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            <depositionDate>2020-07-01</depositionDate>
            <releaseDate>2020-10-14</releaseDate>
            <updateDate>2020-10-14</updateDate>
        </keyDates>
        <title>FIB SEM images of a Zebrafish hindbrain macrophage containing 2 Toxoplasma gondii tachizoites</title>
        <correspondingAuthor private="true">
            <authorORCID>0000-0002-5703-2922</authorORCID>
            <firstName>Marie-Charlotte</firstName>
            <lastName>Domart</lastName>
            <organization type="academic">Francis Crick Institute, Electron Microscopy STP</organization>
            <street>1 Midland Road</street>
            <townOrCity>London</townOrCity>
            <stateOrProvince>London</stateOrProvince>
            <country>United Kingdom</country>
            <postOrZipCode>NW1 1AT</postOrZipCode>
        </correspondingAuthor>
        <principalInvestigator private="true">
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            <firstName>Marie-Charlotte</firstName>
            <lastName>Domart</lastName>
            <organization type="academic">Francis Crick Institute, Electron Microscopy STP</organization>
            <street>1 Midland Road</street>
            <townOrCity>London</townOrCity>
            <stateOrProvince>London</stateOrProvince>
            <country>United Kingdom</country>
            <postOrZipCode>NW1 1AT</postOrZipCode>
        </principalInvestigator>
        <authorsList>
            <author>Peddie CJ</author>
            <author authorORCID="0000-0002-5703-2922">Domart MC</author>
            <author>Collinson L</author>
        </authorsList>
        <datasetSize units="TB">1.1</datasetSize>
        <entryDOI>10.6019/EMPIAR-10459</entryDOI>
        <experimentType>CLEM</experimentType>
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    <crossReferences>
        <citationList>
            <universalCitation>
                <journalCitation published="true" preprint="false">
                    <author authorORCID="0000-0002-3925-8557" order="1">Yoshida N</author>
                    <author authorORCID="0000-0002-5703-2922" order="2">Domart MC</author>
                    <author order="3">Peddie CJ</author>
                    <author authorORCID="0000-0003-2458-4904" order="4">Yakimovich A</author>
                    <author order="5">Mazon-Moya MJ</author>
                    <author order="6">Hawkins TA</author>
                    <author order="7">Collinson L</author>
                    <author order="8">Mercer J</author>
                    <author authorORCID="0000-0002-9515-3442" order="9">Frickel EM</author>
                    <author authorORCID="0000-0002-7286-6503" order="10">Mostowy S</author>
                    <title>The zebrafish as a novel model for the in vivo study of Toxoplasma gondii replication and interaction with macrophages</title>
                    <journal>Disease models &amp; mechanisms</journal>
                    <journalAbbreviation>Dis Model Mech</journalAbbreviation>
                    <country></country>
                    <issue>7</issue>
                    <volume>13</volume>
                    <year>2020</year>
                    <language>English</language>
                    <externalReferences type="doi">10.1242/dmm.043091</externalReferences>
                    <externalReferences type="pubmed">32461265</externalReferences>
                    <details>Raw and processed data corresponding to Figure 7 in the paper</details>
                </journalCitation>
            </universalCitation>
        </citationList>
        <relatedBioStudiesEntries>
            <bioStudiesEntry>S-BSST429</bioStudiesEntry>
        </relatedBioStudiesEntries>
    </crossReferences>
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        <details>Images were acquired at 5 nm isotropic resolution throughout the region of interest, using a 4.2 us dwell time. During acquisition the SEM was operated at an accelerating voltage of 1.5 kV with 1.5 nA current.</details>
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        <details>First half of the raw data. See part 2 for second half. Images were acquired at 5 nm isotropic resolution throughout the region of interest, using a 4.2 us dwell time. During acquisition the SEM was operated at an accelerating voltage of 1.5 kV with 1.5 nA current.</details>
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