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Shape completion in the dark: completing vertebrae morphology from 3D ultrasound
by
Gafencu, Miruna-Alexandra
, Velikova, Yordanka
, Saleh, Mahdi
, Navab, Nassir
, Wendler, Thomas
, Azampour, Mohammad Farid
, Ungi, Tamas
in
Ablation
/ Acoustics
/ Anatomic Landmarks
/ Chamfering
/ Computer Imaging
/ Computer Science
/ Computer vision
/ Deep Learning
/ Health Informatics
/ Humans
/ Image reconstruction
/ Imaging
/ Imaging, Three-Dimensional - methods
/ Medicine
/ Medicine & Public Health
/ Methods
/ Original
/ Original Article
/ Pattern Recognition and Graphics
/ Radiation
/ Radiology
/ Representations
/ Spine - anatomy & histology
/ Spine - diagnostic imaging
/ Surgery
/ Ultrasonic imaging
/ Ultrasonography - methods
/ Vertebrae
/ Vision
2024
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Shape completion in the dark: completing vertebrae morphology from 3D ultrasound
by
Gafencu, Miruna-Alexandra
, Velikova, Yordanka
, Saleh, Mahdi
, Navab, Nassir
, Wendler, Thomas
, Azampour, Mohammad Farid
, Ungi, Tamas
in
Ablation
/ Acoustics
/ Anatomic Landmarks
/ Chamfering
/ Computer Imaging
/ Computer Science
/ Computer vision
/ Deep Learning
/ Health Informatics
/ Humans
/ Image reconstruction
/ Imaging
/ Imaging, Three-Dimensional - methods
/ Medicine
/ Medicine & Public Health
/ Methods
/ Original
/ Original Article
/ Pattern Recognition and Graphics
/ Radiation
/ Radiology
/ Representations
/ Spine - anatomy & histology
/ Spine - diagnostic imaging
/ Surgery
/ Ultrasonic imaging
/ Ultrasonography - methods
/ Vertebrae
/ Vision
2024
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Shape completion in the dark: completing vertebrae morphology from 3D ultrasound
by
Gafencu, Miruna-Alexandra
, Velikova, Yordanka
, Saleh, Mahdi
, Navab, Nassir
, Wendler, Thomas
, Azampour, Mohammad Farid
, Ungi, Tamas
in
Ablation
/ Acoustics
/ Anatomic Landmarks
/ Chamfering
/ Computer Imaging
/ Computer Science
/ Computer vision
/ Deep Learning
/ Health Informatics
/ Humans
/ Image reconstruction
/ Imaging
/ Imaging, Three-Dimensional - methods
/ Medicine
/ Medicine & Public Health
/ Methods
/ Original
/ Original Article
/ Pattern Recognition and Graphics
/ Radiation
/ Radiology
/ Representations
/ Spine - anatomy & histology
/ Spine - diagnostic imaging
/ Surgery
/ Ultrasonic imaging
/ Ultrasonography - methods
/ Vertebrae
/ Vision
2024
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Shape completion in the dark: completing vertebrae morphology from 3D ultrasound
Journal Article
Shape completion in the dark: completing vertebrae morphology from 3D ultrasound
2024
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Overview
Purpose
Ultrasound (US) imaging, while advantageous for its radiation-free nature, is challenging to interpret due to only partially visible organs and a lack of complete 3D information. While performing US-based diagnosis or investigation, medical professionals therefore create a mental map of the 3D anatomy. In this work, we aim to replicate this process and enhance the visual representation of anatomical structures.
Methods
We introduce a point cloud-based probabilistic deep learning (DL) method to complete occluded anatomical structures through 3D shape completion and choose US-based spine examinations as our application. To enable training, we generate synthetic 3D representations of partially occluded spinal views by mimicking US physics and accounting for inherent artifacts.
Results
The proposed model performs consistently on synthetic and patient data, with mean and median differences of 2.02 and 0.03 in Chamfer Distance (CD), respectively. Our ablation study demonstrates the importance of US physics-based data generation, reflected in the large mean and median difference of 11.8 CD and 9.55 CD, respectively. Additionally, we demonstrate that anatomical landmarks, such as the spinous process (with reconstruction CD of 4.73) and the facet joints (mean distance to ground truth (GT) of 4.96 mm), are preserved in the 3D completion.
Conclusion
Our work establishes the feasibility of 3D shape completion for lumbar vertebrae, ensuring the preservation of level-wise characteristics and successful generalization from synthetic to real data. The incorporation of US physics contributes to more accurate patient data completions. Notably, our method preserves essential anatomical landmarks and reconstructs crucial injections sites at their correct locations.
Publisher
Springer International Publishing,Springer Nature B.V
Subject
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