The Role of Ultrasound-Based Monitoring of Bladder Volume in Patients with Prostate Cancer during CyberKnife Stereotactic Radiosurgery
Abstract
:Featured Application
Abstract
1. Introduction
2. Materials and Methods
2.1. Ultrasound Assessment of Bladder Volume
2.2. Ultrasound Device
2.3. Radiological Assessment of Bladder Volume
2.4. Statistical Analysis
3. Results
3.1. Bladder Volume
3.2. Reliability and Repeatability of US Assessment
3.3. The Impact of pBV on rBV Reproducibility during RTH
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
Abbreviations
Abbreviation | Full Meaning |
BV | Bladder volume |
CBCT | Cone beam computed tomography |
CT | Computed tomography |
IMRT | Intensity-modulated radiotherapy |
MRI | Magnetic resonance imaging |
OAR | Organ at risk |
pBV | Planned bladder volume |
PINIT | Portable non-invasive imaging tool (Echo-Son SA Poland) |
rBV | Real bladder volume |
RTH | Radiotherapy |
RTT | Radiation therapy technologists |
TAUS | Transabdominal ultrasound |
TRUS | Transrectal ultrasound |
US | Ultrasound |
References
- Miszczyk, L.; Namysł Kaletka, A.; Napieralska, A.; Woźniak, G.; Stąpór Fudzińska, M.; Głowacki, G. Cyberknife Radioablation of Prostate Cancer—Preliminary Results for 400 Patients. Asian Pac. J. Cancer Prev. 2017, 18, 1007–1013. [Google Scholar] [CrossRef] [PubMed]
- Głowacki, G.; Majewski, W.; Wojcieszek, P.; Grabinska, K.; Wozniak, G.; Miszczyk, L. Ultrahypofractionated CyberKnifeTM based stereotactic radiotherapy versus conventional radiotherapy in patients with prostate cancer—Acute toxicity evaluation in two phase II prospective studies. Neoplasma 2017, 64, 599–604. [Google Scholar] [CrossRef] [PubMed]
- Glowacki, G.; Majewski, W.; Wojcieszek, P.; Grabinska, K.; Chawinska, E.; Bodusz, D.; Wozniak, G.; Urbanczyk, H.; Kaletka, A.; Miszczyk, L. Acute toxicity of robotic ultrahypofractionated radiotherapy CyberKnifeTM in prostate cancer patients. Neoplasma 2015, 62, 674–682. [Google Scholar] [CrossRef] [PubMed]
- Tsai, C.L.; Wu, J.K.; Wang, C.W.; Hsu, F.-M.; Lai, M.-K.; Cheng, J.C.-H. Using cone-beam computed tomography to evaluate the impact of bladder filling status on target position in prostate radiotherapy. Strahlenther Onkol. 2009, 185, 588–595. [Google Scholar] [CrossRef] [PubMed]
- Reddy, N.M.S.; Nori, D.; Sartin, W.; Maiorano, S.; Modena, J.; Mazur, A.; Osian, A.; Sood, B.; Ravi, A.; Sampath, S.; et al. Influence of volumes of prostate, rectum, and bladder on treatment planning CT on interfraction prostate shifts during ultrasound image-guided IMRT. Med. Phys. 2009, 36, 5604–5611. [Google Scholar] [CrossRef] [PubMed]
- Grün, A.; Kawgan-Kagan, M.; Kaul, D.; Badakshi, H.; Stromberger, C.; Budach, V.; Böhmer, D. Impact of bladder volume on acute genitourinary toxicity in intensity modulated radiotherapy for localized and locally advanced prostatę cancer. Strahlenther Onkol. 2019, 195, 517–525. [Google Scholar] [CrossRef] [PubMed]
- Pinkawa, M.; Fischedick, K.; Asadpour, B.; Gagel, B.; Piroth, M.D.; Eble, M.J. Low-grade toxicity after conformal radiation therapy for prostate cancer–impact of bladder volume. Int. J. Radiat. Oncol. Biol. Phys. 2006, 64, 835–841. [Google Scholar] [CrossRef] [PubMed]
- Holden, L.; Stanford, J.; D’Alimonte, L.; Kiss, A.; Loblaw, A. Timing variability of bladder volumes in men receiving radiotherapy to the prostatę. J. Med. Imaging Radiat. Sci. 2014, 45, 24–30. [Google Scholar] [CrossRef] [PubMed]
