| Literature DB >> 26621254 |
Petronella M Kager1, Sanne C C van Weerdenburg2, Simon R van Kranen3, Suzanne van Beek4, Elisabeth A Lamers-Kuijper5,6, Wilma D Heemsbergen7, Olga Hamming-Vrieze8, Peter Remeijer9.
Abstract
BACKGROUND: Plan adaptation during the course of (chemo)radiotherapy of H&N cancer requires repeat CT scanning to capture anatomy changes such as parotid gland shrinkage. Hydration, applied to prevent nephrotoxicity from cisplatin, could temporarily alter the hydrogen balance and hence the captured anatomy. The aim of this study was to determine geometric changes of parotid glands as function of hydration during chemoradiotherapy compared to a control group treated with radiotherapy only.Entities:
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Year: 2015 PMID: 26621254 PMCID: PMC4665881 DOI: 10.1186/s13014-015-0554-x
Source DB: PubMed Journal: Radiat Oncol ISSN: 1748-717X Impact factor: 3.481
Patient and treatment characteristics
| Patient characteristics | CRT ( | RT ( |
| |
|---|---|---|---|---|
| Gender | Male | 14 | 11 | 0.495 |
| Female | 5 | 8 | ||
| Age in years | Mean (range) | 58 (42–71) | 62 (47–81) | 0.254 |
| Tumor site | Nasopharynx (T3-T4) | 2 | 1 | 0.324 |
| Oropharynx (T1-T4) | 15 | 13 | ||
| Hypopharynx (T2-T4) | 2 | 2 | ||
| Larynx (T2-T3) | 0 | 3 | ||
| pCT: PG volume (cm3) | Mean (range) | 20 (7–47) | 24 (13–44) | 0.082 |
| pCT: medio-lateral distance between PGs (cm) | Mean (range) | 12 (10–13) | 11 (10–13) | 0.358 |
| Planned dose ipsilateral PG (Gy) | Mean | 40.7 | 34.5 | 0.148 |
| SD | 11.7 | 12.2 | ||
| Planned dose contralateral PG (Gy) | Mean | 27.2 | 23.0 | 0.122 |
| SD | 8.1 | 7.9 | ||
| Body weight | Mean pre-treatment (kg) | 70 | 78 | 0.373 |
| Mean loss (%) | 7.9 | 5.6 | ||
| Tube feeding | Number of patients | 15 | 6 | 0.008 |
CRT chemoradiotherapy group, RT radiotherapy alone group, pCT planning CT, PG(s) parotid gland(s)
Fig. 1Overall volume and positional change of the parotid glands. Volumetric change of the parotid glands (PGs) (a) and distance change between the PGs in medio-lateral direction (b) from the start of treatment. The black line corresponds to the average of the chemoradiotherapy (CRT) group, the grey line corresponds to the average of the radiotherapy alone (RT) group. RT starts at treatment day 1. Saline solution was administered during the first, second and third chemotherapy cycle, respectively during the first, fourth and seventh week of treatment (arrows). Most patients in the RT alone group received RT with an accelerated scheme, therefore the grey line stops at week 6
Effect of hydration on parotid gland volume and position during chemoradiotherapy
| PG volume change relative to day−3 (%) | |||||||
| CRT | RT | CRT – RT | |||||
| Mean | Median | Mean | Median | Mean | Median |
| |
| day−3 | 86.3 | 87.7 | 86.7 | 87.1 | |||
| day1 – day−3 | +2.1 | +1.8 | −5.1 | −4.5 | 7.2 | 6.3 | <0.001 |
| day2 – day−3 | +5.1 | +5.4 | −5.6 | −3.8 | 10.8 | 9.2 | <0.001 |
| day3 – day−3 | +1.4 | −1.8 | −5.6 | −4.7 | 7.0 | 2.8 | 0.016 |
| day4 – day−3 | −5.4 | −6.9 | −7.7 | −7.3 | 2.2 | 0.4 | 0.601 |
| day5 – day−3 | −4.8 | −4.8 | −6.8 | −6.7 | 2.0 | 1.9 | 0.511 |
| Medio-lateral distance change between PGs relative to day−3 (cm) | |||||||
| CRT | RT | CRT – RT | |||||
| Mean | Median | Mean | Median | Mean | Median |
| |
| day−3 | −0.24 | −0.25 | −0.30 | −0.31 | |||
| day1 – day−3 | +0.06 | +0.04 | −0.09 | −0.09 | 0.15 | 0.13 | <0.001 |
| day2 – day−3 | +0.12 | +0.09 | −0.10 | −0.08 | 0.22 | 0.17 | <0.001 |
| day3 – day−3 | +0.03 | +0.00 | −0.09 | −0.10 | 0.12 | 0.10 | 0.109 |
| day4 – day−3 | −0.08 | −0.13 | −0.14 | −0.11 | 0.06 | −0.02 | 0.718 |
| day5 – day−3 | −0.08 | −0.08 | −0.12 | −0.12 | 0.03 | 0.04 | 0.554 |
Volume and position were determined from CBCT scans and expressed relative to the planning CT. Baseline volume and position were taken three days prior to start of hydration in the second chemotherapy cycle (week 4). Hydration started around treatment day 21, this day was renamed day 0. Significance (Mann–Whitney U-test) was tested against a control group receiving radiotherapy only. No significant results were found for the distance change between parotid glands in dorso-ventral and cranio-caudal direction
PG(s) parotid gland(s), CRT chemoradiotherapy group, RT radiotherapy alone group
Fig. 2Volume change of the parotid glands during the fourth week of treatment. Mean parotid gland volume for the chemoradiotherapy (CRT) group and the radiotherapy alone (RT) group, relative to the start of hydration (renamed day 0) during the second chemotherapy cycle of the CRT group in the fourth week of treatment (a). Volumetric change of the parotid glands between 3 days prior and 2 days after starting hydration within the CRT group and the RT group (b)
Fig. 3Positional change of the parotid glands during the fourth week of treatment. Mean distance change between the parotid glands (PGs) in medio-lateral direction for the chemoradiotherapy (CRT) group and the radiotherapy alone (RT) group, relative to the start of hydration (renamed day 0) during the second chemotherapy cycle of the CRT group in the fourth week of treatment (a). Distance change between the PGs in medio-lateral direction between 3 days prior and 2 days after starting hydration within the CRT group and the RT group (b)