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Limnodrilus hoffmeisteri

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is conveyor-belt feeder that ingests particles in deep sediments and egests them on the sediment surface in the form of pseudofeces. The activities of this worm can alter sediment stratification, increase the water content and porosity of sediment, change the distribution of sediment particle size,
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lives in fine, sandy and coarse sediments of watercourses, pond and lakes, hyporheic zone and groundwater, feeding on microorganisms and organic material. Due to the lack of gill, it breathes through skin. The front of body is often buried in the sediment whereas the tail of its body is left in the
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is a segmented oligochaete worm with tapering end and typical body length of 25–40 mm. It has a simple conical shaped head without eyespots and a long cylindrical body with 55-95 segments. Each of segments can regenerate into a new individual when separated from the worm body. On each side of
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Vivien, RĂ©gis; Tixier, Guillaume; Lafont, Michel (2014). "Use of oligochaete communities for assessing the quality of sediments in watercourses of the Geneva area (Switzerland) and Artois-Picardie basin (France): proposition of heavy metal toxicity thresholds".
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the segment, there is an upper and lower bundle of setae to move and burrow sediment. Due to the respiratory pigment haemoglobin, its body usually appears red. Same as all other oligochaetes, this species is a hermaphrodite with a complex reproductive system.
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Dafoe, L. T.; RYGH, A. L.; YANG, B.; GINGRAS, M. K.; PEMBERTON, S. G. (10 January 2011). "A new technique for assessing tubificid burrowing activities, and recognition of biogenic grading formed by these oligochaetes".
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Zhang, Lei; Gu, Xiaozhi; Fan, Chengxin; Shang, Jingge; Shen, Qiushi; Wang, Zhaode; Shen, Ji (2010). "Impact of different benthic animals on phosphorus dynamics across the sediment-water interface".
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Matisoff, Gerald; Wang, Xiaosong; McCall, Peter L. (1999). "Biological redistribution of lake sediments by tubificid oligochaetes: Branchiura sowerbyi and Limnodrilus hoffmeisteri/Tubifex tubifex".
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Ciutat, Aurélie; Weber, Olivier; Gérino, Magali; Boudou, Alain (2006). "Stratigraphic effects of tubificids in freshwater sediments: a kinetic study based on X-ray images and grain-size analysis".
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Mermillod-Blondin, F.; Nogaro, G.; Datry, T.; Malard, F.; Gibert, J. (2005). "Do tubificid worms influence the fate of organic matter and pollutants in stormwater sediments?".
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is well recognized indicator of organic pollution and low dissolved oxygen. It is increasingly being used to test the toxicity of sediment-associated contaminants and their
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Lauritsen, Diane D.; Mozley, Samuel C.; White, David S. (1985). "Distribution of oligochaetes in lake Michigan and comments on their use as indices of pollution".
325:"Oligochaete assemblages in the hyporheic zone and coarse surface sediments: their importance for understanding of ecological functioning of watercourses" 482:"Do tubificid worms influence organic matter processing and fate of pollutants in stormwater sediments deposited at the surface of infiltration systems?" 234:
alter the oxygen and nutrient dynamics in the sediment and across the sediment-water interface, and influence the process of sediment resuspension.
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Nogaro, GĂ©raldine; Mermillod-Blondin, Florian; Montuelle, Bernard; Boisson, Jean-Claude; Lafont, Michel; Volat, Bernadette; Gibert, Janine (2007).
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Lotufo, Guilherme R.; Fleeger, John W. (September 1996). "Toxicity of sediment-associated pyrene and phenanthrene to (oligochaeta: Tubificidae)".
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Kaster, Jerry (1984). "Comparison of defecation rates of limnodrilus hoffmeisteri claparede (Tubificidae) using two different methods".
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Matisoff, Gerald (1985). "Effects of benthic macroinvertebrates on the exchange of solutes between sediments and freshwater".
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can bioaccumulate hydrophobic contaminants and even degrade them depending on the structure and properties of contaminants.
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Fukuhara, Haruo (1987). "The effect of tubificids and chironomids on particle redistribution of lake sediment".
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Kennedy, C. R. (1965). "The distribution and habitat of limnodrilus claparède (oligochaeta: tubificidae)".
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water phase keeping swing to enhance the formation of water flow to promote skin gas exchange.
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Zhang, Lei; Shang, Jingge; He, Wei; You, Bensheng; Fan, Chengxin (2014).
143: 198:, is one of the most widespread and abundant oligochaetes in the world. 903: 605: 543: 479: 398: 291: 123: 113: 103: 916: 305: 57: 772: 283: 795: 133: 618: 77: 1017: 67: 679:
Annales de Limnologie - International Journal of Limnology
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Recent study demonstrated that 213: 44: 734: 716:Journal of Great Lakes Research 707: 666: 639: 612: 585: 550: 455:Journal of Great Lakes Research 360:Ecohydrology & Hydrobiology 523: 473: 446: 378: 350: 316: 298: 263: 1: 728:10.1016/s0380-1330(85)71745-5 660:10.1016/s1001-0742(09)60305-3 467:10.1016/s0380-1330(99)70729-x 256: 633:10.1016/j.envpol.2004.07.024 372:10.1016/j.ecohyd.2014.03.003 7: 579:10.1016/j.actao.2006.04.004 10: 1096: 440:10.2110/palo.2010.p10-023r 238:Environmental implications 785: 344:10.1007/s10750-005-1717-9 172: 165: 41:Scientific classification 39: 30: 23: 816:Limnodrilus_hoffmeisteri 787:Limnodrilus hoffmeisteri 251:Limnodrilus hoffmeisteri 243:Limnodrilus hoffmeisteri 231:Limnodrilus hoffmeisteri 219:Limnodrilus hoffmeisteri 207:Limnodrilus hoffmeisteri 191:Limnodrilus hoffmeisteri 176:Limnodrilus hoffmeisteri 25:Limnodrilus hoffmeisteri 621:Environmental Pollution 16:Species of annelid worm 755:10.1002/etc.5620150912 886:Fauna Europaea (new) 692:10.1051/limn/2014013 310:Encyclopedia of Life 226:Ecological functions 158:L. hoffmeisteri 571:2006AcO....30..228C 532:Ecological Research 501:2007Chmsp..70..315N 432:2011Palai..26...66D 606:10.1007/bf00018956 544:10.1007/bf02349778 399:10.1007/bf00007197 1067: 1066: 1026:Open Tree of Life 779:Taxon identifiers 654:(11): 1674–1682. 187: 186: 1087: 1060: 1059: 1047: 1046: 1034: 1033: 1021: 1020: 1008: 1007: 995: 994: 985: 984: 972: 971: 969:NBNSYS0000188460 959: 958: 946: 945: 933: 932: 920: 919: 907: 906: 894: 893: 881: 880: 868: 867: 855: 854: 842: 841: 829: 828: 819: 818: 806: 805: 804: 774: 773: 767: 766: 749:(9): 1508–1516. 738: 732: 731: 711: 705: 704: 694: 670: 664: 663: 643: 637: 636: 616: 610: 609: 589: 583: 582: 554: 548: 547: 527: 521: 520: 486: 477: 471: 470: 450: 444: 443: 414: 403: 402: 382: 376: 375: 354: 348: 347: 329: 320: 314: 313: 302: 296: 295: 267: 194:, also known as 178: 49: 48: 35: 21: 20: 1095: 1094: 1090: 1089: 1088: 1086: 1085: 1084: 1070: 1069: 1068: 1063: 1055: 1050: 1042: 1037: 1029: 1024: 1016: 1011: 1003: 1000:Observation.org 998: 990: 988: 980: 975: 967: 962: 954: 949: 941: 936: 928: 923: 915: 910: 902: 897: 889: 884: 876: 871: 863: 858: 850: 845: 837: 832: 824: 822: 814: 809: 800: 799: 794: 781: 771: 770: 739: 735: 712: 708: 671: 667: 644: 640: 617: 613: 590: 586: 559:Acta Oecologica 555: 551: 528: 524: 484: 478: 474: 451: 447: 415: 406: 383: 379: 355: 351: 327: 321: 317: 304: 303: 299: 284:10.2307/3564862 268: 264: 259: 247:bioaccumulation 240: 228: 216: 204: 202:Characteristics 183: 182:Claparède, 1862 180: 174: 161: 91:Pleistoannelida 43: 17: 12: 11: 5: 1093: 1083: 1082: 1065: 1064: 1062: 1061: 1048: 1035: 1022: 1009: 996: 986: 973: 960: 947: 934: 921: 908: 895: 882: 873:Fauna Europaea 869: 856: 843: 830: 820: 807: 791: 789: 783: 782: 769: 768: 733: 706: 685:(3): 253–260. 665: 638: 611: 584: 565:(2): 228–237. 549: 538:(3): 255–264. 522: 495:(2): 315–328. 472: 461:(1): 205–219. 445: 404: 393:(3): 181–184. 377: 366:(2): 142–151. 349: 338:(1): 171–181. 315: 297: 278:(1/2): 26–38. 261: 260: 258: 255: 239: 236: 227: 224: 215: 212: 203: 200: 185: 184: 181: 170: 169: 163: 162: 155: 153: 149: 148: 141: 137: 136: 131: 127: 126: 121: 117: 116: 111: 107: 106: 101: 94: 93: 88: 81: 80: 75: 71: 70: 65: 61: 60: 55: 51: 50: 37: 36: 28: 27: 15: 9: 6: 4: 3: 2: 1092: 1081: 1078: 1077: 1075: 1058: 1053: 1049: 1045: 1040: 1036: 1032: 1027: 1023: 1019: 1014: 1010: 1006: 1001: 997: 993: 987: 983: 978: 974: 970: 965: 961: 957: 952: 948: 944: 939: 935: 931: 926: 922: 918: 913: 909: 905: 900: 896: 892: 887: 883: 879: 874: 870: 866: 861: 857: 853: 848: 844: 840: 835: 831: 827: 821: 817: 812: 808: 803: 797: 793: 792: 790: 788: 784: 780: 775: 764: 760: 756: 752: 748: 744: 737: 729: 725: 721: 717: 710: 702: 698: 693: 688: 684: 680: 676: 669: 661: 657: 653: 649: 642: 634: 630: 626: 622: 615: 607: 603: 599: 595: 594:Hydrobiologia 588: 580: 576: 572: 568: 564: 560: 553: 545: 541: 537: 533: 526: 518: 514: 510: 506: 502: 498: 494: 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156: 144: 97: 84: 24: 18: 1039:SeaLifeBase 951:NatureServe 912:iNaturalist 489:Chemosphere 145:Limnodrilus 257:References 124:Tubificida 114:Clitellata 104:Sedentaria 763:1552-8618 701:0003-4088 152:Species: 64:Kingdom: 58:Eukaryota 1080:Naididae 1074:Category 956:43.36681 930:10840412 823:BioLib: 802:Q5142030 796:Wikidata 517:17675210 196:Red worm 134:Naididae 130:Family: 78:Annelida 74:Phylum: 68:Animalia 54:Domain: 904:2308543 567:Bibcode 497:Bibcode 428:Bibcode 420:PALAIOS 292:3564862 140:Genus: 120:Order: 110:Class: 1057:137556 1031:986497 1018:137556 989:NZOR: 917:223774 878:234490 761:  699:  515:  290:  1052:WoRMS 1044:41300 1005:28433 982:76587 943:68639 925:IRMNG 865:57556 860:EUNIS 852:6QDFZ 839:30648 826:44110 485:(PDF) 328:(PDF) 288:JSTOR 272:Oikos 98:Clade 85:Clade 1013:OBIS 977:NCBI 938:ITIS 899:GBIF 834:BOLD 759:ISSN 697:ISSN 513:PMID 964:NBN 847:CoL 811:AFD 751:doi 724:doi 687:doi 656:doi 629:doi 625:134 602:doi 598:122 575:doi 540:doi 505:doi 463:doi 436:doi 395:doi 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Index


Scientific classification
Edit this classification
Eukaryota
Animalia
Annelida
Pleistoannelida
Sedentaria
Clitellata
Tubificida
Naididae
Limnodrilus
Binomial name
bioaccumulation
doi
10.2307/3564862
JSTOR
3564862
"A limnodrilus worm-limnodrilus hoffmeisteri - Details - Encyclopedia of Life"
"Oligochaete assemblages in the hyporheic zone and coarse surface sediments: their importance for understanding of ecological functioning of watercourses"
doi
10.1007/s10750-005-1717-9
doi
10.1016/j.ecohyd.2014.03.003
doi
10.1007/bf00007197



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