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1

Dorn, U., and S. Enders. "Berechnung der Solubilisierung in Mizellen." Chemie Ingenieur Technik 81, no. 8 (August 2009): 1078–79. http://dx.doi.org/10.1002/cite.200950030.

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Gröschel, André H., and Andreas Walther. "Blockcopolymer-Mizellen mit inversen Morphologien." Angewandte Chemie 129, no. 37 (July 5, 2017): 11136–38. http://dx.doi.org/10.1002/ange.201703765.

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3

Israel, Gunter, and Hans-Joachim Timpe. "Photoinduzierter Elektronentransfer zwischen Diazoniumsalzen und aromatischen Kohlenwasserstoffen in kationischen Mizellen." Zeitschrift für Chemie 24, no. 6 (August 31, 2010): 214. http://dx.doi.org/10.1002/zfch.19840240610.

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4

Enders, S., U. Dorn, and S. Brekow. "Theoretische und experimentelle Untersuchungen der Solubilisierung von Pharmazeutika in Mizellen." Chemie Ingenieur Technik 84, no. 8 (July 25, 2012): 1411–12. http://dx.doi.org/10.1002/cite.201250368.

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5

Pfüller, Uwe, and P. J. Worsfold. "Mizellen - vesikel - mikroemulsionen. Tensidassoziate und ihre anwendung in analytik und biochemie." Analytica Chimica Acta 218 (1989): 351–52. http://dx.doi.org/10.1016/s0003-2670(00)80314-1.

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6

Frey, Lukas, Nils-Alexander Lakomek, Roland Riek, and Stefan Bibow. "Mizellen, Bizellen und Nanoscheiben: Einfluss von membranimitierenden Umgebungen auf die Membranproteindynamik." Angewandte Chemie 129, no. 1 (November 24, 2016): 388–91. http://dx.doi.org/10.1002/ange.201608246.

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7

Schomäcker, Reinhard, Jörg Schmidt, Gregor Schinckel, and Lourdes Rodriguez-Hernandez. "68. Herstellung von Nanopartikeln mit Hilfe von Mikroemulsionen und inversen Mizellen." Chemie Ingenieur Technik 70, no. 9 (September 1998): 1114. http://dx.doi.org/10.1002/cite.330700972.

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8

Hoffmann, H., and W. Ulbricht. "Zur Solubilisation von Additiven in Mizellen / On the Solubilization of Additives into Mieeles." Tenside Surfactants Detergents 24, no. 1 (January 1, 1987): 23–31. http://dx.doi.org/10.1515/tsd-1987-240111.

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9

Ortmann, Wolfgang, and Egon Fanghänel. "Photochemische Primärprozesse von Xanthenfarbstoffen; Erythrosin als Sonde zur Bestimmung der mittleren Aggregationszahl kationischer Mizellen." Zeitschrift für Chemie 28, no. 6 (August 31, 2010): 221–22. http://dx.doi.org/10.1002/zfch.19880280613.

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Ortmann, Wolfgang, and Egon Fanghänel. "Photochemische Primärprozesse von Xanthenfarbstoffen; Zur Wechselwirkung von Sulfobetain-Mizellen mit anionischen und kationischen Xanthenfarbstoffen." Zeitschrift für Chemie 29, no. 7 (August 31, 2010): 261–62. http://dx.doi.org/10.1002/zfch.19890290720.

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Ortmann, Wolfgang, Viera Pazitkova, and Egon Fanghänel. "Photochemische Primärprozesse von Xanthenfarbstoffen; Zum Einfluß ionischer Mizellen auf die Kinetik der Triplettlöschung durch Cu+- und SCN−-Ionen." Zeitschrift für Chemie 27, no. 5 (August 31, 2010): 177. http://dx.doi.org/10.1002/zfch.19870270509.

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12

Ortmann, W., I. Wassiljuk, and E. Fanghänel. "Fotochemische Primärprozesse von Xanthenfarbstoffen. X. Zum Einfluß ionischer Mizellen auf die Löschung der Fluoreszenz von Xanthenfarbstoffen durch Diazoniumionen." Journal für Praktische Chemie 331, no. 2 (1989): 331–41. http://dx.doi.org/10.1002/prac.19893310220.

