<?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="MAEIEVLCKWDQJH-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-374216-mz-values.txt-20190109-20465-a645a6" name="msms-374216-mz-values.txt-20190109-20465-a645a6" location="http://contaminantdb.cahttp://moldb.wishartlab.com/system/documents/files/001/917/688/original/msms-374216-mz-values.txt-20190109-20465-a645a6?1547065823">
        <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-374216-mz-values.txt-20190109-20465-a645a6">
    <spectrumList count="1" defaultDataProcessingRef="SpecDB_processing">
      <spectrum id="file=_msms-374216-mz-values.txt-20190109-20465-a645a6" index="0" defaultArrayLength="1000">
        <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="10846" 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>uhCrP8KURkA91/fhIKNGQFciUP2DxkZAXd+Hg4TWRkDqXbwftwNHQMSUSKKX
OUdABCFZwARAR0A9mBQfn1JHQLoQqz/C2kdA+g5+4gD+R0D1geSdQytIQKCn
AYOkMUhAPIbHfhY5SEBGQIUjSEdIQDeMguDxSUhAgJ9x4UBMSEBv1uB9VVJI
QLxbWaKzaEhA5j+k376USEBEhlW8kZlIQEgxQKIJnkhAvVKWIY73SECOIJVi
RxdJQA9Iwr6dKElANE3YfjIySUAce/ZcpkZJQMNJmj+mc0lAXYjVH2GASUD4
GoLjMoJJQFNb6iCvlUlAq5LIPsiYSUAC1qpdE6BJQIBFfv0QtUlAdSFWf4TF
SUBjuDoA4upJQNDQP8HF8klA3soSnWUwSkCNQSeEDjJKQNfBwd7EVEpAr84x
IHufSkDlCYSdYqNKQFOUS+MXsEpA0gDeAgnOSkB+ObNdoTFLQNbEAl/RR0tA
LXdmguFWS0BrDDohdHhLQK8l5IOejUtAo3cq4J6bS0AlI2dhT7FLQKbUJeMY
t0tAcVrwoq/4S0DHZHH/kQ9MQLCSj90FPkxAJT53gv1tTEAH0zB8RJ5MQIeK
cf4myExA5xvRPevOTEDIzXADPtNMQALWql0T1kxA+boM/+ngTEB23zE89vFM
QMDpXbwfD01AMgIqHEEWTUDaHr3hPjpNQIFaDB6mQU1ANzgR/dqgTUB7n6pC
A6NNQJEsYAK37k1A6GnAIOkHTkDZIf5hSyNOQJIIjWDjSk5AMPDce7iqTkBU
qdkDrdROQK6bUl4rB09AuFhRg2kST0DmdcQhGyZPQFlPrb66mE9ADaX2Itq4
T0D84ee/B+9PQLfvUX+9A1BAqrncYKgEUEBdixagbVZQQP0Ux4FXd1BACVG+
