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Journal articles on the topic 'Myidae'

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1

ZHANG, JUN-LONG, FENG-SHAN XU, and RUI-YU LIU. "The Myidae (Mollusca, Bivalvia) from Chinese waters with description of a new species." Zootaxa 3383, no. 1 (2012): 39. http://dx.doi.org/10.11646/zootaxa.3383.1.4.

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The present study recognizes ten species of the family Myidae from China based on a comparison with myids described from Russia, Korea, Japan, Australia, and Europe: Mya arenaria Linnaeus, 1758, Cryptomya (Cryptomya) busoensis Yokoyama, 1922, C. (Venatomya) elliptica (A. Adams, 1851), C. (V.) sinensis (Xu, 1987), Paramya recluzi (A. Adams, 1864), Tugonia (Tugonia) huanghaiensis Xu, 1987, T. (Distugonia) decurtata (A. Adams, 1851), Tugonia (Distugonia) sp., Sphenia coreanica Habe, 1951; Sphenia elongata sp. nov. is characterized by an elongate shell, straight posteroventral margin and commargin
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2

Oliver, P. Graham, Anders Hallan, P. R. Jayachandran, Philomina Joseph, V. F. Sanu, and S. Bijoy Nandan. "Taxonomy of myid bivalves from fragmented brackish-water habitats in India, with a description of a new genus Indosphenia (Myidae, Myoidea, Myidae)." ZooKeys 799 (November 28, 2018): 21–46. http://dx.doi.org/10.3897/zookeys.799.25843.

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A group of small bivalves inhabiting Indian brackish-water estuaries and lagoons (known locally as backwaters), variously assigned to Corbula, Cuspidaria, and Sphenia, are reviewed and, based on shell characters, shown to be congeneric. Molecular (COI) and morphological data indicate that this group belongs to the family Myidae. Furthermore, the combined data suggest that these Indian myids are a sister taxon of the genus Sphenia. The Indian material studied herein exhibits a functional morphology typical of infaunal bivalves, whereas typical Sphenia are nestling and epibyssate. A new genus, I
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3

Oliver, P. Graham, Anders Hallan, P.R. Jayachandran, Philomina Joseph, V.F. Sanu, and Nandan S. Bijoy. "Taxonomy of myid bivalves from fragmented brackish-water habitats in India, with a description of a new genus Indosphenia (Myidae, Myoidea, Myidae)." ZooKeys 799 (November 28, 2018): 21–46. https://doi.org/10.3897/zookeys.799.25843.

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A group of small bivalves inhabiting Indian brackish-water estuaries and lagoons (known locally as backwaters), variously assigned to Corbula, Cuspidaria, and Sphenia, are reviewed and, based on shell characters, shown to be congeneric. Molecular (COI) and morphological data indicate that this group belongs to the family Myidae. Furthermore, the combined data suggest that these Indian myids are a sister taxon of the genus Sphenia. The Indian material studied herein exhibits a functional morphology typical of infaunal bivalves, whereas typical Sphenia are nestling and epibyssate. A new genus, I
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4

Zhang, Jun-Long, Feng-Shan Xu, and Rui-Yu Liu. "The Myidae (Mollusca, Bivalvia) from Chinese waters with description of a new species." Zootaxa 3383 (December 31, 2012): 39–60. https://doi.org/10.5281/zenodo.281734.

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5

Lamprell, Kevin, and John Stanisic. "Myidae from Australian waters (Mollusca, Bivalvia)." Molluscan Research 19, no. 1 (1998): 1–10. http://dx.doi.org/10.1080/13235818.1998.10673705.

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6

Flyachinskaya, L.P., and P.A. Lezin. "Embryonic and larval development of the soft-shell clam Mya arenaria L., 1758 (Heterodonta: Myidae) in the White Sea." Invertebrate Zoology 14, no. 1 (2017): 14–20. https://doi.org/10.15298/invertzool.14.1.03.

