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Sun Nuclear Corporation mapcheck 2
Mapcheck 2, supplied by Sun Nuclear Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/mapcheck/2+mapcheck/pmc13143553-154-47-49
Average 86 stars, based on 1 article reviews
mapcheck 2 - by Bioz Stars, 2026-09
86/100 stars

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Article Title: IBA myQA SRS Detector for CyberKnife Robotic Radiosurgery Quality Assurance
Article Snippet: An example is MapCHECK® (SunNuclear, Melbourne, Australia), a 7.7 cm× 7.7 cm 2D array composed of 1013 diodes w th a diagonal cente -to-center separation of 2.47 mm.

Article Title: Technical Note: Long-term monitoring of diode sensitivity degradation induced by proton irradiation.
Article Snippet: *Xiaoning Ding and Jiajian Shen are senior authors.. Abstract Purpose: To measure diode sensitivity degradation (DSD) induced by cumulative proton dose delivered to a commercial daily quality assurance (QA) device.. Methods: At our institution, six Daily QA 3 (DQA3, Sun Nuclear Corporation, Melbourne,FL,USA) devices have been used for daily proton pencil beam scanning QA in four proton gantry rooms over a span of 4 years.DQA3 diode counts were cross-calibrated using a homogenous field with a known dose of 1 Gy.The DSD rate (ΔR%/100 Gy) was calculated using linear regression on time-series plots of diode counts and an estimate of cumulative dose per year based on the cross-calibration.

Article Title: Dose delivery uncertainties assessment in the field junction region of craniospinal irradiation with Volumetric Modulated Arc Therapy using a robustness index and experimental dose verification
Article Snippet: These outcomes differ from findings of Lee et al. [ ], who showed that MapCHECK and ArcCHECK diode arrays (Sun Nuclear Corp., Melbourne, FL) demonstrate sensitivity in GI analysis within the overlapping regions of CSI when clinically relevant passing criteria are used.

Article Title: Correction Method for Depth and Field Size dependence in Octavius 1000 SRS patient-specific QA
Article Snippet: In this context, two-dimensional (2D) array detectors have become fundamental, with systems such as MapCheck (SunNuclear, Melbourne, FL) and Octavius (PTW, Freiburd, Germany) being extensively used for their efficiency in streamlining the verification process.

