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Literaturverzeichnis

  1. ALLARD, H.A. The Photoperiodism of the Firefly (Photinus pyralis Linn.); its relation to the evening twilight and other conditions. Proc.ent.Soc.Wash. 33. pp. 49–58. (1931)

    Google Scholar 

  2. ASCHOFF, J. Tierische Periodik unter dem Einfluß von Zeitgebern. Z.Tierpsychol. Bd. 15. H. 1 pp. 1–30 (1958)

    Google Scholar 

  3. BALDWIN, F.M. Diurnal activity of the Earthworm J.Anim.Behay. 7. pp. 187–190 (1917)

    Google Scholar 

  4. BARNES, H.F. On some factors governing the emergence of Gall Midges. (Cecil.Dipt.) Proc.Zool.Soc.Lond.(2) pp.381–393 (1930)

    Google Scholar 

  5. BAUDREXL, A. Über den Nachweis des “Sonnenaufgangseffektes nach TAKATA” mit Hilfe verschiedener Untersuchungsmethoden. Diss. Mü. Med.Fakultät (1952)

    Google Scholar 

  6. BECKETT, J.C. Air ionization as an environment factor. “Applications and Industry” pp. 1–5 (1954)

    Google Scholar 

  7. BECKETT, J.C. Ions’ role in Air Conditioning takes on new importance. “Heating, Piping and Air Conditioning”. pp. 165–167 (1958)

    Google Scholar 

  8. BENTLEY, E.W., D.L. GUNN und D.W. EWER The biology and behavior of Ptinus tectus Boie. (Coleop., Ptinidae), a pest of stored products. I) The daily rhythm of locomotory activity, especially in relation to light and temperature. J.Exp.Biol. 18, pp.182–195 (1942)

    Google Scholar 

  9. BORTELS, H. Mikrobiologischer Beitrag zum Kausal-problem der Meteoro-Biologie. Med.-meteor. H. 7 pp. 24–35 (1952)

    Google Scholar 

  10. BOYSEN und D. MÜLLER Die maximale Ausbeute und der tägliche Verlauf der Kohlensäure-Assimilation Jahrg. Wiss. Bot. 70, p. 493 (1929)

    Google Scholar 

  11. BREMER, H. Über die tageszeitliche Konstanz im Schlüpftermine der Imagines einiger Insekten und ihre experimentelle Beeinflußbarkeit Z.wiss.Insektenbiol. 21, pp.209–216 (1926)

    Google Scholar 

  12. BROADBENT, L. Factors affecting the activity of Alatae of the Aphids Myzus persicae and Brevicoryne brassicae Ann.Appl.Biol. 36, No. 1, PP. 40–62 (1949)

    Google Scholar 

  13. BROADBENT, L. und M. HOLLINGS The influence of heat on some aphids Ann.Appl.Biol. 38, pp. 577–581 (1951)

    Google Scholar 

  14. BUCK, J.B. Synchronous rhythmic flashing of fire- flies Quart.Rev.Biol. 13, (2) pp. 301–314 (1938)

    Google Scholar 

  15. BÜNNING, E. Zur Kenntnis der endonomen Tagesrhythmik bei Insekten und bei Pflanzen Ber.dtsch.bot.Ges. 53, 2 pp. 594–623 (1935)

    Google Scholar 

  16. BURKARD, O. Einige statistische Versuche zur PICCAR- Dlschen Fällungsreaktion. Arch.Meteor.Geophys.Bioklim. Serie B. Bd. 6, H. 4 pp. 506–510 (1955)

    Google Scholar 

  17. BUTENANDT, A. und P. KARLSON Über die Isolierung eines Metamorphosehormons der Insekten in kristallisierter Form Z. Naturforsch. 9b (1954)

    Google Scholar 

  18. BUTENANDT, A. Wirkstoffe des Insektenreiches Deutsche Akademie der Naturforscher (Leopoldina). Nova Acta Leopoldina. N.F. Bd. 17, No. 122 pP. 445–471 (1955)

    Google Scholar 

  19. CALHOUN, J.B. Twentyfour hour periodicities in the Animal Kingdom J.Tenn.Acad.Sci. 19: 179–200, 252–262, (1944–46)

    Google Scholar 

  20. CALHOUN, J.B. Twentyfour hour periodicities in the Animal Kingdom J.Tenn.Acad.Sci. 20: 228–232, 291–308, 373–378, (1944–46)

    Google Scholar 

  21. CALHOUN, J.B. Twentyfour hour periodicities in the Animal Kingdom J.Tenn.Acad.Sci. 21: 208–216, 281–282 (1944–46)

    Google Scholar 

  22. CALHOUN, J.B. Dial activity rhythms of the rodents Microtus ochrogaster and Siomodon hispidus Ecology 26 (3). pp. 251–273 (1945)

    Google Scholar 

  23. CARROLL, J.S., S.B. HAMMOND und E.H. STEWART Measuring and recording Atmospheric Electrostatic potential. Amer.Inst.Elect.Engineers Paper No.55–489 Transaction Paper pp.1–7 (1955)

    Google Scholar 

  24. CLOUDSLEY, J.L. und THOMPSON Studies in Diurnal Rhythms. VII. Humidity Responses and Nocturnal Activity in Woodlice (Isopoda). J.Exp.Biol. Vol. 33 No. 3 pp. 576–582 (1956)

