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Sun Nuclear Corporation high-density, small field diode array srs mapcheck
High Density, Small Field Diode Array Srs Mapcheck, supplied by Sun Nuclear Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/high-density, small field diode array srs mapcheck/product/Sun Nuclear Corporation
Average 90 stars, based on 1 article reviews
high-density, small field diode array srs mapcheck - by Bioz Stars, 2026-03
90/100 stars

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Sun Nuclear Corporation srs mapcheck (srsmc) diode array
Schematic of the StereoPHAN phantom with <t>SRS</t> <t>MapCHECK</t> <t>(SRSMC),</t> the ionization chamber insert, and the film insert: (a and b) measurement geometries for the field size and angle dependence evaluations and (a–c) measurement geometries for the dose verification of the tumor‐tracking irradiation system. The detector surface of the SRSMC inserted in the StereoPHAN agreed with the detector's active volume centers of the PTW microDiamond detector, Exradin A16 microchamber, and EBT‐XD film plane
Srs Mapcheck (Srsmc) Diode Array, supplied by Sun Nuclear Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
srs mapcheck (srsmc) diode array - by Bioz Stars, 2026-03
90/100 stars
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Sun Nuclear Corporation srs mapcheck 2d diode array
(a) The StereoPHAN phantom and the <t>SRS</t> <t>mapCHECK</t> diode array positioned on the couch for CT scanning. (b) An axial CT slice of the diode array with the TPS‐calculated dose distribution corresponding to the clinically used leaf offset parameter. Contours legend: targets: red, blue, and purple; brainstem‐like critical organ: green
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Average 90 stars, based on 1 article reviews
srs mapcheck 2d diode array - by Bioz Stars, 2026-03
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Sun Nuclear Corporation srs mapcheck small-field diode array insert
(a) The StereoPHAN phantom and the <t>SRS</t> <t>mapCHECK</t> diode array positioned on the couch for CT scanning. (b) An axial CT slice of the diode array with the TPS‐calculated dose distribution corresponding to the clinically used leaf offset parameter. Contours legend: targets: red, blue, and purple; brainstem‐like critical organ: green
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https://www.bioz.com/result/srs mapcheck small-field diode array insert/product/Sun Nuclear Corporation
Average 90 stars, based on 1 article reviews
srs mapcheck small-field diode array insert - by Bioz Stars, 2026-03
90/100 stars
  Buy from Supplier

90
Sun Nuclear Corporation srs mapcheck small-field diode array
(a) The StereoPHAN phantom and the <t>SRS</t> <t>mapCHECK</t> diode array positioned on the couch for CT scanning. (b) An axial CT slice of the diode array with the TPS‐calculated dose distribution corresponding to the clinically used leaf offset parameter. Contours legend: targets: red, blue, and purple; brainstem‐like critical organ: green
Srs Mapcheck Small Field Diode Array, supplied by Sun Nuclear Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/srs mapcheck small-field diode array/product/Sun Nuclear Corporation
Average 90 stars, based on 1 article reviews
srs mapcheck small-field diode array - by Bioz Stars, 2026-03
90/100 stars
  Buy from Supplier

Image Search Results


Schematic of the StereoPHAN phantom with SRS MapCHECK (SRSMC), the ionization chamber insert, and the film insert: (a and b) measurement geometries for the field size and angle dependence evaluations and (a–c) measurement geometries for the dose verification of the tumor‐tracking irradiation system. The detector surface of the SRSMC inserted in the StereoPHAN agreed with the detector's active volume centers of the PTW microDiamond detector, Exradin A16 microchamber, and EBT‐XD film plane

Journal: Journal of Applied Clinical Medical Physics

Article Title: Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system

doi: 10.1002/acm2.13645

Figure Lengend Snippet: Schematic of the StereoPHAN phantom with SRS MapCHECK (SRSMC), the ionization chamber insert, and the film insert: (a and b) measurement geometries for the field size and angle dependence evaluations and (a–c) measurement geometries for the dose verification of the tumor‐tracking irradiation system. The detector surface of the SRSMC inserted in the StereoPHAN agreed with the detector's active volume centers of the PTW microDiamond detector, Exradin A16 microchamber, and EBT‐XD film plane

Article Snippet: Recently, the Sun Nuclear Corporation (Melbourne, FL, USA) released the SRS MapCHECK (SRSMC) diode array.

