Portable Dynamic Chest Radiography: Literature Review and Potential Bedside Applications
Abstract
1. Introduction
2. The Equipment
3. Diaphragm Motion Analysis
4. Calculation of the Lung Area
5. Lung Movement
6. Lung Ventilation
7. Lung Perfusion Assessment
8. Post-Procedural Follow-Up
9. Challenges
10. Future Directions
11. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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Modality | Function | Mechanism | Potential Clinical Applications |
---|---|---|---|
DM-mode | Tracking diaphragm motion. Automatic calculation of the lung area and the relative changing rate (%). | Tracking of diaphragmatic domes represented in a motion–time graph. Area detection through an edge detection method in the post processing phase. | Diagnosis of diaphragm motion impairment and palsy. Automatic calculation of the respiratory rate. Analysis of lung dynamics in patients with restrictive/obstructive diseases. Follow-up of patients in pulmonary rehabilitation. |
LM-mode | Vector field representing the movement of different lung areas. | Pixel-by-pixel analysis and tracking in consecutive frames resulting in a two-dimensional vector field. Uses BS-images. | Differential motion analysis of different lung areas; useful for the detection of adhesions and preoperative planning. |
PL-mode | Color-coded map of the lung ventilation in different areas. | Analysis of the pixel values variations during the breath cycle. | Detection of regional differences in ventilation. Useful for the follow-up of therap, especially in Intensive Care Units. |
FE-mode | Improve visualization of soft-tissues density components. | Post-processing enhancing high-spatial frequencies. | Better visualization of soft tissue alterations. |
BS-mode | Bone suppression. | Signal attenuation of costal and clavicular bones within the lung field. Preliminary to LM analysis. | Better visualization of tissues other than bone, with better detection of lung nodules and consolidations. |
PH2-mode | Color-coded map representing lung perfusion. | Analysis of pixel value changes from the baseline timing (end diastolic phase). | Analysis of the pulmonary perfusion, diagnosis of pulmonary embolism. |
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Cè, M.; Oliva, G.; Rabaiotti, F.L.; Macrì, L.; Zollo, S.; Aquila, A.; Cellina, M. Portable Dynamic Chest Radiography: Literature Review and Potential Bedside Applications. Med. Sci. 2024, 12, 10. https://doi.org/10.3390/medsci12010010
Cè M, Oliva G, Rabaiotti FL, Macrì L, Zollo S, Aquila A, Cellina M. Portable Dynamic Chest Radiography: Literature Review and Potential Bedside Applications. Medical Sciences. 2024; 12(1):10. https://doi.org/10.3390/medsci12010010
Chicago/Turabian StyleCè, Maurizio, Giancarlo Oliva, Francesca Lucrezia Rabaiotti, Laura Macrì, Sharon Zollo, Alessandro Aquila, and Michaela Cellina. 2024. "Portable Dynamic Chest Radiography: Literature Review and Potential Bedside Applications" Medical Sciences 12, no. 1: 10. https://doi.org/10.3390/medsci12010010
APA StyleCè, M., Oliva, G., Rabaiotti, F. L., Macrì, L., Zollo, S., Aquila, A., & Cellina, M. (2024). Portable Dynamic Chest Radiography: Literature Review and Potential Bedside Applications. Medical Sciences, 12(1), 10. https://doi.org/10.3390/medsci12010010