    Google Scholar 

  25. CLOUDSLEY, J.L. und THOMPSON The Effect of Rock Cover on the Diurnal Range of Microclimatic Conditions The Entomologist. Vol. 89 No. 1120 (1956)

    Google Scholar 

  26. CUSHING, D.H. Some experiments on the vertical migration of Zooplankton J. Anim.Ecol. Vol. 24 (1) pp. 137–166 (1955)

    Google Scholar 

  27. DAVIES, D.H.S. Rhythmic activity in the short-tailed vole, Microtus. J.Anim.Ecol. 2 (2) pp. 232–238 (1933)

    Google Scholar 

  28. DESSAUER, F. Zehn Jahre Forschung auf dem Physikalisch-Mediz.Grenzgebiet. (1931)

    Google Scholar 

  29. EASTOP, V.F. Diurnal Variation in the Aerial Density of Aphididae. Proc.R.Soc.Lond. (A) 26 (10–12) P13. 129–134 (1951)

    Google Scholar 

  30. ESTERLEY, C.O. The occurrence of a rhythm in the Geotropism of two species of Plankton copepods when certain recurring external conditions are absent. Univ.Calif.Publ.Zool. 16, pp. 393–400 (1917)

    Google Scholar 

  31. FENJVES, P. Beiträge zur Kenntnis der Blattlaus Myzus persicae Sulz., Überträgerin der Blatt rollkrankheit der Kartoffel. Mitt.Schweiz.Ent.Ges. Bd. XIX, H. 11 pp. 1–124

    Google Scholar 

  32. FISHER, R.A. und F. YATES Statistical Tables for Biological, Agricultural and Medical Research. London (1953)

    Google Scholar 

  33. FRANSSEN, C.J.H. Die Biologie und Systematik der europäischen “Schwarzen Blattläuse”. Z.angew.Ent. Bd. 17, pp. 106–145 (1931)

    Google Scholar 

  34. FREEMANN, G.L. Diurnal variations in performance and energy expenditure. Northwestern Univ.Press.Evanston (1935)

    Google Scholar 

  35. GANGER, B. Der elektrische Durchschlag von Gasen Elektrophysik. Springer Verlag, Berlin 1/8. (1953) 14

    Google Scholar 

  36. GANE A.T. The awakening and diurnal flight activities of respire wasps. Proc.R.Ent.Soc.Lond. (A) 27 (4–6) pp. 33–38 (1952)

    Google Scholar 

  37. GARNER, W.W. und H.A. ALLARD The effect of the relative length of day and night and other factors of the environments on the growth and reproduction in plants. J.Agri.Res. 18, pp. 553–605 (1920)

    Google Scholar 

  38. GRIFFIN, D.R. und J.H. WELSCH Activity rhythm in Bats under constant external conditions. J.Mammology 18, pp. 337–342 (1937)

    Google Scholar 

  39. GUNN, D.L. The daily rhythm of activity of the Cockroach. Blatta orientalis L. J.Exp.Biol. 17 (3),pp: 267–277 (1940)

    Google Scholar 

  40. GUNN D.L. und H.S. HOPF The biology and behaviour of Ptinus tectus. H. The amount of locomotory activity in relation to experiments and to previous temperatures. J.Exp.Biol. ’ 8 (3) pp. 278–289 (1941)

    Google Scholar 

  41. HADORN, E., H. BURLA, H. GL00R und F. ERNST Beitrag zur Kenntnis der Drosophila Fauna von Südwest-Europa. Z.indukt.Abst.u.Vererbungslehre. 84, pp. 133–163 (1952)

    Google Scholar 

  42. HAINE, E. Studien und Experimente zur Frage des Populations-und Massenwechsels und des Flugverhaltens virusübertragender Blattläuse. Anz.Schädlingskde. 27, H. 4 55–59 (1954)

    Google Scholar 

  43. HAINE, E. Biologisch-ökologische Studien an Rhopalisiphoninus latysiphon D. Landw.Angew.Wiss., Bundesminist.Ernähr., Landw.u.Forsten, Bonn pp. 4–54 (1955)

    Google Scholar 

  44. HAINE, E. The flight activity of the Sycamore aphid, Drepanosiphum platanoides Schr. (Hemiptera, Aphididae). J.Anim.Ecol. Vol. 24, No. 2 pp. 388–394 (1955)

    Google Scholar 

  45. HAINE, E. Häutung, Abflug und Landung der Blattläuse in Wechselwirkung auf die Blattlauszahlen in der Luft. Mitt.Biol.Bundesanst. Bln.-Dahlem, H. 85 pp. 23–27 (1956)

    Google Scholar 

  46. HAINE, E. Periodicity in Aphid Moulting and Reproduction in Constant Temperature and Light. Z.angew.Ent. Bd.40, H. 1, pp. 99–124 (1957)

    Google Scholar 

  47. HAINE, E. und H. KÖNIGÜber die Behandlung von Blattläusen: M. persicae Sulz. mit elektrischen Feldern, demnächst in Z. angew. Ent., 47, (1961)

    Google Scholar 

  48. HAINE,E. Beeinflussen luftelektrische Faktoren - insbesondere Ionenkonzentrationswechsel der Luft - Periodizitätserscheinungen im Häuten der Blattläuse, demnächst in Z. angew. Ent.

