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Digital imaging, virtual and augmented reality.

José Francisco Noguera Aguilar1

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Cirugia Espanola
|March 3, 2024
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Summary

Digital imaging and video are crucial in surgery for diagnosis and treatment. Emerging virtual and augmented reality technologies enhance surgical planning and navigation, creating immersive mixed reality experiences.

Keywords:
Augmented realityDigital imageImagen digitalRealidad aumentadaRealidad virtualVirtual reality

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Area of Science:

  • Medical Imaging
  • Surgical Technology
  • Virtual and Augmented Reality

Background:

  • Surgical procedures rely heavily on visual information, encompassing both static and dynamic imaging.
  • Minimally invasive surgery has driven the adoption of digital video, a digital representation of moving images.
  • Virtual Reality (VR) and Augmented Reality (AR) are emerging as transformative tools in medicine.

Purpose of the Study:

  • To explore the role of digital imaging and video in surgical practice.
  • To examine the integration and applications of Virtual Reality (VR) and Augmented Reality (AR) in surgery.
  • To discuss the concept and potential of Mixed Reality (MR) in medical contexts.

Main Methods:

  • Review of the evolution of imaging in surgery, from static images to digital video.
  • Analysis of the principles and applications of VR and AR in healthcare and research.
  • Discussion of the convergence of VR and AR into Mixed Reality (MR) environments.

Main Results:

  • Digital video is essential for minimally invasive surgery, offering advantages over analog formats.
  • VR and AR are increasingly utilized for predictive surgical planning and intraoperative navigation.
  • Mixed Reality (MR) environments blend VR and AR, enabling the creation of integrated virtual and real-world experiences.

Conclusions:

  • Advanced imaging technologies, including VR, AR, and MR, are revolutionizing surgical specialties.
  • These immersive digital environments offer significant potential for enhancing surgical training, planning, and execution.
  • The fusion of virtual and real elements in MR promises more sophisticated and integrated surgical support systems.