- Umesh, M.; Kumar, D.P.; Chadha, P.; Choudary, R.; Kembhavi, S.; Thakur, M.; Reena, E.; Chopra, S.; Shrivastava, S. Transabdominal ultrasonography defined optimal and definitive blade filling protocol with time trends during pelvic radiation for cervical cancer. Technol. Cancer Res. Treat 2017, 16, 917–922. [Google Scholar] [CrossRef] [PubMed]
- De Vos, I.I.; Drost, F.H.; Bokhorst, L.P. Prostate cancer risk assessment by the primary care physician and urologist: Transabdominal- versus transrectal ultrasound prostate volume-based use of the Rotterdam Prostate Cancer Risk Calculator. Transl. Androl. Urol. 2023, 12, 241–248. [Google Scholar] [CrossRef] [PubMed]
- Tyloch, J.; Wieczorek, A. The standards of an ultrasound examination of the prostate gland. Part 2. J. Ultrason. 2017, 17, 43–58. [Google Scholar] [CrossRef] [PubMed]
- Hou, J.L.; Ma, W.L.; Dong, X.; Zhu, X.-Y.; Zhang, Q.; Qiu, X.-F.; Zhuang, J.-L.; Huang, H.-F.; Guo, H.-Q.; Gan, W.-D. Accuracy of prostatic ultrasonography versus MRI in measuring prostate volume. Zhonghua Nan Ke Xue 2022, 28, 896–900. [Google Scholar] [PubMed]
- Poncyliusz, M.; Piziorska, M. Ocena zastosowania ultrasonografu PINIT do kontroli wypełnienia pęcherza moczowego podczas radioterapii. In Proceedings of the XVII Kongres Polskiego Towarzystwa Fizyki Medycznej, Kraków, Poland, 30 September 2022. [Google Scholar]
- Mulleney, L.; O’Shea, E.; Dunne, M.T.; Thirion, P.G.; Armstrong, J.G. A comparison of bladder volumes based on treatment planning CT and BladderScan® BVI 6100 ultrasound device in a prostate radiation therapy population. Br. J. Radiol. 2018, 91, 20180160. [Google Scholar] [CrossRef] [PubMed]
- Bai, F.; Hu, Q.; Yao, X.; Cheng, M.; Zhao, L.; Xu, L. A prospective comparative study on bladder volume measurement with portable ultrasound scanner and CT simulator in pelvic tumor radiotherapy. Phys. Eng. Sci. Med. 2024, 47, 87–97. [Google Scholar] [CrossRef] [PubMed]
- Ohira, S.; Komiyama, R.; Kanayama, N.; Sakai, K.; Hirata, T.; Yoshikata, K.; Ueda, Y.; Miyazaki, M.; Nakayama, M.; Koizumi, M.; et al. Improvement in bladder volume reproducibility using A-mode portable ultrasound bladder scanner in moderate-hypofractionated volumetric modulated arc therapy for prostate cancer patients. J. Appl. Clin. Med. Phys. 2022, 23, e13546. [Google Scholar] [CrossRef] [PubMed]
- Chauhan, K.; Ebner, D.; Tzou, K.; Ryan, K.; May, J.; Kaleem, T.; Miller, D.; Stross, W.; Malouff, T.D.; Landy, R.; et al. Assessment of bladder filling during prostate cancer radiation therapy with ultrasound and cone-beam CT. Front. Oncol. 2023, 13, 1200270. [Google Scholar] [CrossRef] [PubMed]
- Kuo, D.-Y.; Hsu, C.-Y.; Wang, W.-C.; Chen, H.-H.; Shueng, P.-W. BladderScan Feedback Method in Predicting Bladder Filling for Prostate Radiotherapy: A Prospective Study. Technol. Cancer Res. Treat. 2021, 20, 1533033821995277. [Google Scholar] [CrossRef] [PubMed]
- Walentowicz, M.; Krzemiński, D.; Kopański, Z.; Liniarski, M.; Tabak, J.; Dyl, S.; Kieczka-Radzikowska, K.; Mazurek, M. Selected aspects of the urinary system anatomy and physiology. J. Clin. Healthc. 2017, 3, 1–4. [Google Scholar]
- Chang, J.S.; Yoon, H.I.; Cha, H.J.; Chung, Y.; Cho, Y.; Keum, K.C.; Koom, W.S. Bladder filling variations during concurrent chemotherapy and pelvic radiotherapy in rectal cancer patients: Early experience of bladder volume assessment using ultrasound scanner. Radiat. Oncol. J. 2013, 31, 41–47. [Google Scholar] [CrossRef] [PubMed]
BV | N | Mean | Median | Min | Max | SD | p-Value |
---|---|---|---|---|---|---|---|
