<?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="FAOZLTXFLGPHNG-KNAQIMQKSA-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-374742-mz-values.txt-20190109-20465-yg2qef" name="msms-374742-mz-values.txt-20190109-20465-yg2qef" location="http://contaminantdb.cahttp://moldb.wishartlab.com/system/documents/files/001/918/214/original/msms-374742-mz-values.txt-20190109-20465-yg2qef?1547065840">
        <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-374742-mz-values.txt-20190109-20465-yg2qef">
    <spectrumList count="1" defaultDataProcessingRef="SpecDB_processing">
      <spectrum id="file=_msms-374742-mz-values.txt-20190109-20465-yg2qef" index="0" defaultArrayLength="1169">
        <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="12680" 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>u3zrw3qVRkAHexNDcqxGQI8dVOI6tkZAVpqUgm63RkDtgVZgyDBHQONve4LE
YkdAwXPv4ZJrR0AQeGAA4XdHQPrVHCCYr0dAa524HK++R0DAIr9+iMVHQPfn
oiHj10dAXdxGA3gFSEDj/bj98jVIQGR2Fr1TT0hA3bWEfNBRSEACDwwgfGRI
QL6FdePdZ0hAp7BSQUWFSEAfotEdxIxIQNoDrcCQs0hAX0ax3NLASEDHLlG9
NeJIQLslOWBXAUlAHt5zYDkESUC1p+Sc2AVJQKjg8IKICklAw2fr4GAtSUBJ
nuv7cDJJQLxASYEFPklAQzf7A+VGSUCZZU8Cm0tJQBGN7iB2YElAAOKuXkVm
SUBJLv8h/XxJQAIPDCB8mElAGO3xQjrUSUDU8ZiBytZJQGg8EcR58klAuFhR
g2keSkAI5X0czVdKQDQUd7zJa0pAwXCuYYaISkC6MT1hiY1KQFIQPL69r0pA
FlETfT7aSkBxcr9DUQRLQOJa7WEvDEtAYJSgv9AjS0A/jBAebTxLQKvsuyL4
Y0tAycovgzFqS0CXxi+8knRLQJRKeEKvg0tASN3OvvKMS0CVLCeh9KFLQOQV
iJ6Us0tAo7CLoge6S0B1cobijtlLQCGx3T1A70tAg1FJnYAGTED+DkWBPiVM
QFYo0v2cLkxAZaa0/pY+TEDRyr3ArHJMQBFXzt4Zi0xAOZhNgGGTTEAHYAMi
xJtMQD25pkBmnUxANLxZg/ezTEBzS6shcbdMQOwYV1wcu0xAdvpBXaTyTEAt
JjYf1zZNQPA2b5wUVE1A0v2cgvxwTUC+E7NeDHdNQCtQi8HDek1A1v1jITqK
TUDjioujcsdNQPiov15hy01Am3EaogotTkBlbVM8LkhOQMP1KFyPSk5Av2Tj