    Google Scholar 

  49. HAINE, E., H. KÖNIG und H. SCHMEER Aphid moulting in shielded rooms, electrical fields and artificially ionized air, demnächst

    Google Scholar 

  50. HAINE, E. und H. SCHMEER Changes of air ion densities and activity changes in aphid moulting, demnächst

    Google Scholar 

  51. HAINE, E. Zur Erforschung des Flugverhaltens und der Flug-und Häutungsperiodizität forstlich und landwirtschaftlich wichtiger Blattläuse: HAINE, E. Das Verhalten von Blattläusen in kontrollierten Windgeschwindigkeiten, demnächst voraussichtlich in: Forschungsberichte des Landes Nordrhein-Westfalen

    Google Scholar 

  52. HANSER, G. und P. KARLSON Über die Wirkung des Metamorphose Hormons auf die Epidermis von Ephestia-Dauerraupen. Biol.Zent.Blatt. Bd.76, H 2, pp. 129–141 (1957)

    Google Scholar 

  53. HARKER, J.E. Diurnal Rhythms in Periplaneta americana L. Nature, Vol. 173, p. 689 (1954)

    Google Scholar 

  54. HARKER, J.E. Control of Diurnal Rhythms of Activity in Periplaneta americana L. Nature, Vol. 175, p. 733 (1955)

    Google Scholar 

  55. HAUFE, W.O. Observations on the Biology of Mosquitoes (Dipt.Culicidae) at Goose Bay, Labrador. Canad.Ent. 84 (8), pp. 254–263 (1952)

    Google Scholar 

  56. HEINZE, K. Die Überträger pflanzlicher Viruskrankheiten. Mitt.Biol.Zent.anst.Land u. Fortw. H. 71, pp. 1–127 (1951)

    Google Scholar 

  57. HENRICI, M. Zweigipflige Assimilationskurven. Verhand.Naturforsch.Ges.Basel 32,p. 107 (1921)

    Google Scholar 

  58. HERRING, V.V. und S. BRODY Diurnal metabolic and activity rhythms. Univ.Missouri Agric.Exp.Sta.Res.Bull. 274 pp. 1–30 (1938)

    Google Scholar 

  59. HICKS, W.W. Air Ion Generation, separation, metering and physiological effects. J.Frank.Inst. Vol.261, No. 2 pp. 209–217

    Google Scholar 

  60. HICKS, W.W. A series of experiments on trees and plants in Electrostatic fields. J.Frank.Inst. Vol. 264, No. 1, pp. 1–5 (1957)

    Google Scholar 

  61. HIRSCHBERGER, M. und R. REITER Wettervorgänge und Sonneneruptionen beeinflussen den elektrischen Hautwiderstand. Dtsch.Med.Wochenschr. Jahrg.78, No. 47, pp.1640–1641 (1953)

    Google Scholar 

  62. HORSTMANN, E. agesperiodischen Pigmentwanderungen im Facettenauge von Nachtschmetterlingen. Biol.Centralbl. 55, pp. 93–97 (1935)

    Google Scholar 

  63. HUBER, B. Tages- und Jahresrhythmen im pflanzlichen Stoffwechsel. Umschau 56, pp. 302–304 (1956)

    Google Scholar 

  64. ISRAEL, H. Luftelektrizität und Radioaktivität. Springer Verlag Bd. 62 (1957)

    Google Scholar 

  65. ISRAEL, H. Atmosphärische Elektrizität. Teil I. Akad. Verlagsges. Geest und Portig K.G. Leipzig (1957)

    Google Scholar 

  66. JACOB, F.H. Note on the Classification of the British Species of “Black Aphids”. Proc.R.Ent.Soc.Lond. (B) 14, Pts. 7–8 pp. 102–110 (1945)

    Google Scholar 

  67. JOHNSON, B. Studies of Flight, Host Selection and Reproduction in Aphids. Ph.D. Thesis, Univ.Lond. (1955)

    Google Scholar 

  68. JOHNSON, B. Studies on the Degeneration of Flight Muscles of Alate Aphids–I. A comparative Study on the Occurrence of Muscle Breakdown in Relation to Reproduction in several Species. J.Ins.Physiol. Vol. 1, pp. 248–256 (1957)

    Google Scholar 

  69. JOHNSON, C.G. Development of Research on the insect Aerofauna. Brit.Sci.News.2, pp.243–246 (1949)

    Google Scholar 

  70. JOHNSON, C.G. A suction trap for small airborne insects which automatically segregates the catch into successive hourly samples. Ann.Appl.Biol. 37, pp. 80–91 (1950)

    Google Scholar 

  71. JOHNSON, C.G. und V.F. EASTOP Aphids captured in a Rothamsted Suction Trap, 5 Feet above Ground Level, from June to Nov. 1947. Proc.R.Ent.Soc., Lond. (A) 26, Pts. 1–3, pp. 17–24 (1951)

    Google Scholar 

  72. JOHNSON, C.G. The Study of Windborne Insect Populations in Relation to Terrestrial Ecology. Flight Periodicity and the Estimation of Aerial Populations. Sci.Prog. No. 153, pp. 141–162 (1951)

    Google Scholar 

  73. JOHNSON, C.G. The Role of Population Level, Flight Periodicity and Climate in the Dispersal of Aphids. Trans.Ninth Int.Congr.Ent. Vol. 1, pp. 429–431 (1952)

