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As a consequence, a well-planned radiotherapy dose is concentrated on areas where tumours have been located, preferentially killing tumour cells and largely sparing healthy tissue and organs.
They are also used as tumour detector [5], paclitaxel [6] and radiotherapy dose enhancer [7, 8].
The standard radiotherapy dose is 60 Gy in 2-Gy fractions.
This study has been designed to reduce the radiotherapy dose from the brachytherapy component of cervical cancer treatment to the urinary bladder to minimize radiation-induced morbidity.
To propose a new measure of target underdose that can be used in the evaluation and optimization of radiotherapy dose distributions.
We aimed to assess whether a patient-specific molecular signature of radiation sensitivity could be used to identify the optimum radiotherapy dose.
These interpolated data sets will be used in conjunction with another predictive framework that has been developed at Queen's University Belfast which expresses the enhanced biological response of NP-doped cells/systems in terms of standard photon radiotherapy dose.
Additionally, if NP contrast agents can be functionalised to highlight tumour burden and hypoxia regions they may offer the opportunity for a different type of conformal radiotherapy: dose painting (Ling et al. 2000).
This can help reduce the chance for surviving cancer cells to divide and grow in the intervals between each radiotherapy dose.
We presented a cross sectional comparison at the time when the mean radiotherapy dose was the same in the acupuncture and the standard care cohorts.
dThe median radiotherapy dose is 63 Gy.
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