date: 2020-03-06T12:44:47Z pdf:unmappedUnicodeCharsPerPage: 0 pdf:PDFVersion: 1.4 pdf:docinfo:title: The HARE chip for efficient time-resolved serial synchrotron crystallography xmp:CreatorTool: pdftk 1.44 - www.pdftk.com dc:description: Serial synchrotron crystallography (SSX) is an emerging technique for static and time-resolved protein structure determination. Using specifically patterned silicon chips for sample delivery, the `hit-and-return' (HARE) protocol allows for efficient time-resolved data collection. The specific pattern of the crystal wells in the HARE chip provides direct access to many discrete time points. HARE chips allow for optical excitation as well as on-chip mixing for reaction initiation, making a large number of protein systems amenable to time-resolved studies. Loading of protein microcrystals onto the HARE chip is streamlined by a novel vacuum loading platform that allows fine-tuning of suction strength while maintaining a humid environment to prevent crystal dehydration. To enable the widespread use of time-resolved serial synchrotron crystallography (TR-SSX), detailed technical descriptions of a set of accessories that facilitate TR-SSX workflows are provided. access_permission:modify_annotations: true access_permission:can_print_degraded: true description: Serial synchrotron crystallography (SSX) is an emerging technique for static and time-resolved protein structure determination. Using specifically patterned silicon chips for sample delivery, the `hit-and-return' (HARE) protocol allows for efficient time-resolved data collection. The specific pattern of the crystal wells in the HARE chip provides direct access to many discrete time points. HARE chips allow for optical excitation as well as on-chip mixing for reaction initiation, making a large number of protein systems amenable to time-resolved studies. Loading of protein microcrystals onto the HARE chip is streamlined by a novel vacuum loading platform that allows fine-tuning of suction strength while maintaining a humid environment to prevent crystal dehydration. To enable the widespread use of time-resolved serial synchrotron crystallography (TR-SSX), detailed technical descriptions of a set of accessories that facilitate TR-SSX workflows are provided. dcterms:created: 2020-02-27T12:00:00Z Last-Modified: 2020-03-06T12:44:47Z dcterms:modified: 2020-03-06T12:44:47Z dc:format: application/pdf; version=1.4 title: The HARE chip for efficient time-resolved serial synchrotron crystallography Last-Save-Date: 2020-03-06T12:44:47Z pdf:docinfo:creator_tool: pdftk 1.44 - www.pdftk.com access_permission:fill_in_form: true pdf:docinfo:modified: 2020-03-06T12:44:47Z meta:save-date: 2020-03-06T12:44:47Z pdf:encrypted: false dc:title: The HARE chip for efficient time-resolved serial synchrotron crystallography modified: 2020-03-06T12:44:47Z Content-Type: application/pdf X-Parsed-By: org.apache.tika.parser.DefaultParser meta:creation-date: 2020-02-27T12:00:00Z created: 2020-02-27T12:00:00Z access_permission:extract_for_accessibility: true access_permission:assemble_document: true xmpTPg:NPages: 11 Creation-Date: 2020-02-27T12:00:00Z pdf:charsPerPage: 3537 access_permission:extract_content: true access_permission:can_print: true producer: International Union of Crystallography access_permission:can_modify: true pdf:docinfo:producer: International Union of Crystallography pdf:docinfo:created: 2020-02-27T12:00:00Z