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1

Teichmann, Ernst, and Adolt Andres. "Calandra granaria L. und Calandra oryzae L. als Getreideschädlinge." Zeitschrift für Angewandte Entomologie 6, no. 1 (August 26, 2009): 1–24. http://dx.doi.org/10.1111/j.1439-0418.1920.tb01437.x.

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2

Moreira, Francisco, and Domingos Leitão. "A preliminary study of the breeding bird community of fallows of cereal steppes in southern Portugal." Bird Conservation International 6, no. 3 (September 1996): 255–59. http://dx.doi.org/10.1017/s0959270900003142.

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SummaryCounts of breeding birds in fallow land of Castro Verde region, the main steppe area of Portugal, were carried out during the spring of 1994, and the population densities of the most common species were estimated. The bird community is relatively simple, with a low species richness and diversity. Nevertheless, it includes several species with unfavourable conservation status. The most common species were Calandra Lark Melanocorypha calandra and Little Bustard Tetrax tetrax, with a mean density of, respectively, 5.6 and 2.6 males/10 ha. Other breeding species in the studied fallows include Great Bustard Otis tarda, Corn Bunting Miliaria calandra, Short-toed Lark Calandrella brachydactyla, Little Owl Athene noctua, Stone Curlew Burhinus oedicnemus, Quail Coturnix coturnix and Fan-tailed Warbler Cisticola juncidis. The results suggest that there are differences in population densities in fallows of different age and grazing intensity.
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3

Belyachenko, A. V., V. V. Piskunov, and A. A. Belyachenko. "Calandra Lark (Melanocorypha calandra) and Corn Bunting (Miliaria calandra) (Passeriformes, Aves) current distribution and abundance assessment in the Northern Lower-Volga region and adjacent territories." Povolzhskiy Journal of Ecology 15, no. 1 (2016): 3–16. http://dx.doi.org/10.18500/1684-7318-2016-1-3-16.

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4

Manivannan, S., H. Nagaveni, and R. Sundararaj. "Insects infesting the seeds of Syzygium Malabaricum (Bedd.) Gamble, an endemic tree of Western Ghats." Indian Journal of Forestry 33, no. 3 (September 1, 2010): 351–53. http://dx.doi.org/10.54207/bsmps1000-2010-011y47.

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Incidence of seed pests, seed weight loss and their impact on germinability were studied in Syzygium malabaricum seeds. The seeds were found infested by insects representing the orders Coleoptera, Diptera and Lepidoptera. The percentage of infestation in the seeds varied from 24 to 31.2 with an average of 27.5. The incidence of Coleoptera (Calandra sp.) was high with 64% followed by Diptera 22% and Lepidoptera 14 %. The percent weight loss in seeds due to infestation by the grubs of Calandra sp. ranged from 9.06 to 38.75 with an average of 27.69. Also, the study revealed that the percentage germination is inversely proportional to the percentage damage of seeds.
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5

Sanza, Miguel A., Juan Traba, Manuel B. Morales, Desirée Rivera, and M. Paula Delgado. "Effects of landscape, conspecifics and heterospecifics on habitat selection by breeding farmland birds: the case of the Calandra Lark (Melanocorypha calandra) and Corn Bunting (Emberiza calandra)." Journal of Ornithology 153, no. 2 (November 2, 2011): 525–33. http://dx.doi.org/10.1007/s10336-011-0773-3.

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6

Oktadiana, Isma, and Venny Diah Ningsih. "Aktivitas Penolak Serangga (Insect Repellent) Ekstrak Klorofom Biji Mimba (Azadirachta Indica) Terhadap Kutu Beras (Calandra Oryzae)." Jurnal Farmasi Tinctura 1, no. 2 (June 29, 2020): 55–63. http://dx.doi.org/10.35316/tinctura.v1i2.989.