oIWhUEAA/b5/86RQQAtFup9TtlBA1esWgbHGUEB7Lei9MdBQQPvMWZ9y0VBA
tyVywRkPUUAk8Ief/xpRQHtLOV/sKlFAYMd/gSAsUUDMf0i/fVJRQHIz3IDP
WVFAlu1D3nJ6UUDQ0D/BxYdRQIGxvoHJjFFAX3zRHi+WUUBklGdeDp9RQHtp
igCnplFAezNqvkqqUUAoKbAApqxRQP32deCcs1FAMV9egH3DUUAmHeVgNtJR
QE31ZP7R4VFASS7/If31UUBvLZPhePhRQMFSXcDLGVJAW2H6XkMrUkAWinQ/
pzhSQHEDPj+MUlJAGqVL/5J4UkBhiJy+no1SQFFPH4E/mlJA29yYnrCwUkDM
YfcdwwNTQJxNRwA3ElNAURN9PsocU0DqPCr+709TQJQyqaENUVNAAdwsXixS
U0AycasgBltTQAYwZeCAalNA85Nqn455U0CTAgtgyqJTQA05tp4hqlNANEqX
/iWrU0CT/8nfvdZTQOAtkKD48VNAILdfPlkRVEDFPZY+dDhUQC4dc56xPFRA
7l2DvvQ+VECgibDh6VtUQGjKTj+oY1RAy4XKv5ZvVEAlAtU/iINUQEMB28GI
iVRASN3OvvKcVEA1fXbAdaFUQEgWMIFbvlRAmiMrvwzoVEBcdoh/2OpUQLr4
254g7FRABADHnj0BVUDBcK5hhgJVQCwOZ341DlVA7ISX4NQcVUCx+47hsSBV
QE9AE2HDLFVAstr8v+ozVUAKSPsfYDhVQDBoIQGjUVVAxoUDIVleVUBeu7Th
sHVVQFIoC19ff1VAIeS8/4+CVUDVA+YhU5hVQDJZ3H9kolVAt9EA3gKuVUBs
CfmgZ7lVQAYSFD/G21VAmDWxwFfsVUBPB7KeWvFVQBqH+l3Y9lVAC0J5H0cN
VkDhCb3+JChWQFYrE36pMFZAlghU/yBhVkBq3JvfMHtWQMlYbf5fk1ZAC2DK
wAGXVkD3kzE+zLFWQLQEGQEVuVZA5Gn5gau+VkBApN++DtBWQJMCC2DKDVdA
8b2/QXsiV0Bqvko+diNXQIyiBz4GLVdA1uWUgJhEV0AUkzfAzFBXQGCvsOB+
YldAYJFfP8RpV0Due9Rfr29XQDRHVn4ZgFdA8b2/QXvCV0AMdVjhlttXQD/g
gQGE71dAaw97oYD0V0AnF2NgHfpXQL3+JD53DVhAq5hKP+EmWEBXPWAeMkZY
QI8X0uEhaFhAHvzEAfRxWEC+MQQAx3ZYQC1BRkCFiFhAg8DKoUWVWEC7Cik/
qZZYQBnJHqFmmFhASwFp/wOcWEAqU8xB0K5YQCv8Gd6suFhAFW9kHvnMWECH
qMKf4eZYQHNLqyFx6lhA2xg74SXvWEB1HhX/dwdZQAX9hR4xMFlA7mDEPgEz
WUCXHeIftlpZQB/zAYHOdVlAOKEQAYePWUCnejL/6J9ZQI0LB0Ky51lArK3Y
X3bvWUD5wI7/AvJZQOtvCcA/91lALSP1nsoVWkBdpibBGydaQC0mNh/XL1pA
5UUm4NdBWkBD44kgzkZaQJULlX8tVVpA5Gn5gataWkBwP+CBAWVaQBztuOF3
bFpAml/NAYJ1WkCWBRN/FHdaQMegE0IHflpAxoUDIVmPWkDuYMQ+AaJaQI8X
0uEhrFpAZK93f7zGWkAsR8hAnt5aQOI/3UCB41pADk5Ev7YYW0DmdcQhGyhb