wRZTTkANb9bgfZdOQDCeQUP/wE5AKuEJvf7CTkA50a5CytNOQJc48kBk105A
FJM3wMzhTkAdAkcCDfxOQM7ixcIQAU9AnWhXIeUJT0BEhlW8kRtPQBuBeF2/
Ok9AO8WqQZhBT0ACLV3BNkRPQA8nMJ3WX09AmkF8YMeBT0BmLQWk/ZNPQGQD
6WLTlk9AFF0XfnC8T0B1P6cgP91PQMP1KFyP+k9AH9jxXyAKUEC6EKs/wgtQ
QDJ07KASFlBA8nhafuAaUEBbecn/5GVQQOI8nMB0bFBA3jmUoSqCUEDTvrm/
eoVQQGvWGd8XlFBA65Cb4QaVUED+8zRgkLBQQCwRqP5BxFBAvASnPpDLUEB1
V3bB4O1QQOIGfH4Y+1BAzcr2IW8QUUDqPCr+7xhRQAtFup9TIVFATz3S4LYj
UUCL+bmhKS5RQIJvmj47UFFA1PGYgcpUUUDSx3xAoFpRQN7lIr4TZFFAcO6v
HvdoUUBNE7afjHZRQCsyOiAJjlFAo3cq4J6mUUC7RsuBHqhRQLTIdr6fu1FA
by2T4XjTUUAIWoEhq9dRQGKga19A2lFAKe0NvjDjUUBwJxHhX+9RQEX11sBW
9FFAd0tywK77UUAOMPMd/AxSQM2U1t8SElJA1a90PjwdUkD0qPi/IyFSQFZG
I59XK1JASMX/HVExUkCZSj/h7DNSQOuNWmH6S1JARx/zAYFNUkC30QDeAlBS
QKm/XmHBUVJAUDqRYKpTUkDzk2qfjmlSQMAlAP+UbFJA/OQoQBR6UkDHZHH/
kX5SQN8zEqERlFJAq5hKP+GaUkBo6+Bgb6VSQA+Z8iGo7FJABirj32cMU0Cg
bqDAOyVTQKRTVz7LJlNAWJHRAUlGU0BCzvv/OE1TQEj7H2CtclNAQde+gF5+
U0DshJfg1H9TQD+qYb8nn1NAwXPv4ZKkU0CvzjEge6xTQMaLhSFyvVNA641a
YfrHU0BN9WT+0dBTQByZR/5g1lNAT1jiAWXcU0ARb51/u+FTQEHXvoBe6lNA
3Qa139r+U0AAHlGhugJUQJD2P8BaElRAZ9MRwM0iVEDgLZCg+EhUQA5pVOBk
S1RAGuHtQQhWVECLw5lfzV9UQBaE8j6OaFRAPdf34SB/VEDW5ZSAmItUQNKs
bB/ykVRA41Eq4QmoVEC/YaJBCs1UQNbllICY1FRAyFuufmzeVEBsIchBCftU
QOI8nMB0AVVASzrKwWwOVUCEhChf0BxVQJoIG55eJ1VAJy8yAb8sVUDobAGh
9TlVQCfeAZ60OlVA6njMQGVDVUDcKoiBrkpVQFRweEFEU1VAYYicvp5VVUCi
X1s//WVVQCpTzEHQe1VAV3bB4JqOVUCX/5B++5JVQD19BP7wlVVAVTTW/s6c
VUB8SPje351VQM7BM6FJplVAb9kh/mHKVUCoxeBh2tRVQHdpw2Fp5VVAeEXw
v5XpVUBbYfpeQ/hVQGb0o+GUAVZAhsYTQZwoVkB9PzVeui5WQBaKdD+nT1ZA
P6cgPxtUVkAE6Pf9m1pWQBKfO8H+YFZAIcms3uFqVkCCdRw/VHNWQJbqAl5m
eFZAYoVbPpKFVkDV0AZgA4tWQMtkOJ7PmFZAoFBPH4GmVkD3kPC9v6pWQLgi
MUENtFZACyQofoy1VkCx3T1A97lWQF+y8WCLw1ZA1ejVAKXVVkAm/FI/b+JW
