<?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="OIRFJRBSRORBCM-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-374991-mz-values.txt-20190109-20465-13dd60f" name="msms-374991-mz-values.txt-20190109-20465-13dd60f" location="http://contaminantdb.cahttp://moldb.wishartlab.com/system/documents/files/001/918/463/original/msms-374991-mz-values.txt-20190109-20465-13dd60f?1547065854">
        <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-374991-mz-values.txt-20190109-20465-13dd60f">
    <spectrumList count="1" defaultDataProcessingRef="SpecDB_processing">
      <spectrum id="file=_msms-374991-mz-values.txt-20190109-20465-13dd60f" 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>mkS94NPeRkCYa9ECtEtHQPomTYOif0dAgH7fv3m3R0AnEeFfBN9HQBJsXP+u
/UdAgEi/fR0USEAZcmw9Qz5IQLclcsEZVEhAgo3r3/XVSEAFM6ZgjdlIQGKg
a19AB0lAgjl6/N4gSUBdwTbiyVxJQKCM8WH2YElAJefEHtpzSUDpDIy8rINJ
QFM9mX/0q0lAIvyLoDH3SUAFwePbu1xKQDFcHQBxpUpAcXUAxF3BSkB+iuPA
q81KQLk3v2GiR0tA41RrYRZaS0BzZrtCH35LQB/Y8V8gCExA/Z/DfHkvTEAr
btxifk5MQKm/XmHBX0xAnu3RG+5pTEBK7xtfe75MQN/EkJxMFE1ATtTS3ApJ
TUDzVIfcDLVNQOI5W0Bot01A3C3JAbvSTUB1HhX/d/BNQDCDMSJRQE5Albpk
HCNVTkDMtWgB2oBOQAXB49u7nE5AdT+nID/PTkAa+bziqedPQKvRqwFKOFBA
BTOmYI1nUEDBVZ5A2G5QQOlF7X4VcFBA8MAAwodxUEAF+kSeJHtQQFBVoYFY
1FBA4ScOoN/bUECTNeohGuxQQNjWT/9Z71BAH73hPnIGUUBM++b+6gdRQEGb
HD7pEVFAR+nSvyQmUUB7M2q+SlFRQMaIRKFlfVFAFr1TAfeXUUBhxD4BFKlR
QCgOoN/3rlFA+8kYH2axUUDfG0MAcPRRQP0RhgFLBVJAvTRFgNMfUkBq39xf
PS9SQBrerMH7SlJARML3/gZnUkDdDDfg83lSQME3TZ8dhlJAByeiX1uWUkCE
twchIJdSQAPrOH6ozFJAEoQroFDOUkBdqWdBKAFTQErUCz7NL1NAEXLe/8d0
U0AHQrKACYFTQHMPCd/7jVNAhL2JITmPU0Bosn+eBpFTQJc48kBkwlNABCFZ
wAT+U0DtYwW/DRVUQLgHISBfblRAGLSQgNF3VEAMWkjA6LBUQMmOjUC8vFRA