QLjmjv6XQVtALlkV4SZDW0BQOpFgqnxbQImxTL9EfltAgpAsYAKCW0BB9Q8i
GYtbQHYb1H5rm1tAbeUl/5OkW0C7Q4oBEqdbQHYb1H5rqltAsg3cgTq4W0AV
xhaCHMVbQBWQ9j/AyltA1O5XAb7aW0B5Vz1gHuBbQIWZtn9lCFxACTNt/8oN
XEDshJfg1CBcQATo9/2bO1xASMX/HVE+XEBdaoR+pkJcQC5W1GAabVxAcv27
PnNxXEDR6A5iZ4BcQDRN2H4yllxAqKrQQCyoXEDg929enMNcQBixTwDF8FxA
Jjj1geT+XEAxXB0AcQ1dQD3RdeEHKl1AzosTX+07XUBOQ1Thz1ZdQLjpz36k
W11AWUxsPq5zXUCBWgwepopdQDNTWn9Ln11AtwpioGupXUDwwADCh6pdQEOt
ad5xrV1Ajsni/iPAXUANVMa/zwxeQNjxXyAIFl5AH73hPnI4XkDDZKpgVD5e
QGv0aoDSSV5Aq3r5nSZPXkC69ZoeFFNeQGzoZn+gWV5AhIHn3sNbXkAlz/V9
OGNeQOJa7WEviV5ASwFp/wOLXkAhBU8hV6VeQOBL4UGzuF5ADTm2niHFXkDA
Ir9+iNVeQNnr3R/v515A2QbuQJ0CX0Ae/wWCAARfQAdgAyLELl9A4Qm9/iQ8
X0A5X+y9+EVfQE8fgT/8oV9ASzrKwWylX0D3qwDfbcBfQEoH6/8cwl9ATRO2
n4zDX0DiIYyfxgBgQIWxhSAHAmBAL1BSYAEKYEDnOSLfpQtgQAw89x4uDWBA
6Etvfy4aYEAxXB0A8R1gQJgvL8A+ImBA6l28HzctYEAPY9LfyzJgQPWidr+K
OWBAYqBrX8A9YECHpYEfVT5gQMudmWA4QGBAn1bRHxpCYEDsaYe/pkRgQAUY
lj9fXGBA1Lg3v+FcYED922W/7mJgQDJxqyAGbmBAP8Vx4NWBYECu1/SgIKhg
QGCvsOD+qmBApoC0/4G3YEAqHaz/c7lgQE0Ttp+MvWBACTauf1fCYEDdDDfg
c8lgQMNJmj8mzmBAbAn5oGfPYEB1P6cgP9NgQGSsNv8v4GBAC2MLQY7iYEAg
8MAAQuZgQOyEl+BU6GBAoG6gwDv3YEActFcfjwNhQKWeBaG8C2FADk5EvzYg
YUDiHksfOiJhQCTtRh/zImFAjNtoAG8qYUDgLZCgeCxhQLgHISDfMmFAZtmT
wGY4YUDtgVZgSD5hQA9gkV8/Q2FAkwILYEpHYUADCYofY0lhQBJpG3+iS2FA
+N7foL1hYUCojH+fcWVhQKWeBaE8dWFAmDJwQEt9YUCeXFMgs4RhQEkT7wDP
iWFA8Ief/56gYUB1P6cgP6JhQA9j0t/LpmFA+tUcIBiuYUB+VwT/W7thQAEY
z6AhwGFAisxc4HLcYUAcz2dAPeJhQFhVL7/T4mFAZ9MRwM3nYUCS5/o+HPZh
QHEhj+BG/2FAoWXdPxYFYkAWpYRg1RZiQGe4AZ8fH2JArtf0oCAhYkAHP3EA
fSZiQEj7H2AtKGJAM25qoHktYkDsbMg/szFiQFFM3gCzMmJAsd09QHc2YkCI
n/8ePEFiQNjWT//ZQmJASgosgClGYkAi4Xt/A0piQJ9ZEqCmVGJABjBl4ABi
YkDzk2qfjmViQEfp0r+kZ2JA0sd8QCB5YkA1Ymafx35iQFqCjIAKlWJAR+nS
