Literature DB >> 18503356

A simple dose gradient measurement tool to complement the conformity index.

Ian Paddick1, Bodo Lippitz.   

Abstract

A dose gradient index (GI) is proposed that can be used to compare treatment plans of equal conformity. The steep dose gradient outside the radiosurgical target is one of the factors that makes radiosurgery possible. It therefore makes sense to measure this variable and to use it to compare rival plans, explore optimal prescription isodoses, or compare treatment modalities. The GI is defined as the ratio of the volume of half the prescription isodose to the volume of the prescription isodose. For a plan normalized to the 50% isodose line, it is the ratio of the 25% isodose volume to that of the 50% isodose volume. The GI will differentiate between plans of similar conformity, but with different dose gradients, for example, where isocenters have been inappropriately centered on the edge of the target volume. In a retrospective series of 50 dose plans for the treatment of vestibular schwannoma, the optimal prescription isodose was assessed. A mean value of 40% (median 38%, range 30-61%) was calculated, not 50% as might be anticipated. The GI can show which of these prescription isodoses will give the steepest dose falloff outside the target. When planning a multiisocenter treatment, there may be a temptation to place some isocenters on the edge of the target. This has the apparent advantage of producing a plan of good conformity and a predictable prescription isodose; however, it risks creating a plan that has a low dose gradient outside the target. The quality of this dose gradient is quantified by the GI.

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Year:  2006        PMID: 18503356     DOI: 10.3171/sup.2006.105.7.194

Source DB:  PubMed          Journal:  J Neurosurg        ISSN: 0022-3085            Impact factor:   5.115


  148 in total

1.  Gamma Knife radiosurgery as a treatment modality for low-grade pediatric brainstem gliomas: report of two cases.

Authors:  Chih-Hsiang Liao; David Hung-Chi Pan; Huai-Che Yang; Hsiu-Mei Wu; Donald Ming-Tak Ho; Tai-Tong Wong; Yang-Hsin Shih
Journal:  Childs Nerv Syst       Date:  2011-10-30       Impact factor: 1.475

2.  Consideration of optimal isodose surface selection for target coverage in micro-multileaf collimator-based stereotactic radiotherapy for large cystic brain metastases: comparison of 90%, 80% and 70% isodose surface-based planning.

Authors:  K Ohtakara; S Hayashi; H Tanaka; H Hoshi
Journal:  Br J Radiol       Date:  2012-03-14       Impact factor: 3.039

3.  Effective method to reduce the normal brain dose in single-isocenter hypofractionated stereotactic radiotherapy for multiple brain metastases.

Authors:  Jialu Lai; Jia Liu; Jianling Zhao; An Li; Shoupeng Liu; Zhonghua Deng; Qiaoyue Tan; Haitao Wang; Yuming Jia; Kaijian Lei; Lin Zhou
Journal:  Strahlenther Onkol       Date:  2021-03-16       Impact factor: 3.621

4.  Stereotactic radiotherapy for choroidal melanomas by means of HybridArc™ : Physics and technique of linac-based photon beam therapy.

Authors:  Markus Wösle; Lothar Krause; Shanthala Sreenivasa; Dirk Vordermark; Ilja F Ciernik
Journal:  Strahlenther Onkol       Date:  2018-08-16       Impact factor: 3.621

Review 5.  Influence of segment width on plan quality for volumetric modulated arc based stereotactic body radiotherapy.

Authors:  Karthikeyan Nithiyanantham; Ganesh Kadirampatti Mani; Vikraman Subramani; Karrthick Karukkupalayam Palaniappan; Mohanraj Uthiran; Sennniandavar Vellengiri; Sambasivaselli Raju; Sanjay S Supe; Tejinder Kataria
Journal:  Rep Pract Oncol Radiother       Date:  2014-04-16

6.  Outcomes following stereotactic radiosurgery for small to medium-sized brain metastases are exceptionally dependent upon tumor size and prescribed dose.

Authors:  Fabio Y Moraes; Jeff Winter; Eshetu G Atenafu; Archya Dasgupta; Hamid Raziee; Catherine Coolens; Barbara-Ann Millar; Normand Laperriere; Maitry Patel; Mark Bernstein; Paul Kongkham; Gelareh Zadeh; Tatiana Conrad; Caroline Chung; Alejandro Berlin; David B Shultz
Journal:  Neuro Oncol       Date:  2019-02-14       Impact factor: 12.300

7.  Optimal prescription isodose line in SBRT for lung tumor treatment with volumetric-modulated arc therapy.

Authors:  David Wang; Albert DeNittis; Tracey Evans; Thomas Meyer
Journal:  J Radiosurg SBRT       Date:  2020

8.  Clinical outcomes of multileaf collimator-based CyberKnife for spine stereotactic body radiation therapy.

Authors:  Nalee Kim; Ho Lee; Jin Sung Kim; Jong Geal Baek; Chang Geol Lee; Sei Kyung Chang; Woong Sub Koom
Journal:  Br J Radiol       Date:  2017-09-04       Impact factor: 3.039

9.  Evaluation of multiple factors affecting normal brain dose in single-isocenter multiple target radiosurgery.

Authors:  Yu Yuan; Evan M Thomas; Grant A Clark; James M Markert; John B Fiveash; Richard A Popple
Journal:  J Radiosurg SBRT       Date:  2018

10.  First year experience with newly developed Leksell Gamma Knife Perfexion.

Authors:  Jagdish P Bhatnagar; Josef Novotny; Ajay Niranjan; Douglas Kondziolka; John Flickinger; Dade Lunsford; M Saiful Huq
Journal:  J Med Phys       Date:  2009-07
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