QIvh6gCI41ZAzJpY4Cv3VkCOsRNeggNXQEH1DyIZBVdADWyVYHEGV0B9lufB
3QlXQFVP5h99FVdAg8MLIlI3V0DqP2t+/DtXQDCA8KFEQVdA7ZxmgXZEV0Cq
tpvgm2JXQMx8Bz9xbldAlu1D3nKBV0DX+iKhLYNXQBCTcCGPhFdAkQ4PYfyI
V0AlCFdAoZJXQB/zAYHOmVdAINWw3xPDV0AyVpv/V8VXQCY1tAHY2FdA+fNt
wVLdV0A+y/Pg7uBXQAc/cQD99ldAD37iAPr8V0D3zJIANRRYQNvf2R69LlhA
UhA8vr0vWECpwp/hzUNYQGCUoL/QXlhA6ITQQZdyWEC+E7NeDIxYQCDtf4C1
j1hA/RTHgVecWEDDZ+vgYLRYQM12hT5Yu1hAw0ZZv5nCWEBHy4EeavdYQKVr
Jt9sBVlADjDzHfwmWUCJmX0eo0NZQEz75v7qRFlAOnR63o1KWUDqdYvAWFZZ
QNOjqZ7MZ1lAKPBOPj1qWUCIn/8evIBZQHtpigCnm1lAEJNwIY/DWUBvEoPA
yvtZQEOtad5xBlpAbwwBwLEJWkBOK4VALhZaQORIZ2DkJFpAoU0On3QmWkAW
w9UBEChaQI/8wcBzKVpApFNXPss0WkCYMnBASzpaQG4w1GGFRFpAza/mAMFZ
WkAGS3UBL2ZaQEfmkT8YelpAPZtVn6uEWkCN8PYgBItaQOpCrP4IjlpA1O5X
Ab6hWkArFOl+TsNaQCodrP9zxVpAwD3PnzbIWkBjuDoA4t5aQLQc6KG24lpA
TyLCvwjkWkCU+UffpPpaQG3i5H6HA1tAnBpoPucFW0Ct3XahuQtbQJHVrZ6T
J1tAaOvgYG8pW0Bm3NRA8y1bQGjr4GBvPFtAR+nSvyRCW0B1OSUgJkRbQD7O
NGH7a1tAu0bLgR6RW0CHpYEf1cJbQDqVDABVxVtAC3va4a/bW0CdR8X/HeZb
QNi7P96r5ltAcxJKXwjnW0CHhzB+GvNbQJ1KBoAq+VtA2eicn+L/W0DEQNe+
gAtcQJ9ZEqCmF1xArdo1Ia0ZXEAwgPChRCNcQC8yAb9GMlxAo5I6AU1BXEB7
Szlf7INcQL0cdt8xkFxAvw0xXvOmXEDueJPforBcQOhsAaH1tVxA6C0e3nPD
XEBzSGqhZMVcQO5dg770x1xADFcHQNzKXEARqP5BJM5cQBVypZ4F1FxA2Lj+
XZ8DXUAZrg6AuAZdQEGeXb71IF1A4CpPIOwhXUCMvRdftDtdQApI+x9gRF1A
LhoyHqV5XUDa4hqfyZhdQEXXhR+cnl1ALxfxnZioXUB4Y0FhUKxdQMed0sH6
rl1AURa+vta9XUAXgbG+gcVdQJ56pMFtx11AMCk+PiHNXUCaIyu/DPddQFEW
vr7W+V1AmyDqPgD/XUD+7bJfdwNeQGSyuP/IBV5ACCEgX0ImXkASaRt/ojZe
QPOuesA8PF5A1NaIYBxEXkCmmIOgo0ZeQL06x4DsbF5AsrlqniN6XkAkJqjh
W35eQDZ39L9chF5Aqrab4JueXkD/CMOAJaFeQJwaaD7nqF5AdxVSflK1XkDd
PxaiQ7peQB+94T5yw15AlC9oIQHFXkDAJQD/lOBeQL0ZNV8l8l5ABBvXv+v8
XkDfGAKAYwVfQJxQiIBDCV9AxHx5AfYLX0BBuW3foxFfQFyOVyB6Ml9AVBwH
Xi02X0Acz2dAvThfQH6QZcHEQ19A8nub/uxrX0CCqPsApHdfQIeiQJ/IeF9A
