ABCDEFGHIJKLMNOPQRSTUVWXY
1
YearStudent First NameStudent Last NamePublicationPublication URL
2
2025ArevMarkarianPasadena Non-Profit Spearheads the Monitoring of Rainbow Trout
https://community.esri.com/t5/conservation-blog/pasadena-non-profit-spearheads-the-monitoring-of/ba-p/1577899
3
2025TedRobinson Standard fog collector and dual FM-120 comparisons
https://www.sciencedirect.com/science/article/pii/S0169809524006513?via%3Dihub
4
2024ShawnMelendyMelendy, S. & Olson, JR. (2024). Identifying key environmental drivers of reach-scale salmonid eDNA recovery with Random Forest. Environmental eDNA. 6(5), e70001. https://doi.org/10.1002/edn3.70001
5
2023Rahil RyderSerratia marcescens Outbreak at a Correctional Facility: Environmental Sampling, Laboratory Analyses and Genomic Characterization to Assess Sources and Persistencehttps://www.mdpi.com/1660-4601/20/17/6709
6
2020Jessie
Mikaela
Doyle
Bogdan
Doyle, J.M., Bogdan, M., Olson J.R. 2020. Analysis of the impacts of the Soberanes Wildfire on stream
ecosystems. California Fish and Wildlife, 125-143.
https://nrm.dfg.ca.gov/FileHandler.ashx?DocumentID=184835&inline
7
2020Anna
Arev
Jessie
Holder
Markarian
Doyle
Holder, A.M., Markarian A., Doyle J., Olson J.R. 2020. Predicting geographic distributions of fishes in remote stream networks
using maximum entropy modeling and landscape characterizations. Ecological Modelling, 10.1016.
https://doi.org/10.1016/j.ecolmodel.2020.109231
8
2020AmeliaLabbeHolder, A.M., Markarian A., Doyle J., Olson J.R. 2020. Predicting geographic distributions of fishes in remote stream networks
using maximum entropy modeling and landscape characterizations. Ecological Modelling, 10.1016.
https://pubs.acs.org/doi/full/10.1021/acs.jchemed.0c00518
9
2020Stefanie
John
Ruby
Andrew
Joseph
Michael
Michaela
Kortman
Wandke
Kwan-Davis
Caudillo
Klein
Gennaro
Bogdan
Smith. D. Kortman S. Wandke J. Kwan-Davis R. Caudillo A. Klein J. Gennaro M. Bogdan M. and Vannerus P. 2020. Controls on large boulder mobility in an "auto-naturalized" constructed step-pool river: San Clemente Dam removal and reroute project, Carmel River, California, USA. Earth Surf. Process. Landforms.https://doi.org/10.1002/esp.4860
10
2020MichaelEsgroEsgo, M. W., Lindholm, J., Nickols, K. J., Bredvik, J. (2020). Early conservation benefits of a de facto marine protected area at San Clemente Island, California. PLOS One, e0224060.https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0224060
11
2019ZaneMortensen10.1021/bk-2019-1308.ch024
12
2019AndrewClineCline, A. J., Hamilton, S. L., & Logan, C. A. (2019). Effects of multiple climate change stressors on gene expression in blue rockfish (Sebastes mystinus). Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 110580.
https://www.sciencedirect.com/science/article/pii/S1095643319303447?dgcid=author
13
2019AnnaHolderHolder, A., Field, J.C. 2019. An exploration of factors that relate to the occurrence of multiple brooding in rockfishes (Sebastes spp.). Fishery Bulletin 117(3). U.S. Department of Commerce. National Oceanic and Atmospheric Administration, National Marine Fisheries Service, Silver Spring, MD. 56 - 64.https://spo.nmfs.noaa.gov/sites/default/files/pdf-content/fish-bull/holder.pdf
14
2018Kaitlyn
Lauren
Chow
Luna
Harrison, L.R., East, A.E., Smith, D.P., Logan, J.B., Bond, R., Nicol, C., Williams, T.H., Boughton, D.A., Chow, K. and Luna, L. 2018. River response to large-dam removal in a Mediterranean hydroclimatic setting: Carmel River, California, USA. Earth Surf. Process. Landforms. DOI: 10.1002/esp.4464..Link unavailable
15
2017Amanda
Erika
Alyssa
Larissa
Gavin
Clifton
Cynthia
Cherisa
Stephen
Corinne
Andrew
Carrie
Nicole
Wasserman
Senyk
Nally
Lemon
Leavitt
Herrman
Gonzalez
Friedlander
Ferrin
de Rond
Cline
Boyle
Alvarado
Alvarado, N., C. Boyle, B. Brown, A. Cline, C. de Rond, S.
