Konza LTER Publications

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Musick BH, Grover HD. Image textural measures as indices of landscape patterns. In: Turner MG, Gardner RH Quantitative Methods in Landscape Ecology: The Analysis and Interpretation of Landscape Heterogeneity. Quantitative Methods in Landscape Ecology: The Analysis and Interpretation of Landscape Heterogeneity. New York, NY: SpringerVerlag; 1991:77 -103.
Mushinsky HR, Gibson DJ. The influence of fire periodicity on habitat structure. In: Bell SS, McCoy ED, Mushinsky HR Habitat Complexity: The Physical Arrangement of Objects in Space. Habitat Complexity: The Physical Arrangement of Objects in Space. London: Chapman and Hall; 1991:237 -259.
Murdock JM, Gido KB, Dodds WK, Bertrand KN, Whiles MR. Consumer return chronology alters recovery trajectory of stream ecosystem structure and function following drought. Ecology. 2010;91:1048 -1062. doi:10.1890/08-2168.1.
Murdock JN, Dodds WK, Gido KB, Whiles MR. Dynamic influences of nutrients and grazing fish on periphyton during recovery from flood. Journal of the North American Benthological Society. 2011;30:331 -345. doi:10.1899/10-039.1.
Murdock JN, Dodds WK. Linking benthic algal biomass to stream substratum topography. Journal of Phycology. 2007;43:449 -460. doi:10.1111/j.1529-8817.2007.00357.x.
Mulholland PJ, Tank JL, Webster JR, et al. Can uptake length in streams be determined by nutrient addition experiments? Results from an inter-biome comparison study. Journal of the North American Benthological Society. 2002;21:544 -560. doi:10.2307/1468429.
Mulholland PJ, Hall RO, Sobota DJ, et al. Nitrate removal in stream ecosystems measured by 15N addition experiments: Denitrification. Limnology and Oceanography. 2009;54:666 -680. doi:10.4319/lo.2009.54.3.0666.
Mulholland PJ, Fellows CS, Tank JL, et al. Inter-biome comparison of factors controlling stream metabolism. Freshwater Biology. 2001;46:1503 -1517. doi:10.1046/j.1365-2427.2001.00773.x.
Mulholland PJ, Helton AM, Poole GC, et al. Stream denitrification across biomes and its response to anthropogenic nitrate loading. Nature. 2008;452:202 -207. doi:10.1038/nature06686.
Muhtasib HU. Effect of silicon nutrition on grass growth rate, grass structure, grass fertility and on the food choice of the prairie vole, Microtus ochrogaster. 1990;PhD Dissertation:1 -148.
Muench A, O'Keefe K, Nippert JB. Comparative ecohydrology between Cornus drummondii and Solidago canadensis in upland tallgrass prairie. Plant Ecology. 2016;217(2):267-276. doi:10.1007/s11258-016-0567-z.
Muche ME, Hutchinson SL, Hutchinson JMShawn, Johnston JM. Phenology-adjusted dynamic curve number for improved hydrologic modeling. Journal of Environmental Management. 2019;235:403 - 413. doi:10.1016/j.jenvman.2018.12.115.
Morisette JT, Richardson AD, Knapp AK, et al. Tracking the rhythm of the seasons in the face of global change: phenological research in the 21st century. Frontiers in Ecology and the Environment. 2009;7:253 -260. doi:10.1890/070217.
Morgan JA, Pataki DE, Korner C, et al. Water relations in grassland and desert ecosystems exposed to elevated atmospheric CO2. Oecologia. 2004;140:11 -25. doi:10.1007/s00442-004-1550-2.
Morgan GW. Effects of spring burning and fungicide application on growth of warm season grasses and their pathogens in a native tallgrass prairie, greenhouse, and monoculture. 2003;MS Thesis:1 -56.
Mora MA, Brattin B, Baxter C, Rivers JW. Regional and interspecific variation in Sr, Ca, and Sr/Ca ratios in avian eggshells from the USA. Ecotoxicology. 2011;20:1467 -1475. doi:10.1007/s10646-011-0703-4.
