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B
S. W. Bell, Forsyth, D. W., and Ruan, Y., Removing Noise from the Vertical Component Records of Ocean‐Bottom Seismometers: Results from Year One of the Cascadia Initiative, Bulletin of the Seismological Society of America, vol. 105, pp. 300–313, 2015.
S. W. Bell, Ruan, Y., and Forsyth, D. W., Shear Velocity Structure of Abyssal Plain Sediments in Cascadia, Seismological Research Letters, vol. 86, pp. 1247–1252, 2015.
J. Berger, Laske, G., Babcock, J., and Orcutt, J., An ocean bottom seismic observatory with near real‐time telemetry, Earth and Space Science, vol. 3, pp. 68–77, 2016.
M. J. Bezada, Levander, A., and Schmandt, B., Subduction in the southern Caribbean: Images from finite-frequency P wave tomography, Journal of Geophysical Research: Solid Earth, vol. 115, 2010.
M. Bodmer, Toomey, D. R., Hooft, E. E., Nábělek, J., and Braunmiller, J., Seismic anisotropy beneath the Juan de Fuca plate system: Evidence for heterogeneous mantle flow, Geology, p. G37181.1, 2015.
M. Bodmer, Toomey, D. R., VanderBeek, B., Hooft, E. E., and Byrnes, J. S., Body Wave Tomography of the Cascadia Subduction Zone and Juan de Fuca Plate System: Identifying Challenges and Solutions for Shore‐Crossing Data, Geochemistry Geophysics Geosystems, vol. 21, 2020.
M. Bodmer, Toomey, D. R., Hooft, E. E. E., and Schmandt, B., Buoyant Asthenosphere Beneath Cascadia Influences Megathrust Segmentation, Geophysical Research Letters, vol. 45, pp. 6954–6962, 2018.
P. Bogiatzis, Karamitrou, A., J. Neale, W., Harmon, N., Rychert, C. A., and Srokosz, M., Source Regions of Infragravity Waves Recorded at the Bottom of the Equatorial Atlantic Ocean, Using OBS of the PI-LAB Experiment, Journal of Geophysical Research: Oceans, vol. 125, no. 6, p. e2019JC015430, 2020.
C. M. Booth, Forsyth, D. W., and Weeraratne, D. S., Upper mantle Q structure beneath old seafloor in the western Pacific, Journal of Geophysical Research: Solid Earth, vol. 119, pp. 3448–3461, 2014.
T. Bornstein, Lange, D., Münchmeyer, J., Woollam, J., Rietbrock, A., Barcheck, G., Grevemeyer, I., and Tilmann, F., PickBlue: Seismic Phase Picking for Ocean Bottom Seismometers With Deep Learning, Earth and Space Science, vol. 11, p. e2023EA003332, 2024.
M. G. Bostock and Trehu, A. M., Wave‐Field Decomposition of Ocean Bottom Seismograms, Bulletin of the Seismological Society of America, vol. 102, pp. 1681–1692, 2012.
B. Boulahanis, Carbotte, S. M., Canales, J. Pablo, Han, S., and Nedimović, M. R., Structure and Evolution of Northern Juan de Fuca Crust and Uppermost Mantle Over the Last 8 Ma From an Active-Source Seismic Tomography Study, Journal of Geophysical Research: Solid Earth, vol. 127, p. e2022JB023987, 2022.
D. C. Bowden, Kohler, M. D., Tsai, V. C., and Weeraratne, D. S., Offshore Southern California lithospheric velocity structure from noise cross-correlation functions, Journal of Geophysical Research: Solid Earth, vol. 121, pp. 3415–3427, 2016.
A. Boyce, Liddell, M. V., Pugh, S., Brown, J., McMurchie, E., Parsons, A., Estève, C., Burdick, S., Darbyshire, F. A., Cottaar, S., Bastow, I. D., Schaeffer, A. J., Audet, P., Schutt, D. L., and Aster, R. C., A new P-wave Tomographic Model (CAP22) for North America: Implications for the Subduction and Cratonic Metasomatic Modification History of Western Canada and Alaska, Journal of Geophysical Research: Solid Earth, vol. 128, p. e2022JB025745, 2023.
C. C. Brandl, Worthington, L. L., M. Magnani, B., Shillington, D. J., and Luckie, T. W., Discontinuous Igneous Addition Along the Eastern North American Margin Beneath the East Coast Magnetic Anomaly, Journal of Geophysical Research: Solid Earth, vol. 128, no. 8, p. e2023JB026459, 2023.
D. C. Brodie and Dunn, R. A., Low frequency baleen whale calls detected on ocean-bottom seismometers in the Lau basin, southwest Pacific Ocean, The Journal of the Acoustical Society of America, vol. 137, pp. 53–62, 2015.
B. R. Brunsvik, Eilon, Z. C., and Lynner, C., Mantle Structure and Flow Across the Continent-Ocean Transition of the Eastern North American Margin: Anisotropic S-Wave Tomography, Geochemistry, Geophysics, Geosystems, vol. 22, p. e2021GC010084, 2021.
J. S. Byrnes, Toomey, D. R., Hooft, E. E. E., Nábělek, J., and Braunmiller, J., Mantle dynamics beneath the discrete and diffuse plate boundaries of the Juan de Fuca plate: Results from Casascadia Initiative body wave tomography, Geochemistry, Geophysics, Geosystems, vol. 18, pp. 2906–2929, 2017.
J. Byrnes, Mantle flow and melting beneath young oceanic lithosphere: Seismic studies of the Galápagos Archipelago and the Juan de Fuca Plate, University of Oregon, 2017.
C
R. Cabieces, Arnaiz-Rodríguez, M. S., Villaseñor, A., Berg, E., Olivar-Castaño, A., Ventosa, S., and Ferreira, A. M. G., Upper-lithospheric structure of northeastern Venezuela from joint inversion of surface-wave dispersion and receiver functions, Solid Earth, vol. 13, pp. 1781–1801, 2022.
C. Cai, Wiens, D. A., Shen, W., and Eimer, M., Water input into the Mariana subduction zone estimated from ocean-bottom seismic data, Nature, vol. 563, pp. 389–392, 2018.
A. J. Calvert, Klemperer, S. L., Takahashi, N., and Kerr, B. C., Three-dimensional crustal structure of the Mariana island arc from seismic tomography, Journal of Geophysical Research: Solid Earth, vol. 113, 2008.
P. J. Canales, Sohn, R. A., and deMartin, B. J., Crustal structure of the Trans-Atlantic Geotraverse (TAG) segment (Mid-Atlantic Ridge, 26°10′N): Implications for the nature of hydrothermal circulation and detachment faulting at slow spreading ridges, Geochemistry, Geophysics, Geosystems, vol. 8, 2007.
J. Pablo Canales, Miller, N. C., Baldwin, W., Carbotte, S. M., Han, S., Boston, B., Jian, H., Collins, J., and Lizarralde, D., CASIE21-OBS: An Open-Access, OBS Controlled-Source Seismic Data Set for Investigating the Structure and Properties of the Cascadia Accretionary Wedge and the Downgoing Explorer-Juan de Fuca-Gorda Plate System, Seismological Research Letters, vol. 94, no. 4, pp. 2093–2109, 2023.
J. P. Canales, Carbotte, S. M., Nedimović, M. R., and Carton, H., Dry Juan de Fuca slab revealed by quantification of water entering Cascadia subduction zone, Nature Geoscience, vol. 10, pp. 864–870, 2017.

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