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13

Ortmann, W., and E. Fanghänel. "Fotochemische Primärprozesse von Xanthenfarbstoffen. VIII. Zum Einfluß von gemischten Mizellen auf die fotochemischen Primärprozesse von Selenopyronin und Erythrosin sowie die sensibilisierte Diazoniumsalzfotolyse." Journal für Praktische Chemie 329, no. 6 (1987): 1015–24. http://dx.doi.org/10.1002/prac.19873290609.

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14

Hoffmann, H., and A. Stürmer. "Zur Solubilisation von Siloxanen und schwach polaren organischen Additiven in stäbchenförmige Mizellen/ Solubilization of Siloxanes and Weakly Polar Organic Additives into Rodlike Micelles." Tenside Surfactants Detergents 30, no. 5 (September 1, 1993): 335–41. http://dx.doi.org/10.1515/tsd-1993-300516.

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15

Wheeler, Terry A., and Mary Beverley-Burton. "Systematics of Onchocleidus Mueller, 1936 (Monogenea: Ancyrocephalidae): generic revision." Canadian Journal of Zoology 67, no. 1 (January 1, 1989): 136–57. http://dx.doi.org/10.1139/z89-020.

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The genus Onchocleidus Mueller, 1936 (Monogenea: Ancyrocephalidae) is revised. Diagnostic characters for the genus include a dextral vaginal opening, a spiral filament encircling the penis, and dorsal hamuli with reduced deep roots. Haplocleidus Mueller, 1937 and Pterocleidus Mueller, 1937 are declared junior synonyms of Onchocleidus. Onchocleidus, as presently recognized, contains 24 valid species: O. ferox (Mueller, 1934) Mueller, 1936 (type species); O. acer Mueller, 1936; Onchocleidus affinis (Mueller, 1937) n.comb.; O. attenuatus (Mizelle, 1941) Beverley-Burton, 1984; Onchocleidus chaenobryttus (Mizelle and Seamster, 1939) n.comb.; O. chautauquaensis (Mueller, 1938) Murith and Beverley-Burton, 1984; O. chrysops (Mizelle and Klucka, 1953) Beverley-Burton, 1984; O. cyanellus Mizelle, 1938; O. dispar Mueller, 1936; O. distinctus Mizelle, 1936; Onchocleidus doloresae (Hargis, 1952) n.comb.; Onchocleidus flieri (Putz and Hoffman, 1966) n.comb.; Onchocleidus furcatus (Mueller, 1937) n.comb.; Onchocleidus grandis (Mizelle and Seamster, 1939) n.comb.; O. interruptus Mizelle, 1936; Onchocleidus macropterus (Harrises, 1962) n.comb.; O. mimus Mueller, 1936; Onchocleidus miniatus (Mizelle and Jaskoski, 1942) n.comb.; Onchocleidus nactus (Mayes and Johnson, 1975) n.comb.; Onchocleidus parvicirrus (Mizelle and Jaskoski, 1942) n.comb.; O. principalis Mizelle, 1936; O. similis Mueller, 1936; Onchocleidus tuberculatus (Allison and Rogers, 1970) Cloutman, 1988; and Onchocleidus variabilis (Mizelle and Cronin, 1943) n.comb. Six species (O. acuminatus Mizelle, 1936; Pterocleidus biramosus Mueller, 1937; O. helicis Mueller, 1936; O. perdix Mueller, 1937; O. spiralis Mueller, 1937; and Urocleidus wadei Seamster, 1948) are considered species inquirendae. A key to the species of Onchocleidus is included.
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16

Karaborni, S., and J. P. O’Connell. "Molecular Dynamics Simulations of Model Chain Molecules and Aggregates Including Surfactants and Micelles / Molekulardynamische Simulationen an kettenförmigen Molekülen und Aggregaten als Modelle für Tenside und Mizellen." Tenside Surfactants Detergents 30, no. 4 (July 1, 1993): 235–42. http://dx.doi.org/10.1515/tsd-1993-300404.

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17

Miller, Alyce. "Brett Mizelle, Pig." Humanimalia 4, no. 1 (September 14, 2012): 164–66. http://dx.doi.org/10.52537/humanimalia.10042.

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18

Fanghänel, E., and W. Ortmann. "1,2,3-Triazabutadiene XXI [1]. Zur Bestimmung des Oberflächenpotentials und des relativen pH-Wertes in der Sternregion anionischer Mizellen unter Verwendung von 1-(4′-Chlorphenyl)-3-(3-methylbenzthiazolinyliden-(2))-triazen als Sonde." Journal für Praktische Chemie 331, no. 5 (1989): 721–25. http://dx.doi.org/10.1002/prac.19893310503.