    Google Scholar 

  74. JOHNSON, C.G. A New Approach to the Problems of the Spread of Aphids and to Insect Trapping. Nature 170, p. 147 (1952)

    Google Scholar 

  75. JOHNSON, C.G. The changing numbers of Aphis fabae Scop. flying at crop level, in relation to current weather and to the population of the crop. Ann.Appl.Biol. 39, pp. 525–547 (1952)

    Google Scholar 

  76. JOHNSON, C.G. Aphid migration in relation to weather. Biol.Rev. 29, pp.87–118 (1954)

    Google Scholar 

  77. JOHNSON, C.G. Ecological Aspects of Aphid Flight and Dispersal. Rep.Rothamsted. pp. 191–201 (1955)

    Google Scholar 

  78. JOHNSON, C.G. Distribution and dispersal of Aphids in the Air. Mitt.Biol.Bundesanst. Bln-Dahlem, H. 85 ([98] KRUEGER, A.P. und R.F. SMITH)

    Google Scholar 

  79. JOHNSON, C.G. und L.R. TAYLOR The Measurement of Insect Density in the Air. Part II. Laboratory Practice. Vol. 4, No. 6 pp. 235–239 (1955)

    Google Scholar 

  80. JOHNSON, C.G., E. HAINE, A.J. COCKBAIN undL.R. TAYLOR Moulting rhythm in the Aliencolae of Aphis fabae Scop. (Hemiptera, Aphididae) in the Field. Ann.Appl.Biol. 45, pp. 702–708 (1957)

    Google Scholar 

  81. JOHNSON, C.G. The vertical distribution of Aphids in the air and the temperature lapse rate. Quart.J.R.Met.Soc. Vol. 83, No. 356, pp. 194–201 (1957)

    Google Scholar 

  82. JOHNSON, C.G. und L.R. TAYLOR Periodism and Energy Summation with Special Reference to Flight Rhythms in Aphids. J.Exp.Biol. Vol. 34, No. 2, pp. 209–221 (1957)

    Google Scholar 

  83. JOHNSON, C.G., L.R. TAYLOR und E. HAINE The Analysis and Reconstruction of Diurnal Flight Curves in Aliencolae of Aphis fabae Scop. Ann.Appl.Biol. Vol. 45, No. 4, pp. 682–701 (1957)

    Google Scholar 

  84. JOHNSON, M.S. Effect of continuous light on periodic spontaneous activity of white-footed mice (Peromyscus). J.Exp.Zool. 82, pp. 315–328 (1939)

    Google Scholar 

  85. JORES, A. Die 24-Stunden-Periodik in der Biologie Tabulae Biologicae 14, pp. 77–109 (1937)

    Google Scholar 

  86. KALMUS, H. Periodizität und Autochronie (Ideochronie) als zeitregelnde Eigenschaften der Organismen. Biologia Generalis 11 s pp.93–114 (1935)

    Google Scholar 

  87. KALMUS, H. Tagesperiodisch verlaufende Vorgänge an der Stabheuschrecke (Dixippus morosus) und ihre experimentelle Beeinflussung. Z.Vergl.Physiol. 25, pp. 494–508 (1938)

    Google Scholar 

  88. KALMUS, H. Diurnal rhythms in the Oxolotl larva and in Drosophila. Nature.Lond. Vol. 145, No. 3663 pp. 72–73 (1940)

    Google Scholar 

  89. KALMUS, H. Biological Rhythms. Nature 172, p. 943 (1953)

    Google Scholar 

  90. KARLSON, P. Chemische Untersuchungen über die Metamorphosehormone der Insekten. Ann.Sci.Naturelles Zool. 18, 125, pp. 125–137 (1956)

    Google Scholar 

  91. KARLSON, P. Über die Häutungshormone der Arthropoden. Verhandl.Dtsch.Zool.Ges.Hamburg, pp. 204–208 (1956)

    Google Scholar 

  92. KARLSON, P. und M.D. STAMM-MENENDEZ Notiz über den Nachweis von Metamorphosehormon in den Imagines von Bombyx mori. Hoppe-Seylers Z.physiol.-Chemie.Bd. 306 pp. 109–111 (1956)

    Google Scholar 

  93. KELLERMANN, K.F. A review of the discovery of photoperiodism. Quart.Rev.Biol. 1, pp. 87–94 (1926)

    Google Scholar 

  94. KÖNIG, H. Atmospherics geringster Frequenzen. Z.angew.Physik. Bd. 11, H. 7, pp. 264–274 (1959)

    Google Scholar 

  95. KÖNIG, H. und L. KREMPL-LAMBRECHTÜber die Einwirkung niederfrequenter elektrischer Felder auf das Wachstum pflanzlicher Organismen. Arch.Mikrobiol. 34, pp. 204–210 (1959)

    Google Scholar 

  96. KÖNIG, H. und F. ANKERMÜLLER Über den Einfluß besonders niederfrequenter elektrischer Vorgänge in der Atmosphäre auf den Menschen. D. Naturwissenschaft. 47, pp. 486–490 (1960)

    Google Scholar 

  97. KÖNIG, H. E. HAINE und Ch. ANTONIADIS Messung von “atmospherics” geringster Frequenzen in Bonn. demnächst in 2. angew. Physik

    Google Scholar 

  98. KORNBLUEH, I.A. und J.E. Griffin Artificial Air Ionization in Physical Medicine. Preliminary Report. Amer.J.Phys.Med. 34, No. 6, pp. 618–631 (1955)