9bpFYKzTVEDhJM0f09pUQP0Ux4FX4VRA65Cb4QYDVUB5PC0/cARVQPm9TX/2
MFVAj8Ng/gpEVUDAPc+fNklVQKVlpN5TTVVAXHNH/8tRVUDvkGKARFZVQOJX
rOEic1VAynA8nwG9VUC2EOSghOlVQB7AIr9+/FVARL+2fvpOVkAzjLtBtFxW
QA0zNJ4IaFZALzIBv0aIVkCU+UffpJdWQLclcsEZsVZAbeUl/5PDVkDX9+Eg
IdNWQN7lIr4T1VZAd0gxQKLXVkDHTKJe8PJWQCcUIuAQ+FZAIhecwd/6VkCV
Dtb/OQFXQHpU/N8RLFdAfZOmQdFHV0B7MCk+PkxXQMZP4978gFdA0ZFc/kOJ
V0D35GGh1plXQDRlpx/UmldAzXaFPlimV0Bi1ouhnMRXQH1aRX9o8FdAQ/6Z
QXwaWEDFcHUAxFFYQJQUWABTb1hA5WA2AYa/WEC77xge+w1ZQCHn/X+cGllA
QbyuX7A6WUCiemtgq11ZQH0/NV66ZFlAeVp+4CpnWUC9HHbfMWhZQAghIF9C
b1lAvkwUIXXDWUAcz2dAvddZQBvYKsHi4llAJzJzgcv7WUARkC+hggFaQN45
lKEqA1pAmUo/4ew3WkA4oRABh0RaQHZUNUHURVpAavrsgOtlWkBTW+ogr3Za
QLou/OB8ilpAui784Hy+WkBZUu4+x8RaQMyXF2Af6FpAol9bP/33WkD9FMeB
VwVbQDM1Cd6QJ1tAa/RqgNI8W0BQN1DgnUVbQBvV6UDWb1tAYMrAAS11W0Bi
2cwhqYBbQKSqCaLuqFtAzsR0IVa2W0BFDaZh+LtbQOhmf6DcSFxAdR4V/3dN
XEAQP/89eIFcQPzG155Zj1xAdVq3Qe2aXEA6evzepp1cQDvCacGLw1xAfGDH
f4HIXEB2VDVB1MpcQLO2KR4XzVxAkuf6PhzOXEB6Nqs+V89cQByZR/5g21xA
on2s4Lf0XEBVLlT+tftcQGXfFcH/A11Ad06zQLsTXUAB9zx/2hddQD+MEB5t
G11AbcoV3uU7XUCWQbXBiURdQIyiBz4GSF1AJAuYwK1JXUDBc+/hklBdQNzx
Jr9FhF1ArMWnABiJXUDa5Vsf1pVdQOIDO/4Lv11AWkbqPZXFXUCiemtgq8xd
QOZ4BaIn1V1AjQjGwaXoXUBB8s6hDPtdQFtbeF4qBV5AgnUcP1QHXkC6EKs/
whNeQE8EcR5OG15Ap5IBoIpFXkDb96i/XnFeQFqCjIAKdF5AdQZGXtZ3XkBM
NEjBU51eQLkWLUDbs15AYtwNorXNXkD3rkFfetZeQLb103/W7V5ACTNt/8oG
X0BB9Q8iGRtfQLgHISBfHV9A09wKYTUhX0AShCugUI5fQCwpd5/j1l9A7GmH
v6YBYEDrbwnAPxxgQAtCeR9HImBAg6J5AAsoYEChaB7AoilgQNTTR+CPLmBA
V3bB4BpCYEC5HK9AdEdgQC0+BcB4SGBAmiZsP5lJYEBfsvFgi1BgQOZXc4Dg
VmBA5UUm4NdYYEDb96i/3l1gQJpEveBTX2BACjAsf75iYEDtfhXgO2VgQB7D
Yz+LZ2BAczCbAMNzYEBB176AXnVgQFZkdEASe2BAWHOAYA5/YEB/bJIfcYFg
QME3TZ+dgmBATTEHQceDYECaPjvguoRgQBR4J5+ejmBAjup0IOuRYEAEHhhA
