<?xml version="1.0"?>
<mzML xmlns="http://psi.hupo.org/ms/mzml" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://psi.hupo.org/ms/mzml http://psidev.info/files/ms/mzML/xsd/mzML1.1.0.xsd" id="InChIKey=ZRVUJXDFFKFLMG-UHFFFAOYSA-N" version="0.1">
  <cvList count="2">
    <cv id="MS" fullName="Proteomics Standards Initiative Mass Spectrometry Ontology" version="2.26.0" URI="http://psidev.cvs.sourceforge.net/*checkout*/psidev/psi/psi-ms/mzML/controlledVocabulary/psi-ms.obo"/>
    <cv id="UO" fullName="Unit Ontology" version="14:07:2009" URI="http://obo.cvs.sourceforge.net/*checkout*/obo/obo/ontology/phenotype/unit.obo"/>
  </cvList>
  <fileDescription>
    <fileContent>
      <cvParam cvRef="MS" accession="MS:1000127" name="centroid spectrum" value=""/>
    </fileContent>
    <sourceFileList count="1">
      <sourceFile id="_msms-374798-mz-values.txt-20190109-20465-1s6ltcq" name="msms-374798-mz-values.txt-20190109-20465-1s6ltcq" location="http://t3db.cahttp://moldb.wishartlab.com/system/documents/files/001/918/270/original/msms-374798-mz-values.txt-20190109-20465-1s6ltcq?1547065843">
        <cvParam cvRef="MS" accession="MS:1001369" name="text file" value=""/>
      </sourceFile>
    </sourceFileList>
    <contact>
      <cvParam cvRef="MS" accession="MS:1000586" name="contact name" value="David Wishart"/>
      <cvParam cvRef="MS" accession="MS:1000590" name="contact organization" value="University of Alberta"/>
      <cvParam cvRef="MS" accession="MS:1000587" name="contact address" value="University of Alberta, Edmonton, Alberta, Canada, T6G 2E8"/>
      <cvParam cvRef="MS" accession="MS:1000588" name="contact URL" value="http://wishartlab.com"/>
      <cvParam cvRef="MS" accession="MS:1000589" name="contact email" value="david.wishart@ualberta.ca"/>
    </contact>
  </fileDescription>
  <softwareList count="1">
    <software id="SpecDB" version="0.1">
      <cvParam cvRef="MS" accession="MS:1000799" name="custom unreleased software tool" value="SpecDB Spectra management database"/>