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Plants that are currently being developed as botanical insecticides are those that produce essential oils. The largest active compound that is insecticidal in neem (Azadirachta indica) is azadirachtin, this compound belongs to the triterpenoid group. The purpose of this study was to determine the level of insect repellent activity of neem (Azadirachta indica) seed chlorophome extract against rice lice (Calandra oryzae). This research is an experimental study using a completely randomized design (CRD). Consisting of neem seed extract treatment with a concentration of 0.1% and 0.5% and a control in the form of distilled water each 10 times. The results of this study indicated that the concentration of 0.1% and 0.5% neem seed extract test increased the mortality of rice lice. The longer the application time, the higher the mortality rate of rice lice. In the treatment of 0.5% neem seed extract, it could cause 67% mortality compared to 0.1% neem seed extract treatment and control. Keywords: Neem seeds, insect repellent, Calandra oryzae ABSTRAK Tumbuhan yang saat ini sedang dikembangkan sebagai insektisida nabati yaitu tumbuhan yang menghasilkan minyak atsiri. Senyawa aktif terbesar yang bersifat insektisida pada tanaman mimba (Azadirachta indica) adalah azadirachtin, senyawa ini termasuk dalam kelompok triterpenoid. Tujuan dari penelitian ini yaitu untuk mengetahui tingkat aktivitas penolak serangga (insect repellent) ekstrak klorofom biji mimba (Azadirachta indica) terhadap kutu beras (Calandra oryzae). Penelitian ini merupakan penelitian eksperimental yang menggunakan Rancangan Acak Lengkap (RAL). Terdiri atas perlakuan ekstrak biji mimba konsentrasi 0.1% dan 0.5 % dan kontrol berupa akuades masing-masing 10 kali ulangan. Hasil penelitian ini menunjukkan bahwa Uji ekstrak biji mimba konsentrasi 0.1% dan 0.5% meningkatkan mortalitas kutu beras. Semakin lama waktu aplikasi maka semakin tinggi tingkat mortalitas kutu beras. Pada perlakuan ekstrak biji mimba 0.5% dapat menyebabkan kematian sebesar 67% dibandingkan dengan perlakuan ekstrak biji mimba 0.1% dan kontrol. Kata Kunci: Biji Nimba, penolak serangga, Calandra oryzae
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7

McGREGOR, P. K. "Song Dialects in the Corn Bunting (Emberiza calandra)." Zeitschrift für Tierpsychologie 54, no. 3 (April 26, 2010): 285–97. http://dx.doi.org/10.1111/j.1439-0310.1980.tb01246.x.

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8

Andersen, K. Th. "Kann sich Calandra granaria L. im Mehl fortpflanzen?" Zeitschrift für Angewandte Entomologie 19, no. 2 (August 26, 2009): 307–11. http://dx.doi.org/10.1111/j.1439-0418.1932.tb00312.x.

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9

Wille, Johannes. "Beiträge zur Biologie des Reiskäfers Calandra oryzae L." Zeitschrift für Angewandte Entomologie 9, no. 2 (August 26, 2009): 333–42. http://dx.doi.org/10.1111/j.1439-0418.1923.tb00237.x.

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10

Müller, Karl. "Beiträge zur Kenntnis des Kornkäfers Calandra granaria L." Zeitschrift für Angewandte Entomologie 13, no. 2 (August 26, 2009): 313–74. http://dx.doi.org/10.1111/j.1439-0418.1928.tb00042.x.

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11

Starovoitova, T. "Influence of anthropogenic factors on the ecology of Melanocorypha calandra and Alauda arvensis in depressions of Dnipro — Molochna." Balanced nature using, no. 2 (May 20, 2021): 98–105. http://dx.doi.org/10.33730/2310-4678.2.2021.237997.

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The research was carried out for 3 years in the steppe biotopes of the bottoms of the Ahaymany, Barnashivsky, Green, Big Chapelsk, and Small Chapelsk depressions of the Dnipro — Molochna interfluve. Based on visual inspection and processing of space images, the degree of anthropogenic transformation of these ecosystems is analyzed. The highest percentage of plowing is characteristic of the Ahaymany depression, which occurred in the last 10 years. Among the factors that significantly affect the nesting birds of the steppe complex are also the continuous low mowing of grass (Green depression) and overgrazing of livestock — Small Chapelsk depression. The nesting density of background steppe species was determined, the highest density of Alauda arvensis in different years is characteristic of Ahaymany (245,2 pairs/km2) and Barnashivsky depression (211,2 pairs/km2), and Melanocorypha calandra — for the Big Chapelsk depression (140,1 pairs/km2). Stable is only the territory of the Big Chapelsk depression the protected regime under moderate grazing load of wild ungulates. A positive correlation was established between the values of steppe habitat area and Alauda arvensis nesting in the Ahaymany, Barnashivsky, Small Chapelsk, and Green depressions and, accordingly, a negative dependence for Melanocorypha calandra.
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12

Varga, Szabolcs, Petra Kelemen, Ágnes Csiszár, and Dániel Winkler. "A sordély (emberiza calandra) élőhelyválasztásának vizsgálata a Mosoni-síkon." Magyar Apróvad Közlemények 13 (2017): 125–41. http://dx.doi.org/10.17243/mavk.2017.125.