eKFgQNCaH3/pomBAFHtoH6uvYEByFYvfFLtgQOQwmL9CvGBAhq5EoPrBYEBu
93KfHMNgQEPFOH+TyGBApWsm3+zOYEBOK4VALtBgQLHdPUB31GBAHLEWnwLa
YECkjLgANONgQKeVQiCX5mBAnmLVIEzwYECN1eb/1fxgQG3lJf+T/WBAR+aR
P5gDYUAnFCLgkA9hQMI0DB+RNmFAINJvX4c6YUCsqpff6T9hQLn7HB+tRWFA
9b2G4DhIYUC6LvzgfFhhQEG8rl8wW2FASPje36CmYUDSqSuf5a1hQIKo+wCk
tGFApG5nX3m1YUAkC5jArbxhQLsNar81vWFAvD0IAXnAYUDcD3hggNBhQAIS
TaAI0WFAVklkH+TlYUDQtS+gF+lhQPm6DP9p8GFA3PEmv0UEYkBUVWgglhFi
QN0J9l9nGGJAqpuLv+1BYkD0qPi/I0NiQB7ec2C5RGJA/OQoQJRLYkDPvvIg
vU5iQA9+4gD6UWJAuw1qvzVTYkD4xhAAnFhiQJtWCoHcXmJAw0ZZvxlhYkAt
I/WeSmNiQFmFzQCXZ2JAVWe1wJ5tYkDiP91AgXRiQF9/Ep87emJAX38SnzuC
YkCw5gDBnINiQEbsE0CxhGJADW/W4H2IYkARct7/x5diQGe4AZ+fomJAmzv6
X66jYkBq+uyA66tiQELO+/+4rmJAJO1GH3O9YkD922W/7sJiQGwGuCBb0WJA
3BK54AzkYkAGEhQ/RuxiQOY/pN8++mJAWFUvv9MAY0CO6nQgawNjQGrf3F+9
B2NAQblt3yNCY0ATmbnAZXljQJUp5iBofmNAdjbknxmDY0AqHaz/c4RjQCsy
OiAJuWNAfV2G//TBY0B1PGagMtZjQPzepj9712NAoFBPH4HiY0DnVDIAVORj
QFIoC19f5WNACDnv/2PpY0Ak8Ief/+pjQB3J5T+k62NAJO1GH/PwY0C28pL/
yfJjQEcE4+DS9mNAbOun/ywBZEDtZkY/mgJkQHAGf7+YA2RAHeT1YFIFZEBk
srj/yCNkQBJpG3+iJ2RAGqIKfwYuZECBk23gjjJkQKOP+YBAOmRAUkZcAJo8
ZEDzrnrAvEFkQGWp9X4jRGRAgqj7ACRaZECrsBnggmlkQKBQTx+BdGRAM25q
oHl5ZEBQOpFgKnxkQBixTwDFimRAVFVoIJaLZEC6EKs/QqJkQPvnacCgo2RA
JQLVPwiyZEBs6GZ/IMJkQKWGNgCb2WRA965BX/rcZECUF5mAX+JkQFZGI59X
72RAi+HqAAj1ZEARiq2gafhkQMyXF2CfAmVAn1bRH5oHZUANUYU/QwhlQAH6
ff9mC2VA965BX/oWZUB1HhX/dzRlQEsBaf8DQmVAcjPcgM9IZUDobAGhdVBl
QCTtRh/zVWVAo1wav3BvZUAm/5O/e4JlQKWGNgCbg2VAO6dZoF2UZUACEk2g
CL5lQFQ6WP/nwmVA2evdH+/XZUDiOVtA6ORlQHpU/N+R52VAPsvz4G4BZkDz
kCkfggxmQNPZyeCoG2ZAbAa4INshZkBKDW0AtihmQPOuesA8KmZA6WD9n8Mr
ZkDeA3RfzjtmQPrS258LQmZAeVp+4CpiZkC4BOCf0m9mQLDmAMGcgmZAYK+w
4P6HZkBxAz4/DIpmQIBmEB/Yi2ZA7X4V4DuRZkCjdOlfkpRmQLwi+N/KnGZA