    </software>
  </softwareList>
  <instrumentConfigurationList count="1">
    <instrumentConfiguration id="instrument">
      <cvParam cvRef="MS" accession="MS:1000031" name="instrument model" value=""/>
    </instrumentConfiguration>
  </instrumentConfigurationList>
  <dataProcessingList count="1">
    <dataProcessing id="SpecDB_processing">
      <processingMethod order="1" softwareRef="SpecDB">
        <cvParam cvRef="MS" accession="MS:1000544" name="Conversion to mzML" value=""/>
      </processingMethod>
    </dataProcessing>
  </dataProcessingList>
  <run id="run_1" defaultInstrumentConfigurationRef="instrument" defaultSourceFileRef="_msms-374798-mz-values.txt-20190109-20465-1s6ltcq">
    <spectrumList count="1" defaultDataProcessingRef="SpecDB_processing">
      <spectrum id="file=_msms-374798-mz-values.txt-20190109-20465-1s6ltcq" index="0" defaultArrayLength="880">
        <cvParam cvRef="MS" accession="MS:1000580" name="MSn spectrum" value=""/>
        <cvParam cvRef="MS" accession="MS:1000127" name="centroid spectrum" value=""/>
        <cvParam cvRef="MS" accession="MS:1000130" name="positive scan" value=""/>
        <binaryDataArrayList count="2">
          <binaryDataArray encodedLength="9545" dataProcessingRef="SpecDB_processing">
            <cvParam cvRef="MS" accession="MS:1000523" name="64-bit float" value=""/>
            <cvParam cvRef="MS" accession="MS:1000576" name="no compression" value=""/>
            <cvParam cvRef="MS" accession="MS:1000514" name="m/z array" value="" unitCvRef="MS" unitAccession="MS:1000040" unitName="m/z"/>
            <binary>B5YjZCCBRkB8tDhjmJlGQPqcu10vxUZACB7f3jXgRkBM/id/9zBHQIJUih2N
P0dAGNLhIYxDR0BCeoocInRHQBHGT+PetEdAW9O84xQNSEDaHr3hPjJIQJI7
bCIztUhAq1yo/Gv7SEAaaam8HQlJQAXB49u7pElA3UWYolzISUA4L058tf1J
QDCA8KFES0pAJNI2/kRrSkCxwi0fSX9KQHDurx7320pAHyxjQzdNS0BxIY/g
RnBLQGiyf54GsEtAWkkrvqG+S0DpgY/BisFMQAtCeR9HP01A4/24/fJbTUC5
401+i35NQFth+l5Dgk1AzZGVXwaXTUD186YiFZ5NQFhwP+CBsU1AoZ4+An/U