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Flyachinskaya, L.P., Lezin, P.A. (2017): Embryonic and larval development of the soft-shell clam Mya arenaria L., 1758 (Heterodonta: Myidae) in the White Sea. Invertebrate Zoology 14 (1): 14-20, DOI: 10.15298/invertzool.14.1.03, URL: https://doi.org/10.15298/invertzool.14.1.03
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7

Zhang, Junlong, Olga V. Yurchenko, Konstantin A. Lutaenko, et al. "A tale of two soft-shell clams: an integrative taxonomic analysis confirms Mya japonica as a valid species distinct from Mya arenaria (Bivalvia: Myidae)." Zoological Journal of the Linnean Society 184, no. 3 (2018): 605–22. https://doi.org/10.1093/zoolinnean/zlx107.

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Zhang, Junlong, Yurchenko, Olga V, Lutaenko, Konstantin A, Kalachev, Alexander V, Nekhaev, Ivan O, Aguilar, Robert, Zhan, Zifeng, Ogburn, Matthew B (2018): A tale of two soft-shell clams: an integrative taxonomic analysis confirms Mya japonica as a valid species distinct from Mya arenaria (Bivalvia: Myidae). Zoological Journal of the Linnean Society 184 (3): 605-622, DOI: 10.1093/zoolinnean/zlx107, URL: https://academic.oup.com/zoolinnean/article/184/3/605/4815691
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8

Goto, Ryutaro, Hiroshi Ishikawa, and Yoichi Hamamura. "The enigmatic bivalve genus Paramya (Myoidea: Myidae): symbiotic association of an East Asian species with spoon worms (Echiura) and its transfer to the family Basterotiidae (Galeommatoidea)." Journal of the Marine Biological Association of the United Kingdom 97, no. 7 (2016): 1447–54. http://dx.doi.org/10.1017/s0025315416000758.

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Paramya is an enigmatic genus of Myidae (Bivalvia: Heterodonta: Myoidea) that includes three uncommon species: Paramya subovata (Conrad, 1845), Paramya recluzi (A. Adams, 1864) and Paramya africana Cosel, 1995. Paramya subovata is known as a commensal living in the burrow of the spoon worm Thalassema hartmani Fisher, 1947 (Annelida: Echiura: Thalassematidae), in North American coastal waters. However, the biology of the other two species remains unknown. In this study, we found P. recluzi living in the burrows of the two thalassematid echiuran species, Ikedosoma gogoshimense (Ikeda, 1904) and
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9

Pastorino, Guido, and Maria Bagur. "The GenusSpheniaTurton, 1822 (Bivalvia: Myidae) from Shallow Waters of Argentina." Malacologia 54, no. 1-2 (2011): 431–35. http://dx.doi.org/10.4002/040.054.0112.

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10

NARCHI, W., and O. DOMANESCHI. "THE FUNCTIONAL ANATOMY OF SPHENIA ANTILLENSIS DALL & SIMPSON, 1901 (BIVALVIA: MYIDAE)." Journal of Molluscan Studies 59, no. 2 (1993): 195–210. http://dx.doi.org/10.1093/mollus/59.2.195.

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11

Castro, Lucas, Mara Barros, Weverton Santos, Andrea Bezerra, Marko Hermann, and Rafael Chagas. "FIRST OCCURRENCE OF Sphenia fragilis (H. Adams & A. Adams, 1854) (BIVALVIA: MYIDAE) ON THE AMAZON COAST." ACTA OF FISHERIES AND AQUATIC RESSOURCES 10, no. 2 (2022): 108–12. http://dx.doi.org/10.46732/actafish.2022.10.2.108-112.

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Sphenia fragilis is a bivalve mollusk, belonging to the family Myidae, which has a habit of digging unconsolidated or consolidated substrates. Its estimated distribution indicates the presence of the species in the eastern Pacific and western Atlantic oceans. The present study indicates the first occurrence of S. fragilis on the Amazon coast (Urindeua River, Salinópolis, State of Pará). Additionally, it presents updated data on the species biogeography on the Brazilian coast. Altogether, 309 specimens of S. fragilis were found between the years 2013 and 2016, at depths between 1 and 4 meters,
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12

Castro, Lucas Rodrigues de, Weverton John Pinheiro dos Santos, Mara Rubia Ferreira Barros, Andréa Magalhães Bezerra, Marko Herrmann, and Rafael Anaisce das Chagas. "Estabilização conquiliométrica em moluscos: estudo de caso com Sphenia fragilis (H. Adams & A. Adams, 1854) (Bivalvia, Myidae)." Research, Society and Development 10, no. 3 (2021): e23510313125. http://dx.doi.org/10.33448/rsd-v10i3.13125.