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19

Schwenke, K. D. "U. Pfüller: Mizellen — Vesikel — Mikroemulsionen. Tensidassoziate und ihre Anwendung in Analytik und Biochemie. 264 Seiten, 45 Abb., 28 Tab. VEB Verlag Volk und Gesundheit, Berlin 1986. Preis: 95,— M (DDR); 110,— DM (Ausland)." Food / Nahrung 32, no. 10 (1988): 938. http://dx.doi.org/10.1002/food.19880321003.

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20

Fuhrhop, J. "Tensidanwendungen: bedingt brauchbar: Mizellen - Vesikel Mikroemulsionen. Tensidassoziate und ihre Anwendung in Analytik und Biochemie. Von U. Pfüller. Springer-Verlag, Berlin - Heidelberg - New York - London - Paris - Tokyo 1986. 287 S., 45 Abb., 31 Tab." Nachrichten aus Chemie, Technik und Laboratorium 36, no. 5 (May 1988): 526–31. http://dx.doi.org/10.1002/nadc.19880360512.

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21

Verma, C., A. Chaudhary, and H. S. Singh. "Morphology and molecular analysis of Mizelleus indicus Jain () and M. longicirrus (Tripathi, ) Venkatanarasaiah & Kulkarni 1981 (Monogenea, Dactylogyridae) from the freshwater shark Wallago attu in the Ganga River, India." Journal of Helminthology 90, no. 5 (September 16, 2015): 596–606. http://dx.doi.org/10.1017/s0022149x15000814.

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AbstractSpecies of the genus Mizelleus Jain (1957) have always been controversial regarding identification and validity. Members of this group of species differ from each other in the morphology of their hard parts, which can be misleading and subject to differing interpretation among scientists. Therefore, the main objective of present study was to identify Mizelleus worms by morphological methods and molecular analysis on the basis of 18S ribosomal DNA to clarify their phylogenetic status. In this study, specimens were isolated from the gill filaments of Wallago attu (Siluriformes) and studied morphologically. In accordance with morphological characters, the specimens were found to be Mizelleus indicus and Mizelleus longicirrus. Partial sequences of nuclear 18S rDNA of these two species were amplified. The results confirm the phylogenetic relationships and taxonomic validation of M. indicus and M. longicirrus in India.
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22

Murith, D., and M. Beverley-Burton. "Salsuginus Beverley-Burton, 1984 (Monogenea: Ancyrocephalidae) from Cyprinodontoidei (Atheriniformes) in North America with descriptions of Salsuginus angularis (Mueller, 1934) Beverley-Burton, 1984 from Fundulus diaphanus and Salsuginus heterocliti n. sp. from F. heteroclitus." Canadian Journal of Zoology 63, no. 3 (March 1, 1985): 703–14. http://dx.doi.org/10.1139/z85-100.

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Salsuginus Beverley-Burton, 1984 has been proposed for ancyrocephalid monogeneans found on North American Cyprinodontoidei (Atheriniformes). The genus is distinguished by the following characteristics: penis sclerotized, tubular, spiralling to form single coil; accessory piece with median groove to accommodate shaft of penis, distal point heavily sclerotized; dorsal and ventral hamuli similar in shape with distinct superficial and deep roots and curved blade; dorsal and ventral transverse bars bandlike, bowed posteriorly with posterior notch at extremities of each: larval hooks of similar shape and size with well-developed sickle bearing thumblike projection. Salsuginus angularis (Mueller, 1934) Beverley-Burton, 1984, the type species, is redescribed from the present material found on Fundulus diaphanus (Lesueur) in Ontario. Salsuginus umbraensis (Mizelle, 1938) n. comb., S. funudulus (Mizelle, 1940) Beverley-Burton. 1984. S. seculus (Mizelle and Arcadi, 1945) n. comb. and S. bahamianus (Hanek and Fernando, 1972) n. comb. are transferred from Urocleidus Mueller, 1934; S. spirae (Williams, 1980) n. comb. is transferred from Ancyrocephalus Creplin, 1839. Material found on F. heteroclitus taken in New Brunswick is described as S. heterocliti n. sp. Evolutionary aspects of Salsuginus spp. are briefly discussed and notes on the identification of species parasitizing Fundulus spp. are presented. Previous records of Salsuginus spp. are listed.
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23

Paul, N., T. Hamerla, R. Schomäcker, and M. Kraume. "Stofftransport in mizellaren Mehrphasenreaktionen." Chemie Ingenieur Technik 85, no. 9 (August 23, 2013): 1459. http://dx.doi.org/10.1002/cite.201250614.