v6SbYkA9m1WfK6BiQDunWaBdrGJAgZNt4I6vYkDCNAwfEb9iQCDtf4C1xGJA
Khprf2fjYkBVTKWfcOViQDeMguDx/2JAcAZ/vxgBY0Ad5PVgUgNjQFIrTN9r
BGNAlPYGX5gMY0BaZ3xf3BBjQB/bMuAsHGNAVWe1wB4dY0BMHHkgsh5jQAxX
B0BcIWNA/Pz34DUiY0B2UfTAxytjQIy9F1+0QGNApG5nX/lEY0DmWrQAbUdj
QEsEqn+QVGNA1/fhICFYY0DPvvIgvV9jQC0+BcB4YmNAtvgUAGNjY0BQNA9g
EWhjQDSAt0ACaWNAUUzeALNtY0ATfqmfN3RjQJIFTODWdmNA3BK54Ix+Y0Df
G0MAcIBjQMBAECDDgWNAgZauYJuCY0AaqIx/n4djQAYtJGB0iWNAaNDQP8GN
Y0Ad5PVg0pxjQMReKGC7oGNAjfD2IIShY0BvDAHAsaJjQOIeSx86sGNALSP1
nkrAY0CU+UffpNtjQN8Vwf/W7GNAHsNjP4v+Y0CkcajfBQRkQHdLcsCuBmRA
cyoZAKobZEBkyoeg6iBkQJgXYB+dImRAP6cgPxtCZECP/wJBAElkQKiMf59x
fmRAdjOjHw2FZEBF1ESfj4hkQGr3qwDfiWRAFHtoH6uTZECKyRtg5phkQO1+
FeA7nWRAaM2Pv7SeZEA0gLdAgr1kQEG2LF8XwmRAC2DKwAHDZEAKMCx/Ps9k
QK7X9KCg0WRADWyVYPHSZEChZd0/ltRkQApI+x9g3mRAwVWeQNjgZEA4g79f
TOJkQNXo1QCl6mRAjdXm/9XvZECIvVDAdvNkQDl9PV+z9GRAUz2Zf3T8ZEBn
1lJA2gFlQM+goX+CAmVAJQLVPwgGZUCQ+YBA5xVlQFt8CoDxG2VAGJY/3xYi
ZUDxhF5/kjBlQHU8ZqCyOWVAL1BSYIFAZUBUVWggFkFlQPzkKEAUQ2VAP62i
P7RUZUAA/b5/81ZlQHQn2H+dWGVAvRx23zFcZUClhjYAm2FlQHEhj+DGYWVA
UTHO34RiZUAdzCbAMGRlQH9skh9xa2VAnE1HADd9ZUChgO1gRIFlQM6LE19t
jWVA8parH5uQZUDxn26gwJ5lQN0Gtd9aomVAWW3+X/WlZUCR8/4/TqhlQOQt
Vz+2tGVAEW+dfzvBZUCP5PIf0sFlQEjgDz//wmVAelG7XwXPZUArL/mf/A9m
QBR7aB+rIGZAw0ZZv5khZkApIO1/gCNmQEX11sDWJWZAxm00gDctZkAlCFdA
ITVmQNv3qL/eQmZAR+NQv4tHZkBPPdLgtmFmQAtjC0EOeWZAINWw35OCZkCw
y/Cf7oRmQGrf3F+9kWZADVGFP0OhZkDIYTB/BaJmQE0Ttp+MqGZAYJFfP0St
ZkC+LsN/urFmQO54k98it2ZA5zki3yW9ZkAJTn0g+cFmQFyRmKCG3mZAhbTG
oBPgZkC37BD/MOJmQPCHn/8e9mZA1LX2PtX3ZkBSRlwAmvxmQFxzR/9L/2ZA
hJz3/3ECZ0B7Szlf7AtnQBixTwDFDWdAHsNjPwsQZ0A0g/jAjiJnQIfD0sAP
KmdAol9bP30sZ0B4YADhwzlnQCxHyECeQWdAwTdNn51TZ0D52F2gpGlnQPrS
25+LcWdAgZNt4I51Z0BMFvcfmbBnQEXylUDKsmdAe0s5X+zFZ0CrmEo/YdBn