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13

Schlueter, June. "New German Dramatists by Denis Calandra (review)." Modern Drama 28, no. 1 (1985): 184–85. http://dx.doi.org/10.1353/mdr.1985.0010.

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14

Birukow, Georg. "Aktivitäts- und Orientierungsrhythmik beim Kornkäfer (Calandra granaria L.)1,2,." Zeitschrift für Tierpsychologie 21, no. 3 (April 26, 2010): 279–301. http://dx.doi.org/10.1111/j.1439-0310.1964.tb01195.x.

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15

Tylus, Jane. "La Calandra: The Trauma behind Cross-Dressing." Renaissance Drama 50, no. 2 (September 1, 2022): 197–207. http://dx.doi.org/10.1086/723002.

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16

Koshelev, A. I., O. Y. Pakhomov, O. M. Kunakh, V. A. Koshelev, and M. P. Fedushko. "Temporal dynamic of the phylogenetic diversity of the bird community of agricultural lands in Ukrainian steppe drylands." Biosystems Diversity 28, no. 1 (February 23, 2020): 34–40. http://dx.doi.org/10.15421/012006.

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This study discussed the importance of the phylogenetic components in the structure of bird communities of anthropogenically transformed ecosystems. The investigation was conducted in the landscapes of the south and south-east of Ukraine in the nesting seasons 1988–2018. The bird community in the agricultural landscape was found to be presented by 10 species. The number of species was closely correlated with its phylogenetic analogue – Faith’s index. Both indices were stationary over time, as they do not show a statistically significant time trend. The two axes were extracted as a result of the DPCOA procedure and the permutation test showed their statistical significance. The axis 1 was the most sensitive to the opposite dynamics of the abundance of Coturnix coturnix and Burhinus oedicnemus on the one hand and Alauda arvensis and Melanocorypha calandra on the other. The axis 2 is the most sensitive to the opposite dynamics of Corvus monedula and Melanocorypha calandra on the one hand and Coturnix coturnix and Motacilla flava on the other. Based on phylogenetic diversity, the years can be clustered with the extraction of four relatively homogeneous phylogenetic structures of bird communities. The indicator of the initial period of dynamics (1988–1992) was Burhinus oedicnemus. Sowing or mechanical weeding may be considered as a major factor of nest destruction of Burhinus oedicnemus. The decreasing of the abundance of the trophic recourses because of agricultural activity may have caused the monotonous negative trend over time of the Burhinus oedicnemus populations. The period 1993–2003 was a transitional one, for which there were no clear indicators, as a characteristic feature of this period was the processes of bird community restructuring. The period 2004–2013 was characterized by the loss of Burhinus oedicnemus from the community and a sharp increase in the abundance of Corvus monedula. These species are distinguished by their phylogenetic specificity and are located on the periphery relative to the phylogenetic core of the community. There was growing importance in the community of such species as Alauda arvensis, Anthus campestris, and Melanocorypha calandra between 2014 and 2018. Our results also confirm the assumption that phylogenetic overdispersion is an important requirement for the stability of the bird community in anthropogenically transformed landscapes.
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17

HARTLEY, IAN R., MICHAEL SHEPHERD, and D. B. A. THOMPSON. "Habitat selection and polygyny in breeding Corn Buntings Miliaria calandra." Ibis 137, no. 4 (April 3, 2008): 508–14. http://dx.doi.org/10.1111/j.1474-919x.1995.tb03260.x.

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18

McGregor, Peter K. "Song types in the corn buntingEmberiza calandra: Matching and discrimination." Journal of Ornithology 127, no. 1 (January 1986): 37–42. http://dx.doi.org/10.1007/bf01641440.