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24

Paul, N., T. Hamerla, T. Pogrzeba, R. Schomäcker, and M. Kraume. "Transportphänomene in mizellaren dreiphasigen Reaktionssystemen." Chemie Ingenieur Technik 86, no. 9 (August 28, 2014): 1528. http://dx.doi.org/10.1002/cite.201450310.

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25

Acosta, Aline Angelina, Jamile Queiroz, Heleno Brandão, Edmir Daniel Carvalho, and Reinaldo Jose da Silva. "Helminths of Steindachnerina insculptain two distinct stretches of the Taquari River, state of São Paulo, Brazil." Revista Brasileira de Parasitologia Veterinária 22, no. 4 (December 2013): 539–47. http://dx.doi.org/10.1590/s1984-29612013000400014.

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The purpose of this study was to evaluate the helminth fauna of Steindachnerina insculpta in the Taquari River, a tributary of the Jurumirim reservoir in the state of São Paulo, and to investigate whether some helminth species may act as a bioindicator of environmental impact. The host fish sample was composed of 60 specimens, with 30 individuals sampled in a lotic stretch and 30 in a lentic stretch. The following were found: the monogeneans Anacanthoroides mizelli, Diaphorocleidus kabatai, Urocleidoides sp. and Euryhaliotrema chaoi; the digenean Sphincterodiplostomum musculosum and unidentified metacercariae; the nematode Travnema travnema and unidentified larvae; and the acanthocephalan Gorytocephalus plecostomorum. The total prevalence of monogeneans (z = 3.14; p = 0.002) and A. mizelli (z = 3.879; p ≤ 0.001), as well as the mean abundance of total monogeneans (U = 642.0; p ≤ 0.001) and A. mizelli (U = 623.5; p ≤ 0.001), were higher in the lentic stretch. Steindachnerina insculpta and its monogeneans comprise a potential group that could be used to investigate environmental impact, as demonstrated in this study.
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26

Weitbrecht, N., M. Kratzat, S. Santoso, and R. Schomäcker. "Kinetik rhodiumkatalysierter Hydrierungen in mizellaren Lösungen." Chemie Ingenieur Technik 74, no. 5 (May 2002): 561–62. http://dx.doi.org/10.1002/1522-2640(200205)74:5<561::aid-cite1111561>3.0.co;2-#.

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Schmidt, Marcel, Tobias Pogrezba, Dmitrij Stehl, René Sachse, Michael Schwarze, Regine von Klitzing, and Reinhard Schomäcker. "Verteilungsgleichgewichte von Liganden in mizellaren Lösungsmittelsystemen." Chemie Ingenieur Technik 88, no. 1-2 (November 19, 2015): 119–27. http://dx.doi.org/10.1002/cite.201500125.

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28

DOMINGUES, MARCUS V., and WALTER A. BOEGER. "Phylogeny and revision of Diplectanidae Monticelli, 1903 (Platyhelminthes: Monogenoidea)." Zootaxa 1698, no. 1 (February 5, 2008): 1. http://dx.doi.org/10.11646/zootaxa.1698.1.1.

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A hypothesis on the phylogenetic relationships of diplectanid genera is proposed based on 36 morphological characters using cladistic methods. The analysis supports two subfamilies, Diplectaninae Monticelli, 1903 and Lamellodiscinae Oliver, 1969, and the proposal of two new subfamilies: Nasobranchitrematinae n. subfam., monotypic, composed by Nasobranchitrema Yamaguti, 1965; and Pseudomurraytrematoidinae n. subfam. comprising Pseudomurraytrematoides n.gen. Murraytrematoides pricei (Caballero, Bravo-Hollis & Grocott, 1955) is transferred to Pseudomurraytrematoides as P. pricei comb. n. Lamellodiscinae is supported by two synapomorphies and comprises Calydiscoides, Protolamellodiscus, Lamellodiscus, Telegamatrix and Furnestinia. The analysis indicates that Lamellodiscus is polyphyletic. Diplectaninae comprises Paradiplectanum n. gen., Rhabdosynochus, Pseudodiplectanum, Monoplectanum, Latericaecum, Pseudolamellodiscus, Acleotrema, Diplectanum, Lobotrema, Murraytrema, Lepidotrema, Spinomatrix, Rhamnocercus, Rhamnocercoides, Oliveriplectanum n. gen., Murraytrematoides, Anoplectanum, Laticola, Pseudorhabdosynochus and Echinoplectanum. Rhabdosynochinae Oliver, 1987; Rhamnocercinae Monaco, Wood & Mizelle, 1954; and Murraytrematoidinae Oliver, 1982 are considered junior synonyms of Diplectaninae. Diplectanum is restricted to species that present (1) male copulatory organ with nested tubes; (2) accessory copulatory organ; (3) prostatic reservoir separated into three zones; (4) ventral and dorsal squamodiscs. Based on the analysis, Cornutohaptor Mendonza-Franco, Violante-González & Vidal-Martinez, 2006 is a junior synonym of Rhabdosynochus Mizelle & Blatz, 1941. Diplectanum cazauxi Oliver & Paperna, 1984 is transferred to Latericaecum as L. cazauxi (Oliver & Paperna, 1984) comb. n. Diplectanocotyla, Lamellodiscinae and Diplectaninae are considered sedis mutabilis.
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29

Cone, D. K., and A. O. Dechtiar. "On Gyrodactylus katharineri Malmberg, 1964, G. lotae Gussev, 1953, and G. lucii Kulakovskaya, 1952 from host fishes in North America." Canadian Journal of Zoology 64, no. 3 (March 1, 1986): 637–39. http://dx.doi.org/10.1139/z86-094.

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Gyrodactylus katharineri Malmberg, 1964, G. lotae Gussev, 1953, and G. lucii Kulakovskaya, 1952 are reported for the first time from North American host fishes (Cyprinus carpio, Lota lota, and Esox lucius, respectively). The new material is described. Gyrodactylus katharineri is an introduced species that apparently arrived along with host shipments brought to North America from Europe during the last century. Gyrodactylus mizellei Kritsky and Leiby, 1971 may be a synonym of G. katharineri. Gyrodactylus lotae and G. lucii are endemic species with natural ranges that extend throughout freshwaters of Eurasia and North America.
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30

Wille, S., M. Schwarze, L. Mokrushina, I. Smirnova, R. Schomäcker, and W. Arlt. "Reaktionen in mizellaren Systemen: Vorhersage von Verteilungskoeffizienten." Chemie Ingenieur Technik 81, no. 8 (August 2009): 1069–70. http://dx.doi.org/10.1002/cite.200950129.

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31

Schwarze, M., and R. Schomäcker. "Homogen katalysierte stereoselektive Hydrierreaktion im mizellaren Medium." Chemie Ingenieur Technik 78, no. 7 (July 2006): 931–36. http://dx.doi.org/10.1002/cite.200600038.

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32

Ritter, E., S. Jakobtorweihen, and I. Smirnova. "Reaktivextraktion voncis-cis-Muconsäure in mizellaren Systemen." Chemie Ingenieur Technik 86, no. 9 (August 28, 2014): 1506. http://dx.doi.org/10.1002/cite.201450473.

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33

Ritter, E., and I. Smirnova. "Kontinuierliche extraktive Biokatalyse in wässrigen mizellaren Zweiphasensystemen." Chemie Ingenieur Technik 88, no. 9 (August 29, 2016): 1331. http://dx.doi.org/10.1002/cite.201650086.

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Smirnova, I., M. Buggert, and L. Mokrushina. "Anwendung von mizellaren Lösungen in Life Science Engineering." Chemie Ingenieur Technik 79, no. 9 (September 2007): 1379. http://dx.doi.org/10.1002/cite.200750402.

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35

Domingues, Marcus V., and Walter A. Boeger. "Revision and phylogeny of Rhamnocercinae Monaco, Wood et Mizelle, 1954 (Monogenoidea: Diplectanidae)." Folia Parasitologica 53, no. 2 (June 1, 2006): 107–16. http://dx.doi.org/10.14411/fp.2006.014.

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36

Beverley-Burton, Mary, Lorraine Bruce-Allen, Danièle Murith, and A. O. Dechtiar. "Ancyrocephalids (Monogenea) from Morone spp. (Percichthyidae) in North America, including redescriptions of Onchocleidus mimus Mueller, 1936 and O. interruptus Mizelle, 1936." Canadian Journal of Zoology 64, no. 4 (April 1, 1986): 1001–9. http://dx.doi.org/10.1139/z86-150.

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The ancyrocephalids (Monogenea) parasitizing the temperate basses (Percichthyidae) of North America are reviewed. Onchocleidus mimus Mueller, 1936 is redescribed from material found on the gills of Morone chrysops (white bass) taken in Ontario. Onchocleidus rogersi (Hanek and Fernando, 1972) Beverley-Burton, 1984 is declared a synonym of O. mimus. Onchocleidus interruptus Mizelle, 1936 is redescribed from paratype material (14 specimens) found on M. mississippiensis (yellow bass) taken in Illinois. Additional morphometric and morphologic data for O. chrysops (Mizelle and Klucka, 1953) Beverley-Burton, 1984 are provided. Cleidodiscus sp. of S. Tedla and C. H. Fernando and "Tetraonchinae" of C. J. Sindermann are considered to be referrable to the genus Onchocleidus sensu Beverley-Burton. Following a study of type specimens of Aristocleidus hastatus Mueller, 1936 from M. saxatilis (striped bass) taken in Florida, the genus and species are recognised as valid. However, there is need for a revision of the generic diagnosis when new material becomes available as the morphology of the male copulatory complex appears to be distinctive and of a "type" as yet undescribed. Urocleidus nactus Mayes and Johnson, 1975 found on M. americana (white perch) taken in coastal waters of North Carolina is transferred to Pterocleidus Mueller, 1937 as Pterocleidus nactus (Mayes and Johnson, 1975) n. comb. The possibility that ancyrocephalids found on M. americana taken in estuarine waters of the Hudson River by V. M. Liguori and identified as U. biramosus (Mueller, 1937) are conspecific with P. nactus is discussed. Ancyrocephalids possessing the spiral filament penis type occur almost exclusively on fishes of the Percoidae. Possible evolutionary pathways involving ancestral dactylogyridans (sensu Beverley-Burton) parasitizing estuarine Percichthyidae or freshwater Centrarchidae are presented with particular reference to the ancryrocephalids found on Morone spp.
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37

Zica, É., V. Abdallah, R. Azevedo, A. Wunderlich, E. Carvalho, and R. Silva. "Unilatus unilatus Mizelle & Kritsky, 1967 (Monogenea, Ancyrocephalinae) in Hypostomus spp. (Siluriformes, Loricariidae) from the Chavantes reservoir, São Paulo State, Brazil." Helminthologia 49, no. 2 (June 1, 2012): 87–91. http://dx.doi.org/10.2478/s11687-012-0018-x.

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AbstractIn this paper, the occurrence and new morphological data of Unilatus unilatus Mizelle et Kritsky, 1967 from the gills of Hypostomus strigaticeps (Regan, 1907), Hypostomus regani (Ihering, 1905), and Hypostomus iheringii (Regan, 1908) from the Chavantes reservoir, São Paulo State, Brazil are reported. Unilatus unilatus from this reservoir presents differences in relation to the holotype previously described such as, eggs with no bifid or trifid filament and a rounded termination, anterior bar slightly curved with a posterior projection, and posterior bar which may present three shapes. This is the first record of U. unilatus in southeastern Brazil outside the Amazon River Basin, with H. strigaticeps, H. regani and H. iheringii as new hosts.
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38

Steele, Scott. "Jason S. Mizell, MD, FACS, FASCRS." Clinics in Colon and Rectal Surgery 30, no. 01 (December 28, 2016): 001–2. http://dx.doi.org/10.1055/s-0036-1593435.

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39

Spurny, J. "Darstellung der Fällungsgrenze eines schwerlöslichen Tensidsalzes in mizellaren Lösungen." Zeitschrift für Physikalische Chemie 158, Part_1 (January 1988): 125–29. http://dx.doi.org/10.1524/zpch.1988.158.part_1.125.

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Israel, Gunter, and Igor Danilov. "Bestimmung von spezifischen Geschwindigkeitskonstanten der Fluoreszenzlöschung in mizellaren Lösungen." Zeitschrift für Chemie 24, no. 11 (August 31, 2010): 421–22. http://dx.doi.org/10.1002/zfch.19840241122.

