Multimodal 3D light-field and laser-speckle endoscopy

Minimally invasive surgery is a powerful technique that enables operations deep within the body while minimizing patient trauma and recovery time. Optical endoscopes are key to providing intraoperative vision but still face challenges due to the loss of essential senses, including depth perception and tactile feedback for tissue evaluation. Thus, it is critical to develop endoscopic imaging technologies that can augment operators with critical information. In this work, we explore a prototype multimodal 3D imaging endoscope that integrates volumetric light-field imaging with laser-speckle contrast imaging to simultaneously capture 3D structure and blood-flow information in a clinically relevant form factor.

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Publication Details

Journal
Biomedical Optics Express
Published
2026-08-24
DOI
https://doi.org/10.1364/boe.610175
Primary Topic
Random lasers and scattering media
Type
article
Field-Weighted Citation Impact
0.00

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article

Multimodal 3D light-field and laser-speckle endoscopy

Shu Jia, Corey Zheng
Biomedical Optics Express
Random lasers and scattering media
article

Multimodal 3D light-field and laser-speckle endoscopy

Shu Jia, Corey Zheng
article en

Abstract

Minimally invasive surgery is a powerful technique that enables operations deep within the body while minimizing patient trauma and recovery time. Optical endoscopes are key to providing intraoperative vision but still face challenges due to the loss of essential senses, including depth perception and tactile feedback for tissue evaluation. Thus, it is critical to develop endoscopic imaging technologies that can augment operators with critical information. In this work, we explore a prototype multimodal 3D imaging endoscope that integrates volumetric light-field imaging with laser-speckle contrast imaging to simultaneously capture 3D structure and blood-flow information in a clinically relevant form factor.

Biomedical Optics Express
Georgia Institute of Technology (US), The Wallace H. Coulter Department of Biomedical Engineering (US)
National Science Foundation, National Institutes of Health
Openalex Percentile: Top 37%
Random lasers and scattering media
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