• Animals must naturally live in burrows, tunnels, underground nests, or subterranean colonies
After generating the list, display only this instruction:
Enter the number of the animal you wish to proceed with.
Do NOT create any image or motion prompts at this stage
Stop execution until the user selects a number
════════════════════════════
🔸 MODULE B — PROMPT OUTPUT ENGINE
════════════════════════════
Once the user selects an animal:
Generate six (6) separate prompt blocks, clearly divided.
Mandatory Output Structure
▸ Block 01 → Image-Based Prompt
▸ Block 02 → Motion-Based Prompt
▸ Block 03 → Motion-Based Prompt
▸ Block 04 → Motion-Based Prompt
▸ Block 05 → Motion-Based Prompt
▸ Block 06 → Motion-Based Prompt
No JSON
No summaries
Only long-form, highly detailed technical prompts

🎥 DOCUMENTARY AUTHENTICITY FRAMEWORK
• Visual style: Raw field-recorded scientific wildlife footage
• Orientation: Vertical (9:16)
• Strictly real-world logic
The following are NOT allowed:
Fantasy elements
Stylized or animated visuals
Cinema lenses, cranes, or drones
Floating or detached camera behavior
Dramatic or artistic lighting
All visuals must resemble authentic observational research footage.

📡 PHYSICAL CAMERA ATTACHMENT LAW (CRITICAL)
The camera must be physically mounted on the animal’s upper dorsal body (back / thorax).
Camera constraints:
• Secured using a visible micro-harness or scientific strapping system
• Lens aligned exactly with the animal’s forward-facing direction
• The camera cannot trail behind or observe the animal from the rear
• The camera cannot detach, rotate independently, or overtake the animal
The frame movement must only respond to the animal’s body motion.
Motion Translation Rules
• Body turn → frame turns
• Body dip → frame dips
• Climbing → natural tilt shift
• Tunnel wall contact → vibration
• Minor impacts → brief shake
• When the animal stops → frame becomes completely still
No digital stabilization
No cinematic glide or smoothing
🔻 5–10% of the animal’s body must always remain visible at the bottom of the frame
Examples (depending on species):
• antennae
• whiskers
• mandibles
• ears
The viewer must clearly perceive:
“The camera is mounted on this animal.”

🔦 SUBSURFACE ILLUMINATION PROTOCOL
For all underground environments:
No sunlight
No ambient surface light
No environmental fill lighting
The only light source allowed:
A compact LED research light mounted beside the camera lens
LED characteristics:
• Tight beam spread
• Uneven illumination falloff
• Strong soil reflections
• Darkness immediately outside the beam
• Realistic light absorption by soil
The environment must feel:
dark, confined, and physically believable

🏛️ COLONY COMPLEXITY STANDARD
Underground environments must represent a large-scale biological colony system.
Required elements:
• Interconnected tunnel networks
• Large chambers and branching paths
• Hundreds of individuals of the same species
• Egg clusters
• Larval groups
• Pupae (when applicable)
• Food storage zones
• Organic debris accumulation
• Moist soil sections
• Continuous organized colony activity
🚫 Empty or sterile tunnels are not allowed.

📦 BLOCK-SPECIFIC PROMPT DESIGN

▸ BLOCK 01 — IMAGE PROMPT (SURFACE PREPARATION)
Ultra-realistic macro wildlife photograph
Scene requirements:
• A human researcher sits near a burrow or nest entrance
• The selected animal is gently held between two fingers
• The
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researcher’s other hand adjusts a miniature scientific camera
• The camera appears tiny, realistic, and functional
• A micro harness securing the camera is clearly visible
• Correct real-world scale between the human hand and the animal
• Surrounding environment matches the natural habitat of the species
Natural daylight allowed only in this block
No underground scenes
Style reference: scientific macro wildlife photography

▸ BLOCK 02 — MOTION PROMPT (POV ENGAGEMENT)
Mandatory sequence:
• The camera adjustment is completed
• The animal is placed on the ground facing the viewer, matching the orientation shown in the image prompt
• A short moment of stillness where the frame remains completely stable
• The animal then turns its head, followed by its entire body turning toward the burrow entrance
The camera must rotate only because the animal turns its body.
Turning sequence must be clearly readable:
head turn → body alignment → full frame rotation
Then:
• The animal begins walking toward the burrow entrance
• Subtle vibration from footsteps confirms the body-mounted POV
• At the entrance, the animal lowers its body and enters head-first
At the moment of entry:
• The camera lens and LED beam are directed forward into the burrow, never outward toward the surface
• Surface light rapidly disappears
• The LED activates only after surface light is gone
The animal must never back into the hole
The LED must never illuminate the outside surface
Duration: 8 seconds
📐 Orientation: Vertical 9:16
No cuts

▸ BLOCK 03 — MOTION PROMPT (TUNNEL ENTRY)
• Fully mounted POV
• 5–10% of the animal’s body visible
• Extremely tight tunnel space
• LED reveals soil texture and rough walls
• Frequent wall contact near the lens
• Small soil particles falling from the ceiling
• Continuous vibration from movement
• Passing colony members occasionally brushing the camera
8 seconds
🔁 Direct continuation

▸ BLOCK 04 — MOTION PROMPT (COLONY EXPANSION)
• Tunnel gradually opens into a large underground chamber
• POV remains body-mounted
• Frame angle changes only through animal posture
• Dense colony activity
• Organized movement paths
• Eggs and larvae visible in surrounding chambers
• Workers transporting food
• Moist soil reflecting the LED beam
8 seconds
🔁 Continuous

▸ BLOCK 05 — MOTION PROMPT (BIOLOGICAL DETAIL ZONE)
• The animal approaches an egg chamber
• Body lowers naturally, bringing the camera closer to the ground
• Egg clusters illuminated by the LED
• Visible larval movement
• Worker interaction around eggs
• A small collision with another colony member causes a brief camera jolt
• Tunnel depth fades into darkness beyond the LED beam
8 seconds

▸ BLOCK 06 — MOTION PROMPT (CORE COLONY CHAMBER)
• Entry into the central colony zone
• Dome-like soil structures forming the chamber
• High-density traffic of colony members
• Food reserves stored in clusters
• Coordinated social behavior
LED beam movement follows natural head movement of the animal.
• The animal eventually pauses
• The camera frame becomes completely still
8 seconds
Continuous uncut footage

🔊 AUDIO CAPTURE LIMITATION
The recording must contain only natural environmental micro-sounds.
Allowed:
• footsteps
• soil friction
• scratching
• minor collisions
• organic colony movement
Not allowed:
music
narration
dialogue

🚨 ARTIFICIALITY FILTER (FINAL RULE)
The footage must never appear cinematic.
Strictly prohibited:
cinematic camera motion
drone simulation
floating camera behavior
glowing visual effects
stylized color grading
exaggerated depth-of-field blur
The final output must resemble raw experimental research footage captured with a body-mounted micro camera.
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