CTplan | 142 | 340.8 | 320.0 | 89.0 | 930.0 | 173.4 | <0.001 |
rUS1 | 672 | 214.7 | 199.0 | 70.0 | 483.0 | 81.9 | <0.001 |
rUS2 | 672 | 218.1 | 204.0 | 61.0 | 505.0 | 83.0 | <0.001 |
Fraction | N | Mean | Median | Min | Max | SD |
---|---|---|---|---|---|---|
1 | 116 | 227.4 | 219.0 | 74.0 | 462.0 | 83.9 |
2 | 116 | 224.1 | 204.0 | 93.0 | 472.0 | 84.6 |
3 | 116 | 211.8 | 198.0 | 74.0 | 453.0 | 75.8 |
4 | 116 | 210.7 | 198.5 | 84.0 | 428.0 | 75.8 |
5 | 116 | 208.7 | 189.0 | 77.0 | 483.0 | 87.9 |
Overall | 580 | 216.5 | 200.5 | 74.0 | 483.0 | 81.8 |
BV | Slope Coefficient | 95% CI (Slope) | Intercept | 95% CI (Intercept) | Linear Dependence | Linearity p-Value |
---|---|---|---|---|---|---|
Overall | 1.013 | 0.987–1.045 | 0.408 | −5.865–5.671 | Yes | 0.4716 |
2 operators | 0.971 | 0.905–1.055 | 4.661 | −8.62–16.28 | Yes | 1 |
1 operator | 1.018 | 0.989–1.052 | 0.109 | −6.79–5.74 | Yes | 0.481 |
N | Mean Difference (mL) | Confidence −95% | Confidence +95% | SD | Lower Agreement Limit | Upper Agreement Limit |
---|---|---|---|---|---|---|
177 | 0.76 | −4.30 | 5.81 | 34.09 | −66.06 | 67.58 |
pBV | Type of Measurement | N | Mean (mL) | Median (mL) | Min (mL) | Max (mL) | SD |
---|---|---|---|---|---|---|---|
100–349 | CT-US * | 386 | 41.56 | 41.50 | −176.0 | 200.5 | 79.18 |
CT (pBV) | 386 | 226.37 | 224.00 | 100.0 | 349.0 | 75.25 | |
US | 386 | 184.80 | 172.00 | 72.5 | 411.5 | 63.38 | |
350–499 | CT-US * | 168 | 171.32 | 178.25 | −82.0 | 325.0 | 75.63 |
CT (pBV) | 168 | 405.30 | 391.00 | 352.0 | 483.0 | 38.41 | |
US | 168 | 233.98 | 220.75 | 124.0 | 469.0 | 69.65 | |
500–800 | CT-US * | 108 | 333.33 | 324.50 | 144.5 | 533.5 | 84.26 |
CT (pBV) | 108 | 633.79 | 627.00 | 505.0 | 788.0 | 70.39 | |
US | 108 | 300.45 | 295.25 | 108.0 | 494.0 | 78.79 |
pBV | N | R | T(N-2) | p-Value |
---|---|---|---|---|
100–349 | 386 | 0.376 | 7.942 | <0.001 |
350–499 | 168 | 0.138 | 1.799 | 0.074 |
500–800 | 108 | 0.419 | 4.748 | <0.001 |
overall | 662 | 0.577 | 18.147 | <0.001 |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2024 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Bodusz, D.; Brajczewska-Bello, J.; Rutkowski, T.; Kołosza, Z.; Cortez, A.J.; Szymala-Cortez, M.; Leszczyński, W.; Wydmański, J. The Role of Ultrasound-Based Monitoring of Bladder Volume in Patients with Prostate Cancer during CyberKnife Stereotactic Radiosurgery. Appl. Sci. 2024, 14, 9091. https://doi.org/10.3390/app14199091
Bodusz D, Brajczewska-Bello J, Rutkowski T, Kołosza Z, Cortez AJ, Szymala-Cortez M, Leszczyński W, Wydmański J. The Role of Ultrasound-Based Monitoring of Bladder Volume in Patients with Prostate Cancer during CyberKnife Stereotactic Radiosurgery. Applied Sciences. 2024; 14(19):9091. https://doi.org/10.3390/app14199091
Chicago/Turabian StyleBodusz, Dawid, Joanna Brajczewska-Bello, Tomasz Rutkowski, Zofia Kołosza, Alexander Jorge Cortez, Magdalena Szymala-Cortez, Wojciech Leszczyński, and Jerzy Wydmański. 2024. "The Role of Ultrasound-Based Monitoring of Bladder Volume in Patients with Prostate Cancer during CyberKnife Stereotactic Radiosurgery" Applied Sciences 14, no. 19: 9091. https://doi.org/10.3390/app14199091
APA StyleBodusz, D., Brajczewska-Bello, J., Rutkowski, T., Kołosza, Z., Cortez, A. J., Szymala-Cortez, M., Leszczyński, W., & Wydmański, J. (2024). The Role of Ultrasound-Based Monitoring of Bladder Volume in Patients with Prostate Cancer during CyberKnife Stereotactic Radiosurgery. Applied Sciences, 14(19), 9091. https://doi.org/10.3390/app14199091