TUCimLwBZk5OQExSmWIOgk5AE4HqH0TWTkC5NH7hlTRPQB8RUyKJiE9AfsnG
gy2MT0DIef8fJ7hPQLXgRV9BzE9AKT4+ITsNUEBdiNUfYRRQQIBmEB/YJFBA
q85qgT0xUEDRkVz+QzJQQBjPoKF/O1BAuAGfH0ZUUEAlz/V9OHBQQLb4FADj
mlBA0NOAQdKwUEBxOV6B6OZQQFuaWyGs+1BAABsQIa7+UEBGtvP91ChRQJHV
rZ6TZlFAtOkI4GZvUUAziXrBp5BRQPGfbqDAk1FAMj7MXraoUUCpoQ3ABrRR
QEDa/wBrxlFAIsZrXtXeUUDFkQcii+RRQIBgjh6/91FAYrt7gO4EUkBEwvf+
BhJSQAYtJGB0G1JAqYO8HkwdUkCy9QzhmHlSQDm2niEcjVJA/BcIAmSRUkBd
aoR+ppdSQB7htOBFslJAe0563/i7UkCI2GDhJA1TQNTTR+APHlNAynA8nwFT
U0CU+UffpJVTQEGeXb71m1NAeVc9YB6mU0CJljyellNUQJT5R9+kWFRA+rSK
/tBdVEDY0w5/TXJUQByWBn5UfFRA9Zz0vvGGVEDmIVM+BLtUQNrlWx/Ww1RA
UyKJXkbGVEDue9Rfr89UQDiGAODY0FRA8pnsn6fnVEAmOPWB5PpUQNfZkH9m
BVVAsrlqniNBVUCLpUi+EkZVQMu76gHzTVVAx0lh3uNWVUDgEoB/SnNVQDuM
SX8vd1VALzVCP1N9VUApIy4AjbNVQNXrFoGxvFVA+MPPfw/EVUAAAAAAANlV
QJpBfGDHB1ZAdhiT/l4ZVkB9PPTdrSBWQP7w89+DJFZAkszqHW4vVkBmwcQf
RTBWQKd38X7cSVZA9bpFYKxOVkCM22gAb3NWQBbD1QEQiVZAlQuVfy25VkAY
k/5eCtlWQKiMf59x61ZAUDQPYJHwVkA7j4r/OyFXQOuNWmH6NFdAjbeVXpsb
WEDytPzAVR9YQF6dY0D2IFhABU62gTstWECEhChf0EZYQKp9Oh4zSVhABOj3
/ZtQWEAe/wWCAFRYQE1MF2L1YVhADjDzHfydWEB0DMhe765YQCjwTj49s1hA
ObaeIRy1WEAtPgXAeMRYQFN2+kFd+1hA5DCYv0IcWUClaybfbItZQIvh6gCI
m1lA76tyofLAWUDf/fFetctZQK685H/yAlpA+wW7YdsDWkADJJpAETVaQOuN
WmH6QVpAy7vqAfNzWkBH41C/C3ZaQJPheD4DiFpAkfC9v0GkWkCjdOlfkqVa
QBrAWyBBqVpAtyizQSbHWkA4a/C+KthaQOpCrP4ICFtAbhXEQNcRW0ArFOl+
Ti1bQL03hgDgVVtARfXWwFZZW0AEG9e/64lbQJxTyQBQm1tAqaENwAazW0AD
7nn+tOJbQE5GlWHc8ltAG9XpQNYjXEBPBHEeTjJcQP8Iw4AlNVxAhc/WwcE+
XEAxfa8hOFtcQJsdqb7ze1xA5iSUvhCFXEBn8WJhiLBcQM2U1t8SylxAXp1j
QPbSXEBSSZ2AJtVcQFp/SwD+21xASih9IeTkXECsxacAGPtcQPfMkgA1Bl1A
C3va4a8WXUAY0uEhjFddQIzbaABva11A88zLYfeYXUCgMv59xsZdQLsKKT+p
611Ap3Sw/s8CXkAoRMAhVAteQLfRAN4CE15ABRVVv9IlXkC4H/DAADxeQORO
6WD9Q15AEqW9wRdGXkCop4/AH3VeQO1+FeC7e15AWUxsPq6IXkDsbMg/M4xe
QGrBi76ClF5Atw2jIHiXXkBRMc7fhN1eQJ4pdF5j7F5A7X4V4Lv2XkCxwi0f
SfleQEwZOKClAl9AbNCX3v5aX0DiAzv+C59fQAxaSMDooF9Ao4/5gECxX0AZ
rg6AuLpfQMU6Vb5n0F9AAAAAAIABYED3qwDf7QxgQAg8MIDwDWBAAyfbwB0R