QMx8Bz/x12dANV8lHzvsZ0BeoKTAggJoQG399J81A2hAelG7XwUTaEBODTSf
8xtoQKSJd4AnJWhAbw9CQL40aEA+syRAzVdoQP7w89+DYGhA8YRefxJiaEA8
odefRGNoQIif/x48aWhA7pOjAFFyaEAg0m9fB3NoQAH3PH9ad2hAh6JAn8iA
aEBA2v8Aa4JoQAQb179rhWhAhJ84gH6TaECqm4u/7ZVoQKZ9c391nWhATiUD
QJWiaEB8SPje36toQKyt2F92sGhAuAchIF+1aEC0AdiACMFoQHpvDAHAwWhA
LCl3n+PCaEBF1ESfj89oQBy0Vx8P4mhAp5IBoAoDaUBmvoOfOB9pQFt8CoDx
H2lAe05633giaUCDonkAiyVpQCDVsN+TQWlADmYTYNhCaUApCB7f3lZpQN4e
hIB8YGlAZLK4/0hyaUAWokPgSHtpQG8PQkC+gWlABCFZwIScaUAQdR+AVLNp
QPnAjv8CxmlA7WMFv43LaUAzaykg7cxpQGjKTj8o1GlAraQV31DiaUBhpu1f
WexpQNS7eD/u+WlAat/cXz0GakA6evzepgtqQGrf3F89FmpA8KKvIE0bakAr
MjogiR9qQCo4vCCiImpA19zR//IwakBsBrggWzpqQKaYg6AjPmpAke18P7U/
akDCTxxAv0FqQMJPHEC/QmpA2gOtwBBLakAxX16A/WtqQJ0v9l78fmpAibSN
P1GCakDNlNbfkoRqQEoNbQC2oWpAFJZ4QNmvakBmwcQfRcVqQOMz2T9P4GpA
0Joff+nhakAzaykgbedqQDuMSX8v/GpALzIBv8b9akDNr+YAwQBrQFA6kWCq
DGtAkfC9v0ERa0CJsUy/xCdrQOdR8X9HKmtAINJvXwcsa0BH5pE/GD1rQBB1
H4DUUmtA+dueIDFda0CdSgaAKnNrQJ9ZEqCmg2tAhbTGoBOQa0CifazgN7xr
QKSMuAA0wGtAG9XpQFbEa0Cwy/Cf7uFrQCP2CaCY5GtA4DDRIAXqa0ALYwtB
jgdsQD+qYb8nFmxAAwmKH2MkbECHwJFAgyxsQCUC1T+IQ2xAZKw2/69VbEBi
o6zfzF5sQFpnfF/cYWxAAANBgAxpbEDQmh9/6WxsQP7tsl93cGxAkPmAQGd5
bEBUUiegCYJsQIKo+wAknmxAQde+gN6gbEANbJVg8bpsQBWoxeDhu2xAuhPs
v87AbEAcsRafAtVsQH+EYcAS3GxABRiWP9/ibED99nXgHOpsQNnonJ9iDm1A
z6Pi/w4WbUDlQuVfyyltQDmYTYDhOG1AFop0PydAbUBJ9Z1fFGBtQAD9vn/z
YG1AvB+3X75lbUDV0AZgA2dtQMZtNIA3gW1A3xgCgGODbUDzqzlAsIttQOQw
mL/Cqm1AV1uxv+zDbUCLw5lfTcZtQG399J+14W1ATiuFQC7kbUC4ByEgX+Zt
QCb/k7/76W1AUUzeALPvbUDQuHAgJPFtQMNJmj8m821AgZauYBv2bUDRr62f
/vZtQK3CZoCL+m1A/OQoQBQCbkBZbf5fdQRuQFM9mX90CG5AMlab/1cObkAS
aRt/ohRuQGK7e4BuFW5AWWq93+gZbkBm3NRAcx1uQM+goX+CJG5AZM3IIPcs
bkBm2ZPAZjFuQPCHn/+eQm5Artf0oKBEbkDrVPmekUxuQM6OVN95TW5Aza/m
AEFObkCKyRtgZlNuQMZtNIC3Wm5A+MPPf49bbkBI+N7fIF5uQB/zAYHOYm5A