xTcUPlt7X0CnrRHBOIRfQIKrPIGwil9A4A8//z2RX0DzzMth95VfQE5GlWHc
o19AqaROQBO3X0Ai/IugMcNfQIJy275HxF9ANX12wPUBYEBoyk4/qAlgQGTN
yCB3DGBAoGtfQK8fYEBdcAZ/PyJgQL9DUaBPKWBASu8bX/sqYEC0AdiAiDhg
QPSltz+XQGBAym37HnVCYECtvyUAf0NgQDBinwAKRmBAzo5U33lhYECYFB+f
EGJgQHEhj+DGYmBA6nWLwFhlYEBj0Amhg2ZgQLHgfsCDcGBAsMVun9WBYEAY
sU8AxYJgQP32deAchGBAf2ySH3GOYEAxQQ3fwo9gQKyt2F92l2BA0c3+QDmZ
YEAf8wGBTpxgQKq53GAoomBA8ZwtIDSjYECcU8kA0KZgQB7ec2A5q2BAHM9n
QL2rYECWCFT/IMJgQAlOfSB5w2BAIvyLoLHVYEBH5pE/GNlgQKq2m+Cb22BA
atlaX6TeYECR7Xw/td9gQKmJPh9l4WBAmBQfn5DiYEA+syRAzeNgQG4VxEBX
5WBALjvEP2z0YECcTUcAN/xgQBiZgF+jAWFAqrncYKgCYUB9dVWgFgRhQHdL
csCuBGFA4A8//z0PYUANUYU/ww9hQDiGAOBYHGFABBvXv+shYUD1ona/CiNh
QPbP04DBJ2FAnDV4X5VCYUBD5sqgWlZhQHAGf78YYWFAQL/v37xhYUCy1Hq/
0WJhQIJ1HD/UZWFA1Lg3v+FwYUCjj/mAwHZhQEC/7988hGFAPZtVn6uFYUBi
u3uAbpphQEcBomBGomFA1sQCX1GqYUAQWg9fJrBhQLsru2Dws2FACks8oGzC
YUA+y/Pg7sRhQMV29wBdx2FA3xXB/9bZYUAHQrKACd1hQNjTDn/N4WFA++dp
wKDiYUDvjSEAuO5hQBFy3v9HAGJAo4/5gMABYkAIOe//4wJiQPTDCOFRFmJA
2e4eoPshYkCaPjvgOiNiQHlafuAqPWJA98ySALU/YkAVkPY/QEJiQIm0jT9R
Q2JA/N6mP3tGYkANUYU/Q05iQPvnacAgVmJALzVCP9NXYkA2kgThimJiQL8r
gv+tY2JAvyhBfyF4YkB7ZkmAmn5iQDuMSX+vgmJAI/YJoJiDYkD+8PPfA5Fi
QME3TZ+dl2JATyLCvwibYkBt5SX/k5tiQDuMSX8vomJAzZTW3xKjYkBPH4E/
/KRiQD6w479AqGJAQblt3yOyYkCN8PYghLdiQK62Yn9ZvGJAWHOAYA7DYkDX
9+EgIdJiQNS19j7V0mJAaverAF/iYkAYk/5eiuNiQDiDv1/MAWNAelT835ED
Y0AYsU8AxQVjQDiez4D6C2NANnf0v1wiY0Br1hnflyNjQKBTkJ8NMGNAV17y
P3k3Y0Ah5Lz/D0FjQN8bQwBwQmNAmSzuPzJEY0B6bMuAM0djQEoNbQC2S2NA
ibFMv8RNY0Bj0AmhA1ljQGCUoL/QYWNADDz3Hq5iY0CjXBq/8G9jQCxHyEAe
c2NAuf5dnzl7Y0DCTxxAv4FjQEDa/wDrgmNAZ7gBnx+aY0AvNUI/06BjQCYa
pOApomNAwD3PnzajY0DjGwqfLaRjQMVwdQDEq2NA+MPPf4+wY0DzrnrAPLhj
QAAAAAAAwGNAoYDtYETCY0BWRiOfV8NjQI3w9iAEzGNAROBIoMHUY0B7Tnrf