avrsgGueZkDNr+YAQbBmQFyRmKAGsWZAe0s5X+zBZkAGKuPf58hmQN8bQwDw
yWZAR+nSvyTiZkBNLsbAOupmQF+aIsBpAmdA+MYQAJwDZ0BlxAWg0QRnQPnA
jv8CEWdALCy4H/AvZ0DqdYvA2DFnQB3k9WBSM2dA+N7foD09Z0DQuHAgpEtn
QMx8Bz9xYmdAC12JQPVxZ0BhqS7gZX9nQEX11sBWjmdAg4qqX+mdZ0CO5zOg
XqdnQB3J5T+kuGdAVmR0QBLCZ0BdiNUf4cNnQORIZ2DkzWdA8parH5vTZ0Ch
Zd0/ltlnQHdOs0C74mdA9rcE4B/kZ0A9m1Wfq+dnQN0J9l/n6GdAFqJD4Mjp
Z0DOixNfbexnQLkcr0B07mdA+tUcIJj1Z0AQWg9fJv5nQHQkl/+QAmhAzJcX
YB8FaED7yRgf5gxoQDuqmiDqGGhAradWX90iaED2twTgH0NoQPnYXaAkRGhA
2eicn+JOaEB7ZkmAGlVoQPCK4H8rVmhAZK93fzxXaECL3qmAe2BoQLn7HB8t
YmhAJh3lYDZraECmmIOgI2xoQGa+g5+4bmhACVT/IJJxaEBbYfpeQ3NoQHUh
Vn+EeWhA0Joff2mCaEDV6NUApYRoQP4LBAEyhmhA+dueIDGOaEB/bJIfcY9o
QM6pZAAokGhAw2Fp4MeQaECGkzR/TJJoQH9skh9xlGhALlbUYJqVaEAuOIO/
35poQOMbCp+tm2hAaeVeYFacaEBMGTigJaBoQBy3mJ+bomhA+tUcIJiraEC0
5sdfWq9oQDJWm//XsmhApWsm32y2aEBVZ7XAnrtoQF6gpMACwGhAkgVM4NbC
aECmmIOgo8NoQCo7/aCuxGhAvjEEAEfMaECmmIOgo+NoQGvxKQDG52hAG70a
oLT2aEBwCcA/JfhoQPW6RWAsAmlA3Qw34PMYaUDMf0i//S5pQA1v1uB9N2lA
jdXm/1VCaUAVqMXg4UVpQGHB/YAHUGlA5j+k375TaUA2j8Ng/l1pQD25pkDm
X2lAY7X5f1ViaUDgKk8gbHdpQPK0/MBVgWlAchjMX6GCaUApIO1/gJ1pQIWx
hSAHw2lAjc9k/7zEaUBD44kgTshpQLb1039W42lAraQV39DoaUAewCK/fvdp
QLX7VYBvAmpAHLeYn5sDakCsyOiAJAVqQAkzbf9KB2pAWW3+X/UJakCZKa2/
pQ5qQPz89+A1EGpAtvXTf1YTakDeA3RfThhqQE4oRMChHGpA9KW3P5ciakCw
y/CfbiZqQOp4zEBlLWpAzqYjgJsvakDxnC0gtDxqQMx8Bz/xQmpAforjwCtE
akAUe2gfq0VqQK7X9KCgSWpATx+BP/xOakDOjlTf+VNqQFVP5h99V2pAcw8J
3/tiakBXdsHgGoxqQJ9x4UBIkGpAhZm2f2WRakAxQQ3fwpVqQAUzpmANn2pA
vB+3Xz67akDX9+Egoc5qQHEbDeCt12pA2NZP/1niakBAwjBgyflqQC5Tk+CN
AmtA1cqEX+oQa0ATnPpA8hdrQIKQLGACGmtAbAa4INsia0AQdR+A1CVrQCQL
mMAtOWtAz6Pi/w47a0D4w89/D0NrQLDIrx/iSGtA9aJ2v4pJa0AQdR+AVEtr
