Difference between revisions of "Repository"

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The project follows a structured, step-by-step approach. For each topic, an initial viewpoint is proposed by one or more contributors to stimulate further discussion. The goal is to encourage a broad spectrum of ideas, including diverse and potentially contrasting perspectives. To keep the dialogue focused, the content is divided into distinct chapters, each designed to function as an independent, stand-alone piece. These chapters are intended to evolve over time, shaped by contributions and feedback from the wider scientific community. Contributions can be made directly discussing with the authors, in written form or, where possible, expanded through live debates. Following these exchanges, chapters may be revised to reflect either a convergence toward shared understanding or a clear outline of differing viewpoints.
 
The project follows a structured, step-by-step approach. For each topic, an initial viewpoint is proposed by one or more contributors to stimulate further discussion. The goal is to encourage a broad spectrum of ideas, including diverse and potentially contrasting perspectives. To keep the dialogue focused, the content is divided into distinct chapters, each designed to function as an independent, stand-alone piece. These chapters are intended to evolve over time, shaped by contributions and feedback from the wider scientific community. Contributions can be made directly discussing with the authors, in written form or, where possible, expanded through live debates. Following these exchanges, chapters may be revised to reflect either a convergence toward shared understanding or a clear outline of differing viewpoints.
  
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==  CHAPTERS: ==
  
CHAPTERS:
 
  
  
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'''Chapter Green''' - Stochastic nature of radiation interactions. [[:File:Chapter Green-Stochasticity 0.1.docx|Chapter Green]]
 
'''Chapter Green''' - Stochastic nature of radiation interactions. [[:File:Chapter Green-Stochasticity 0.1.docx|Chapter Green]]
  
''- Supplementary material: Python code for visualizing ion energy loss in various materials, presented both as density distributions and in Rossi-style representations''  
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''- Python code for visualizing ion energy loss in various materials, presented both as density distributions and in Rossi-style representations:''  
 
[[:File:Distribution of the energy lost 5Sept2025.docx|Download Python code]]  
 
[[:File:Distribution of the energy lost 5Sept2025.docx|Download Python code]]  
[[:File:CSV file of Stopping and Range of protons StPowRange_proton.csv|StPowRange_proton.csv]]  
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[[:File:CSV file of Stopping and Range of carbon-ions StPowRange_carbon-ion.csv|StPowRange_carbon-ion.csv]]  
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''- Stopping power and range tables for Python code, to be uploaded in a folder "inputFiles" and converted to CSV format:
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1. [[:File:StPowRange_proton.xlsx|StPowRange_proton.xlsx]],
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2. [[:File:StPowRange_carbon-ion.xlsx|StPowRange_carbon-ion.xlsx]]  
  
 
'''Chapter Grey''' - Questions and Answers in various topics (incomplete). [[:File:Chapter Grey-Questions&Answers 0.1.docx|Chapter Grey]]
 
'''Chapter Grey''' - Questions and Answers in various topics (incomplete). [[:File:Chapter Grey-Questions&Answers 0.1.docx|Chapter Grey]]
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'''Intellectual Property (IP) Statement:'''
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'''Intellectual Property (IP)Statement:'''
  
''"These documents are the result of collaborative research conducted by the undersigned authors. All intellectual property rights associated with the content herein remain with MedAustron and the respective institutions of the contributing authors, and any use, reproduction, or distribution must be authorized by those institutions"''
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''"These documents are the result of collaborative research conducted by the undersigned authors. All intellectual property rights associated with the content herein remain with MedAustron and the respective institutions of other contributing authors, and any use, reproduction, or distribution must be authorized by those institutions"''

Latest revision as of 10:45, 20 October 2025

Topics on Microdosimetry in Ion-Beam Therapy

This work aims to compile both procedural and experimental advancements that define microdosimetry in the context of ion beam therapy.

The project follows a structured, step-by-step approach. For each topic, an initial viewpoint is proposed by one or more contributors to stimulate further discussion. The goal is to encourage a broad spectrum of ideas, including diverse and potentially contrasting perspectives. To keep the dialogue focused, the content is divided into distinct chapters, each designed to function as an independent, stand-alone piece. These chapters are intended to evolve over time, shaped by contributions and feedback from the wider scientific community. Contributions can be made directly discussing with the authors, in written form or, where possible, expanded through live debates. Following these exchanges, chapters may be revised to reflect either a convergence toward shared understanding or a clear outline of differing viewpoints.

CHAPTERS:

Chapter White - Scope. Chapter White

Chapter Red - Definitions. Chapter Red

Chapter Green - Stochastic nature of radiation interactions. Chapter Green

- Python code for visualizing ion energy loss in various materials, presented both as density distributions and in Rossi-style representations: Download Python code

- Stopping power and range tables for Python code, to be uploaded in a folder "inputFiles" and converted to CSV format: 1. StPowRange_proton.xlsx, 2. StPowRange_carbon-ion.xlsx

Chapter Grey - Questions and Answers in various topics (incomplete). Chapter Grey

Additional chapters to be written


Intellectual Property (IP)Statement:

"These documents are the result of collaborative research conducted by the undersigned authors. All intellectual property rights associated with the content herein remain with MedAustron and the respective institutions of other contributing authors, and any use, reproduction, or distribution must be authorized by those institutions"