+NljQEPFOH+T4mNAF5zB36/jY0BUUiegCepjQHpsy4Cz7mNAtf6WAHz5Y0Ax
XB0AcQBkQB7htODFAmRAfGMIAA4EZECeRIR/kQVkQMyaWOCrFmRAdjOjHw0j
ZEC+LsN/OiRkQBaKdD8nQ2RA2gBsQIREZECvzjEge2JkQDV6NUBpY2RABRVV
v1JnZEDKiAtAI29kQFlt/l/1dmRA1/fhIKGAZEDX9+EgoYNkQF+X4T/dnGRA
zaylgDSiZEAB9zx/2qJkQH5yFCAKpGRAoFBPH4HCZEC6E+y/zshkQNbllIAY
1WRAq5UJv1TcZED52F2gpOJkQJLqO7+o42RAiL1QwPYCZUAC9Pv+TQVlQBJs
XP+uCGVAMEeP39sSZUDW5ZSAmBRlQIaQ8/4/FmVAEmxc/y4iZUC/K4L/LSNl
QM6OVN95JmVAXoWUn1Q9ZUB3TrNAu0FlQIm0jT9RQmVAU1ipoCJWZUArNXug
FWFlQJYIVP+gYmVA6E6w/7pjZUBE3QcgtWllQHxI+N5fa2VAp5IBoApsZUBF
1ESfj3tlQLbykv/JgmVAYqBrX8CDZUAOZhNg2IhlQCkjLgCNk2VAmSzuPzKi
ZUCDonkAC6NlQAEYz6AhpGVAIPDAAELCZUAe3nNgOcNlQCPzyB8M0GVARdRE
n4/hZUBQHEC/b+JlQKeSAaCK42VAwVjfwOTkZUDUuDe/4QFmQCgOoN93A2ZA
I/lKICUWZkD+CwQBMhxmQIF4Xb/gImZAwEAQIMMjZkDxnC0gtCZmQIveqYB7
Q2ZAZcdGIF5OZkBhjh6/t2JmQGWp9X4je2ZAqpuLv+2CZkDJkc7ASIhmQAxa
SMDoiWZAidLe4IuVZkCBeF2/4KFmQNPZyeAoo2ZAXI5XIHqkZkAGEhQ/xsBm
QI/ecB85wmZAliNkIE/DZkA/pyA/m8tmQOVC5V9LzGZAvTRFgNPXZkB+iuPA
q9lmQNGvrZ9+4mZAjswjf7DjZkAf8wGBzvJmQNPcCmG1AGdAlBeZgN8CZ0AK
SzygbARnQNS4N7/hB2dATBb3HxkQZ0Db/SrAdx5nQGO1+X9VH2dAat/cXz0h
Z0DW4lMADCNnQPOrOUAwJGdAR+NQvwsnZ0AdzCbAMENnQOhLb3+uTWdAnFPJ
ANBOZ0BLIvsgS2JnQA1slWBxY2dAlx3iH7aBZ0AaqIx/n4JnQOMbCp+tg2dA
RdeFHxyiZ0DdDDfg86NnQBKEK6BQwmdASPje3yDEZ0DkTulgfdhnQCcR4V+E
4mdAXaPlQA/kZ0BHBOPg0u9nQKVrJt/sAmhAfHvXoK8DaEAoC19f6xBoQJom
bD+ZEmhAOnr83iYjaEBn0xHAzShoQPOrOUCwN2hADFcHQFxCaECjXBq/cENo
QBJpG38iUmhAGJY/3xZUaECWBRN/lGJoQFNYqaCiY2hAXoJTH8iCaEA/raI/
tINoQFA0D2ARo2hAYJSgv1CkaECXGqGfqbxoQJULlX8tw2hAuyU5YFfEaEC7
KHrg48xoQLsNar810GhA0765v/rTaEBxIY/gRuJoQNGy7h+L42hAqrab4Jvr
aEA3jILg8fZoQApI+x9g+WhA7GmHv6YCaUAoLPGAsgNpQAADQYCMDmlAnkSE
fxEeaUDlRSbg1yJpQBi0kIDRI2lAomKcvwlCaUC+LsN/OkNpQGzu6H85RGlA
VFVoIBZSaUBNLsbAumJpQByxFp+CZGlAAP2+f/NnaUD2twTgH3NpQJYgI6DC