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Sphenia fragilis é um molusco bivalve pertencente a família Myidae, que possui hábito de escavar e viver alojado em espaços livres, cavidades e/ou fendas deixadas por outros organismos (e.g., mexilhões e ostras). A espécie apresenta elevada variação morfológica na forma da concha, no entanto, no entanto, ainda não foi estudado essa variação a partir de dados morfométricos. Objetivou-se testar a hipótese da existência de uma estabilização da forma da concha de S. fragilis, através de análises morfométricas de indivíduos coletados no litoral amazônico. As medidas morfométricas externas da concha
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13

Zharnikov, V. S. "ENVIRONMENTAL CONDITIONS INFLUENCE ON SPATIAL DISTRIBUTION OF MYA UZENENSIS (BIVALVIA: MYIDAE) IN VARIOUS AREAS OF TAUI BAY, THE SEA OF OKHOTSK." Bulletin оf Kamchatka State Technical University, no. 51 (2020): 99–107. http://dx.doi.org/10.17217/2079-0333-2020-51-99-107.

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14

Krapal, Ana-Maria, Oana Paula Popa, Elena Iulia Iorgu, Marieta Costache, and Luis Ovidiu Popa. "Isolation and Characterization of New Microsatellite Markers for the Invasive Softshell Clam, Mya arenaria (L.) (Bivalvia: Myidae)." International Journal of Molecular Sciences 13, no. 2 (2012): 2515–20. http://dx.doi.org/10.3390/ijms13022515.

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15

Flyachinskaya, L. P., and P. A. Lezin. "Embryonic and larval development of the soft-shell clam Mya arenaria L., 1758 (Heterodonta: Myidae) in the White Sea." Invertebrate Zoology 14, no. 1 (2017): 14–20. http://dx.doi.org/10.15298/invertzool.14.1.03.

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16

Kim, Jin-Hee, Jae-Seung Chung, and Young-Je Park. "Ultrastructures of Germ Cells During Spermatogenesis and Taxonomic Values in Sperm Morphology in Male Mya arenaria oonogai (Heterodonta: Myidae)." Korean Journal of Malacology 27, no. 4 (2011): 377–86. http://dx.doi.org/10.9710/kjm.2011.27.4.377.

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17

Dann, Alison. "Genetic confirmation of Mya japonica Jay, 1857 (Bivalvia: Myidae) in Tasmania, Australia: first record of any species of Mya in the southern hemisphere." BioInvasions Records 9, no. 1 (2020): 103–8. http://dx.doi.org/10.3391/bir.2020.9.1.14.

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18

Selin, N. I. "Spatial Distribution, Size and Age Composition of Population of Mya japonica Jay, 1857 (Bivalvia: Myidae) in Peter the Great Bay, Sea of Japan." Russian Journal of Marine Biology 49, no. 6 (2023): 498–508. http://dx.doi.org/10.1134/s1063074023060068.

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19

Smolkova, O. V., and N. I. Meshcheryakov. "The Soft-Shell Clam (Mya arenaria Linnaeus 1758 (Myidae)) in Shallow Waters of Zelenetskaya and Yarnyshnaya Inlets of the Barents Sea: Allometric Growth." Biology Bulletin 50, no. 8 (2023): 1811–22. http://dx.doi.org/10.1134/s1062359023080289.

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20

Zhang, Junlong, Olga V. Yurchenko, Konstantin A. Lutaenko, et al. "A tale of two soft-shell clams: an integrative taxonomic analysis confirms Mya japonica as a valid species distinct from Mya arenaria (Bivalvia: Myidae)." Zoological Journal of the Linnean Society 184, no. 3 (2018): 605–22. http://dx.doi.org/10.1093/zoolinnean/zlx107.