QICBIEAGTWtAAgzLn29Oa0DMfAc/8U9rQIOieQCLUWtAvD0IAflXa0Bv9DEf
kFxrQBzSqMDJXWtAnE1HADdja0CP4bGfRWZrQPeuQV96aWtA86s5QLB2a0AQ
eGAAYYJrQAAAAACAg2tAcw8J33uQa0A3jILg8ZlrQGbBxB9Fm2tA1ejVAKWi
a0AsSgnBqrJrQFRSJ6AJtWtAYK+w4P7Ca0BWYTPAhc1rQGv0aoBS0WtAOX09
XzPja0DKi0zAL/lrQNS19j5VA2xAuhPsv84ZbEA1ejVA6SpsQF+y8WCLLmxA
O4xJf69fbEByFYvfFHlsQICBIECGgmxAC0W6n9OybEC044bfzbtsQBqojH8f
w2xA09nJ4CjRbEBu93KfHNxsQPexgt8G4WxAMUROX0/jbEB7SzlfbO1sQHRC
6KBL7mxAh6JAn8jxbEBNLsbAOgFtQEj+YOA5Cm1AscItH0kSbUAi/8wgvhNt
QBOc+kByGm1AeT9uv3wcbUBr8SkAxiJtQDJZ3H9kKm1AchjMX6EsbUD3sYLf
BjRtQAMJih/jQm1A3BK54AxEbUCeX5Sgv01tQAYtJGB0WW1Aj95wH7labUAc
tFcfD2NtQOtySkDMY21AOYB+3z9qbUCu1LMglHFtQFpnfF9ccm1ArMjogCRz
bUA2kgThindtQIvDmV/NfW1AZK93fzyCbUBiu3uAboNtQFIoC1/fhm1AQ8U4
f5OHbUCkiXeAJ4ltQJ9x4UBIi21AdSFWf4SMbUDzrnrAvI1tQAQb179rj21A
Ga4OgDiUbUC1/pYA/JVtQNKpK5/llm1AD2PS30uabUBMGTigJZ9tQAUzpmCN
o21Ar7Mh/0ymbUDSx3xAIK1tQE0uxsA6r21ALjiDv9+vbUCS6ju/qLBtQJP8
iF8xtG1ATRO2n4y2bUCP4bGfxbhtQJDbL5+sum1AGJP+Xoq8bUCkcajfhb1t
QGbc1EDzvm1Ahq5EoPq/bUBC6Qsh58NtQGKga19Ax21Artf0oKDIbUCHwJFA
g8ltQDiGAOBYzW1AXoWUn1TObUD3rkFfetFtQIarAyBu021ArMWnAJjWbUC2
EOSghNltQA5pVODk2W1AgH7fv/ndbUCRC87gb+BtQAc/cQD9421AH9jxX6Dn
bUDEQxg/DeptQKzI6IAk9G1Astr8v+r1bUBxIY/gxvhtQLslOWBX+21A5Ehn
YGQGbkAMVwdA3AhuQGniHeBJFG5A98lRgCgZbkCKzFzg8hluQE4lA0CVH25A
lPYGXxgjbkCKyRtgZjpuQKSMuAC0RG5AnkSEfxFIbkDQtS+gl1FuQEbRAx8D
am5AI/lKIKWHbkDMfAc/caJuQKSMuAA0sm5A/u2yX/fCbkBxIY/gxsVuQB/b
MuAsyG5AyogLQCPjbkDMlxdgn/huQAg8MIDw/m5ACTauf9f/bkBNEHUfgANv
QDunWaBdB29AKSDtfwARb0BD5sqgWhRvQC9QUmABJ29AR+nSv6Q9b0B4YADh
w0BvQPm9TX/2TW9A08H6PwdWb0ARct7/x2NvQAL0+/7NaW9AGsBbIMF4b0BX
XvI/+ZRvQEoH6/8coG9AGLSQgNGjb0DDYWngR8NvQCL/zCC+0m9AhbGFIAfY
b0BBvK5fsAtwQOQwmL/CDHBA0sQ7wJMNcEC05sdfmiNwQJD2P8DaJXBAmkF8
YAcpcEBiu3uArkFwQKN06V+SRHBA8Irgf+tZcEBvD0JA/mFwQCwsuB9waXBA
k//J3/1xcECiemtg63NwQDBK0F8ognBAo3cq4N6IcEADCYofo41wQP7zNGAQ
knBAisxc4DKdcEB2M6MfTaFwQAUYlj/fEXFA+MYQAJwVcUDfFcH/Fh5xQFlt
/l/1IXFAxm00gHcjcUCFsYUghzdxQHpU/N/RPXFAlxqhn6lCcUBxHk5guklx
QNC1L6DXUnFA/wWCABlicUCz7Elgs3ZxQEj43t9gg3FAdjOjH42EcUBOK4VA
LpBxQPGfbqAAknFA9rTDX5PVcUADCYofY+JxQA1RhT8DInJAwk8cQH8pckCd
SgaAKkJyQBecwd/vQnJABz9xAD1HckCT/8nf/VxyQFRSJ6CJXXJA2eicnyKD
ckDiOVtAKIhyQO+NIQA4pHJARuwTQHHmckCqm4u/7epyQG8Sg8DK9nJA4CpP
ICz+ckBjtfl/lUtzQNjxXyDIgXNA8656wDyLc0CgU5CfDZJzQIGTbeAOmnNA
r84xIPumc0B3S3LAbqdzQMNJmj/mtXNAXYsWoG3Jc0CJtI0/0dFzQH1dhv+0
5nNATiuFQO4CdEDmV3OA4A10QBecwd9vFnRAeVc9YB4ddEBMGTigJR50QCUC
1T8IIHRAVmR0QBIkdECpoQ3AxiR0QK65o/8lJnRA2eicn6IndEC/Q1GgDyl0
QH5v0589LXRAf4RhwNIydEDBOo4f6jZ0QN0J9l9nN3RAuyh64CM4dECiemtg
6zh0QEHUfQBSOXRAa/EpAIY6dEA8odefRDx0QHdLcsBuPXRAqI/AH/4+dEAn
FCLgkD90QBKHbCDdQnRAwk8cQL9DdEBzLVqA9kR0QHIYzF/hR3RAjNtoAK9I
dECFsYUgh0x0QFJGXAAaTXRA86s5QPBOdEAZq83/q1B0QNwPeGDAUXRAibfO
v91SdECuvOR/MlV0QPa0w1+TVnRA3xtDAHBXdEA1ejVAKVl0QCDVsN/TWnRA
Afp9/2ZbdEDdBrXfmlx0QEbvVMA9XXRAYKxvYLJddEBxGw3grV90QNv66T+r
YHRA1dAGYANidEDvjSEA+GN0QLslOWAXZXRAfXVVoNZmdEC7JTlgV2d0QMh5
/x8naHRA7GmHv6ZvdEDQtS+gV3B0QAISTaAIcXRAZcdGIB50dEA2d/S/nH10
QGrcm99wf3RAeEKvP8mCdEAj9gmgWIp0QFA3UOBdjHRAvyuC/22QdEBhpu1f
WZp0QMh5/x8nuXRAy4KJPwrKdEBo0NA/QdV0QO571F8v1nRAoFOQn03bdEDy
meyfJ9x0QMVwdQBEGHVAAANBgIw4dUAEIVnABDl1QBrAWyDBSnVAEHhgACFr
dUAyVpv/14B1QDRlpx9UuHVA51QyANTMdUDiOVtAqNd1QDqVDADVNnZAHcwm
wLBsdkAg1bDfE3V2QCcXY2Cdi3ZAAg8MILzGdkDDYWngB9x2QNLHfEBgF3dA
qaENwMZed0Bhpu1f2fN3QFM9mX90ZXhA4zYawNuOeEClg/V/DsR4QGjQ0D/B
UXlASg1tAPaweUAyVpv/V8R5QPrVHCAY03lAsMivH6LZeUC6E+y/jpx6QGrc
m9+w/XpAw2Fp4McDe0Csrdhfdgt7QEC/7998h3tAP8Vx4NWMe0CR8L2/QT98