eGlAtw2jIHh5aUAKSzyg7IJpQL4uw386imlAHLRXHw+haUDAQBAgQ6NpQLDF
bp9Vr2lAsOO/QBDCaUAxXB0AccNpQOEM/n4x1mlAuB/wwIDiaUBvD0JAvuNp
QFRVaCCW5GlAAfp9/2blaUDBVZ5AWOlpQCgs8YCy+2lA9Z81P/79aUAUkzfA
TAFqQA9gkV+/AmpAPbmmQOYDakBNLsbAuh5qQETC9/4GI2pA9rcE4B8kakDc
D3hgACVqQIvh6gAIKGpA7X4V4DtDakDoZn+gXEVqQBWNtb+zSWpA2/eov15R
akBtA3egzlVqQBiWP9+WY2pAradWX91takCbO/pfrnJqQJ1KBoCqgmpAQ8u6
f6yDakDNkZVfBpZqQGnHDb8bnmpAWFhwP+CiakAGMGXgAKRqQK3CZoCLqWpA
1/fhIKHCakAsR8hAHsRqQOMz2T/Px2pAYp0q37PiakBZbf5fdeNqQFJDG4CN
5GpA2NZP/9kCa0BWZHRAEgRrQPzh57+HEGtAufscHy0ja0Bdo+VADyRrQPOT
ap8OQmtAbhgFwWNDa0AexqS/l0hrQLPROT9FYmtAOnr83qZja0CGkzR/zGRr
QFJJnYCmgmtAQde+gN6Da0BxAz4/DKNrQNXNxd/2o2tArb8lAP+oa0DshJfg
VMNrQE0uxsC60mtAqI/AH37ja0DrVPmekeRrQMuFyr8W9WtACVG+oIX+a0BQ
OpFgqv9rQJxQiIDDA2xAiq4LPzgTbEAEG9e/axZsQBWrBmHuImxAAg8MIPwj
bEBglKC/UCVsQAtdiUB1MGxAcyoZACpEbEDBVZ5A2ERsQP7w89+DRWxAxXb3
AF1jbECVC5V/LYJsQM6LE19tg2xAJAuYwK2EbEAkDtlAOpBsQNPB+j8HmGxA
GLSQgNGjbEApCB7f3qZsQAk2rn9XtWxAgJnv4KfDbEDY8V8giOJsQA5ORL+2
42xAM2spIG3kbEC4BOCf0vBsQCHkvP8P+WxAjfD2IAQBbUAUlnhA2QJtQDFc
HQDxA21AuB/wwAAIbUC9N4YA4CJtQMJM278yJG1AvRk1XyU7bUCaPjvgOkNt
QBqojH+fRG1A/OQoQJRjbUBOKETAoWRtQNPZyeCobm1AYqOs38yDbUAg0m9f
B4ttQPCiryDNmm1AMGKfAAqkbUCYLy/AvqdtQNTWiGActG1AnDV4X5W1bUDP
o+L/DsNtQLfsEP8wxG1A6GnAIOncbUBlxAWgUeNtQPm9TX925G1AUDqRYKoE
bkB5Vz1gnhJuQLcKYqDrI25A4ScOoN8kbkChaB7AoiVuQMVwdQBEQG5AJxQi
4JBDbkBLIvsgS0RuQNv66T9rRW5A/fZ14BxGbkDytPzA1VtuQKuwGeACX25A
US6NX3hjbkDb96i/3mNuQNLHfEAgZG5A/wjDgKV4bkCiX1s//YJuQAMJih/j
g25AnmLVIEyZbkAJVP8gEqNuQME3TZ8dpG5A5C1XPza9bkARje4gdsNuQN8b
QwBwxG5Aw0ZZvxnObkC06QjgZuNuQNnuHqB75G5AiLoPQOrlbkDhDP5+sQNv
QPzh57+HBG9AYK+w4H4Hb0B9XYb/9BZvQBvV6UDWIm9Ap5IBoAokb0BPPdLg
NkNvQOMbCp8tRG9AiLoPQGpFb0AkC5jALVhvQIy9F180W29Af2ySH3Ffb0DA