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41

Schwarze, M., M. Djennad, A. Rost, M. Buggert, W. Arlt, and R. Schomäcker. "Einfluss der Substratverteilung auf Reaktionsprozesse in wässrig-mizellaren Medien." Chemie Ingenieur Technik 78, no. 9 (September 2006): 1277. http://dx.doi.org/10.1002/cite.200650241.

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Fellechner, O., and I. Smirnova. "Kontinuierliche extraktive Biokatalyse in mizellaren Zweiphasensystemen mit reaktiven Packungen." Chemie Ingenieur Technik 90, no. 9 (August 24, 2018): 1227. http://dx.doi.org/10.1002/cite.201855208.

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43

Rastogi, Pragati, and Deepmala Mishra. "Neuroanatomy of a Dactylogyrid monogenean, from gold fish Carassius auratus, Nilsson, from Meerut (U. P.), India." VOYAGER 9, no. 1 (April 15, 2018): 1–7. http://dx.doi.org/10.31995/voyager.2018v09n1.01.

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Abstract:
Chemical named 5-bromo indoxyl acetate has been used to describe the nervous system of anoviparous Dactylogyridmonogenean PellucidhaptorPrice and Mizelle (1964), a gill parasite of Carassius auratus. Central nervous system consists of paired cerebral ganglia from which anterior and posterior neuronal pathways arise. These neuronal pathways are interlinked by cross connectives and commissures. Paired dorsal, ventral and lateral nerve cords emanate from the cerebral ganglia, connected at intervals by transverse connectives. Huge arrangement of dorsal, ventral and lateral nerve cords and their innervations have been examined. Peripheral nervous system (PNS) includes innervations of the alimentary tract, reproductive organs and attachment organs (anterior adhesive areas and haptor). Both the CNS and PNS are bilaterally symmetrical, and better developed ventrally than laterally and dorsally.
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Buggert, M., L. Mokrushina, I. Smirnova, W. Arlt, and R. Schomäcker. "Verteilung organischer Substanzen in mizellaren Lösungen: Experimentelle und theoretische Untersuchung." Chemie Ingenieur Technik 78, no. 9 (September 2006): 1298. http://dx.doi.org/10.1002/cite.200650600.

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45

Spurny, J., and H. H. Kohler. "Phasenumwandlung in mizellaren L�sungen von ionogenen Tensiden und Metallionen." Monatshefte f�r Chemie Chemical Monthly 121, no. 6-7 (1990): 501–3. http://dx.doi.org/10.1007/bf00810857.

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46

Beverley-Burton, Mary. "The Taxonomic Status of Actinocleidus Mueller, 1937; Anchoradiscus Mizelle, 1941; Clavunculus Mizelle et al., 1956; Anchoradiscoides Rogers, 1967; Syncleithrium Price, 1967 and Crinicleidus n. gen.: North American Ancyrocephalids (Monogenea) with Articulating Haptoral Bars." Journal of Parasitology 72, no. 1 (February 1986): 22. http://dx.doi.org/10.2307/3281794.

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Schomäcker, R., M. Schwarze, J. Milano, and S. Jost. "Asymmetrische Hydrierungen von C-C-Doppelbindungen in mizellaren Lösungen und Mikroemulsionen." Chemie Ingenieur Technik 79, no. 9 (September 2007): 1289–90. http://dx.doi.org/10.1002/cite.200750183.

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Garcia Diez, L., and H. J. Bart. "Chirale Trennung von Phenylalanin durch selektive Komplexbildung bei der mizellaren Chromatographie." Chemie Ingenieur Technik 76, no. 9 (September 2004): 1413–14. http://dx.doi.org/10.1002/cite.200490375.

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Petzold, M., L. Böhm, and M. Kraume. "Charakterisierung des Gas/Flüssigkeits-Stofftransports in mizellaren Lösungsmittelsystemen mit mehreren Flüssigphasen." Chemie Ingenieur Technik 90, no. 9 (August 24, 2018): 1305. http://dx.doi.org/10.1002/cite.201855374.

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Welky, David. "Backwater Blues: The Mississippi Flood of 1927 in the African American Imagination by Richard M. Mizelle." Journal of Southern History 82, no. 4 (2016): 965–66. http://dx.doi.org/10.1353/soh.2016.0297.

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