>
Fa   |   Ar   |   En
   enhancing fricke xylenol gel dosimeter’s response to radiation with optimized preparation methods  
   
نویسنده mohamed shajid syed ,mandal abhijit ,mondal kalyan ,gogul priean v ,mukherjee bratindranath ,pandey praveen chandra ,mishra himanshu ,mishra ritusha ,patel ganeshkumar ,mourya ankur ,aggarwal lalit mohan ,choudhary sunil
منبع iranian journal of medical physics - 2025 - دوره : 22 - شماره : 1 - صفحه:44 -49
چکیده    Introduction: the fundamental principle of the fricke gel dosimeter involves the oxidation of ferric ions upon exposure to radiation. however, a significant limitation of this dosimeter is the post-irradiation diffusion of ferric ions, which can result in the degradation of spatial dose information.material and methods: gels were prepared using 300 bloom gelatin, deionized water, sulfuric acid, ferrous ammonium sulfate, and xylenol orange dye (sigma-aldrich). the solution was then poured into 10 ml plastic cuvettes.. the gel samples were refrigerated at various temperatures for 1 to 10 days and irradiated within a water bath environment utilizing a telecobalt unit (phoenix, theratronics) employing parallel opposed beams. spectrophotometric analysis at  a wavelength of 585 nm was used to measured optical density changes with dose.. this procedure was repeated across gel formulations prepared under differing ph conditions.results: the gel’s optimum ph value, which was stored for 10 days at 5° c, showed a linear response up to 10 gy, although the storage time was longer than that of the gels with low (0.3) and high ph (1.3). the auto oxidation rate was determined and found to be less for non-irradiated gel batches stored at 5° c in relation to the gel samples at room temperature and freezing temperature.conclusion: the dose response of the dosimeter is highly dependent on its ph, composition, alkaline residuals, and pre-irradiation storing conditions.. we observed the optimum ph is 1, at which the dosimeter shows a maximum response. storing gel samples at 5°c notably reduces the fe2+ to fe3+ auto-oxidation rate.
کلیدواژه cancer ,radiation therapy ,fricke solutions ,spectrophotometry
آدرس banaras hindu university., institute of medical sciences, department of radiotherapy and radiation medicine, india, banaras hindu university, institute of medical sciences, department of radiotherapy and radiation medicine, india, banaras hindu university, institute of medical sciences, department of radiotherapy and radiation medicine, india, banaras hindu university, institute of medical sciences, department of radiotherapy and radiation medicine, india, banaras hindu university, institute of technology, department of metallurgical engineering, india, banaras hindu university, institute of technology, department of physics, india, banaras hindu university, institute of medical sciences, department of radiotherapy and radiation medicine, india, banaras hindu university, institute of medical sciences, department of radiotherapy and radiation medicine, india, banaras hindu university, institute of medical sciences, department of radiotherapy and radiation medicine, india, banaras hindu university., institute of medical sciences, department of radiotherapy and radiation medicine, india, banaras hindu university, institute of medical sciences, department of radiotherapy and radiation medicine, india, banaras hindu university, institute of medical sciences, department of radiotherapy and radiation medicine, india
پست الکترونیکی drsunil104@gmail.com
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved