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Determining the change point for the error in the Macrophyte Index for Rivers

   | Dec 14, 2018

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Bacon D.W., Watts D.G. (1971): Estimating the transition between two intersecting straight lines. Biometrika 58: 525-534.10.1093/biomet/58.3.525Search in Google Scholar

Bernatowicz S., Wolny P. (1969): Fisherman’s botany (in Polish). Państwowe Wydawnictwo Rolnicze i Leśne, Warszawa, Poland.Search in Google Scholar

Carvalno L.B., Rojano-Delgado A.M, Costa Aguiar Alves P.L., Prado R. (2013): Differential content of glyphosate and its metabolites in Digitaria insularis biotypes. Communications in Plant Sciences 3(3-4): 17-20.10.26814/cps201317Search in Google Scholar

Ceschin S., Salerno G., Bisceglie S., Kumbaric A. (2010): Temporal floristic variations as indicator of environmental changes in the Tiber River in Rome. Aquatic Ecology 44: 93–100. doi: 10.1007/s10452-009-9292-1.10.1007/s10452-009-9292-1Open DOISearch in Google Scholar

Chen J., Gupta A.K. (2000): Parametric statistical change point analysis, Birkhauser.10.1007/978-1-4757-3131-6Search in Google Scholar

Dawson F.H., Newman J.R., Gravelle M.J., Rouen K.J., Henville P. (1999): Assessment of the Trophic Status of Rivers Using Macrophytes. Evaluation of the Mean Trophic Rank, R&D Technical Report E39, Environment Agency.Search in Google Scholar

Dudley B., Dunbar M., Penning E., Kolada A., Hellsten S., Oggioni A. et al. (2013): Measurements of uncertainty in macrophyte metrics used to assess European lake water quality. Hydrobiologia 704: 179–191. doi: 10.1007/s10750-012-1338-z.10.1007/s10750-012-1338-zOpen DOISearch in Google Scholar

Official Journal (2016). Regulation of the Minister of the Environment of July 21, 2016 on the method of classification of the status of uniform surface water bodies and environmental quality standards for priority substances. Official Journal 2016. item 1187 (in Polish).Search in Google Scholar

Eckley I.A., Fearnhead P., Killick R. (2011): Analysis of Changepoint Models. In Barber D., Cemgil A.T., Chiappa S. (eds.), Bayesian Time Series Models. Cambridge University Press.10.1017/CBO9780511984679.011Search in Google Scholar

Erdman C., Emerson J.W. (2007): An R Package for Performing a Bayesian Analysis of Change Point Problems. Journal of Statistical Software 23(3): 1-13.10.18637/jss.v023.i03Search in Google Scholar

Gupta A.K., Tang J. (1987): On Testing Homogeneity of Variances for Gaussian Models. Journal of Statistical Computation and Simulation 27(2): 155-173.10.1080/00949658708810988Search in Google Scholar

Haslam S.M. (1982): A proposed method for monitoring river pollution using macrophytes. Environmental Technology Letters 3: 19-34. doi: 10.1080/0959333 820938409410.1080/09593338209384094Open DOISearch in Google Scholar

Hinkley D.V. (1969): Inference about the intersection in two-phase regression. Biometrika 56: 495-504.10.1093/biomet/56.3.495Search in Google Scholar

Hinkley D.V. (1970): Inference about the Change-Point in a Sequence of Random Variables. Biometrika 57(1): 1-17.10.1093/biomet/57.1.1Search in Google Scholar

Hirotsu C., Harukazu T. (2017): An algorithm for a new method of change-point analysis in the independent Poisson sequence. Biometrical Letters 54(1): 1-24.10.1515/bile-2017-0001Search in Google Scholar

Holmes N.T.H., Newman J.R., Chadd S., Rouen K.J., Saint L., Dawson F.H. (1999): Technical report no E38 Environmental Agency of England Wales. Bristol: UK; Mean trophic rank: a user’s manual R.Search in Google Scholar

Hudson D.J. (1966): Fitting segmented curves whose joint points have to be estimated. Journal of the American Statistical Association 61: 1097-1129.10.1080/01621459.1966.10482198Search in Google Scholar

Jusik S. (2012): Identification key to mosses and water liverwords required to the ecological status assessment of surface waters in Poland (in Polish). Biblioteka Monitoringu Środowiska, Warszawa, Poland.Search in Google Scholar

Killick R., Eckley I., Haynes K. (2014): Changepoint: An R Package for Changepoint Analysis. R package version 1.1.5, URL http://CRAN.R-project.org/package=changepoint.10.18637/jss.v058.i03Search in Google Scholar

Killick R., Eckley I.A., Jonathan P., Ewans K. (2010): Detection of Changes in the Characteristics of Oceanographic Time-Series using Statistical Change Point Analysis. Ocean Engineering 37(13): 1120-1126.10.1016/j.oceaneng.2010.04.009Search in Google Scholar