QA5mE2CYnXxAbvqzH+mofEBn1lJAmuh8QDFfXoB9E35AJQhXQCE8fkDDYWng
h9l+QH5v05+96X5Ake18P7Uzf0Ag1bDf01R/QFM9mX/0pX9AmSmtv+W7f0BE
3QcgtQOAQCPzyB+MNIBAEXLe/0dDgEDVzcXf1kyAQBefAmD81YBAG7rZH8jt
gEBvD0JAPhiBQNXQBmDDKYFAmj474JpSgUCfVtEf+q2BQHhF8L8VzYFAEoQr
oHDdgUAIOe//YxOCQBefAmBcKIJAZsHEH2UqgkDAPc+fdkiCQLkWLUAbaoJA
tvgUAGNsgkBZbf5fNb+CQBOB6h/k0IJAVU/mH90Qg0B2NuSfWW+DQHY25J/5
yoNA8IrgfyvZg0DrbwnA//GDQJMCC2CqAoRALT4FwHgShED2tMNfsymEQISc
9//xcYVA4STNH5N1hUDZ7h6ge6OFQK685H/S4IVAyHxAoPMYhkBt/fSfFSaG
QCsyOiApY4ZAHcwmwDBohkBVT+YfnRKHQMBAECDjM4dAI/YJoBg4h0DOpiOA
OxyIQBefAmB8g4hAEHUfgFSoiEAnFCLgkNqIQIKN699VI4lAFZD2PwDDiUBO
JQNAdemJQIarAyDO/4lA740hAJhqikBWYTPAhbuKQKeSAaBqjItAL00R4HTU
i0BhqS7gRcKMQAYtJGB0S41ArK3YXxZOjUApIO1/IFOOQDFcHQAxk45ATyLC
v6j0jkCR8/4/rr6PQNv66T/LCpBATBb3H8mPkEDX3xKA/8iQQNXQBmCT45BA
L00R4BSNkUDrbwnAb7+RQAg57/9Tx5FASgfr/5zmkUAh5/1/vPuRQAYq498X
JJJABB4YQNhMkkCN1eb/hVySQPa3BOCvh5JAEXLe/+eHkkBMFvcf+ceSQAg5
7/9T3pJAEXLe/4cok0AGKuPfF0GTQPzh57+nVZNAEHUfgLRkk0DGavP/SrOT
QJQRF4Bm5JNAuhPsv44BlEBE3QcgNTyUQHMqGQD6XJRAjdXm/2V7lEDX3xKA
X/6UQN8YAoCTApVAUDQPYIEolUBAv+/fPCmVQL4xBACnO5VA2/rpP0s+lUDy
meyfd2eVQOVC5V8LmJVAgo3r31WzlUC8IvjfurSVQMh5/x8Xv5VAxmrz/5rA
lUBE3QcgFceVQCUFFsCE1pVA3Qn2XzfzlUCGqwMg3g+WQAAAAADQEZZANnf0
v+wUlkBlxAWgwSWWQC9NEeAka5ZAqaENwHaslkB4RfC/JbmWQCUFFsA0xZZA
UkMbgM3LlkDRsu4fa86WQLgE4J8S05ZA3xgCgAPmlkBMFvcfOQuXQN8YAoAz
L5dAelT834E0l0CuvOR/Uk2XQPKZ7J8HTpdAV17yPzlxl0A=
</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>AAAAAAAAV0AAAAAAAABRQAAAAAAAAFNAAAAAAAAAWkAAAAAAAABIQAAAAAAA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</binary>
          </binaryDataArray>
        </binaryDataArrayList>
      </spectrum>
    </spectrumList>
  </run>
</mzML>