JQD/lGRvQN8Vwf/WZW9Ag4dp31xsb0DeADPfQX9vQMVYpl+ihG9AlBeZgN+j
b0BWZHRAEqVvQMZq8/8qqW9Ak//J3721b0AwR4/fW8NvQAQDCB9KxW9A6Ugu
/yHib0DsaYe/puNvQFpnfF9c5G9AIM8u33rlb0A9npYf+AFwQNnuHqD7EXBA
rrmj/+UhcED84ee/xzFwQIF7nj9tMnBAvB+3X/5BcEB+chQgikJwQBefAmD8
UXBAFqJD4AhdcEAj+UogJWJwQKN3KuDeZHBAxm00gDdrcEDsbMg/c29wQDyh
158EcHBAg6J5AMtwcECrsBnggnFwQDmAft8/cnBAJxQi4BBzcED4xhAA3IFw
QNnonJ9ignBABirj3+eRcECUEReAhpJwQFZhM8CFonBASPsfYO2ncEApIO1/
QLJwQJs4ud+hsnBA+dhdoKS8cEBDy7p/LMJwQCsyOiAJ0nBAyXa+n1rScEDv
kGKAxNJwQJYgI6BC4nBAmDJwQIvxcEDAPc+f9vFwQAIMy59v8nBABirj36cB
cUDLhcq/VgJxQL9DUaAPEnFAcR5OYDofcUCQ+YBAJyJxQFx2iH8YK3FA2/0q
wDcycUCfWRKgZjJxQG76sx/pMnFAeEXwvxVCcUAbvRqgdEJxQA9gkV9/UXFA
75BigIRScUAVjbW/s1dxQO54k9+iYnFAsMivHyJlcUBXW7G/7G9xQNjxXyAI
cnFAwEAQIMNycUDfG0MA8HVxQP8FggDZe3FALCy4HzCCcUBE4EigwYJxQAMJ
ih9jknFAxFvn3+6ScUCHpYEfVaJxQF6dY0D2x3FASPje36DScUDBUl3AS/Jx
QEoNbQB2AnJARu9UwH0SckA0ZacfVDByQKmkTkBTMnJAiL1QwDZCckAFGJY/
30JyQEDCMGCJUnJAgZNt4A5TckAwR4/f22ByQJpBfGBHYnJAtvKS/wljckCX
GqGfqXJyQFRSJ6DJgnJALCy4H/CSckCwy/CfrqJyQLTjht8No3JAEHUfgBSs
ckC2+BQAI7JyQDBK0F/osnJA/vM0YNDyckByFYvf1AJzQHlXPWAeEnNAD2PS
34sic0BzLVqANjJzQPzh57/HMnNATyLCv4hCc0ArNXugVXNzQPKWqx9bqXNA
RdrGnyj8c0AXnwJg/BJ0QMyaWODrInRAe0563/gydEDtfhXge1N0QJYjZCAP
BHVA6WM+IJAQdUB/bJIfMTN1QISc9/+xNHVA2eicnyJDdUDX3NH/8kt1QPzk
KEDUUnVAdjbkn9mQdkD52F2gJIN3QF+X4T+do3dAdCfYfx3ReEDnVDIA1PR4
QJHtfD81jnlAvTRFgBO3ekDlQuVfKzeCQPrS258LkIJA4zPZP49Og0BRMc7f
JGqDQHdIMUCC+IRABB4YQFgChkDvjSEAeDOGQJP/yd9dBodA3xgCgAMPh0Cf
VtEfOq+IQMReKGD7BYlA1dAGYIMtiUACDwwgPECKQK/OMSD74YpAi8ba39lz
jEBPIsK/6PWMQBSTN8BsQ41AiLoPQKphjUDAQBAgw1GOQKeSAaAKrI5ACDww
gJC6jkB2NuSfWcuOQIKN698VU49AvCL430qLj0BQNA9gEbuPQFde8j8ZK5BA
628JwM84kECN1eb/tTuQQOVC5V8LX5BAq7AZ4CJykEDtfhXgi3WQQNGy7h8L
epBA4zYawBumkEAbvRqg1LSQQOdR8X/n3ZBARN0HILUCkUDIef8fpwORQOdR