Mong TW. Using radio-telemetry to determine range and resourcerequirements of Upland Sandpipers at an experimentally managed prairielandscape. 2005;MS Thesis. Available at: http://hdl.handle.net/2097/117 .
Mong TW, Sandercock BK. Optimizing radio retention andminimizing radio impacts in a field study of Upland Sandpipers. Journal ofWildlife Management. 2007;71:971 -980. doi:10.2193/2005-775.
Mohler R. Multi-scale burned area mapping in tallgrass prairie using in situ spectrometry and satellite imagery. 2011;PhD Dissertation. Available at: http://hdl.handle.net/2097/11986.
Moen J, Collins SL. Trophic interactions and plant species richness along a productivity gradient. Oikos. 1996;76:603 -607. doi:10.2307/3546357.
Mino LA. Soil characteristics and ecosystem-level effects of woody species encroachment in tallgrass prairie. 2016;MS Thesis. Available at: https://shareok.org/handle/11244/54571.
Milne BT. Indications of landscape condition at many scales. McKenzie DH, Hyatt DE, McDonald VJ. Ecological Indicators. 1992:893 -895.
Milne BT, Cohen WB. Multiscale assessment of binary and continuous landcover variables for MODIS validation, mapping, and modeling applications. Remote Sensing of the Environment. 1999;70:82 -98. doi:10.1016/S0034-4257(99)00059-0.
Milliken GA, Garrett KA, Travers SE. Experimentaldesign for two-color microarrays applied in a pre-existing split-plotexperiment. Statistical Applications in Genetics and Molecular Biology. 2007;6. doi:10.2202/1544-6115.1245.
Miller RM, Wilson GWT, Johnson NC. Arbuscular Mycorrhizae and Grassland Ecosystems. In: Southwood D Biocomplexity of Plant-Fungal Interactions. Biocomplexity of Plant-Fungal Interactions. Oxford, UK: Wiley-Blackwell; 2012:59 -85. doi:10.1002/9781118314364.ch3.
Miller RM, Hetrick BAD, Wilson GWT. Mycorrhizal fungi affect root stele tissue in grasses. Canadian Journal of Botany. 1997;75:1778 -1784. doi:10.1139/b97-892.
Mikesell FL. Avian habitat selection in the attenuated riparian forest on the tallgrass prairie. 1988;MS Thesis:1 -57. Available at: http://krex.k-state.edu/dspace/handle/2097/22350.
Mielnick PC, Dugas WA. Soil CO2 flux in a tallgrass prairie. Soil Biology & Biochemistry. 2000;32:221 -228. doi:10.1016/S0038-0717(99)00150-9.
Middendorf G, Cline D, Bloomquist L. Agrarian Landscape Transition in the Flint Hills of Kansas:Legacies and Resilience. In: Redman C, Foster DR Agrarian Landscapes in Transition: Comparisons of Long TermEcological&Cultural Change. Agrarian Landscapes in Transition: Comparisons of Long TermEcological&Cultural Change. New York: Oxford University Press; 2008:206 -237.
Middendorf G, Becerra TA, Cline D. Transition and resilience in the Kansas Flint Hills. Online Journal of Rural Research and Policy. 2009;4.3:1 -28. doi:10.4148/ojrrp.v4i3.109.
Meyer CK. Life history and secondary production of grasshoppers (Orthoptera: Acrididae) in a Kansas tallgrass prairie. 2000;MS Thesis:1 -90.
Meyer JL, Crocker T, D'Angelo D, et al. Stream Research in the LTER Network. Seattle, WA: LTER Network LTER publication no. 15; 1993:114 -.
Meyer CK, Whiles MR, Charlton RE. Life history, secondary production, and ecosystem significance of acridid grasshoppers in annually burned and unburned tallgrass prairie. American Entomologist. 2002;48:40 -49.