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19

Hanžel, Jurij. "Rare birds in Slovenia in 2015 – Slovenian Rarities Committee’s Report." Acrocephalus 37, no. 168-169 (November 1, 2016): 69–78. http://dx.doi.org/10.1515/acro-2016-0004.

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Summary This report by the Slovenian Rarities Committee presents records of rare bird species in Slovenia in 2015, with some addenda for previous years. The numbers in brackets refer to the number of records (first number) and individuals (second number) recorded between 1 Jan 1950 and 31 Dec 2014. Since 1 Jan 2013, submission to the Committee has been required for 37 additional species, 17 of which are regional rarities. Records of these species are not numbered, since records from previous years were not collected by the Committee. One new species, the Desert Wheatear Oenanthe deserti, was added to category A. Other notable observations were the first record of Parrot Crossbill Loxia pytyopsittacus after 1909, the second record of Baillon’s Crake Zapornia pusilla, the third and fourth records of Calandra Lark Melanocorypha calandra, the fourth of Long-legged Buzzard Buteo rufinus, the fifth of Richard’s Pipit Anthus richardi and the sixth of Grey Phalarope Phalaropus fulicarius. Four species were added to category E: Bahama Pintail Anas bahamensis, Rosy-billed Pochard Netta peposaca, Harris’s Hawk Parabuteo unicinctus and Alexandrine Parakeet Psittacula eupatria. The list of birds recorded in Slovenia (as of 31 Dec 2015) contains 386 species (371 in category A, 6 in category B, 9 exclusively in category C; 4 species are both in categories A and C). Category D contains 6 species, while category E contains 38, two of which are classified into subcategory E*. These two categories are not part of the list.
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20

Holland, Jo, Peter K. McGregor, and Candida L. Rowe. "Changes in Microgeographic Song Variation of the Corn Bunting Miliaria calandra." Journal of Avian Biology 27, no. 1 (March 1996): 47. http://dx.doi.org/10.2307/3676960.

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21

Hartley, I. R., S. C. Griffith, K. Wilson, M. Shepherd, and T. Burke. "Nestling Sex Ratios in the Polygynously Breeding Corn Bunting Miliaria calandra." Journal of Avian Biology 30, no. 1 (March 1999): 7. http://dx.doi.org/10.2307/3677237.

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22

Kunike, Georg. "Beiträge zur Lebensweise und Bekämpfung des Kornkäfers, Calandra granaria L. (Curculionidae)." Zeitschrift für Angewandte Entomologie 23, no. 2 (August 26, 2009): 303–26. http://dx.doi.org/10.1111/j.1439-0418.1937.tb00438.x.

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23

Richards., O. W. "Observations on Grain-Weevils, Calandra (Col., Curculionidae), General Biology and Oviposition." Proceedings of the Zoological Society of London 117, no. 1 (August 21, 2009): 1–43. http://dx.doi.org/10.1111/j.1096-3642.1947.tb00492.x.

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24

Brickle, N. W., and D. G. C. Harper. "Agricultural intensification and the timing of breeding of Corn BuntingsMiliaria calandra." Bird Study 49, no. 3 (November 2002): 219–28. http://dx.doi.org/10.1080/00063650209461269.

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25

Kleine, R. "Prüfung neuer chemischer Mittel zur Bekämpfung des Kornkäfers, Calandra granaria L." Zeitschrift für Angewandte Entomologie 13, no. 3 (August 26, 2009): 451–65. http://dx.doi.org/10.1111/j.1439-0418.1928.tb00050.x.

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26

Morgado, Rui, Pedro Beja, Luís Reino, Luís Gordinho, Ana Delgado, Rui Borralho, and Francisco Moreira. "Calandra lark habitat selection: Strong fragmentation effects in a grassland specialist." Acta Oecologica 36, no. 1 (January 2010): 63–73. http://dx.doi.org/10.1016/j.actao.2009.10.002.

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27

MARTINEZ, RONALD L. "Etruria Triumphant in Rome: Fables of Medici Rule and Bibbiena's Calandra." Renaissance Drama 36/37 (January 2010): 69–98. http://dx.doi.org/10.1086/rd.36_37.41917454.