CDwwgPBkbkBkyoeg6mhuQAMkmkCRgm5AoU0On/SEbkAcsRafAo9uQGv0aoBS
qG5AnUfF/52rbkDgEoB/SrluQOIeSx86um5AfEj43l/LbkDmXfWA+dRuQA9+
4gD62W5Axmrz/yoHb0AlBRbAlCFvQISEKF/QRm9AN24xP7dYb0CwyK8fYnFv
QCXqBZ/mcm9AcAZ/vxh8b0CrsBnggoZvQD6zJEBNjm9AN24xP7eXb0CAZhAf
2KFvQDeMguBxqW9AOJ7PgPrAb0Ak7UYfc8JvQPm9TX/2w29A/Pz34DXjb0AM
WkjA6O1vQBqlS/+S8W9AfGMIAA72b0Bn0xHATf5vQKWGNgDbAHBAOZhNgOEF
cEDue9RfbwpwQLHgfsCDEXBAPZ6WHzgScEBvDAHA8RJwQJHwvb9BIXBAdCSX
/5AycEBNE7afzDtwQKqezD+6Z3BAMV9egD11cECHpYEfFXdwQOlg/Z+DgXBA
djbkn5mDcED+7bJf95BwQJD5gEBnk3BAINWw31OZcEArMjogiZxwQPKWqx8b
oXBABirj3+ehcECDiqpf6bFwQKWD9X8OwnBAXI5XIPrQcEDJdr6fmtFwQDZ0
sz/Q4XBA7nvUXy/6cEBJ9Z1fVAFxQLsoeuDjDHFAWHA/4EEQcUBTQNr/QCBx
QPa0w18TKXFAoGtfQC85cUB6UbtfxTpxQJP/yd/9PHFA/vM0YJBFcUA+sOO/
AGRxQA5pVODkgHFAgH7fvzmKcUB2NuSfGZRxQKFoHsDin3FANnf0v9yhcUDP
o+L/TqtxQIrJG2CmsHFAG7rZH+ixcUA1ejVAqbJxQNLHfEBgtHFAzZGVX4a3
cUAlBRbA1LlxQBu62R8ovXFAq7AZ4IK+cUDU00fgD8JxQMJPHEA/xnFANGjo
n2DHcUDFWKZfIstxQJD2P8AazXFAP8Vx4NXNcUAKSzygLM9xQPzh57/Hz3FA
19zR/zLRcUCnlUIgF9JxQCHkvP8P1XFAuhCrP0LWcUBr9GqAEtlxQGniHeDJ
23FAY7g6ACLgcUD+8zRgkOFxQJUO1v955HFA3xtDALDpcUATfqmfd/FxQOdR
8X9H9XFAa/EpAIb6cUAGMGXgAP9xQFA0D2DRAXJAIeS8/08FckBp5V5gFgly
QBecwd/vD3JA6WM+IJAlckBbfAqAsTByQJ1Hxf+dMXJAbvqzH6k4ckCqnsw/
ejpyQNv3qL+eP3JAhqsDIG5AckBDyHn/n0tyQFde8j95UHJAibfOv91uckBK
CiyA6X9yQCUC1T+I2HJAPbZlwBn7ckB+chQgigdzQJ9ZEqCmCHNAZ9MRwI0Q
c0AtPgXAeDFzQIzYJ4AiRXNA19mQf+ZQc0BSRlwAmmBzQI/hsZ+FmHNANGWn
H1Svc0DX3NH/srRzQCHkvP+PwnNAROBIoMHJc0BUUiegic9zQAH6ff+m9XNA
oFOQn033c0D/BYIAGQF0QHMtWoD2EHRAjup0IOsRdEBenWNAtjB0QMuCiT8K
MnRA1NNH4M9idEAh6j4AaXJ0QJcd4h82mXRAJxdjYB2odEAQeGAAobB0QOAS
gH+KsnRA0sQ7wJMgdUBOJQNA1T11QMNJmj/mfnVA7nvUX++bdUCaQXxgB6F1
QDqVDABVonVAxm00gPe8dUCBe54/7b51QIOieQBLwHVA86s5QHDBdUA1fXbA