Metlevski J. Contribution to the taxonomy and faunistics of the genus Meropleon Dyar (Lepidoptera: Noctuidae). 2005:812 -819. Available at: http://cat.inist.fr/?aModele=afficheN&cpsidt=17159757.
Merrill GL. New records for Kansas mosses. Transactions of the Kansas Academy of Science. 1989;92:70 -78. doi:10.2307/3628192.
Merrill GL. New records for Kansas mosses, III. Evansia. 1991;8:25 -31.
Merrill GL. Bryopyhtes on Konza Prairie Research Natural Area. Bragg TB, Stubbendieck J. 1989.
Merrill GL. New records for Kansas mosses, II. Transactions of the Kansas, Academy of Science. 1991;94:22 -29. doi:http://www.jstor.org/stable/3628036.
Merrill GL. Bryophytes of Konza Prairie Research Natural Area, Kansas. The Bryologist. 1991;94:383 -391. doi:http://www.jstor.org/stable/3243827.
Mendola MM. Regional-climate and local-microbial controls on ecosystem processes during grassland restoration. 2013;MS Thesis. Available at: http://opensiuc.lib.siu.edu/theses/1338/.
Melzer SE, Knapp AK, Fynn RWS, et al. Fire and grazing impacts on silica production and storage in grass dominated ecosystems. Biogeochemistry. 2010;97:263 -278. doi:10.1007/s10533-009-9371-3.
McNew LB. An analysis of greater prairie-chicken demography in Kansas: the effects of human land use on the population ecology of an obligate grassland species. 2010;PhD Dissertation. Available at: http://krex.k-state.edu/dspace/handle/2097/4316.
McNew LB, Gregory AJ, Wisely SM, Sandercock BK. Estimating the stage of incubation for nests of Greater Prairie-chickens using egg flotation: a float curve for grousers. Grouse News. 2009;38:12 -14. Available at: https://www.researchgate.net/publication/228517269_Estimating_the_stage_of_incubation_for_nests_of_Greater_Prairie-Chickens_using_egg_flotation_a_float_curve_for_grousers.
McNew LB, Gregory AJ, Sandercock BK. Spatial heterogeneity in habitat selection: nest site selection by Greater Prairie-Chickens. Journal of Wildlife Management. 2013;77:791 -801. doi:10.1002/jwmg.493.
McNew LB, Gregory AJ, Wisely SM, Sandercock BK. Human-mediated selection on life-history traits of Greater Prairie-Chickens. Studies in Avian Biology. 2011;39:255 -266. Available at: https://alaska.usgs.gov/science/biology/landbirds/pdfs/McNew_etal_2011_sab2.pdf.
McNew LB, Prebyl TJ, Sandercock BK. Effects of rangeland management on the site occupancy dynamics of prairie-chickens in a protected prairie preserve. Journal of Wildlife Management. 2012;76:38 -47. doi:10.1002/jwmg.237.
McNew LB, Gregory AJ, Wisely SM, Sandercock BK. Reproductive biology of a southern population of Greater Prairie-Chickens. Studies in Avian Biology. 2011;39:209 -221. Available at: https://alaska.usgs.gov/science/biology/landbirds/pdfs/McNew_etal_2011_sab1.pdf.
McNew LB, Gregory AJ, Wisely SM, Sandercock BK. Demography of Greater Prairie-Chickens: regional variation in vital rates, sensitivity values, and population dynamics. Journal of Wildlife Management. 2012;76:987 -1000. doi:10.1002/jwmg.369.
McMillan BR, Pfeiffer KA, Kaufman DW. Vegetation responses to an animal-generated disturbance (bison wallows) in tallgrass prairie. American Midland Naturalist. 2011;165:60 -73. doi:10.1674/0003-0031-165.1.60.
McMillan BR, Kaufman DW. Small mammals in northeastern Kansas: differences in use of interspersed woodland and grassland. The Prairie Naturalist. 1994;26:107 -116.

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