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28

Андрющенко, Ю. О. "ЩОДО ВИЗНАЧЕННЯ ПЕРЕЛІКУ АВТОХТОННИХ ПТАХІВ СУХОСТЕПОВОЇ ЗОНИ УКРАЇНИ". Біорізноманіття, екологія та експериментальна біологія 25, № 2 (2023): 6–11. http://dx.doi.org/10.34142/2708-5848.2023.25.2.01.

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Автохтонними птахами сухостепової зони України можна вважати види, що належать до орнітофауністичних комплексів «сухих степів», «вологих степів», «узлісь і чагарників», «долин річок південного походження» та «морських узбереж». До них належать 85 видів, що становлять лише 45.9% видів, які достовірно гніздяться в регіоні, з яких 32 є сухостеповими автохтонами сухих степів та морських узбереж (17.3%) і 53 – степовими автохтонами зволожених степів, узлісь-чагарників і річкових долин південного походження (28.6%). Автохтонами сухих степів є наступні види: Buteo rufinus, Perdix perdix, Anthropoides virgo, Otis tarda, Tetrax tetrax, Burhinus oedicnemus, Glareola nordmanni, Galerida cristata, Calandrella cinerea, C. rufescens, Melanocorypha calandra, Anthus campestris, Motacilla feldegg, Saxicola rubetra, S. torquata, Oenanthe oenanthe, O. isabellina, Emberiza melanocephala. Автохтони морських узбереж: Phalacrocoraх aristotelis, Phoenicopterus roseus, Tadorna ferruginea, T. tadorna, Mergus serrator, Charadrius alexandrinus, Recurvirostra avosetta, Larus ichthyaetus, L. melanocephalus, L. genei, L. cachinnans, Gelochelidon nilotica, Hydroprogne caspia, Thalasseus sandvicensis. Автохтони зволожених степів: Circus pуgargus, Coturnix coturnix, Asio flammeus, Alauda arvensis, Emberiza calandra, E. hortulana. Автохтони узлісь та чагарників: Pha sianus colchicus, Lullula arborea, Anthus trivialis, Lanius collurio, Sylvia nisoria, S. borin, S. communis, S. curruca, Erithacus rubecula, Luscinia megarhynchos, L. luscinia, Passer domesticus, Acanthis cannabina, Emberiza citrіnella. Автохтони річкових долин: Tachybabtus ruficollis, Podiceps nigricollis, Pelecanus onocrotalus, Phalacrocoraх carbo, Ph. pygmaeus, Ixobrychus minutus, Nycticorax nycticoraх, Ardeola ralloides, Egretta alba, E. garzetta, Ardea purpurea, Platalea leucorodia, Plegadis falcinellus, Ciconia ciconia, Cygnus olor, Anas strepera, Netta rufina, Aythya nуroca, Oxy ura leucocephala, Rallus aquaticus, Porzana porzana, P. parva, Gallinula chloropus, Fulica atra, Himantopus himantopus, Glareola pratincola, Chlidonias leucopterus, Ch. hybrida, Locustella luscinioides, Acrocephalus agricola, A. scirpaceus, A. arundinaceus, Panurus biarmicus.
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29

Tedeschi, John, and Sergio Pagano. "Il Processo di Endimio Calandra e l'Inquisizione a Mantova nel 1567-1568." American Historical Review 98, no. 3 (June 1993): 901. http://dx.doi.org/10.2307/2167646.

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30

Stoate, C., R. Borralho, and M. Araújo. "Factors affecting corn bunting Miliaria calandra abundance in a Portuguese agricultural landscape." Agriculture, Ecosystems & Environment 77, no. 3 (February 2000): 219–26. http://dx.doi.org/10.1016/s0167-8809(99)00101-2.

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31

Andrew, R. J. "TERRITORIAL BEHAVIOUR OF THE YELLOWHAMMER EMBERIZA CITRINELLA AND CORN BUNTIN E. CALANDRA." Ibis 98, no. 3 (June 28, 2008): 502–5. http://dx.doi.org/10.1111/j.1474-919x.1956.tb01436.x.

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32

Richards, O. W. "THE TWO STRAINS OF THE RICE WEEVIL, CALANDRA ORYZAE (L.) (COLEOPT., CURCULIONIDAE)." Transactions of the Royal Entomological Society of London 94, no. 2 (April 24, 2009): 187–200. http://dx.doi.org/10.1111/j.1365-2311.1944.tb01216.x.