YECCkCxgghpgQFA3UOAdI2BA/vDz34M4YEDZBu5AHTlgQB3J5T8kXWBAuyu7
YHCBYEA+y/Pg7olgQLTjht9NjWBAsOO/QJCUYEDb96i/XpVgQHMPCd97oWBA
QbYsXxe0YEAUe2gfq7ZgQO1jBb8NzGBAJh3lYLblYECWBRN/lAZhQEcE4+BS
EGFA8YEd/wUXYUDc8Sa/xR5hQL9J06BoKmFAje21oPczYUC5+xwfrThhQJo+
O+A6QGFAJvxSP+9cYUDOixNfbWhhQHQn2H+dbWFATTEHQUeIYUAIISBfQolh
QHctIR/0nWFA+u3rwLmwYUDQtS+gF7dhQPrS258LwmFAH9sy4KzEYUAAA0GA
jORhQL9DUaBP5WFAQbyuX7D4YUAKMCx/vvthQAYq499nAGJAbAa4INsmYkDK
bfsedS5iQCsv+Z/8OmJATiuFQK5hYkApJm+AGXdiQAghIF/CfWJAxXb3AN2T
YkAkC5jArZhiQGCRXz/EmWJAg6J5AAusYkDX9+EgIbNiQLTjht9NwGJA09wK
YbXBYkCz7Elgc8piQIOluoCX02JAH/MBgU7eYkCUFFgAU+xiQIeiQJ9I7mJA
3PEmv8X3YkDiOVtAaABjQLn7HB+tEGNAbw9CQD41Y0B1HhX/9zpjQIKQLGCC
PGNA2NMOf01AY0BKB+v/HEJjQGwGuCDbVmNAstR6v1FhY0Af2PFfIGVjQHxj
CACOZmNAy6Da4ERnY0APY9Lfy3BjQLXgRV/BdmNAZrtCHyyBY0CBlq5gm6Fj
QL4uw386rGNAlBEXgEbJY0BXdsHgGtZjQIi9UMD222NAXJGYoIbcY0Bkr3d/
PORjQOhsAaH15GNAARjPoKH5Y0BEwvf+Bv9jQBzSqMBJAWRAzHwHP/EDZEAw
ZeCAFhFkQISEKF/QGWRA9s/TgMEgZEDwh5//HiVkQHk8LT/wLWRAWWq93+gu
ZED9+bZgqTFkQHRC6KDLMmRACjAsfz5AZEDa4hqfSVRkQN8bQwDwVGRAFop0
P6dgZEDUuDe/YWtkQGvxKQDGgGRA1/fhIKGBZEA+syRATY1kQK/RcqCHn2RA
EHUfgNSgZEBvDAHAMaRkQMuFyr8WqmRA0sd8QKC2ZED5254gsbdkQFyOVyD6
v2RAem8MAcDAZECtp1Zf3cFkQM+j4v+OxWRAyXa+nxrIZECWCFT/IMxkQHIV
i9+U1WRAR+nSvyTXZEBWYTPABdpkQG8MAcAx4GRALSP1nkriZEDZ7h6ge/Jk
QJP8iF+x/mRAXYjVH2ECZUB/bJIf8QdlQGfWUkDaEmVAOZhNgGEaZUDSxDvA
kyJlQJgXYB+dKmVAnUoGgKowZUCqm4u/7UFlQCgLX1/rRGVAHM9nQL1JZUBC
6Qsh50plQP8Iw4ClTWVA5C1XP7ZXZUBs6GZ/IFllQEPIef8fW2VAjdKlf8li
ZUDBUl3AS3RlQAMJih9jeWVAkfP+P056ZUBbfAqA8Y1lQKmkTkATqWVAXJGY
oIbEZUB+VwT/2+xlQJHwvb/B/mVA3A94YIAfZkBckZigBiFmQJcaoZ8pJGZA
AANBgAwsZkBH41C/izBmQO1jBb+NNWZATz3S4LY5ZkD60tufC0FmQPje36C9
Q2ZAvhb03hhhZkCpiT4f5WJmQAtCeR/HaGZAZKw2/69vZkDkSGdgZIBmQHdO
s0A7gWZA1sQCX9GCZkB0JJf/EIZmQCgs8YAyi2ZAC2MLQY6SZkAWpYRg1Zlm
QIF4Xb/goGZAHsNjP4uhZkC8H7dfvqJmQOEM/n6xr2ZAfXiWIKOwZkCmgLT/
AcBmQPvMWZ9ywWZAFHtoH6vBZkDBN02fndNmQHxgx38B2GZAxVVl35XfZkA9
tmXA2fNmQELpCyFnJ2dAP6phv6dAZ0AOZhNgWE1nQOQtVz+2YWdADVTGv8+A
Z0ANUYU/w4lnQB7htODFi2dAq7NaYI+MZ0DrVPmeEZJnQC0j9Z7KoGdA+8kY
