High-energy proton imaging for biomedical applications

The charged particle community is looking for techniques exploiting proton interactions instead of X-ray absorption for creating images of human tissue. Due to multiple Coulomb scattering inside the measured object it has shown to be highly non-trivial to achieve sufficient spatial resolution. We pr...

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Veröffentlicht in:Scientific reports 2016-06, Vol.6 (1), p.27651-27651, Article 27651
Hauptverfasser: Prall, M., Durante, M., Berger, T., Przybyla, B., Graeff, C., Lang, P. M., LaTessa, C., Shestov, L., Simoniello, P., Danly, C., Mariam, F., Merrill, F., Nedrow, P., Wilde, C., Varentsov, D.
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Sprache:eng
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Zusammenfassung:The charged particle community is looking for techniques exploiting proton interactions instead of X-ray absorption for creating images of human tissue. Due to multiple Coulomb scattering inside the measured object it has shown to be highly non-trivial to achieve sufficient spatial resolution. We present imaging of biological tissue with a proton microscope. This device relies on magnetic optics, distinguishing it from most published proton imaging methods. For these methods reducing the data acquisition time to a clinically acceptable level has turned out to be challenging. In a proton microscope, data acquisition and processing are much simpler. This device even allows imaging in real time. The primary medical application will be image guidance in proton radiosurgery. Proton images demonstrating the potential for this application are presented. Tomographic reconstructions are included to raise awareness of the possibility of high-resolution proton tomography using magneto-optics.
ISSN:2045-2322
2045-2322
DOI:10.1038/srep27651