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February 22, 2026Computing Open0 citationsOpen Access

A Real-time 3D Desktop Image Processing

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LTLivio TenzeECEnrique Canessa

Key Points

  • The aim is to improve 3D experiences by processing 2D images and video streams in real-time.
  • Developed an extended version of the altiro3D C++ Library.
  • Utilized MiDaS Convolutional Neural Network to extract depth maps from 2D images.
  • Interfaced with desktop applications through a multi-platform Graphical User Interface.
  • Enabled real-time rendering of 3D visuals from various image sources.
  • Successfully synthesized light-fields from both 2D images and video streams.
  • Provided realistic 3D experiences for users on glass-free displays.
  • Improved performance using AI computing techniques.

Abstract

A new extended version of the altiro3D C++ Library -initially developed to get glass-free holographic displays starting from 2D images- is here introduced aiming to deal with 3D video streams from either 2D webcam images or flat video files. These streams are processed in real-time to synthesize light-fields (in Native format) and feed realistic 3D experiences. The core function needed to recreate multiviews consists on the use of MiDaS Convolutional Neural Network (CNN), which allows to extract a depth map from a single 2D image. Artificial Intelligence (AI) computing techniques are applied to improve the overall performance of the extended altiro3D Library. Thus, altiro3D can now treat standard images, video streams or screen portions of a Desktop where other apps may be also running (like web browsers, video chats, etc) and render them into 3D. To achieve the latter, a screen region need to be selected in order to feed the output directly into a light-field 3D device such as Looking Glass (LG) Portrait. In order to simplify the acquisition of a Desktop screen area by the user, a multi-platform Graphical User Interface has been also implemented. Sources available at: https://github.com/canessae/altiro3D/releases/tag/2.0.0 .

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Cite This Study

Tenze et al. (2026) studied this question.

synapsesocial.com/papers/699a9d3c482488d673cd30d1https://doi.org/10.1142/s2972370126500017
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