Kirby E.J.M. (1974): Ear development in spring wheat. Journal of Agricultural Science 82: 437-447.10.1017/S0021859600051339Search in Google Scholar

Kolada A. (2010): The use of aquatic vegetation in the lake assessment: testing the sensitivity of macrophyte metrics to anthropogenic pressures and water quality. Hydrobiologia 656: 133-147. doi: 10.1007/s10750-010-0428-z.10.1007/s10750-010-0428-zOpen DOISearch in Google Scholar

Kolkwitz R., Marsson M. (1902): Grundsatze fur die biologische Beurteilung des Wassers nach seiner Flora und Fauna. Mitt. Priifungsanst. Wasserversorg. Abwasserein 1: 33-72.Search in Google Scholar

Lavielle M. (2005): Using Penalized Contrasts for the Change-Point Problem. Signal Processing 85(8): 1501-1510.10.1016/j.sigpro.2005.01.012Search in Google Scholar

Lerman P.M. (1980): Fitting segmented regression model by grid search. Appl. Stat. 29: 77-84.10.2307/2346413Search in Google Scholar

Nam C.F.H., Aston J.A.D., Johansen A.M. (2012): Quantifying the Uncertainty in Change Points. Journal of Time Series Analysis 33(5): 807-823.10.1111/j.1467-9892.2011.00777.xSearch in Google Scholar

Pruska K. (1996): Metody regresji przełącznikowej i ich zastosowanie (in Polish). Wyd. Uniw. Łódzkiego, Łódź.Search in Google Scholar

Reeves J., Chen J., Wang X.L., Lund R., Lu Q. (2007): A Review and Comparison of Changepoint Detection Techniques for Climate Data. Journal of Applied Meteorology and Climatology 46(6): 900-915.10.1175/JAM2493.1Search in Google Scholar

Rutkowski L. (2008): Identification key to vascular plants of Polish Lowland (in Polish). Wydawnictwo Naukowe PWN, Warszawa, Polska.Search in Google Scholar

Seber G.A.F., Wild C.J. (1989): Nonlinear Regression. Wiley, New York.10.1002/0471725315Search in Google Scholar

Silva E.G., Teixeira A.A.C. (2008): Surveying Structural Change: Seminal Contributions and Bibliometric Account. Structural Change and Economic Dynamics 19(4): 273-300.10.1016/j.strueco.2008.02.001Search in Google Scholar

Sprent P. (1961): Some hypotheses concerning two phase regression lines. Biometrix 17: 634-645.10.2307/2527862Search in Google Scholar

Staniszewski R., Szoszkiewicz K., Zbierska J., Leśny J., Jusik S, Clarke R.T. (2006): Assessment of sources of uncertainty in macrophyte surveys and the consequences for river classification. Hydrobiologia 566: 235-246.10.1007/s10750-006-0093-4Search in Google Scholar

Starmach K., Wróbel S., Pasternak K. (1976): Hydrobiologia. Limnologia. Warszawa: PWN.Search in Google Scholar

Szoszkiewicz K., Zbierska J., Jusik S., Zgoła T. (2010): Macrophyte method for river assessment. Poznan: Bogucki Wydawnictwo Naukowe.Search in Google Scholar

Szoszkiewicz K., Budka A., Pietruczuk K., Kayzer D., Gebler D. (2017): Is the macrophyte diversification along the trophic gradient distinct enough for river monitoring? Environtal Monitoring and Assessment 189: 4. doi:10.1007/s10661-016-5710-8.10.1007/s10661-016-5710-8513637827915391Open DOISearch in Google Scholar

Watts D.G., Bacon D.W. (1974): Using an hyperbola as a transition model to fit two-regime straight-line data. Technometrics 16: 369-373.10.1080/00401706.1974.10489205Search in Google Scholar

Wiegleb G. (1979): Der Zusammenhang zwischen Gewässergüte und Makrophyten Vegetation in niedersächsischen Fließgewässern. Landschaft + Stadt 11: 32-35.Search in Google Scholar

Zeileis A., Leisch F., Hornik K., Kleiber C. (2002): Strucchange: An R Package for Testing for Structural Change in Linear Regression Models. Journal of Statistical Software 7(2): 1-38. URL http://www.jstatsoft.org/v07/i02/.10.18637/jss.v007.i02Search in Google Scholar

Zeileis A., Shah A., Patnaik I. (2010): Testing, Monitoring, and Dating Structural Changes in Exchange Rate Regimes. Computational Statistics & Data Analysis 54(6): 1696-1706.10.1016/j.csda.2009.12.005Search in Google Scholar

Zelinka M., Marvan P. (1961): Zur Präzisierung der biologischen klassifikation der Reinheit flieβender Gewässer.-Arch. Hydrobiol. 57: 389-407.Search in Google Scholar

Zimny H. (2006): Ekologiczna ocena stanu środowiska. Bioindykacja i biomonitoring (in Polish). Agencja Reklamowo-Wydawnicza Arkadiusz Grzegorczyk, Warszawa.Search in Google Scholar

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