    Google Scholar 

  99. KORNBLUEH, I.H. Electric space charges and human health. Bull. Amer. Meteorol. Soc. 41, pp. 361–367 (1960)

    Google Scholar 

  100. KRUEGER, A.P. und R.F. SMITH Effects of Air Ions on Isolated Rabbit Trachea. Proc.Soc.Exp.Biol.Med. Vol. 96, pp. 807–809 (1957)

    Google Scholar 

  101. KRUEGER, A.P., R.F. SMITH und ING, GANG.Go The Action of Air Ions on Bacteria I. Protective and Lethal Effects of Suspensions of Staphylococci in Droplets. J.Gen.Physiol. Vol. 41, No. 2, pp.359–381 (1957)

    Google Scholar 

  102. KRUEGER, A.P. und R.F. SMITH Effects of Gaseous Ions on Tracheal Ciliary Rate. (24061) Proc.Soc.Exp.Biol.Med. Vol.98, P10. 412–414 (1958)

    Google Scholar 

  103. KRUEGER, A.P. und R.F. SMITH The Effet-ts of Air Ions on the Living Mammalian Trachea. J.Gen.Physiol. Vol. 42, No. 1, pp. 69–82 (1958)

    Google Scholar 

  104. KRUEGER, A.P., W.W. HICKS und J.C. BECKETT Effects of Unipolar Air Ions on Microorganisms and on Evaporation. J.Franklin.Inst. Vol. 266, No. 1, pp. 9–19 (1958)

    Google Scholar 

  105. KRUEGER, A.P. und R.F. SMITH An Enzymatic Basis for the Acceleration of Ciliary Activity by Negative Air Ions. Nature, Vol. 183, pp. 1332–1333 (1959)

    Google Scholar 

  106. KRUEGER, A.P. und R.F. SMITH Parameters of Gaseous Ion Effects on the Mammalian Trachea A). Duration of Effects. B).Minimal Effective Ion Densities. J.Gen.Physiol. Vol. 42, No. 5, pp. 959–969 (1959)

    Google Scholar 

  107. LAMBERS, R.H. Über Myzus persicae Sulzer. Beitr.Ent. Bd. 2, No. 1, pp. 119–121 (1952)

    Google Scholar 

  108. LEES, A.D. Diapause and Photoperiodism in the Fruit tree Red Spider ‘ite. (P“etatetranychus ulmi Koch). Nature, Lond. 166 (4229), No. 18, pp. 874–875 (1950)

    Google Scholar 

  109. LEWIS, C.B. und J.D. BLETCHLY The emergence rhythm of the Dung Fly Scopeuma (Scatophaga) Stercoraria(L). J.Anim.Ecol. 12, pp. 11–18 (1943)

    Google Scholar 

  110. LUMSDEN, W.H.R. The crepuscular biting activity of Insects in the forest canopy of Bwamba, Uganda. A study in relation to the sylvan epidemiology of Yellow fever. Bull.Ent.Res. 42, (4), pp. 721–760 (1952)

    Google Scholar 

  111. MALYSHEVA-KRASKEVICH, I.N. The application of ionized air in Stomatology. Amer.Journ.Phys.Med. 39, pp. 121–123 (1960)

    Google Scholar 

  112. MARKKULA, M. Biologisch-ökologische Untersuchungen über die Kohlblattlaus. Ann.Zool.Soc. ‘Vanamo’ Tom. 15, No. 5, pp. 1–113 (1953)

    Google Scholar 

  113. MELLANBY, K. The daily rhythm of activity of the Cockroach Blatta orientalis L. II. Observations and experiments on a natural infestation. J.Exp.Biol. 17 (3), pp. 278–285 (1940)

    Google Scholar 

  114. MELLANBY, K. Activity of certain Arctic insects at low temperatures. J.Anim.Ecol pp. 296–301 (1940)

    Google Scholar 

  115. MELLANBY, K. Water Content and Insect Metabolism. Nature, Vol. 181, p. 1403 (1958)

    Google Scholar 

  116. MELLANBY, K. und R.A. FRENCH The Importance of Drinking Water to Larval Insects. Ent.Exp.andAppl., pp. 116–124 (Holland) (1958)

    Google Scholar 

  117. MOERICKE, V. Zur Lebensweise der Pfirsichlaus (Myzodes persicae Sulz.) auf der Kartoffel. Inaugural-Diss. Inst.Pf1.krankh. Univ. Bonn, pp. 1–102 (1941)

    Google Scholar 

  118. MULLER, F.P. Die Populationsdynamik der grünen Pfirsichblattlaus Myzodes persicae Sulz. Wiss.Z. Univ.Rostock, Jahrg.3, H. 5, pp. 379–385 (1954)

    Google Scholar 

  119. MULLER, H.J. und K. UNGER Über den Einfluß von Licht, Wind, Temperatur und Luftfeuchtigkeit auf den Befallsflug der Aphiden Doralis fabae Scop. und Myzodes persicae Sulz., sowie der Psyllide Trioza nigricornis Frst. Züchter, 22, pp. 206–228 (1952)

    Google Scholar 

  120. MULLER, H.J. und K. UNGER Über die Bedeutung der Zusammenhänge zwischen Witterung und Blattlausflug für die Probleme des Kartoffelabbaus. Forsch.u.Fortschr., Bd.29, H. 8, pp. 229–238 (1955)

