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The irradiation tolerance dose of the proximal vagina
Samuel P. Au,
Perry W. Grigsby
Institute of Clinical and Translational Sciences (ICTS)
Division of Nuclear Medicine
Research output
:
Contribution to journal
›
Article
›
peer-review
54
Scopus citations
Overview
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Keyphrases
Complication Rate
100%
Tolerance Dose
100%
Radiation Tolerance
100%
External Irradiation
85%
All-source
71%
Low Dose Rate
57%
Dose Rate
57%
Low-dose-rate Brachytherapy
42%
HDR Brachytherapy
42%
High Dose
28%
Mucosa
28%
Radiation Dose
28%
Tolerance Limits
28%
Mucosal Dose
28%
Biological Equivalent Dose
28%
Tumor
14%
Treatment Planning
14%
Logistic Regression
14%
Radiation Therapy
14%
Logistic Regression Analysis
14%
Maximum Likelihood
14%
First Year
14%
Irradiation
14%
Dose-response
14%
Mucosal Surfaces
14%
Cervical Carcinoma
14%
Small Variation
14%
Pelvic Irradiation
14%
Surface Dose
14%
Biological Characteristics
14%
Rate Change
14%
Regression Techniques
14%
Late Sequelae
14%
Mucosal Tolerance
14%
Cross-correlation Coefficient
14%
Beta Ratio
14%
Radiation-associated
14%
Linear-quadratic Model
14%
Irradiation Dose Rate
14%
Medicine and Dentistry
Low Drug Dose
100%
Sequela
75%
High-Dose-Rate Brachytherapy
75%
Low-Dose-Rate Brachytherapy
75%
Drug Megadose
50%
Logistic Regression Analysis
50%
Equivalent Dose
50%
Mucosal Drug Administration
50%
Neoplasm
25%
Treatment Planning
25%
Mucosa
25%
Dose Response
25%
Uterine Cervix Carcinoma
25%
Mucosal Surface
25%
Single Drug Dose
25%
Pelvic Radiotherapy
25%
Maximum Likelihood Method
25%
Vagina Mucosa
25%
Linear Quadratic Models
25%
Alpha-Beta Ratio
25%
Radiation Therapy
25%
Nursing and Health Professions
Low Drug Dose
100%
Brachytherapy
85%
Drug Megadose
71%
Logistic Regression Analysis
28%
Equivalent Dose
28%
Mucosal Drug Administration
28%
Treatment Planning
14%
Neoplasm
14%
Correlation Coefficient
14%
Single Drug Dose
14%
Maximum Likelihood Method
14%
Fractionation
14%
Uterine Cervix Carcinoma
14%
Radiotherapy
14%