Article Title: 57th ANNUAL MEETING AND EXHIBITION.
Article Snippet: REVIEWERS J. Adamovics, H. Aerts, N. Agazaryan, E. Ahunbay, P. Alaei, A. Alessio, A. Altman, M. Andre, E. Angel, K. Antes, J. Antolak, F. Araki, G. Arbique, L. Archambault, M. Aristophanous, B. Arjomandy, S. Armato, B. Arnold, P. Aryal, M. Aspradakis, S. Avery, A. Badal, A. Badano, C. Baird, D. Bakalyar, P. Bakic, P. Balter, J. Battista, L. Beaulieu, G. Bednarz, R. Behling, C. Beltran, E. Bender, R. Berbeco, T. Bichay, J. Bissonnette, B. Blankenship, C. Bloch, W. Bolch, E. Boote, M. Bostani, S. Both, J. Bourland, S. Brady, I. Brezovich, K. Brock, D. Broga, S. Brown, K. Brown, J. Burmeister, J. Bushberg, J. Cai, D. Cao, Y. Cao, M. Cao, A. Carabe-Fernandez, D. Carlson, M. Chan, H. Chan, Z. Chang, J. Chang, S. Chang, Y. Chen, J. Chen, H. Chen, Q. Chen, G. Chen, Z. Chen, I. Chetty, K. Cheung, N. Childress, Y. Cho, S. Cho, J. Chow, E. Christodoulou, C. Chuang, G. Clarke, C. Clements, J. Clements, D. Cody, D. Connor, C. Coolens, R. Cormack, A. Corrao, O. Craciunescu, G. Cranmer-Sargison, J. Cunha, B. Curran, J. Daartz, M. Dahlbom, M. Danielsson, I. Das, G. David, J.. De Wyngaert, J. Deasy, A. Dekker, C. Delaney, J. DeMarco, M. Descovich, L. DeWerd, J. Deye, C. Diederich, S. Dieterich, G. Ding, Q. Diot, J. Dobbins, L. Dong, F. Dong, K. Drukker, W. D'Souza, W. Du, J. Ducote, E. Ehler, I. El Naqa, C. Esquivel, J. Evans, G. Ezzell, F. Fahey, B. Fahimian, K. Farahani, J. Farr, E. Feleppa, W. Feng, A. Fenster, K. Fetterly, V. Feygelman, M. Fix, J. Flanz, T. Flohr, D. Followill, J. Fontenot, E. Ford, R. Foster, J. Fowlkes, B. Fraass, P. Francescon, E. Frey, R. Fulkerson, H. Gao, O. Gayou, J. Gibbons, M. Giger, M. Gillin, E. Gingold, S. Glick, C. Glide-Hurst, S. Goddu, M. Goodsitt, J. Goodwin, J. Gordon, D. Gress, J. Grimm, X. Gu, H. Guan, M. Guerrero, F. Guo, A. Gutierrez, L. Hadjiiski, S. Hadley, J. Halama, X. Han, J. Hazle, K. Hendrickson, M. Herman, J. Hiatt, D. Hintenlang, E. Hipp, C. Holdsworth, M. Howard, R. Howell, D. Hristov, J. Hsieh, C. Hua, G. Hugo, K. Hulme, J. Humm, M. Hunt, Z. Huo, M. Huq, G. Ibbott, P. Imbergamo, D. Ionascu, E. Jackson, A. Jain, R. Jeraj, G. Jia, X. Jia, S. Jiang, J. Jin, J. Johnson, A. Jones, D. Jordan, M. Kachelriess, G. Kagadis, K. Kanal, H. Kang, R. Kapoor, S. Kappadath, A. Karellas, P. Keall, C. Keener, M. Kessler, G. Kim, Y. Kim, M. Kim, D. Kim, P. Kinahan, M. King, A. Kirov, E. Klein, T. Knoos, J. Kofler, J. Kruse, S. Kry, R. Kudchadker, Z. Labby, J. Lagendijk, K. Langen, U. Langner, R. LeClair, R. Lee, C. Lee, T. Lee, J. Lehmann, S. Leng, J. Lewis, X. Li, H. Li, X. Li, Y. Li, X. Li, G. Li, R. Li, S. Li, H. Li, J. Li, T. Li, K. Li, H. Li, H. Li, B. Libby, J. Limmer, T. Liu, C. Liu, B. Liu, W. Liu, C. Liu, H. Liu, X. Liu, T. LoSasso, D. Low, H. Lu, Z. Lu, W. Lu, G. Luxton, Y. Lyatskaya, C. Ma, J. Ma, L. MacDonald, R. MacDougall, J. MacFall, M. Madsen, G. Mageras, M. Mahesh, A. Maidment, G. Makrigiorgos, H. Malhotra, M. Mamalui-Hunter, P. Manser, A. Markovic, M. Martin, A. Mascia, J. Masten, R. Mather, K. Matthews, M. Matuszak, P. Mavroidis, O. Mawlawi, C. Mayo, S. McCullough, J. McDonough, K. McGee, S. McGuire, M. McKee, M. McKetty, M. McNitt-Gray, J. Mechalakos, M. Meineke, M. Meltsner, J. Meyer, T. Mian, M. Miften, D. Mihailidis, B. Miller, R. Miller, T. Mills, R. Miyaoka, V. Moiseenko, A. Molineu, S. Molloi, V. Montemayor, J. Moran, F. Mourtada, M. Moyers, S. Mutic, M. Nakamura, D. Nazareth, J. Nelson, W. Ngwa, K. Nie, R. Nishikawa, T. Nurushev, J. Nye, J. Oh, A. Olch, M. Oldham, L. Olsen, B. O'Neill, Z. Ouhib, N. Ozturk, H. Paganetti, H. Palmans, J. Palta, X. Pan, T. Pan, A. Panda, M. Pankuch, N. Papanikolaou, P. Parikh, S. Park, M. Park, S. Park, K. Parodi, G. Parraga, E. Parsai, A. Pasciak, V. Patel, W. Pavlicek, D. Pavord, N. Pelc, S. Pella, J.. Perks, J. Perl, P. Petti, M. Phillips, D. Pickens, T. Podder, M. Podgorsak, F. Poenisch, B. Pogue, R. Pooley, R. Price, A. Pugachev, T. Purdie, F. Ranallo, D. Rangaraj, K. Rasmussen, C. Reft, J. Reiff, I. Reiser, N. Remmes, L. Ren, S. Richard, S. Richardson, M. Rivard, S. Rivetti, D. Robinson, R. Rodgers, L. Rothenberg, D. Ruan, M. Rzeszotarski, J. Sabol, B. Sahiner, N. Sahoo, E. Sajo, M. Salehpour, B. Salter, V. Sathiaseelan, C. Saw, G. Sawakuchi, D. Scanderbeg, S. Schafer, M. Schell, J. Schewe, D. Schlesinger, T. Schmidt, D. Schofield, E. Schreibmann, B. Schueler, R. Schulte, I. Sechopoulos, J. Seco, J. Seibert, W. Sensakovic, C. Serago, J. Seuntjens, Y. Shao, G. Sharp, M. Sharpe, K. Sheng, D. Shepard, C. Shi, Y. Shu, J. Siebers, J. Siewerdsen, D. Simpkin, R. Sloboda, W. Smith, W. Smith, M. Snyder, J. Soen, E. Soisson, T. Solberg, J. Sonke, M. Speidel, J. St. Germain, R. Stafford, T. Stanescu, K. Stantz, G. Starkschall, J. Star-Lack, S. Stathakis, R. Staton, J. Stayman, S. Steciw, R. Stern, D. Stevens, R. Stewart, M. Su, T. Suh, M. Supanich, M. Svatos, D. Switzer, K. Taguchi, J. Tang, R. Tarver, M. Taylor, R. Ten Haken, R. Thomson, J. Timmer, J. Ting, D. Todor, J. Tomlinson, R. Tosh, A. Trofimov, B. Tsui, J. Unkelbach, F. Van den Heuvel, M. Vanderhoek, T. Varghese, S. Vedam, S. Vedantham, Y. Vinogradskiy, G. Virshup, D. Visvikis, A. Walz-Flannigan, L. Wang, D. Wang, J. Wang, A. Wang, J. Weaver, J. Weiser, D. Wells, R. Wendt, B. Whiting, K. Wijesooriya, C. Willis, T. Willoughby, B. Winey, J. Wong, E. Wong, A. Wroe, Q. Wu, H. Wu, P. Xia, Y. Xiao, L. Xing, T. Yamamoto, C. Yan, D. Yan, N. Yanasak, J. Yang, J. Yang, J. Yang, K. Yang, D. Yang, T. Yankeelov, S. Ye, S. Yee, K. Yenice, M. Yester, I. Yeung, B. Yi, F. Yin, E. Yorke, J. Yorkston, L. Yu, Y. Yu, C. Yu, M. Zaider, H. Zaidi, J. Zambelli, W. Zbijewski, O. Zeidan, D. Zhang, G. Zhang, D. Zhang, X. Zhang, B. Zhao, W. Zhao, Y. Zheng, H. Zhong, L. Zhu, X. Zhu, T. Zhu, X. Zhu, P. Zygmanski 3098 3098

