Pith. sign in

Pith Integrity · Reference Change Desk · events-only

Reference changes

See every place this corpus cites a work that was later retracted, corrected, withdrawn, or placed under expression of concern: exact quote, event source, and what happened next. No model judges the citation.

A notice on this page means a citing paper's bibliography includes a work with a published scholarly-record event. It is not a judgment on the citing paper.

Scoped to citing paper 2501.15684 · clear

01Events with corpus notices

02One-hop citation notices (secondary index)

Correction Crossref Open
Compensator-based small animal IMRT enables conformal preclinical dose painting: application to tumor hypoxia

cites AAPM protocol for 40-300 kV x-ray beam dosimetry in radiotherapy and radiobiology · ref [46] · event 2023-02-03 · 2501.15684 · event page · DOI 10.1118/1.1374247

Raw extraction · citation context

2017;44(6):2556-2568. doi:10.1002/mp.12251 35. Kawrakow I, Walters BRB. Efficient photon beam dose calculations using DOSXYZnrc with BEAMnrc. Med Phys. 2006;33(8):3046-3056. doi:10.1118/1.2219778 36. Ma CM, Coffey CW, DeWerd LA, et al. AAPM protocol for 40-300 kV x-ray beam dosimetry in radiotherapy and radiobiology. Med Phys. 2001;28(6):868-893. doi:10.1118/1.1374247 37. Paddick I. A simple scoring ratio to index the conformity of radiosurgical treatment plans. Technical not…

Parser render (TeX stripped for reading; raw above is the evidence)

2017;44(6):2556-2568. doi:10.1002/mp.12251 35. Kawrakow I, Walters BRB. Efficient photon beam dose calculations using DOSXYZnrc with BEAMnrc. Med Phys. 2006;33(8):3046-3056. doi:10.1118/1.2219778 36. Ma CM, Coffey CW, DeWerd LA, et al. AAPM protocol for 40-300 kV x-ray beam dosimetry in radiotherapy and radiobiology. Med Phys. 2001;28(6):868-893. doi:10.1118/1.1374247 37. Paddick I. A simple scoring ratio to index the conformity of radiosurgical treatment plans. Technical not…

Correction Crossref Open
Compensator-based small animal IMRT enables conformal preclinical dose painting: application to tumor hypoxia

cites SA-IMRT Using 3D-Printed Compensators · ref [43] · event 2021-08-30 · 2501.15684 · event page · DOI 10.1016/j.ijrobp.2020.12.028

Raw extraction · citation context

Yoon SW, Kodra J, Miles DA, Kirsch DG, Oldham M. A method for generating intensity-modulated radiation therapy fields for small animal irradiators utilizing 3D-printed compensator molds. Med Phys. 2020;47(9):4363-4371. doi:10.1002/mp.14175 33. Redler G, Pearson E, Liu X, et al. SA-IMRT Using 3D-Printed Compensators. Int J Radiat Oncol Biol Phys. 2021;110(2):551-565. doi:10.1016/j.ijrobp.2020.12.028 34. Wieser HP, Cisternas E, Wahl N, et al. Development of the open-source dose…

Parser render (TeX stripped for reading; raw above is the evidence)

Yoon SW, Kodra J, Miles DA, Kirsch DG, Oldham M. A method for generating intensity-modulated radiation therapy fields for small animal irradiators utilizing 3D-printed compensator molds. Med Phys. 2020;47(9):4363-4371. doi:10.1002/mp.14175 33. Redler G, Pearson E, Liu X, et al. SA-IMRT Using 3D-Printed Compensators. Int J Radiat Oncol Biol Phys. 2021;110(2):551-565. doi:10.1016/j.ijrobp.2020.12.028 34. Wieser HP, Cisternas E, Wahl N, et al. Development of the open-source dose…