8X9HHZFAstr8v/pVkUBI+N7fsGKRQB3J5T+0epFA+tUcIIihkUAGKuPfF6KR
QFlt/l/FrJFAPKQYIFG1kUBCzvv/iOyRQCHn/X8c95FAbwwBwJH4kUCEnPf/
8fuRQOtvCcAvApJAdjbkn/kKkkBt/fSf1ReSQC9NEeA0H5JAoWgewLI8kkDT
wfo/p3KSQKmhDcAWjZJAF58CYMyskkCwy/CfXruSQCHn/X+MyZJAbwwBwHHl
kkBZbf5fZeySQO1+FeA7+JJAQs77/7gbk0BXXvI/CUSTQCsv+Z8cR5NA08H6
PydJk0C4BOCfYk6TQNXQBmADYZNAH9jxXyCek0ChaB7AErGTQMyXF2C/1JNA
z6Pi/w7ik0BSQxuAzeaTQJ9ZEqDG+JNASgfr/1wWlEC4ByEgPyWUQCHn/X8s
RpRAY7X5f/VflEDdCfZfl2CUQOtvCcBfYpRAPrDjv8B2lEBQNA9gQYKUQEbs
E0AxoZRAbO7of2nDlED2twTgT8SUQJ1KBoDax5RAaeId4DnNlEBOJQNANduU
QBefAmAM35RA8Irgf+sDlUD84ee/RwuVQLgE4J+iGZVA4ScOoC8blUC4BOCf
MiWVQAg57/8DS5VA4zYawHtSlUBp4h3gGVOVQNXQBmADVZVATBb3H2lllUCf
WRKgVm2VQIrJG2D2b5VAKSDtf4CDlUBzKhkA2piVQKuwGeCSspVAH9jxXwC+
lUCZLO4/QsCVQCsv+Z98wpVAn1kSoCbPlUDGavP/6tuVQJQRF4DW3ZVANnf0
v2zjlUB2NuSfmeWVQKuwGeDi8ZVAyHn/H9f0lUCCjevfVQuWQAxXB0AsDJZA
uAchIJ8MlkBt/fSfJQ6WQEwW9x9pDpZAKSDtf6AalkARct7/RyaWQHMqGQAK
KZZA5ULlXxstlkAAAAAAMDKWQEC/79/MN5ZADFcHQCxMlkDwiuB/a1iWQPCK
4H87aZZA1dAGYON5lkArL/mfzIKWQJks7j/ChpZAwEAQIMOVlkBZbf5fJZaW
QJQRF4CmnJZAAAAAAPCdlkAtPgXASKKWQPjGEABsppZAn1kSoBanlkCGqwMg
nrKWQH5yFCAaw5ZAUkMbgA3HlkDjNhrAq8qWQDFcHQAxzJZAkfP+P37alkCU
EReAxtqWQPrVHCAI6pZAxFvn347wlkD2twTgj/WWQGO1+X81+5ZAelT838EN
l0BXXvI/2TKXQNGy7h/7OpdAhqsDIF5Bl0DKiAtAA0KXQDiGAODoSZdAfnIU
IHpLl0Clg/V/bmKXQPrVHCBIb5dAaeId4Ll6l0D2twTgX3uXQA==
</binary>
          </binaryDataArray>
          <binaryDataArray encodedLength="12680" 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>AAAAAAAAcEAAAAAAAABjQAAAAAAAAF9AAAAAAAAAZEAAAAAAAIBgQAAAAAAA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</binary>
          </binaryDataArray>
        </binaryDataArrayList>
      </spectrum>
    </spectrumList>
  </run>
</mzML>
