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Optimal Configuration of Proton Therapy Accelerators for Proton Computed Tomography RSP Resolution

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arxiv 2111.02712 v1 pith:JBONKYTG submitted 2021-11-04 physics.med-ph physics.acc-ph

Optimal Configuration of Proton Therapy Accelerators for Proton Computed Tomography RSP Resolution

classification physics.med-ph physics.acc-ph
keywords protonbeamenergycomputedcyclotrondeterminationenergiesimaging
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The determination of relative stopping power (RSP) via proton computed tomography (pCT) of a patient is dependent in part on the knowledge of the incoming proton kinetic energies; the uncertainty in these energies is in turn determined by the proton source -- typically a cyclotron. Here we show that reducing the incident proton beam energy spread may significantly improve RSP determination in pCT. We demonstrate that the reduction of beam energy spread from the typical 1.0% (at 70MeV) down to 0.2%, can be achieved at the proton currents needed for imaging at the Paul Scherrer Institut 230MeV cyclotron. Through a simulated pCT imaging system, we find that this effect results in RSP resolutions as low as 0.2% for materials such as cortical bone, up to 1% for lung tissue. Several materials offer further improvement when the beam (residual) energy is also chosen such that the detection mechanisms used provide the optimal RSP resolution.

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