Techniques: Irradiation

Comparison of the output factors (OPFs) measured by SRS MapCHECK (SRSMC), the microDiamond detector, and the microDiamond detector after the field output correction factors of TRS‐483 were applied. The upper graph shows the OPF measurement results, and the lower graph shows the percentage errors between the OPF measured by SRSMC and those measured by the microDiamond detector and the microDiamond detector after TRS‐483 corrections. Each measured value had an extremely small error range; thus we omitted error bars from the plots

Journal: Journal of Applied Clinical Medical Physics

Article Title: Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system

doi: 10.1002/acm2.13645

Figure Lengend Snippet: Comparison of the output factors (OPFs) measured by SRS MapCHECK (SRSMC), the microDiamond detector, and the microDiamond detector after the field output correction factors of TRS‐483 were applied. The upper graph shows the OPF measurement results, and the lower graph shows the percentage errors between the OPF measured by SRSMC and those measured by the microDiamond detector and the microDiamond detector after TRS‐483 corrections. Each measured value had an extremely small error range; thus we omitted error bars from the plots

Article Snippet: Recently, the Sun Nuclear Corporation (Melbourne, FL, USA) released the SRS MapCHECK (SRSMC) diode array.

Techniques: Comparison

Comparison of the absolute dose measured by SRS MapCHECK (SRSMC), the Exradin A16 microchamber, the Exradin A16 microchamber with the applied field output correction factors of TRS‐483, and the dose calculated by treatment planning system (TPS). The bottom graph shows the measured dose error of the SRSMC relative to the measured doses of the Exradin A16 microchamber, Exradin A16 microchamber after TRS‐483 corrections, and calculated dose. Error bars are omitted because the error range is small

Journal: Journal of Applied Clinical Medical Physics

Article Title: Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system

doi: 10.1002/acm2.13645

Figure Lengend Snippet: Comparison of the absolute dose measured by SRS MapCHECK (SRSMC), the Exradin A16 microchamber, the Exradin A16 microchamber with the applied field output correction factors of TRS‐483, and the dose calculated by treatment planning system (TPS). The bottom graph shows the measured dose error of the SRSMC relative to the measured doses of the Exradin A16 microchamber, Exradin A16 microchamber after TRS‐483 corrections, and calculated dose. Error bars are omitted because the error range is small

Article Snippet: Recently, the Sun Nuclear Corporation (Melbourne, FL, USA) released the SRS MapCHECK (SRSMC) diode array.

Techniques: Comparison

Angular dependence of SRS MapCHECK (SRSMC). The coordinates in the graph show the robot coordinates in the CyberKnife (CK). Each point shows the node coordinates placed around the central diode detector. The color bar in the upper left corner indicates the measured dose error (in %) of SRSMC relative to the measurement of the Exradin A16 microchamber

Journal: Journal of Applied Clinical Medical Physics

Article Title: Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system

doi: 10.1002/acm2.13645

Figure Lengend Snippet: Angular dependence of SRS MapCHECK (SRSMC). The coordinates in the graph show the robot coordinates in the CyberKnife (CK). Each point shows the node coordinates placed around the central diode detector. The color bar in the upper left corner indicates the measured dose error (in %) of SRSMC relative to the measurement of the Exradin A16 microchamber

Article Snippet: Recently, the Sun Nuclear Corporation (Melbourne, FL, USA) released the SRS MapCHECK (SRSMC) diode array.

Techniques:

Calculated (treatment planning system [TPS]) and measured (A16 and  SRS MapCHECK [SRSMC])  doses and dose errors

Journal: Journal of Applied Clinical Medical Physics

Article Title: Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system

doi: 10.1002/acm2.13645

Figure Lengend Snippet: Calculated (treatment planning system [TPS]) and measured (A16 and SRS MapCHECK [SRSMC]) doses and dose errors

Article Snippet: Recently, the Sun Nuclear Corporation (Melbourne, FL, USA) released the SRS MapCHECK (SRSMC) diode array.