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21

Zharnikov, V. S. "Features of allometric growth and structure of settlements for Mya uzenensis (Bivalvia: Myidae) in different areas of littoral zone in the Tauiskaya Guba Bay, Okhotsk Sea." Izvestiya TINRO 200, no. 2 (2020): 364–76. http://dx.doi.org/10.26428/1606-9919-2020-200-364-376.

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Settlements of bivalve Mya uzenensis are investigated in four littoral areas of the Tauiskaya Guba Bay with different environments. Their density varied from 20 to 194 ind./m2 (518–9680 g/m2) depending on habitat. On suitable soils, the settlements occupied 25–40 % of the littoral zone; the mollusks were distributed mostly in mosaic spots with size 0.5–5.0 m2. Stable settlements in the areas with favorable environmental conditions in the Ola estuary and Vesyolaya Bay were formed by mollusks with shell size of 22.1–91.1 mm and age of 2–14 years. Allometry of the shells growth increased with age
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22

Zharnikov, V. S. "The Pattern of Allometric Growth and the Structure of Mya uzenensis (Bivalvia: Myidae) Aggregations in Various Parts of the Littoral Zone of Taui Bay, Sea of Okhotsk." Russian Journal of Marine Biology 46, no. 7 (2020): 590–99. http://dx.doi.org/10.1134/s1063074020070081.

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23

Selin, N. I. "Spatial Distribution, Size and Age Composition of Population of <i>Mya japonica</i> Jay, 1857 (Bivalvia: Myidae) in Peter the Great Bay, Sea of Japan." Биология моря 49, no. 6 (2023): 396–406. http://dx.doi.org/10.31857/s0134347523060062.

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In July–August 2022, the spatial distribution and the composition of local aggregations of the bivalve mollusc Mya japonica Jay, 1857 in the Vostok Bay (Peter the Great Bay of the Sea of Japan) were studied. M. japonica occurred almost throughout the entire bay in a wide range of depths from 0 to 22 m at water temperatures from –1.9 to 25°С and salinity from 0 to 34‰. M. japonica was the most abundant in the shallow areas of the bays, closed from the direct wave impact, where, at a depth of up to 4–5 m, the density of the mollusc reached 27 ind./m2, and the biomass was almost 4 kg/m2, which av
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24

Smolkova, O. V., and N. I. Meshcheryakov. "THE SOFT-SHELL CLAM, <i>MYA ARENARIA</i> LINNAEUS 1758 (MYIDAE), IN THE SHALLOW WATERS OF ZELENETSKAYA AND YARNYSHNAYA INLETS OF THE BARENTS SEA: ALLOMETRIC GROWTH." Зоологический журнал 102, no. 2 (2023): 141–52. http://dx.doi.org/10.31857/s0044513423010099.

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Information concerning the allometric growth of the bivalve mollusk Mya arenaria populations in the intertidal zones of Zelenetskaya and Yarnyshnaya inlets, Barents Sea is presented. The population density in the Zelenetskaya Inlet averages 40 ind./m2, biomass 280 g/m2, vs 62.6 ind./m2 and 142 g/m2 in the Yarnyshnaya Inlet, respectively. A detailed analysis of the granulometric composition of the intertidal zone’s bottom sediments and the content of organic matter are determined for the first time. The study areas are found to differ in the composition of bottom sediments. The organic matter i
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25

Boldin, Vladislav I., Yuri G. Nikitin, Konstantin A. Lutaenko, and Elena M. Sayenko. "Mollusks from the archaeological site Konstantinovka-1 in Primorye (Russian Far East)." Bulletin of the Russian Far East Malacological Society 23, no. 1/2 (2019): 127–47. https://doi.org/10.5281/zenodo.11088012.

