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Cross-talk refers to different forms of instrumental phe-
nomena which compromise the selectivity of a TQMS mass
analyzer. Two types of cross-talk exist. The first source is a blen-
ding of adjacent SRMtransitions attributed to the slower rate of
scanning product ions out of the collision cell (Q2) relative to
the response rate of the detector. This effect is most pronounced
when consecutive SRM transitions monitor the same product
ion m/z . The second cross-talk results from fragmentation
within the ion source (in-source CID) giving rise to multiple
sources for the precursor ion selected by Q1.
Two approaches have been reported to study ME. In the
first approach, a solution of the analyte is constantly infused
into the eluent from the column via post-column tee connection
using a syringe pump. The continuous post-column infusion pro-
duces constant signals in the detector, unless compounds that
elute from the column suppress or enhance ionization, which
would lead to a decreased or increased detector response, res-
pectively . The second approach with a comprehensive
strategy has been recently published byMatuszewski et al.
This paper provides excellent guidance on how to perform and
evaluate studies on ME in LC¨CMS/MS analysis.

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