Positron Emission Tomography:

Article Title: Methods for real-time image guided radiation therapy
Article Snippet: .. In some variations, the phantom may not be PET-avid, and may, for example, comprise an array of detectors, such as ARCCHECK® and MAPCHECK® (by Sun Nuclear Corporation), MATRIXX by IBA Dosimetry, PTW Seven29, and/or radiographic films, and may be located within a patient treatment area (e.g., on a patient platform and/or within a bore of a circular gantry) and/or disposed in the beam path of the radiation source (e.g., downstream from the beam collimation system, over the MLC, etc.). ..

Imaging:

Article Title: Retrospective evaluation of intranasal carcinomas in cats treated with external‐beam radiotherapy: 42 cases
Article Snippet: .. For each treatment field, gamma analysis was performed by using Mapcheck® (Sun Nuclear Corporation, Melbourne, FL) or electronic imaging devices equipped on the linear accelerators and comparing the measured data with the planned data. ..

Software:

Article Title: The effect of dose gradients on gamma comparison insensitivity in patient specific QA comparisons.
Article Snippet: Correspondence Jennifer M. Steers, Department of Radiation Oncology, Cedars-Sinai Medical Center, 8700 Beverly Blvd., North Tower, LL AC1057, Los Angeles, CA 90048, USA.. Email: jennifer.steers@cshs.org Abstract Background: While many have speculated on the reasons for gamma comparison insensitivity for patient-specific quality assurance analysis, the true reasons for insensitivity have not yet been elucidated.. Failing to understand the reasons for this technique’s insensitivity limits our ability to either improve the gamma metric to increase sensitivity of the comparison or the capacity to develop new comparison techniques that circumvent the limitations of the gamma comparison.



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Image Search Results


Bland–Altman plots with difference between electronic portal imaging device (EPID) and SRS MapCHECK ® for gamma analysis criteria 2% (DD) and 1 mm (DTA). PDIP: portal dose image prediction, PF: PerFRACTION™, 2D: 2-dimensional, 3D: 3-dimensional, DD: Dose Difference, DTA: Distance to Agreement

Journal: Radiation and Environmental Biophysics

Article Title: Efficacy and clinical use of novel high-resolution EPID-based 2D and 3D automated patient-specific quality assurance for SRS and SBRT patients

doi: 10.1007/s00411-025-01182-8

Figure Lengend Snippet: Bland–Altman plots with difference between electronic portal imaging device (EPID) and SRS MapCHECK ® for gamma analysis criteria 2% (DD) and 1 mm (DTA). PDIP: portal dose image prediction, PF: PerFRACTION™, 2D: 2-dimensional, 3D: 3-dimensional, DD: Dose Difference, DTA: Distance to Agreement

Article Snippet: To overcome these limitations, new commercial high resolution array detectors, such as myQA SRS (Ion Beam Applications, Germany) and SRS MapCHECK ® (Sun Nuclear Corporation, USA) have been developed and are available for SRS and SBRT QA.

Techniques: Imaging