Cochlear
Osia
System
Bone
Conduction
Video
Creation

Illustrate Advanced Tech
With Dynamic Video
Production

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Revealing Osia System's innovative bone conduction

This animation brilliantly clarifies how the Osia System enhances hearing. It demonstrates the direct bone conduction technology delivering clear sound directly to the inner ear, offering unparalleled auditory experience. The visual explanation fosters deep understanding and confidence.

The video's exquisite 3D aesthetics and precise design showcase the device's elegance and integration. Viewers experience the sophisticated engineering, understanding how sound transmission works seamlessly within the body. This engaging visual journey empowers informed patient choices.

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Visualizing internal bone conduction

This visualization technique provides profound clarity, transforming complex medical concepts into easily digestible insights. It dramatically enhances educational value, allowing audiences to grasp the intricate workings of the Osia System with exceptional ease and precision.

Our team meticulously crafted these intuitive and aesthetically pleasing visuals. Extensive design explorations ensured optimal representation of bone conduction, delivering stunningly precise details. This commitment to visual excellence perfectly communicates the system's advanced engineering.

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Client Brief

Cochlear approached Advids to create a 3d educational ad video for the Osia System to address the complexity of bone conduction hearing technology. This partnership focused on distilling intricate surgical and mechanical details into accessible visuals to accelerate surgeon adoption and improve patient understanding of hearing outcomes.

Video Creation Approach

Calibrating the technical foundation required a deep dive into the Cochlear Osia System mechanical schematics to ensure anatomical precision for this 3d medical animation. Advids synchronized the initial creative strategy with medical compliance standards to establish a baseline that balances clinical accuracy with high engagement for diverse healthcare audiences.

Engineers choreographed the Piezo Power transducer movement to illustrate how vibration bypasses damaged areas of the ear. This specific digital rendering of the oscillating actuator demonstrates sound processing within a clinical environment where reliability remains paramount. Anatomical visualization sequences provide clarity on how internal components integrate with various skull densities.

Rhythmically, the pacing matches the data transmission speed to reduce the cognitive burden on the viewer. Precision audio mastering facilitates better retention by aligning acoustic cues with internal mechanical shifts. Clear instructional motion graphics ensure the final delivery serves as a primary tool for explaining complex medical procedures to prospective patients.

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What are the steps in making a 3d educational ad video?

  1. Research & Analysis
  2. Script Writing
  3. Character & Style Sheet
  4. Storyboard Development
  5. Voice Over Recording
  6. Animating Stage
  7. Translation & Foreign Voice (If needed)
  8. Delivery & Formats

Scope of Work

3D model, ing texturing, rigging animation, lighting rendering, compositing, visual effects, sound design, color grading

Production Timeline

3 to 4 weeks

Budget

$ 2500 to $ 4000

Industry Vertical

Primary Industry: Healthcare
Sub Industry: Medical Devices
Industries: Healthcare technology, Medical implant solutions, Audiology devices, Industrial animation production, Scientific explanation videos, Surgical equipment visualization, Patient education resources

Video Objective

Effectively communicate the innovative function of our hearing implant system to a global audience.

“Advids delivered an outstanding 3D industrial animation video for our Osia System. Its visual excellence and clarity in explaining complex functions truly impress. This partnership perfectly enhanced our product communication strategy.”

Sarah Chen
Product Marketing Manager

Video Production Techniques

  • Transparent anatomical visualization
  • Dynamic internal component animation
  • Simulated sound wave propagation
  • Precise bone conduction rendering
  • Complex system mechanism breakdown
  • Monkey Mascot Floating Animation
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