H2ajZ0AzU1p/y8BnQGvWGd8XwmdA4DDRIAXMZ0DFVWXfFdJnQDJWm//X02dA
NpIE4QrWZ0DpSC7/oeBnQM2v5gBB4mdAs874vrjwZ0DrVPmekfhnQJgvL8A+
AGhAAP2+f/MAaEDOjlTfeQJoQCPzyB+MC2hAhIQoX1ANaECWICOgwhBoQG/0
MR+QIWhAoYDtYMQiaEA8pBggUSdoQNv3qL/eLWhA9rTDXxNXaEAxXB0AcVlo
QEwZOKAlYGhAliNkIM9paECbVgqB3HhoQHk8LT9wgGhA73IR34mYaECEhChf
UKBoQKaYg6Cjs2hAHcwmwDC1aEDfG0MA8LdoQLfsEP8wuWhAAwmKH+POaEDg
EoB/yt1oQEn1nV8U9WhAf4eiQJ8AaUBH41C/CwJpQEXaxp+oBGlAyXa+nxoh
aUDGhQMhWSNpQKd6Mv/oLGlA+MYQABw7aUBioGtfQEFpQGr3qwDfSGlAKhpr
f+ddaUB4YADhQ19pQMAlAP8UYGlAwCUA/xRhaUD9+bZgqWFpQEPFOH8TYmlA
PZgUH59jaUCwyK8f4m1pQOZatABtc2lAsMVun1V5aUD67evAOYFpQDNrKSBt
gmlAdCfYf52FaUB5Xb9gt4xpQK685H/yoGlAaeVeYFaiaUD3sYLfBrVpQBKE
K6DQwGlAiJ//HrzCaUC1+1WA78VpQJIFTOBWzGlAomKcvwniaUB9WkV/6Otp
QMqIC0Aj7WlAKSMuAI3yaUCeRIR/EQJqQJcd4h+2AmpA73VSXxYUakDZ690f
byFqQME3TZ8dKWpAlBeZgF9PakDxnC0gtF1qQCXqBZ9ma2pAcyoZAKp0akAI
Oe//Y3lqQOdUMgDUgWpAnFPJAFCDakB5PC0/8JxqQMNJmj+moGpA0a+tn/6g
akAh6j4AKaFqQDRlpx9UwWpAhIQoX9DUakDCTNu/MuFqQC44g7/f7mpAe0s5
X+zzakC3DaMg+PtqQPWc9L5xAWtAibFMv8QEa0AIPDCA8CBrQEG5bd+jIWtA
nmLVIEwia0DPvvIgPSZrQEwceSAyQWtAMnTsoJJCa0Bgr7DgfkxrQAADQYCM
WGtAa/EpAMZZa0AexqS/F1trQJYgI6BCXWtAQukLIedia0BfmiLA6WdrQKBu
oMA7aWtAjc9k/zx4a0BUOlj/54FrQEoH6/8cg2tA/vDz3wOIa0Clg/V/DqNr
QPvnacAgq2tAeVp+4Kqxa0AdyeU/pLdrQK+zIf/Mv2tAnUfF/53Ca0Bkr3d/
vMRrQJtWCoHc4mtADVGFP8Pma0DX2ZB/5vFrQF6CUx9I9mtARfKVQEoCbEBd
cAZ/vxNsQHpU/N8RFWxAaMpOP6gVbEAGEhQ/xh1sQGSvd3+8IGxA7WZGPxoq
bEDX3NH/ckFsQF6CUx/IXmxA+b1Nf3ZhbECHpYEfVWJsQMZSJF8JZ2xAs+xJ
YPNtbEBJE+8AT4BsQPje36C9gWxAJxdjYJ2hbEAbvRqgNKpsQDqSy39IsGxA
6GwBoXXBbEDcErngjMJsQP32deCczmxAj+TyH1LhbECwy/Cf7uJsQLfvUX+9
5WxA1dAGYAPzbEBs66f/rAFtQPCl8KDZBW1A4h5LHzoJbUDxhF5/khhtQHU5
JSAmIm1AmSmtv6UubUCHpYEf1TJtQJ9W0R+aTm1AmBQfnxBYbUB4RfC/lWNt
QJkprb8lZW1AeV2/YLeAbUCYFB+fEINtQFth+l7Dh21AxFvn366NbUAg7X+A
tZhtQLTjht9NrW1Ar7Mh/8y9bUCHpYEfVcFtQKNcGr/wxm1AeT9uv/zPbUBA
wjBgSeFtQOAPP/89821ASfJc3wf0bUB8e9egL/dtQDRo6J9gAW5AcyoZAKoH
bkDSx3xAoApuQDViZp9HDm5A4CpPIOwSbkDTvrm/ehZuQPGfbqDAGG5AtvgU
