<html><head><meta http-equiv="Content-Type" content="text/html charset=iso-8859-1"></head><body style="word-wrap: break-word; -webkit-nbsp-mode: space; -webkit-line-break: after-white-space;"><div></div><div><br><div><div>On May 25, 2016, at 5:02 PM, Kasey Aderhold <<a href="mailto:kasey@iris.edu">kasey@iris.edu</a>> wrote:</div><br class="Apple-interchange-newline"><blockquote type="cite">
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There have been quite a few OBS studies featured in Eos lately and I
would like to draw attention to both the articles and the recent
science publications they highlight. This also serves as a friendly
reminder that all users of OBSIP instrumentation are requested to
cite the use and support of the OBSIP facility by incorporating the
<a href="http://www.obsip.org/about/citations/"><font color="#0b6cdb">suggested acknowledgement</font></a> in any
publications or reports resulting from the use of OBSIP instruments.<br>
<br>
If you or your fellow researchers published papers using OBSIP data,
please send the citations to kasey (at) iris (dot) edu and they will
be listed on OBSIP website.<br>
<br>
<br>
<b>Cascadia Initiative Community Seismic Experiment - Offshore
Pacific Northwest</b><br>
<a href="http://onlinelibrary.wiley.com/doi/10.1002/2016GL068368/abstract">Tsunami
data assimilation of Cascadia seafloor pressure gauge records from
the 2012 Haida Gwaii earthquake</a><br>
Gusman, A. R., A. F. Sheehan, K. Satake, M. Heidarzadeh, I. E.
Mulia, and T. Maeda (2016), Tsunami data assimilation of Cascadia
seafloor pressure gauge records from the 2012 Haida Gwaii
earthquake. Geophys. Res. Lett., 42, doi: 10.1002/2016GL068368.<br>
<br>
<a href="https://eos.org/research-spotlights/streamlining-rapid-tsunami-forecasting">Streamlining
rapid tsunami forecasting</a><br>
Stanley, S. (2016). Streamlining rapid tsunami forecasting, Eos, 97,
doi:10.1029/2016EO052675. Published on 23 May 2016.<br>
<br>
<br>
<b>HOBITSS Experiment - Offshore New Zealand</b><br>
<br>
<a href="http://science.sciencemag.org/content/352/6286/701">Slow
slip near the trench at the Hikurangi subduction zone, New Zealand</a><br>
Wallace, L. M., S. C. Webb, Y. Ito, K. Mochizuki, R. Hino, S.
Henrys, S. Y. Schwartz, A. F. Sheehan (2016). Slow slip near the
trench at the Hikurangi subduction zone, New Zealand, Science, 352,
701-704, doi: 10.1126/science.aaf2349.<br>
<br>
<a href="http://science.sciencemag.org/content/352/6286/654">Measuring
slow slip offshore</a><br>
Tréhu, A. M. (2016). Measuring slow slip offshore, Science, 352,
654-655, doi: 10.1126/science.aaf6534.<br>
<br>
<a href="https://eos.org/articles/undersea-data-tie-slow-fault-slip-to-tsunami-causing-quakes"><font color="#0b6cdb">Undersea Data Tie Slow Fault Slip to
Tsunami-Causing Quakes</font></a><br>
Wendel, J. (2016), Undersea data tie slow fault slip to
tsunami-causing quakes, Eos, 97, doi:10.1029/2016EO051993. Published
on 6 May 2016.<br>
<br>
<a style="color: blue;" href="https://eos.org/project-updates/investigations-of-shallow-slow-slip-offshore-of-new-zealand">Investigations
of Shallow Slow Slip Offshore of New Zealand</a><br>
Harris, R., L. Wallace, S. Webb, Y. Ito, K. Mochizuki, H. Ichihara,
S. Henrys, A. Tréhu, S. Schwartz, A. Sheehan, D. Saffer, and R.
Lauer (2016). Investigations of shallow slow slip offshore of New
Zealand, Eos, 97, doi:10.1029/2016EO048945. Published on 28 March
2016.<br>
<br>
<br>
<b>DONET1/DONET2 - Offshore Japan (Non-OBSIP Project)</b><br>
<br>
<a href="https://eos.org/project-updates/ocean-floor-networks-capture-low-frequency-earthquake-event">Ocean
Floor Networks Capture Low-Frequency Earthquake Event</a><br>
<br>
Nakano, M., T. Hori, E. Araki, N. Takahashi, and S. Kodaira (2016),
Ocean floor networks capture low-frequency earthquake event, Eos,
97, doi:10.1029/2016EO052877. Published on 25 May 2016.<br>
<br>
<br>
</div>
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