ddF1QPOrOUAw8nVAsd09QPf+dUDfG0MA8BJ2QJQUWADTJnZA/N6mP/srdkCD
iqpfKU52QIi6D0DqUnZAqaENwEZZdkDueJPfYml2QAQeGEB4cXZAGa4OgPh0
dkAMWkjAqHl2QDqSy3+IgXZA6WD9n8OFdkBvD0JAPqd2QDykGCDRsXZAjdXm
/5WydkAg7X+A9b52QC9NEeA0wXZAdCSX/9DBdkBAwjBgScN2QOljPiCQxHZA
NX12wPXHdkC+LsN/es12QAYq498nznZA2eicn+LRdkA0ZacfVNN2QDykGCDR
1XZA6WD9nwPYdkCjdOlfUt12QAxXB0Dc3XZA98lRgOjhdkArL/mf/OR2QFp/
SwB+5XZAo3TpX5LmdkBLBKp/EOp2QOlg/Z/D7HZA2/rpP2vwdkAwR4/f2/F2
QNXNxd/29nZAp5IBoEr+dkBI+x9gLf92QKuwGeDCAndAbxKDwMoFd0AGKuPf
pwd3QME6jh+qDndAMV9egP0hd0BozY+/tCN3QMNhaeBHYnlAgH7fvxlEjEDt
fhXg+5WQQIKN69+1/JNAX5fhPz1elEBZbf5fJX+UQLgE4J+i15RAiskbYJYW
lkClg/V//s+WQHMqGQA6W5dAfnIUIOpnl0C4BOCfgqmXQFde8j8JzZdAfGMI
AE7Pl0AKSPsfcFiYQN8YAoCjfZhAF58CYJzHmEAvTRHgVPuYQJcd4h92IZlA
2e4eoIszmUCwy/CfLniZQEj7H2Cdp5lAYabtX1nAmUDTwfo/d/uZQEwW9x95
CppAtOkI4KY8mkCAft+/6VSaQBFy3v8nfppA0bLuH+u5mkCR8/4/7saaQFJD
G4AdQptA3Qn2XzdUm0CuvOR/glubQFde8j/Jh5tAxmrz/9rLm0D0qPi/U9mb
QF2LFqBt+ZtA8pnsn/f5m0B+chQg2gGcQF2LFqANQ5xAZcQFoCFKnEDpYP2f
Q1CcQIrJG2DGXJxAuATgnyJ2nEBCzvv/iJ2cQOVC5V8LpJxAvjEEAHepnECN
1eb/5a2cQBB1H4Dk0ZxA9rcE4B8gnUB4RfC/xS+dQEwW9x8pdJ1AsMvwn66B
nUClg/V/7qKdQL4xBACXuZ1Axmrz//q/nUBfl+E/ncqdQKFoHsDC151AW3wK
gAHcnUB6VPzfIemdQAAAAACAAZ5AFZD2P1BGnkDrbwnAL2meQBOB6h9kk55A
gH7fv6msnkCrsBngsr6eQNv66T97Bp9AKSDtf9AVn0C+MQQAtyGfQLoT7L+O
JJ9ASgfr/+wpn0DAQBAgczWfQLDL8J/+PJ9A198SgK9En0A=
</binary>
          </binaryDataArray>
          <binaryDataArray encodedLength="10846" 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>AAAAAAAAY0AAAAAAAIBkQAAAAAAAgGVAAAAAAAAAZ0AAAAAAAIBlQAAAAAAA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</binary>
          </binaryDataArray>
        </binaryDataArrayList>
      </spectrum>
    </spectrumList>
  </run>
</mzML>
