Audio-Visual Biofeedback for Respiratory Motion Management: Comparison of the Reproducibility of Breath-Holding between Visual and Audio Guidance
- 1 Department of Radiology, University of Yamanashi, Yamanashi, Japan
- 2 Department of Radiology, University of Yamanashi, Yamanashi, Japan
- 3 Department of Radiology, University of Yamanashi, Yamanashi, Japan
- 4 Department of Radiology, University of Yamanashi, Yamanashi, Japan
- 5 Department of Radiology, University of Yamanashi, Yamanashi, Japan
- 6 Department of Radiology, University of Yamanashi, Yamanashi, Japan
- 7 Department of Radiology, University of Yamanashi, Yamanashi, Japan
- 8 Department of Radiology, University of Yamanashi, Yamanashi, Japan
Abstract
Purpose: To compare the reproducibility of breath-holding and comfort between two biofeedback guidance methods (audio and visual) in a respiratory monitoring system. Method and Materials: An audio-feedback respiratory monitoring device, which was modified from a visual-feedback self-respiration monitoring system (Abches, APEX Medical Inc., Tokyo, Japan) previously developed by the authors’ group, was constructed. Twenty patients (13 men, 7 women; mean age, 68.5 years; range, 54 - 85 years) with tumors in the thorax or abdominal region were enrolled in the present study. Computed tomography images were acquired from all patients three times using the two ( i.e., audio and visual) respiration monitoring devices. To evaluate the reproducibility of breath-holding, the distance between an anatomical landmark and the tumor position was measured. Furthermore, patients were asked which guidance method they preferred (visual or audio) for comfortable breath-holding. Results: The two guidance methods improved the reproducibility of breath-holding compared with free-breathing, and no significant overall differences between two methods were observed (the mean displacements of the landmark-tumor distance were 2.60 ± 1.38 mm and 2.35 ± 1.63 mm, for visual and audio guidance, respectively). In five patients, the magnitude of position displacement in the series of three computed tomography images under audio guidance was twice as large as the other under visual guidance. Audio guidance was preferred to visual guidance by 65% (13 of 20) of the patients. However, the reproducibility of breath-holding did not always correspond with patient preference. Conclusion: There were some individual differences in the reproducibility of the visual and audio guidance methods. More appropriate, individualized guidance methods for each patient would improve the reproducibility of breath-holding in respiratory motion management.
- Wong, J.W., Sharpe, M.B., Jaffray, D.A., et al. (1999) The Use of Active Breathing Control (ABC) to Reduce Margin for Breathing Motion. International Journal of Radiation Oncology, 44, 911-919. https://doi.org/10.1016/S0360-3016(99)00056-5
- Hanley, J., Debois, M.M., Mah, D., et al. (1999) Deep Inspiration Breath-Hold Teqnique for Lung Tumors: The Potential Value of Target Immobilization and Reduced Lung Density in Dose Escalation. International Journal of Radiation Oncology, 45, 603-611.
- Shen, S., Duan, J., Fiveash, J.B., et al. (2003) Validation of Target Volume and Position in Respiratory Gated CT Planning and Treatment. Medical Physics, 30, 3196-3205. https://doi.org/10.1118/1.1626121
- Shirato, H., Shimizu, S., Kunieda, T., et al. (2000) Physical Aspects of a Real-Time Tumor-Tracking System for Gated Radiotherapy. International Journal of Radiation Oncology, 48, 1187-1195. https://doi.org/10.1016/S0360-3016(00)00748-3
- Keall, P.J., Joshi, S., Vedam, S.S., Siebers, J.V., Kini, V.R. and Mohan, R. (2005) Four-Dimensional Radiotherapy Planning for DMLC-Based Respiratory Motion Tracking. Medical Physics, 32, 942-951. https://doi.org/10.1118/1.1879152
- Onishi, H., Kawakami, H., Marino, K., et al. (2010) A Simple Respiratory Indicator for Irradiation during Voluntary Breath Holding: A One-Touch Device without Electronic Materials. Radiology, 255, 917-923. https://doi.org/10.1148/radiol.10090890
- Tarohda, T.I., Ishiguro, M., Hasegawa, K., et al. (2011) The Management of Tumor Motions in the Stereotactic Irradiation to Lung Cancer under the Use of Abches to Control Active Breathing. Medical Physics, 38, 4141-4146. https://doi.org/10.1118/1.3604151
- Lee, H.Y., Chang, J.S., Lee, I.J., et al. (2013) The Deep Inspiration Breath Hold Technique Using Abches Reduces Cardiac Dose in Patients Undergoing Left-Sided Breast Irradiation. Radiation Oncology Journal, 31, 239-246. https://doi.org/10.3857/roj.2013.31.4.239
- George, R., Chung, T.D., Vedam, S.S., et al. (2006) Audio-Visual Biofeedback for Respiratory-Gated Radiotherapy: Impact of Audio Instruction and Audio-Visual Biofeedback on Respiratory-Gated Radiotherapy. International Journal of Radiation Oncology, 65, 924-933. https://doi.org/10.1016/j.ijrobp.2006.02.035
- Venkat, R.B., Sawant, A., Suh, Y., George, R. and Keall, P.J. (2008) Development and Preliminary Evaluation of a Prototype Audiovisual Biofeedback Device Incorporating a Patient-Specific Guiding Waveform. Physics in Medicine and Biology, 53, N197-N208.