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33

McGregor, Peter, José Tavares, Claire Latruffe, and Paulo Gama Mota. "MICROGEOGRAPHIC VARIATION IN CORN BUNTING (MILIARIA CALANDRA) SONG: QUANTITATIVE AND DISCRIMINATION ASPECTS." Behaviour 137, no. 9 (2000): 1241–55. http://dx.doi.org/10.1163/156853900502628.

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AbstractGeographic variation in bird song that is described as local song dialects refers to a mosaic pattern of distribution of songs in a population within the dispersal capacities of the species. Corn buntings (Miliaria calandra) in the region of Alentejo, Portugal, show such local dialects. However, an interesting aspect of this population is that song types are restricted to sub - groups of males within each dialect rather than all males singing all song types as in other populations. After describing the pattern of song type variation qualitatively (i.e. classifying spectrograms by eye), we used cross - correlation of spectrograms in quantitative comparisons. This confirmed the qualitative classification of songs into song type categories and showed a tendency for neighbouring males to have most similar songs. Males did not respond significantly more or less strongly to playback of different song types; however males clearly discriminated between different song types in a habituation paradigm.
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34

Wu, Qinghua, Liang Bao, and Yiqin Lin. "Residual-Based Simpler Block GMRES for Nonsymmetric Linear Systems with Multiple Right-Hand Sides." Advances in Mathematical Physics 2018 (2018): 1–12. http://dx.doi.org/10.1155/2018/1369707.

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We propose in this paper a residual-based simpler block GMRES method for solving a system of linear algebraic equations with multiple right-hand sides. We show that this method is mathematically equivalent to the block GMRES method and thus equivalent to the simpler block GMRES method. Moreover, it is shown that the residual-based method is numerically more stable than the simpler block GMRES method. Based on the deflation strategy proposed by Calandra et al. (2013), we derive a deflation strategy to detect the possible linear dependence of the residuals and a near rank deficiency occurring in the block Arnoldi procedure. Numerical experiments are conducted to illustrate the performance of the new method.
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35

Taylor, Alison J., and John O'Halloran. "The Decline of the Corn Bunting, Miliaria calandra, in the Republic of Ireland." Biology and Environment: Proceedings of the Royal Irish Academy 102B, no. 3 (2002): 165–75. http://dx.doi.org/10.1353/bae.2002.0011.

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36

HARTLEY, IAN R., NICK J. ROYLE, and MICHAEL SHEPHERD. "Growth rates of nestling Corn Buntings Miliaria calandra in relation to their sex." Ibis 142, no. 4 (June 28, 2008): 668–71. http://dx.doi.org/10.1111/j.1474-919x.2000.tb04466.x.

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37

Browning, H. C. "Mechanical Disturbance and Light as factors influencing the Pullulation of Calandra granaria Linn." Proceedings of the Zoological Society of London 116, no. 3-4 (August 20, 2009): 675–91. http://dx.doi.org/10.1111/j.1096-3642.1947.tb00142.x.

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38

Wille, Johannes. "Chlorpikrin in der Schädlingsbekämpfung, insbesondere im Kampf gegen den Kornkäfer (Calandra granaria L.)." Zeitschrift für Angewandte Entomologie 7, no. 2 (August 26, 2009): 296–310. http://dx.doi.org/10.1111/j.1439-0418.1921.tb01483.x.

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39

Brickle, Nick W., David G. C. Harper, Nicholas J. Aebischer, and Simon H. Cockayne. "Effects of agricultural intensification on the breeding success of corn buntings Miliaria calandra." Journal of Applied Ecology 37, no. 5 (October 2000): 742–55. http://dx.doi.org/10.1046/j.1365-2664.2000.00542.x.

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40

Shepherd, Michael, David Currie, and Ian R. Hartley. "Mate-Guarding, Territorial Intrusions and Paternity Defence in the Polygynous Corn Bunting Miliaria calandra." Journal of Avian Biology 27, no. 3 (September 1996): 231. http://dx.doi.org/10.2307/3677227.