    Google Scholar 

  121. NICHOLSON, A.J. An outline of the Dynamics of Animal Populations. Australian J.Zool. Vol.2 No. 1, P10. 9–65 (1955)

    Google Scholar 

  122. NICHOLSON, A.J. Dynamics of Insect Populations. Annual.Rev.Ent. Vol. 3, pp. 107–136 (1958)

    Google Scholar 

  123. NIELSON, C.-B. und H.A. HARPER Effect of air ions on Succinoxidase Activity of the Rat Adrenal Gland (21223). Proc.Soc.Exp.Biol.Med., Vol. 86, pp. 753–756 (1954)

    Google Scholar 

  124. NORINDER, und H. R. SIKSNA The measurement of the variation characteristics of the density of small-ions., Arkiv.Geofysik. Bd. 1, No. 1, pp. 1–32 (1949)

    Google Scholar 

  125. NORINDER, und H. R. SIKSNA Variations in the Density of Small-ions caused by the Accumulation of Emanation exhaled from Soil. Tellus. Vol,. 2 No. 3, pp. 168–172 (1950)

    Google Scholar 

  126. NORINDER, und H. R. SIKSNA Continued measurements of the variation characteristics of the Density of Small-ions. Arkiv.Geofysik. Bd. 1, No. 7, pp. 149–158 (1950)

    Google Scholar 

  127. NORINDER, und H. R. SIKSNA Ionic Density of the Atmospheric Air near the Ground during Thunderstorm Conditions. Arkiv.Geofysik. Bd. 1, No. 16, pp. 453–472 (1951)

    Google Scholar 

  128. NORINDER, und H. R. SIKSNA Variations of the concentration of ions at different heights near the Ground during quiet Summernights at Uppsala. Arkiv.Geofysik. Bd. 1, No. 19, pp. 519–541 (1952)

    Google Scholar 

  129. NORINDER, und H. R. SIKSNA Ions formed in a room by negative wire corona. Arkiv.Geofysik. Bd. 6, No. 14, pp. 127–140 (1952)

    Google Scholar 

  130. NORINDER, H. Und R. SIKSNA Mobility of Atmospheric Small-ions during J.Atmosph.Terrestrial Phys. Vol. 4, pp. 93–105 (1953)

    Google Scholar 

  131. PARK, O. Measurement of daylight in the Chicago area and its ecological significance. Ecol.’i’onogr. 1, pp. 189–230 (1931)

    Google Scholar 

  132. PARK O. und J.G. KELLER Studies in Nocturnal Ecology. U. Preliminary analysis of activity rhythm in nocturnal forest insects. Ecol. 13, (4), pp. 335–346 (1932)

    Google Scholar 

  133. PARK, O. Nocturnalism - the development of a problem. Ecol.Monogr. 10, pp. 485 (1940)

    Google Scholar 

  134. PARK, O. Quantitive determination of rhythmicity in Organisms. Ohio. J. Sci. fil, PP. 39–45 (1941)

    Google Scholar 

  135. PARK, O. Concerning community symmetry. Eco1. 22, pp. 164–167 (1941)

    Google Scholar 

  136. PAVAN, C., T. DOBZHANSKY and H. BURLA Diurnal behaviour of some neotropical species of Drosophila. Ecol. 31 (1), pp. 36–43 (1950)

    Google Scholar 

  137. PICCARDI, G. Astrofisica. Una ipotesi solare. Accademia Nazionale dei Lincei. “Classe die Sci. fisiche, matematiche e naturali, serie VIII, Vol.XXI, Fasc. 1–2, pp. 84–86 (1956)

    Google Scholar 

  138. PICCARDI, G. Gli Studi sui Test Chimici dal 1. Aprile 1955 al 31 Marzo 1956. Geofisica e Meteorologia. Vol. IV, No. 1 /2 (1956)

    Google Scholar 

  139. ]PICCARDI, G. Influssi terrestri, solari e cosmici sulla vita degli uomini. Realtà Nuova. No. 2, pp. 3–10 (1956)

    Google Scholar 

  140. PICCARDI, G. Physikalische, chemische und biologische Effekte als Ausdruck von Weltraumeinflüssen. Wiener Med.Wochenschr. Jahrg. 106, No. 47 pp. 975–980 (1956)

    Google Scholar 

  141. PICCARDI, G. Und U. BECKER Test Chimico ed Attavità Solare. Geofisica e Meteorologia. Vol. IV, No. 4 /5 (1956)

    Google Scholar 

  142. PICCARDI, G. und E. BARBOLANI DI MONTAUTO Effetto di una Schermatura Metallica Sull’ Aqua in Riposo ed in Movimento. Tecnica Italiana. Jahrg.22, Neue Serie XII, No. 1, (1957)

    Google Scholar 

  143. PICCARDI, G., E. BARBOLANI DI MONTAUTO und F. MOSETTI Il Test P e le sue Fluttuazioni. Tecnica Italiana. Jahrg.22, Neue Serie XII, No. 1, (1957)

    Google Scholar 

  144. PIERCE, W.D. A new interpretation of the relationships of temperature and humidity to insect development. J.Agric.Res.., pp. 1183–1191 (1916)

