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          Institute: MPI für medizinische Forschung     Collection: Jahbruch 2014_archival     Display Documents



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ID: 681491.0, MPI für medizinische Forschung / Jahbruch 2014_archival
Optimal mapping of x−ray laser diffraction patterns into three dimensions using routing algorithms
Translation of Title:Optimal mapping of x−ray laser diffraction patterns into three dimensions using routing algorithms
Authors:Kassemeyer, Stephan; Jafarpour, Aliakbar; Lomb, Lukas; Steinbrener, Jan; Martin, Andrew V.; Schlichting, Ilme
Language:English
Date of Publication (YYYY-MM-DD):2013-10-28
Title of Journal:Physical Review. E, Statistical, Nonlinear, and SOFT Matter Physics
Journal Abbrev.:Physical review. E, Statistical, nonlinear, and so
Volume:88
Issue / Number:4
Start Page:1
End Page:9
Sequence Number of Article:042710
Review Status:Peer-review
Audience:Experts Only
Intended Educational Use:No
Abstract / Description:Coherent diffractive imaging with x−ray free−electron lasers (XFEL) promises high−resolution structure determination of noncrystalline objects. Randomly oriented particles are exposed to XFEL pulses for acquisition of two−dimensional (2D) diffraction snapshots. The knowledge of their orientations enables 3D imaging by multiview reconstruction, combining 2D diffraction snapshots in different orientations. Here we introduce a globally optimal algorithm that can infer these orientations. We apply it to experimental XFEL data of nanoparticles and so determine their 3D electron density
External Publication Status:published
Document Type:Article
Version Comment:Automatic journal name synchronization
Communicated by:wkaiser
Affiliations:MPI für medizinische Forschung/Abteilung Biophysik
MPI für medizinische Forschung/Abteilung Biomolekulare Mechanismen
MPI für medizinische Forschung/Abteilung Biomolekulare Mechanismen/Coherent diffractive imaging
Identifiers:LOCALID:7945
URI:http%3A%2F%2Fpre.aps.org%2Fpdf%2FPRE%2Fv88%2Fi4%2F...
URI:http%3A%2F%2Flink.aps.org%2Fdoi%2F10.1103%2FPhysRe...
URI:http%3A%2F%2Fwww.ncbi.nlm.nih.gov%2Fpubmed%2F24229...
DOI:10.1103%2FPhysRevE.88.042710
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