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41

Calandra, Maëlle. "Compte rendu d'Assistance environnementale et changements climatiques dans le Pacifique Sud par Maëlle Calandra." Journal de la société des océanistes, no. 149 (December 15, 2019): 393. http://dx.doi.org/10.4000/jso.11048.

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42

Hartley, Ian R., Michael Shepherd, and Timothy Robson Terry Burke. "Reproductive success of polygynous male corn buntings (Miliaria calandra) as confirmed by DNA fingerprinting." Behavioral Ecology 4, no. 4 (1993): 310–17. http://dx.doi.org/10.1093/beheco/4.4.310.

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43

Ewer, R. F. "THE EFFECT OF GRAIN SIZE ON THE OVIPOSITION OF CALANDRA GRANARIA LINN. (COLEOPTERA, CURCULIONIDAE)." Proceedings of the Royal Entomological Society of London. Series A, General Entomology 20, no. 4-6 (April 2, 2009): 57–63. http://dx.doi.org/10.1111/j.1365-3032.1945.tb01063.x.

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44

Osiejuk, Tomasz S., Katarzyna Ratyńska, and Jakub P. Cygan. "Corn bunting (Miliaria calandra) males respond differently to alternating and overlapping playback of song." Journal of Ethology 25, no. 2 (July 29, 2006): 159–68. http://dx.doi.org/10.1007/s10164-006-0010-3.

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45

SETCHFIELD, ROSEMARY P., CLAIRE MUCKLOW, ALICE DAVEY, UTE BRADTER, and GUY Q. A. ANDERSON. "An agri-environment option boosts productivity of Corn Buntings Emberiza calandra in the UK." Ibis 154, no. 2 (February 13, 2012): 235–47. http://dx.doi.org/10.1111/j.1474-919x.2011.01207.x.

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46

Sviridova, T. V., L. V. Malovichko, G. V. Grishanov, and P. D. Vengerov. "Breeding Conditions for Birds in the Nowaday Farmlands of the European Russia: the Impact of Agriculture Intensification and Polarization. Part II. Birds." Povolzhskiy Journal of Ecology, no. 4 (February 14, 2020): 470–92. http://dx.doi.org/10.35885/1684-7318-2019-4-470-492.

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The considerable polarization of bird habitats has been formed in European Russia – extensive abandoned lands, of low suitability for nesting of typical meadow species, alternate with increasingly intensively cultivated fields. Though the abundance of most species is low in these fields, the polarization has resulted in their increasing exploitation by Eurasian Curlew, Black-tailed Godwit, Common Redshank, Black-winged Pratincole, Demoiselle Crane, Montagu's Harrier, Grey Partridge, Short-eared Owl and Mallard, apart from those more typical for fields: Lapwing, Common Quail, Eurasian Skylark, Calandra Lark and Western Yellow Wagtail. However, nesting of these species on most crop fields often results in low breeding success. The trends most unfavorable for nesting birds in European Russia are conversion of grasslands into arable lands, associated with the switching to indoor keeping of cattle, and increasing no-till farming.
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47

RICHARDS, O. W. "The reaction to light and its inheritance in grain-weevils, Calandra granaria (L.) (Coleoptera-Curculionidae)." Proceedings of the Zoological Society of London 121, no. 2 (August 21, 2009): 311–14. http://dx.doi.org/10.1111/j.1096-3642.1951.tb00798.x.

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48

Perkins, Allan J., Hywel E. Maggs, Jeremy D. Wilson, and Adam Watson. "Delayed mowing increases corn bunting Emberiza calandra nest success in an agri-environment scheme trial." Agriculture, Ecosystems & Environment 181 (December 2013): 80–89. http://dx.doi.org/10.1016/j.agee.2013.09.010.

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49

Olinkiewicz, Agata, and Tomasz S. Osiejuk. "Effect of Time of Season and Neighbours on Singing Activity in the Corn BuntingMiliaria calandra." Acta Ornithologica 38, no. 2 (December 2003): 117–22. http://dx.doi.org/10.3161/068.038.0208.

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50

Taylor, Alison J., and John O’Halloran. "The Decline of the Corn Bunting, Miliaria calandra, in the Republic of Ireland." Biology & Environment: Proceedings of the Royal Irish Academy 102, no. 3 (January 1, 2002): 165–75. http://dx.doi.org/10.3318/bioe.2002.102.3.165.

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