    Google Scholar 

  145. POLSTER, H. Die physiologischen Grundlagen der Stofferzeugung im Walde. Bayr.Landw.Verlag, München (1950)

    Google Scholar 

  146. RAU, P. Rhythmic periodicity and synchronous flashing in the Firefly, Photinus pyralis with notes on Photurus pennsylvanicus. Ecol.j (1), pp.7–11 (1932)

    Google Scholar 

  147. REITER, R. Einige Ergebnisse eineinhalbjähriger luftelektrisch-bioklimatischer Untersuchungen. Arch.Physikalische Therapie, Jahrg.3, H. 4, pp. 216–233 (1951)

    Google Scholar 

  148. REITER, R.Luftelektrische Elemente als Indikatoren für biotrope Wetterlagen. Ärztliche Forschung, Jahrg. V., H. 12 pp. 490–500 (1951)

    Google Scholar 

  149. REITER, R. Ein einfaches, universelles Gerät für luftelektrische Messungen und seine Anwendungsmöglichkeiten. Geofisica pura e applicata, Milano, Vol. XX. (1951)

    Google Scholar 

  150. REITER, R. Bio-meteorologische Indikatoren von großräumiger und prognostischer Bedeutung. Ber.dtsch.Wetterd. US-Zone. No. 35, pp. 235–253 (1952)

    Google Scholar 

  151. REITER, R. Beziehungen zwischen Sonneneruptionen, Wetterablauf und Reaktionen des Menschen. Angew.Meteorologie. Bd.1, H. 10, pp. 551–586 (1953)

    Google Scholar 

  152. REITER, R. Die Bedeutung extrem langwelliger elektromagnetischer Strahlungen in der Bioklimatologie. Strahlentherapie. Bd. 89, H.4, pp.628–633 (1953)

    Google Scholar 

  153. REITER, R. Synoptisch-Luftelektrische Daueruntersuchungen im Hochgebirge im Dienste der Meteorologie. Geofisica pura e applicata, Milano. Vol. 28, pp. 223–245

    Google Scholar 

  154. REITER, R. Gibt es einen direkten Kausalzusammenhang zwischen raschen elektrischen oder elektromagnetischen Feldänderungen und biometeorologischen Reaktionen? Med.Meteor.H.No. 9, pp. 35–39 (1954)

    Google Scholar 

  155. REITER, R. Nachweis der biologischen Wirksamkeit elektrischer Wechselfelder niedriger Frequenz. Naturwissenschaften. 41, H. 1, pp. 22–23 (1954)

    Google Scholar 

  156. REITER, R. Einflüsse meteorologischer Feinvorgänge auf das Verhalten luftelektrischer Größen in verschiedenen Höhenstufen. Teil I u. Teil II. Meteor.Rundschau. Jahrg.8, H. 7 /8, pp. 127–133, H.9/10, pp.148–165 (1955)

    Google Scholar 

  157. ROBERTSON, A.G. The nocturnal activity of Craneflies (Tipulinae) as indicated by captures in a light trap at Rothamsted. J.Anim.Ecol. 8 (2), pp. 300–322 (1939)

    Google Scholar 

  158. ROWAN, W. On photoperiodism, reproductive periodicity and annual migration of birds and certain fishes. Proc.Boston.Soc.Nat.Hist. 38, pp. 147–189 (1926)

    Google Scholar 

  159. SCHMEER, H. Messung der Luftionenkonzentration und Bau der hierzu notwendigen Geräte. Diplom-Arbeit der T.H. München, (1958)

    Google Scholar 

  160. SCHUA, L. Der Einfluß des Wetters auf das Verhalten der Honigbienen. Verhand.Dtsch.Zool.Narburg. pp.183–186, Leipzig (1950)

    Google Scholar 

  161. SCHUA, L. Untersuchungen über den Einfluß meteorologischer Elemente auf das Verhalten der Honigbienen (Apis mellifica). Z.vergl.Physiol. Bd. 34, pp. 258–277 (1952)

    Google Scholar 

  162. SCHWABE, W.W. Effects of Photoperiodic Treatment on Stomach movement. Nature. Lond. 169, No. 43 (2), pp. 1053–1054 (1952)

    Google Scholar 

  163. SCHWABE, W.W. Photoperiodic Cycles of Lengths differing from 24 Hours in Relation to Endogenous Rhythms. Physiologia Plantarum Vol. 8, pp. 263–278 (1955)

    Google Scholar 

  164. SCOTT, W.N. An experimental analysis of the factors governing the hour of emergence of adult insects from their pupae. Trans.R.Ent.Soc.Lond.85, pp.303–328(1936)

    Google Scholar 

  165. SIKSNA, R. Variations of Large-Ions in Atmospheric Air during disturbed weather conditions. Arkiv.Geofysik. Bd. 1, No. 10, pp. 237–246 (1950)

    Google Scholar 

  166. SIKSNA, R. Mobility spectra of Ions formed in a room by negative Corona discharge. Arkiv.Geofysik. Bd. 5, No. 26, pp. 545–564 (1952)

    Google Scholar 

  167. SIKSNA, R. Measurement of Large-Ions in the Atmospheric Air at Uppsala. Arkiv.Geofysik. Bd.1, No.18, pp.483–518 (1952)

    Google Scholar 

  168. SIKSNA, R. Mobility Spectra of Ions formed by Positive Corona Discharge. Arkiv.Geofysik. Bd.6, No.28, pp.279–286 (1953)