AGMebkBuGAXB4yBuQLwft18+IW5A/vM0YBAzbkDVyoRf6jduQA1Uxr9PQW5A
x4LCoExEbkCJt86/XWFuQPK0/MDVZW5AG70aoDRnbkAlCFdAoXZuQHAGf7+Y
fG5A1LX2PlWBbkBu+rMfqYNuQL8oQX8him5A97GC3waLbkA4hgDgWKBuQGzu
6H85oW5A3iHFAImkbkA3bjE/N6xuQETdByA1sG5A1uWUgJi2bkDoS29/rsFu
QDNuaqB5zm5AJAuYwK3abkD6z5off+FuQL8oQX+h4m5Ag6W6gBfnbkCYNbHA
1wJvQBixTwDFBm9A4xsKny0Jb0B6UbtfBRRvQPCK4H+rHm9ALCy4H/Aib0AT
fqmftydvQBR7aB8rQW9A5C1XP7ZSb0BuGAXB41tvQLsru2BwYW9Am1YKgdxj
b0ChZd0/lmZvQHMqGQCqgW9Ap5IBoIqIb0Af2PFfoIlvQPjGEACclm9AbAa4
IFuab0CVC5V/raFvQCLhe3+Dpm9AYr68AHurb0DtgVZgyMFvQOAtkKB42W9A
4iGMn8bcb0ALYwtBjt5vQBaiQ+BI4G9A1ejVACXib0BgrG9g8uNvQA9+4gB6
629AUkmdgKbvb0AcsRafAvNvQEj7H2At/G9A/OHnvwf/b0ACDMuf7wBwQFhw
P+DBAXBAlxqhn6kEcECDiqpfqQ5wQPrS259LEHBAU0Da/wARcEBvEoPAihJw
QE8iwr+IFHBAoWXdP1YZcED52F2g5BtwQL4uw3+6H3BAZsHEH8UgcEDNkZVf
xiFwQFpnfF9cI3BAyXN9H44pcEDylqsf2zdwQK/OMSC7PHBAINWw31NCcED4
w89/j0NwQA1Uxr9PR3BAx2eyf15ScEBfmiLA6VNwQG0Dd6BOYXBAU0Da/8Bn
cEAPY9LfC3FwQAk2rn8Xd3BAi8ba31mDcEDHZ7J/3oNwQAg8MIDwj3BA++dp
wOCQcEB8YwgADppwQFhzgGDOnHBAsMvwn66gcEBr9GqA0qBwQFt5yf8kp3BA
51QyAFSpcECIug9AKq5wQGO4OgCisHBA4CpPIGy9cEDylqsfm8BwQE4lA0CV
yHBASPje36DQcEAyVpv/F9FwQPnAjv+C0XBAnUfF/x3VcEDSxDvAE9twQI/k
8h8S3HBAQMIwYIngcECHqMKfYeZwQHEeTmA68XBAmC8vwL7zcECDiqpfaflw
QKFoHsBiBXFATihEwGEIcUApIy4AzQpxQEfmkT+YHXFAqaROQBMicUDgEoB/
CipxQIi6D0AqMHFA2gBsQEROcUD3yVGA6FZxQLoT7L/OY3FAgH7fvzlucUB3
S3LALm9xQGKjrN/McnFA198SgD9+cUDgEoB/yotxQKmkTkATkXFA2gBsQISS
cUCfWRKgZpVxQG8Sg8AKlnFADFcHQByXcUBI+x9g7ZhxQPfJUYBomXFA2eic
n2KbcUCfWRKgZpxxQDmYTYChnXFAhZm2f6WecUAj+UogZZ9xQGGpLuDloHFA
y4XKvxakcUCy17s/3qVxQGv0aoCSpnFAqaENwEaocUDiIYyfBqlxQA1Uxr+P
qXFAXHaIf5ircUAQdR+AVK1xQKiPwB9+rnFA6GZ/oFyvcUDSxDvA069xQMd/
gSAAsXFAWWq93+ixcUAFGJY/X7JxQCsyOiDJsnFAp5VCIBe0cUCKyRtgprRx
QCUFFsAUtXFAE4HqH0S2cUBLBKp/kLZxQOM2GsAbt3FAQtE8gMW3cUAvTRHg
NLhxQGCUoL8QuXFAhqsDIK65cUB0J9h/HbtxQC44g7/fvXFAhqsDIG6/cUBU
VWggFsBxQCsyOiAJwXFAmzi532HCcUARb51/O8NxQFExzt9ExHFABirj3+fE
cUBgrG9g8sZxQIeowp+hx3FAPZ6WH7jIcUB1OSUgJslxQHEeTmC6y3FAGqiM
f1/McUBmwcQfxc1xQG0ANiDCznFA19zR//LQcUCnlUIgV9JxQMyXF2Cf03FA