Ferrin, C. Friedlander, C. Gonzalez, C. Herrmann, G. Leavitt,
L. Lemon, A. Nally, E. Senyk, A. Wasserman, J. Lindholm,
A. DeVogelaere. 2017. The Spatio-Temporal Mosaic of
Scientific Research: A Case Study from Monterey Bay
National Marine Sanctuary. Marine Sanctuaries Conservation
Series ONMS-17-08. U.S. Department of Commerce.
National Oceanic and Atmospheric Administration, Office of
National Marine Sanctuaries, Silver Spring, MD. 115 pp.
https://sanctuaries.noaa.gov/science/conservation/spatio-temporal-mosaic-of-scientific-research.html
16
2015BartholomewKowalskiKowalski, B., Watson, F., Garza, C., & Delgado, B. 2015. Effects of landscape covariates on the distribution and detection probabilities of mammalian carnivores. Journal of Mammalogy, 96(3): 511-521.http://jmammal.oxfordjournals.org/content/96/3/511
17
2015ColinNicolNicol, C., Smith, D., & Watson, F. 2015. Exploring particle density effects on spatial mobility of steelhead spawning gravels. River Research and Applications, 31(1): 62-29.http://onlinelibrary.wiley.com/doi/10.1002/rra.2726/full
18
2015PhillipsSamuelRobins, P., Wald, S., Bell, E., Diggory, Z., Smith, D., Phillips, S. and Paul, M. 2014. Big Sur River Watershed Management Plan. California Department of Fish and Wildlife. 129pp + 3 appendices.http://www.rcdmonterey.org/Our_Programs/bigsur_plan.html
19
2014MilesDanielsDaniels, M.E., Hogan, J.N., Smith, W.A., Oates, S.C., Miller, M.A., Hardin, D., Shapiro, K., Los Huertos, M., Conrad, P.A., Dominik, C., Watson, F.G. 2014. Estimating Environmental Conditions Affecting Protozoal Pathogen Removal in Surface Water Wetland Systems Using a Multi-Scale, Model-Based Approach.Science of the Total Environment, 493:1036-1046.http://www.sciencedirect.com/science/article/pii/S0048969714009097
20
2014AshleyKnightKnight, A., Lindholm, J., DeVogelaere, A. & Watson, A. 2014. Approaches to the collection, processing, and analysis of video imagery for marine resource management. Marine Technology Society Journal, 48:86-95.http://www.ingentaconnect.com/content/mts/mtsj/2014/00000048/00000004/art00013?crawler=true&mimetype=application/pdf
21
2013PamelaKrone-DavisKrone-Davis, P., Watson, F., Los Huertos, M., Starner, K. 2013. Assessing pesticide reduction in constructed wetlands using a tanks-in-series model within a Bayesian framework. Ecological Engineering, 57:342-352.http://www.sciencedirect.com/science/article/pii/S0925857413001717
22
2013StevenQuanQuan, S., Kvitek, R., Smith, D., Griggs, G. 2013. Using Vessel-Based LIDAR to Quantify Coastal Erosion during El Niño and Inter-El Niño Periods in Monterey Bay, California. Journal of Coastal Research, 29: 555-565.http://www.bioone.org/doi/abs/10.2112/JCOASTRES-D-12-00005.1
23
2013CarolynRoseveltRosevelt, C., Los Huertos, M., Garza, C. 2013. Marine debris in central California: Quantifying type and abundance of beach litter in Monterey Bay, CA.Marine Pollution Bulletin, 71:299–306.http://www.sciencedirect.com/science/article/pii/S0025326X13000301
24
2012ToddHallenbeckHellenbeck, T., Kvitek, R., & Lindholm, J. 2012. Rippled scour depressions add ecologically significant heterogeneity to soft-bottom habitats on the continental shelf. Marine Ecology Progress Series, 468:119-133.http://www.int-res.com/abstracts/meps/v468/p119-133/
25
2011AJ
Carolyn
Purdy
Rosevelt
Melton, F.S., Johnson, L.F., Lund, C.P., Pierce, L.L., Michaelis, A.R., Hiatt, S.H., Guzman, A., Adhikari, D.D., Purdy, A.J., Rosevelt, C., Votava, P., Trout, T.J., Temesgen, B., Frame, K., Sheffner, E.J., Nemani, R.R., (2011), Satellite irrigation management support with the terrestrial observation and prediction system: a framework for integration of satellite and surface observations to support improvements in
agricultural water resource management. IEEE Journal of Selected Topics in Applied Earth Observation and Remote Sensing 5(6): 1709-1721
https://doi.org/10.1109/JSTARS.2012.2214474
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100