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Boldin, Vladislav I., Nikitin, Yuri G., Lutaenko, Konstantin A., Sayenko, Elena M. (2019): Mollusks from the archaeological site Konstantinovka-1 in Primorye (Russian Far East). The Bulletin of the Russian Far East Malacological Society 23 (1/2): 127-147, DOI: 10.5281/zenodo.11088012
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26

Wolff, Marta, and Cecilia Kosmann. "FAMILIES CALLIPHORIDAE AND MESEMBRINELLIDAE." Zootaxa 4122, no. 1 (2016): 856–75. https://doi.org/10.11646/zootaxa.4122.1.72.

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Boyd, Andrew Dallas, Chioma Iheanyi Ndukwe, Anandu Dileep, et al. "Elderly Medication Adherence Intervention Using the My Interventional Drug-Eluting Stent Educational App: Multisite Randomized Feasibility Trial." JMIR mHealth and uHealth 8, no. 6 (2020): e15900. http://dx.doi.org/10.2196/15900.

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Background A lifesaving treatment for myocardial infarction is the placement of a stent in a closed or obstructed coronary artery. The largest modifiable risk factor after receiving a stent is medication adherence to Dual AntiPlatelet Therapy, a combination of P2Y12 inhibitors and aspirin. Objective This study aimed to determine the acceptability of a protocol and an intervention using the My Interventional Drug-Eluting Stent Educational App (MyIDEA) and to evaluate medication adherence using the proportion of days covered (PDC) and platelet activation tests in a multisite randomized controlle
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28

Bassi, E., I. Bournerias, M. Bagot, and J. Revuz. "Myiase furonculoïde." Annales de Dermatologie et de Vénéréologie 133, no. 8-9 (2006): 734. http://dx.doi.org/10.1016/s0151-9638(06)71005-5.

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29

Clyti, E., and R. Pradinaud. "Myiase labiale." Annales de Dermatologie et de Vénéréologie 135, no. 5 (2008): 435–36. http://dx.doi.org/10.1016/j.annder.2007.11.029.

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30

Lutaenko, K.A., and N.G. Artemieva. "Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy." Bulletin of the Russian Far East Malacological Society 21, no. 1/2 (2017): 61–128. https://doi.org/10.5281/zenodo.11087867.

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Lutaenko, K.A., Artemieva, N.G. (2017): Mollusks from the shell-midden of the Telyakovskogo 2 site in southern Primorye (Yankovskaya culture), their paleoecology and role in paleoeconomy. The Bulletin of the Russian Far East Malacological Society 21 (1/2): 61-128, DOI: 10.5281/zenodo.11087867
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31

Mansur, Maria Cristina Dreher, Daniel Pereira, and Carlos A. Lasso. "Rheodreissena guru n. sp. from the Orinoco River (Bivalvia: Myida: Dreissenidae)." Archiv für Molluskenkunde International Journal of Malacology 153, no. 2 (2024): 169–80. http://dx.doi.org/10.1127/arch.moll/153/169-180.

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32

Geiger, Daniel L. "Anton August Heinrich Lichtenstein's (1794) Catalogus Rerum Naturalium Rarissimarum, pars secunda. Facsimile edition and annotated translation." Zootaxa 5127, no. 1 (2022): 1–126. https://doi.org/10.11646/zootaxa.5127.1.1.

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Geiger, Daniel L. (2022): Anton August Heinrich Lichtenstein's (1794) Catalogus Rerum Naturalium Rarissimarum, pars secunda. Facsimile edition and annotated translation. Zootaxa 5127 (1): 1-126, DOI: 10.11646/zootaxa.5127.1.1, URL: http://dx.doi.org/10.11646/zootaxa.5127.1.1
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33

Delhaes, L., B. Bourel, F. Pinatel, et al. "Myiase nasale humaine àŒstrus ovis." Parasite 8, no. 4 (2001): 289–96. http://dx.doi.org/10.1051/parasite/2001084289.

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34

Sarr, A., D. Sow, B. Diao, et al. "Myiase préputiale: à propos d’une observation." Basic and Clinical Andrology 21, no. 4 (2011): 260–62. http://dx.doi.org/10.1007/s12610-011-0144-1.

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Boyd, Andrew Dallas, Kaitlin Moores, Vicki Shah, et al. "My Interventional Drug-Eluting Stent Educational App (MyIDEA): Patient-Centered Design Methodology." JMIR mHealth and uHealth 3, no. 3 (2015): e74. http://dx.doi.org/10.2196/mhealth.4021.

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36

Noh, Woo-seon, Sung-min Jang, Chul-hoon Kang, Kyung-min Lee, and Sang-jin Lee. "The Method of Deleted Record Recovery for MySQL MyISAM Database." Journal of the Korea Institute of Information Security and Cryptology 26, no. 1 (2016): 125–34. http://dx.doi.org/10.13089/jkiisc.2016.26.1.125.

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37

Alkeraye, S., and E. Delaporte. "Myiase furonculoïde sud-américaine chez un voyageur." Annales de Dermatologie et de Vénéréologie 142, no. 12 (2015): 791–92. http://dx.doi.org/10.1016/j.annder.2015.09.002.

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38

"The eastern Pacific species of Sphenia (Bivalvia: Myidae)." Nautilus. 113 (1999): 103–20. http://dx.doi.org/10.5962/bhl.part.2019.

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39

Rasmussen, Erik, and Richard W. Heard. "Observations on Extant Populations of the Softshell Clam, Mya arenaria Linné, 1758 (Bivalvia: Myidae), from Georgia (USA) Estuarine Habitats." Gulf Research Reports 9 (January 1, 1995). http://dx.doi.org/10.18785/grr.0902.02.

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Gutzwiller-Helfenfinger, Eveline, Susan Müller, Georg Berger, and Manfred Pfiffner. "myidea entwickelt sich weiter." Transfer Berufsbildung in Forschung und Praxis 8, no. 13 (2023). https://doi.org/10.5281/zenodo.10656945.

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<em>Auszug aus dem Artikel</em> &laquo;Kritisches Denken und Probleml&ouml;sen, Eigeninitiative zeigen, kreative und innovative Ideen entwickeln, Chancen erkennen und ergreifen &ndash; das sind nur einige der F&auml;higkeiten, die in der Arbeitswelt immer wichtiger werden. Daf&uuml;r braucht es unternehmerische Kompetenzen. Diese werden jedoch an Schweizer Berufsfachschulen meist nur wenig systematisch gef&ouml;rdert. Die Initiative &laquo;Unternehmerisches Denken und Handeln an Berufsfachschulen der Schweiz&raquo; (UDH) hat 2018 mit einem durch das SBFI gef&ouml;rderten Pilotprojekt an diesem
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"myIEEE." IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing 6, no. 6 (2013): 2526. http://dx.doi.org/10.1109/jstars.2013.2290892.

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"myIEEE." IEEE Transactions on Systems, Man, and Cybernetics: Systems 44, no. 1 (2014): 130. http://dx.doi.org/10.1109/tsmc.2013.2295437.

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"myIEEE." IEEE Transactions on Systems, Man, and Cybernetics: Systems 44, no. 4 (2014): 518. http://dx.doi.org/10.1109/tsmc.2014.2309782.

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"myIEEE." IEEE Transactions on Systems, Man, and Cybernetics: Systems 44, no. 12 (2014): 1675. http://dx.doi.org/10.1109/tsmc.2014.2368916.

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"myIEEE." IEEE Wireless Communications 25, no. 1 (2018): 83. http://dx.doi.org/10.1109/mwc.2018.8304396.

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"MyIEEE." IEEE Transactions on Automatic Control 58, no. 8 (2013): 2155. http://dx.doi.org/10.1109/tac.2013.2274005.

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"myIEEE." IEEE Transactions on Automatic Control 58, no. 12 (2013): 3272. http://dx.doi.org/10.1109/tac.2013.2289405.

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"MyIEEE." IEEE Transactions on Nanotechnology 12, no. 5 (2013): 867. http://dx.doi.org/10.1109/tnano.2013.2280178.

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"myIEEE." IEEE Transactions on Nanotechnology 13, no. 4 (2014): 866. http://dx.doi.org/10.1109/tnano.2014.2334531.

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"myIEEE." IEEE Transactions on Nanotechnology 14, no. 1 (2015): 199. http://dx.doi.org/10.1109/tnano.2015.2389596.

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