    Google Scholar 

  169. SIKSNA, R. Mobility of small atmospheric ions in the Air from the Ground at Uppsala. J.Atmosph.Terrestrial Phys. Vol. 4, pp. 106–111 (1953)

    Google Scholar 

  170. SOLOMON, M.E. Dynamics of Insect Populations. Annual Rev.Ent. Vol. 2, pp. 121–142 (1957)

    Google Scholar 

  171. STROYAN, H.L.G. The Identification of Aphids of Economic Importance. Plant Pathology. Vol.1, No.1,2,3 and 4. pp.9–14, 42–48, 92–99, 123–129 (1952)

    Google Scholar 

  172. SZYMANSKI, J.S. Eine Methode zur Untersuchung der Ruhe und Aktivitätsperioden bei Tieren. Pflüg.Arch.Ges.Physio1.158, pp.343–385 (1914)

    Google Scholar 

  173. SZYMANSKI, J.S. Aktivität und Ruhe bei Tieren und Menschen. Z.allg.Physiol. 18 (1920)

    Google Scholar 

  174. TAYLOR, L.R. An Improved Suction Trap for Insects. Ann.Appl.Biol. 38, No.3, pp.582–591 (1951)

    Google Scholar 

  175. TAYLOR, L.R. und H. KALMUS Dawn and Dusk Flight of Drosophila subobscura Collin. Nature. Vol. 174, pp. 221 (1954)

    Google Scholar 

  176. TAYLOR, L.R. Temperature Relations of Teneral Development and Behaviour in Aphis fabae Scop. J.Exp.Biol. Vol.34, No.2, pp.189–208 (1957)

    Google Scholar 

  177. TAYLOR, L.R. Aphid Dispersal and Diurnal Periodicity. Proc.Linnean.Soc.Lond. Session: 169, Pts: 1–2, pp. 67–73 (1958)

    Google Scholar 

  178. TODD, G.W. Electric heat in Schools can improve attendance record. Control of positive ions in electrically heated air has been found to reduce sinus and respiratory ills. “Electrical West” Vol. 115, No. 4, pp. 1–3 (1955)

    Google Scholar 

  179. UNDT, W.Indirekte Wetterwirkungen auf den Menschen dargestellt am Verhalten von Wasserkeimzahlen und Insekten. Med.Meteor.H. No. 13, pp. 49–56 (1958)

    Google Scholar 

  180. UNDT, W. Probleme und Ergebnisse der Medizin-Meteorologie. “Wetter und Leben”. Jahrg.11, H. 11–12, pp. 167–173 (1959)

    Google Scholar 

  181. UNGER, K. und H.J. MÜLLER Studien für die Bedeutung von Witterung und Mikroklima für den Massenwechsel der Schwarzen Bohnenlaus. Angew.Meteor.Bd.1, H. 9, pp. 257–275 (1953)

    Google Scholar 

  182. VASILIEV, L.L. The physiological Mechanism of Aeroions. Amer. Journ. Phys. Med., 39, pp. 124–128 (1960)

    Google Scholar 

  183. WELSH, J.H. Diurnal Rhythms. Quart.Rev.Biol. 13 (2), pp. 123–139 (1938)

    Google Scholar 

  184. WELLINGTON, W.G. The effects of variations in Atmospheric pressure upon insects. Canad. J.Res. D. 24, pp. 51–70 (1946)

    Google Scholar 

  185. WELLINGTON, W.G. The effects of temperature and-moisture upon the behaviour of the spruce budworm Choristoneura fumiferana Clemens (Lepidoptera: Tortricidae).II. The responses of larvae to gradients of evaporation. Sci.Agric. 29, pp. 216–229 (1949)

    Google Scholar 

  186. WILLIAMS, C.B. Coordinated Rhythm in Insects, with a record of sound production in an Aphid. Entomologist. 55–56, 173–176 (1922)

    Google Scholar 

  187. WILLIAMS, C.B. The use of Logarithms in the Interpretation of Certain Entomological Problems. Ann.Appl.Biol. Vol. 24, No. 2, pp. 404–414 (1937)

    Google Scholar 

  188. WINSOR, T. und J.C. BECKETT Biologic Effects of Ionized Air in Man. Amer.J.Physical Med.Vol.37 No. 2, pp. 83–89 (1958)

    Google Scholar 

  189. ZECH, E. Die Flugzeiten des Apfelwicklers im Jahre 1954 und der Flugverlauf während der Abende und Nächte. Nachrichtenbl.Dtsch.Pfl.Schutzdienst, Neue Folge 9, H. 2, pp. 29–33 (1955)

    Google Scholar 

  190. ZOEBELEIN, G. Versuche zur Feststellung des Honigtauertrages von Fichtenbeständen mit Hilfe von Waldameisen. Z.angew.Ent. 36, pp. 358–362 (1954)

    Google Scholar 

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Haine, E. (1961). Literaturverzeichnis. In: Nehmen luftelektrische Faktoren Einfluß auf die Aktivitätswechsel kleiner Insekten, insbesondere auf die Häutungs- und Reproduktionszahlen von Blattläusen?. Forschungsberichte des Landes Nordrhein-Westfalen, vol 974. VS Verlag für Sozialwissenschaften, Wiesbaden. https://doi.org/10.1007/978-3-663-05534-1_7

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