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BistroMath

BistroMath. Theo van Soest, 1 november 2012. Inhoud. Aanleiding. Profielen. PDD’s. Bestandsformaten. Afgeleide resultaten. Asymmetrisch veld. ?. Geen penumbra. ?. Standaardprofiel: welke eisen?. NCS-8 ?. Controle ten opzichte van commissioning ?.

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BistroMath

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  1. BistroMath Theo van Soest, 1 november 2012

  2. Inhoud Aanleiding Profielen PDD’s Bestandsformaten Afgeleide resultaten

  3. Asymmetrisch veld ?

  4. Geen penumbra ?

  5. Standaardprofiel: welke eisen? NCS-8 ? Controle ten opzichte van commissioning ? Controle ten opzichte van planningssysteem ? Controle ten opzichte van generieke bundel ?

  6. Standaardprofiel Beam Modulator: bol ? NCS-8 ?

  7. Bijregelen: energie en/of symmetrie?

  8. Oplossing: vergelijking met referentie Hoe te vergelijken? Hoe leg je verschillen vast? Welke normen?

  9. Bijregelen ten opzichte van referentie

  10. Bijregelen ten opzichte van referentie

  11. Bijregelen ten opzichte van referentie?

  12. Bijregelen ten opzichte van referentie energie en/of symmetrie?

  13. Bijregelen ten opzichte van referentie energie en symmetrie!

  14. Bijregelen ten opzichte van referentie

  15. Bijregelen ten opzichte van referentie besluit op basis van verschildata

  16. Standaardprofiel Beam Modulator: bol

  17. Geen penumbra

  18. Vergelijking met generieke bundel nieuw toestel, ander model ?

  19. Vergelijking met generieke bundel maak alias

  20. Vergelijking met generieke bundel normalisatiepunt ok?

  21. Vergelijking met generieke bundel normalisatie op gemiddelde flattened area

  22. FFF: veldgrenzen data: NKI/Thijs Perik, referentie is tot inplane verbouwd crossplane-profiel

  23. FFF: verschillen is (dosis)verschil nog juiste parameter?

  24. FFF: gamma-analyse?

  25. settings

  26. pdd

  27. pdd: configuratie

  28. pdd: NCS-18 + generieke bundels relatieve normalisatiepunt absolute normalisatiepunt

  29. Koppeling met BistroMath Invoer via bestanden • Scanditronixº (.wtx +.wda) • OmniPro 6.xº tekstbestanden • OmniPro 7 tekstbestanden • OmniPro RFA300º* (.asc) • PTW *(.mcc) • SN exportformaat^ (.snctxt) Invoer via klembord • OmniPro 6.x • OmniPro 7 • PTW-mcc • SN-klembord º tevens exportformaat * multiple profielen ondersteund ^ fabrikant heeft software verbeterd tijdens evaluatie

  30. Scanditronix (.wtx): handig, voldoende effe.wda "27-APR-2011" "selftest" "15:28:00" YXZ 1 -1 1 7820 10000 0 0 1 1 GG -2352 0 500 2443 0 500 -2352 2443 0.075 1.500 100.000 0.010 100.000 100.000 1 0 XO 0.000 6.000 50.000 50.000 0.000 0.000 0.000 0 0.000 0.000 0.000 100.000 "selftest" "" "" "" "" "" "" "" "CU500E" "" " " 0.000 SS documentatie beschikbaar (...vervolg) 0 0 ‘ 640 0 2330 500 -92 10000 0 2322 500 -38 10000 0 2316 500 -2 10000 0 2307 500 33 10000 0 2300 500 72 10000

  31. Omnipro 6.x: zeer uitgebreid Clinic: Radiotherapie UMC Utrecht Address: Heidelberglaan 100, Utrecht Telephone: 030-2507209 Email: radiotherapy@azu.nl Beam Description: Radiation device U08 Energy 18 MeV Electron Wedge: 0 ° Gantry 0 °(0°up, CW) Collimator 0 ° SSD, SAD [cm]: 100 100 Applicator: No Applicator Field size [cm x cm]: 20 x 20 Field position inline (min, max) [cm]: -10 10 Field position crossline (min, max) [cm]: -10 10 Medium: Water CurveType: Crossline Profile Curve Description: Measurement Time: 2005-09-19 16:01:29 Modification Time: 2005-09-19 16:50:14 Operator: Measurement comment: Setup comment: Renormalise factor: 1,2 Curve offset [cm]: - Detector Quantity: Relative Dose Detector Type: diode Single Diode Offset to P eff [cm]: 0,05 (...vervolg) Electrometer Electrometer type: CU500E Measurement mode: Continuous Reference division: - Reference (avg, min, max): 1238 1213 1261 Measurements per point: - Sampling time [ms]: 0 HV type: - Normalisationvalue, field andreference: 1036 1025 Dark current, field andreference: -48 18 High voltage, field andreference [V]: 0 0 Gain, field andreference: 18 18 Range, field andreference: HIGH HIGH Servo Servo type: Blue 48 48 41 Scan Speed [mm/s]: 5,1 Water surfacecorrection [cm]: 8,7 Water offset correction [cm]: 0 Origin [X, Y, Z] [cm]: -1,02 -1,83 3,38 Servoaxis [I, C, D]: -Y X -Z Isocentre [I, C, D] [cm]: 0 0 0 Normalisation [I, C, D] [cm]: 0 0 2,23 Position A [I, C, D] [cm]: -1,83 1,02 3,44 Position B [I, C, D] [cm]: -1,83 1,02 3,44 Position C [I, C, D] [cm]: -1,83 1,02 3,44 Position D [I, C, D] [cm]: -1,83 1,02 3,44 Number Of Points: 340 Start Point [I,C,D] [cm]: 0 -11,86 3 End Point [I,C,D] [cm]: 0 11,86 3 Points [cm]: InlineCrossline Depth RelativeDose 0 -11,86 3 2,46 0 -11,8 3 2,70

  32. Omnipro 7.x: sterk uitgekleed, onvoldoende 4-5-2011 15:15:59 Radiation device: U03 Accelerator Energy: 6 MeV Controller: CU500E Measurement device: BlueWP484841 Field detector: Diode Reference detector: Undefined SAD: 1000 mm SSD: 1000 mm Field size: 60 x 100 mm Gantry angle: 0 Measurement medium: Water Scan type: Inline Scan mode: Continuous Points [mm]: Inline Crossline Depth Normalized field Current field Ratio 71.0 0.0 13.0 0.8 0 0.0 70.5 0.0 13.0 0.9 0 0.0 70.1 0.0 13.0 0.8 0 0.0 69.6 0.0 13.0 0.8 0 0.0 69.3 0.0 13.0 0.8 0 0.0 wig? waterbakoriëntatie? collimator? veld: GT x AB ? scanrichting? datarichting: GT of TG?

  33. RFA300 (.asc): beperkt, onvoldoende :MSR 10 # No. of measurements in file :SYS BDS 0 # Beam Data Scanner System # # RFA300 ASCII Measurement Dump ( BDS format ) # # Measurement number 1 # %VNR 1.0 %MOD RAT %TYP SCN %SCN PRO %FLD ION %DAT 03-27-2008 %TIM 15:57:33 %FSZ 400 400 %BMT PHO 6.0 %SSD 1000 %BUP 0 %BRD 1000 %FSH -1 %ASC 0 %WEG 0 %GPO 0 %CPO 90 %MEA 2 %PRD 160 %PTS 637 %STS 0.0 -236.6 16.0 # Start Scan values in mm ( X , Y , Z ) %EDS 0.0 242.9 16.0 # End Scan values in mm ( X , Y , Z ) ! U04 ! # # X Y Z Dose # = 0.0 -231.9 16.0 5.9 linac? (via comment) waterbakoriëntatie? veld: GT x AB ? x, y, z = ? datarichting: GT of TG?

  34. Spin-off: residu gefitte pdd-data

  35. Conclusies Data-export via klembord mogelijk voor alle fabrikanten Data-import moeilijk of onmogelijk Uitwisselbaarheid essentieel voor analyseplatform Data-analyse voldoet niet in standaard-oplossingen

  36. Bistromathics http://bistromath.kegge13.nl "Bistromathics itself is simply a revolutionary new way of understanding the behavior of numbers. Just as Albert Einstein's general relativity theory observed that space was not an absolute but depended on the observer's movement in time, and that time was not an absolute, but depended on the observer's movement in space, so it is now realized that numbers are not absolute, but depend on the observer's movement in restaurants." Douglas Adams; Life, the Universe and Everything, 1982

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