mSzuP7LUcUC6E+y/jtZxQOhmf6Cc13FAEHUfgBTYcUAAA0GAjNlxQGjNj7/0
2XFAiL1QwLbbcUBMFvcfWdxxQIm0jT9R3XFAIeo+AGnecUB6VPzfUd9xQE4l
A0BV4HFAAg8MIPzgcUClhjYAW+JxQCUIV0Dh4nFAx3+BIMDkcUAi4Xt/A+dx
QL8rgv9t7XFA1cqEX+rtcUDsbMg/8/BxQEj+YOB58XFAyXN9H47ycUAKSzyg
LPRxQDBK0F+o9nFAE36pn3f3cUBr8SkARv5xQIKQLGDCAHJA/OHnvwcFckCy
2vy/6gVyQDeMguAxCXJAI/YJoNgLckBfl+E/XQ9yQOhOsP86EHJABirj36cZ
ckAk8Ief/x9yQHMtWoB2KHJA8pnsnycsckB1PGagsixyQN0MN+AzRnJAlxqh
n2lMckDKi0zA71ByQN8Vwf8WfXJAonprYGuFckB1PGagcodyQNnonJ8iinJA
RdrGn6iMckACEk2gCJdyQNC4cCDkqXJAMEeP31utckDdCfZfp7FyQCHqPgDp
43JAgIEgQIb3ckC8IvjfygNzQO+QYoCEDHNAlQuVf609c0CEnziAflNzQFdb
sb8sX3RATiuFQC7HdECbO/pfrv91QFVP5h89AnhACDwwgPBaeEAYsU8AhcV5
QELO+/94IXpAWW3+X3V2ekA7p1mgXad6QMuFyr9WrnpATRO2n8zWekCbO/pf
Lu56QCb/k787T3tAO6dZoF13e0ANUYU/g8h7QBKEK6AQ3HtAzZGVX8ZPfEBn
0xHATcV8QMJPHEC/93xAByeiX9vefUBtADYgglh/QKBrX0Dv039AcRsN4C0q
gECpoQ3AxjWAQJQRF4CGkYFATBk4oCX0gUBAv+/f3AODQK2/JQC/rYNA2/rp
P0vSg0DhJM0fk9KDQKWD9X/OGYRAoWgewEKPhEBvDAHA0aGEQNffEoA/r4RA
qI/AHx4fhkA6lQwAdVqGQMyXF2AfYIZAYaku4GU7h0CYLy/AfmOHQL4xBADH
sodAW3wKgFGQiEDfGAKAI8aIQIB+378Z5ohAaeId4Al2j0A8pBgggUeQQPCK
4H/L9JBAJQUWwGRJkUClg/V/PhaSQDiGAODoD5RAV17yP2nRlEDX3xKAX9yU
QDFcHQCRKZVAuAchIC98lUDnUfF/B92VQOVC5V8L9JVAWW3+XzX5lUB4RfC/
tZ+WQG8MAcChI5dAY7X5f4VEl0A=
</binary>
          </binaryDataArray>
          <binaryDataArray encodedLength="9545" dataProcessingRef="SpecDB_processing">
            <cvParam cvRef="MS" accession="MS:1000523" name="64-bit float" value=""/>
            <cvParam cvRef="MS" accession="MS:1000576" name="no compression" value=""/>
            <cvParam cvRef="MS" accession="MS:1000515" name="intensity array" value="" unitCvRef="MS" unitAccession="MS:1000131" unitName="number of counts"/>
            <binary>AAAAAAAAbUAAAAAAAABYQAAAAAAAAGJAAAAAAAAAX0AAAAAAAABbQAAAAAAA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</binary>
          </binaryDataArray>
        </binaryDataArrayList>
      </spectrum>
    </spectrumList>
  </run>
</mzML>
