X-ray detector for proton transit detection apparatus and method of use thereof
US-9855444-B2 · Jan 2, 2018 · US
US10118052B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10118052-B2 |
| Application number | US-201715727596-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 7, 2017 |
| Priority date | May 27, 2016 |
| Publication date | Nov 6, 2018 |
| Grant date | Nov 6, 2018 |
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The invention comprises a method for installing a proton based cancer therapy system in a hospital related brownfield building, comprising the steps of: (1) transporting gantry system elements to a basement of the brownfield, the gantry system comprising: a rotatable gantry support; a gantry counterweight; a rotatable gantry arm, and a main bearing, comprising: a diameter of at least ten feet, a first circular segment, comprising a first arc-to-chord section, a second circular segment, comprising a second arc-to-chord section, and an intermediate section; (2) transporting through a pre-existing elevator shaft in the hospital related brownfield building the main bearing in a disassembled form; and (3) after the step of transporting through the pre-existing elevator shaft, assembling the gantry system on the ground floor, the step of assembling comprising attaching the first circular segment of the main bearing to the second circular segment of the main bearing using the intermediate section.
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The invention claimed is: 1. A method for installing a cancer therapy system in a hospital related brownfield building, comprising the steps of: transporting sectional elements of a gantry system from a first floor of the hospital related brownfield building to a lower floor, said gantry system comprising: a set of bearings; a rotatable gantry support, rotatable on said set of bearings, comprising a first rotatable gantry section and a second rotatable gantry section; a gantry counterweight comprising a first counterweight section and a second counterweight section, said gantry counterweight attachable to said rotatable gantry support; a rotatable gantry arm, comprising: a first rotatable arm section attachable to said rotatable gantry support; a second rotatable arm section, attachable to said first rotatable arm section, circumferentially surrounding a section of a charged particle beamline; and a third rotatable section attachable to at least one of said set of bearings; said set of bearings comprising a main bearing, said main bearing comprising: a diameter of at least ten feet; a first circular segment, comprising a first arc-to-chord section; a second circular segment, comprising a second arc-to-chord section; and an intermediate section; transporting through a pre-existing elevator shaft in the hospital related brownfield building said main bearing in a disassembled form; and after said step of transporting through said pre-existing elevator shaft, assembling said gantry system on the lower floor, said step of assembling comprising attaching said first circular segment of said main bearing to said second circular segment of said main bearing using said intermediate section. 2. The method of claim 1 , further comprising the step of: assembling a beam transport line from a synchrotron, along said rotatable gantry section, and through said second rotatable gantry arm section, wherein all turning magnets of said synchrotron and said beam transport line comprise a single magnet design. 3. The method of claim 2 , further comprising the step of: installing a first time of flight detection panel between a second time of flight detection panel and a tumor treatment position of said cancer therapy system. 4. The method of claim 1 , further comprising the step of: entering a treatment room, of said cancer therapy system, through said main bearing. 5. The method of claim 4 , further comprising the step of: installing a first time of flight detection panel opposite a patient imaging position from an exit nozzle position positionable by said rotatable gantry arm.
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