Techniques:

Dose distribution analysis of SRS MapCHECK (SRSMC). (a) SRSMC versus FSPB+ dose (P0, absolute position), (b) SRSMC versus FSPB+ dose (P2, absolute position), (c) SRSMC versus FSPB+ dose (P0, relative position), and (d) SRSMC versus FSPB+ dose (P2, relative position). The upper panel shows the isodose overlay. The solid lines indicate the isodose line measured by SRSMC, whereas the dotted lines indicate the isodose line calculated by the treatment planning system (TPS). The lower panel shows the gamma analysis results. The blue dots show failure sections in the gamma analysis

Journal: Journal of Applied Clinical Medical Physics

Article Title: Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system

doi: 10.1002/acm2.13645

Figure Lengend Snippet: Dose distribution analysis of SRS MapCHECK (SRSMC). (a) SRSMC versus FSPB+ dose (P0, absolute position), (b) SRSMC versus FSPB+ dose (P2, absolute position), (c) SRSMC versus FSPB+ dose (P0, relative position), and (d) SRSMC versus FSPB+ dose (P2, relative position). The upper panel shows the isodose overlay. The solid lines indicate the isodose line measured by SRSMC, whereas the dotted lines indicate the isodose line calculated by the treatment planning system (TPS). The lower panel shows the gamma analysis results. The blue dots show failure sections in the gamma analysis

Article Snippet: Recently, the Sun Nuclear Corporation (Melbourne, FL, USA) released the SRS MapCHECK (SRSMC) diode array.

Techniques:

Dose distribution analysis of SRS MapCHECK (SRSMC): (a) SRSMC versus film (P0, relative position) and (b) SRSMC versus film (P2, relative position). The upper panel shows the isodose overlay. The solid lines indicate the isodose line measured by SRSMC, whereas the dotted lines indicate the isodose line measured by the film. The lower panel shows the gamma analysis results. The red and blue dotted areas show failure sections in the gamma analysis

Journal: Journal of Applied Clinical Medical Physics

Article Title: Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system

doi: 10.1002/acm2.13645

Figure Lengend Snippet: Dose distribution analysis of SRS MapCHECK (SRSMC): (a) SRSMC versus film (P0, relative position) and (b) SRSMC versus film (P2, relative position). The upper panel shows the isodose overlay. The solid lines indicate the isodose line measured by SRSMC, whereas the dotted lines indicate the isodose line measured by the film. The lower panel shows the gamma analysis results. The red and blue dotted areas show failure sections in the gamma analysis

Article Snippet: Recently, the Sun Nuclear Corporation (Melbourne, FL, USA) released the SRS MapCHECK (SRSMC) diode array.

Techniques:

Gamma pass rates between the dose distributions obtained by  SRS MapCHECK (SRSMC)  and treatment planning system (TPS) or EBT‐XD film

Journal: Journal of Applied Clinical Medical Physics

Article Title: Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system

doi: 10.1002/acm2.13645

Figure Lengend Snippet: Gamma pass rates between the dose distributions obtained by SRS MapCHECK (SRSMC) and treatment planning system (TPS) or EBT‐XD film

Article Snippet: Recently, the Sun Nuclear Corporation (Melbourne, FL, USA) released the SRS MapCHECK (SRSMC) diode array.

Techniques:

(a) The StereoPHAN phantom and the SRS mapCHECK diode array positioned on the couch for CT scanning. (b) An axial CT slice of the diode array with the TPS‐calculated dose distribution corresponding to the clinically used leaf offset parameter. Contours legend: targets: red, blue, and purple; brainstem‐like critical organ: green

Journal: Journal of Applied Clinical Medical Physics

Article Title: Impact of systematic MLC positional uncertainties on the quality of single‐isocenter multi‐target VMAT‐SRS treatment plans

doi: 10.1002/acm2.13708

Figure Lengend Snippet: (a) The StereoPHAN phantom and the SRS mapCHECK diode array positioned on the couch for CT scanning. (b) An axial CT slice of the diode array with the TPS‐calculated dose distribution corresponding to the clinically used leaf offset parameter. Contours legend: targets: red, blue, and purple; brainstem‐like critical organ: green

Article Snippet: Moreover, the commercially available StereoPHAN phantom in combination with the SRS mapCHECK 2D diode array (both produced by Sun Nuclear Corp., Melbourne, FL) were used for plan verification of a challenging VMAT‐SRS case and results are compared with TPS‐calculated dose distributions obtained after changing the clinically used leaf offset parameter.

Techniques: