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FIGURE 3 in The present state of the leech fauna (Annelida: Hirudinea) in Lithuania
FIGURE 3. Freshwater leeches in Lithuania: dorsal view of Helobdella stagnalis anterior part of body (G), whole body (H) and juveniles attached to the ventral part of body (I).
FIGURE 2 in The present state of the leech fauna (Annelida: Hirudinea) in Lithuania
FIGURE 2. Freshwater leeches in Lithuania: ventral view of Alboglossiphonia heteroclita specimen with eggs (A) and dorsal view of the head region (B). Dorsal view of the head region of Hemiclepsis marginata (C). Dorsal view of Placobdella costata whole specimen (D). Dorsal view of Glossiphonia complanata whole specimen (E) and dorsal view of the head (F).
Subspecies and Distribution. A.o.oeconomusPallas,1776—W&SCSiberia(Russia)andNWMongolia. A.o.amakensisMurie,1930—AmakI(AleutianIs,Alaska). A.o.arenicoladeSélys-Longchamps,1841—Netherlands. A.o.dauricusKastschenko,1910—SCSiberia(areasaroundLakeBaikal)andNEMongolia..0.elymocetesOsgood,1906—MontagueI(SAlaska).app.0.finmarchicusSiivonen,1967—AndgyaandLanggyaintheVesteralenIs(Norway)..0.innwitusMerriam,1900—St.LawrenceI(Alaska)..0.kamtschaticusPallas,1779—KamchatkaPeninsula.Peep.0.kharanurensisCourantetal.,1999—GreatLakesHollow(NWMongolia).0.kjusjurensisKoljuschev,1935—NCSiberia..0.koreniG.M..Allen,1914—IndigirkaandKolymariverbasins(NEYakutia[=SakhaRepublic]andMagadanRegioninRussianFarEast). A.o.macfarlaniMerriam,1900—NEAlaskaandNWCanada(Yukon,NorthwestTerritories,andNunavut). A.o.mehelyiEhik,1928—SWSlovakia,EAustria,andHungary. A.o.montiumcaelestinumOgnev,1944—DzungarianAlatauandTianShan(SEKazakhstanandNWChina)..0.operariusNelson,1893—W&SAlaska..0.popofensisMerriam,1900—UngaandPopofIs(AleutianIs,Alaska).Be.0.punukensisHall&Gilmore,1932—BigPunukI(Alaska)..0.ratticepsKeyserling&Blasius,1841—FennoscandiaandNEuropeanRussia..0.sitkensisMerriam,1897—ChichagofandBaranofIs(Alaska). A.o.stimmingiNehring,1899—EGermany,Poland,Lithuania,Latvia,Belarus,Ukraine,andCEuropeanRussia. A.o.suntaricusDukelsky,1928—NW,C&SYakutia. A.o.tshuktshorumG.S.Miller,1899—ChukchiPeninsula. A.o.uchidaeKuroda,1924—N&CKurilIs. A.o.unalascensisMerriam,1897—Unalaska,UnimakandSanakIs(AleutianIs,Alaska). A. o. yakutatensis Merriam, 1900 — SW Alaska and N British Columbia. Also present on Kodiak I and small adjacentIs, and many other Aleutian Is, SW Alaska, but subspecies involved not known. in Cricetidae
Subspecies and Distribution. A.o.oeconomusPallas,1776—W&SCSiberia(Russia)andNWMongolia. A.o.amakensisMurie,1930—AmakI(AleutianIs,Alaska). A.o.arenicoladeSélys-Longchamps,1841—Netherlands. A.o.dauricusKastschenko,1910—SCSiberia(areasaroundLakeBaikal)andNEMongolia..0.elymocetesOsgood,1906—MontagueI(SAlaska).app.0.finmarchicusSiivonen,1967—AndgyaandLanggyaintheVesteralenIs(Norway)..0.innwitusMerriam,1900—St.LawrenceI(Alaska)..0.kamtschaticusPallas,1779—KamchatkaPeninsula.Peep.0.kharanurensisCourantetal.,1999—GreatLakesHollow(NWMongolia).0.kjusjurensisKoljuschev,1935—NCSiberia..0.koreniG.M..Allen,1914—IndigirkaandKolymariverbasins(NEYakutia[=SakhaRepublic]andMagadanRegioninRussianFarEast). A.o.macfarlaniMerriam,1900—NEAlaskaandNWCanada(Yukon,NorthwestTerritories,andNunavut). A.o.mehelyiEhik,1928—SWSlovakia,EAustria,andHungary. A.o.montiumcaelestinumOgnev,1944—DzungarianAlatauandTianShan(SEKazakhstanandNWChina)..0.operariusNelson,1893—W&SAlaska..0.popofensisMerriam,1900—UngaandPopofIs(AleutianIs,Alaska).Be.0.punukensisHall&Gilmore,1932—BigPunukI(Alaska)..0.ratticepsKeyserling&Blasius,1841—FennoscandiaandNEuropeanRussia..0.sitkensisMerriam,1897—ChichagofandBaranofIs(Alaska). A.o.stimmingiNehring,1899—EGermany,Poland,Lithuania,Latvia,Belarus,Ukraine,andCEuropeanRussia. A.o.suntaricusDukelsky,1928—NW,C&SYakutia. A.o.tshuktshorumG.S.Miller,1899—ChukchiPeninsula. A.o.uchidaeKuroda,1924—N&CKurilIs. A.o.unalascensisMerriam,1897—Unalaska,UnimakandSanakIs(AleutianIs,Alaska). A. o. yakutatensis Merriam, 1900 — SW Alaska and N British Columbia. Also present on Kodiak I and small adjacentIs, and many other Aleutian Is, SW Alaska, but subspecies involved not known.
Lithuania RDF assets
<p>These files are the result of the data conversion efforts made during the Open Government Intelligence Project. Specifically, these files correspond to the Lithuanian Pilot. </p> <p> </p> <p> </p>
FIGURE 21 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 21. Mature tubaria of Gothograptus obtectus Kozłowska-Dawidziuk, 1990 from Lithuania, Šiupyliai-69 core, depth 1012.0 m, lundgreni Biozone. A, B, E. finite tubarium with no proximal end, ventro-lateral view, VU RET-19; A, whole specimen; B, enlargement of last thecae; E. enlargement of thecal hood. C–D. proximal part of tubarium, obverse view, VU RET-20; C. enlargement of medial part; D. whole specimen; F–H. fragment of tubarium, lateral-ventral view, VU RET-21; F. whole specimen; G. enlargement of proximal part; H. enlargement of distal part. Abbreviations: genic.—geniculum, lat. ap.— lateral apertural, m–v.—mid-ventral.
FIGURE 20 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 20. Tubaria of Gothograptus obtectus Kozłowska-Dawidziuk, 1990, Zawada 1 core, depth 1533.3–1540.0 m, Poland, upper part of lundgreni Biozone. A. tubarium, ZPAL G.XIII/23. B. gerontic tubarium, holotype, ZPAL G.XIII/23. Abbreviations: conn.—connecting, v.—ventral.
FIGURE 17 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 17. Mature tubaria of Gothograptus kozlowskii Kozłowska-Dawidziuk, 1990 from the Šiupyliai-69 core, depth 1009.1 m, lundgreni Biozone, Lithuania. A–E. mature tubarium with seven pairs of thecae, VU RET-17; A. whole specimen, ventro-lateral view; B. enlargement of distal part of tubarium; C. enlargement of medial part of tubarium; D, E. orifice of th31. F. fragment of mature tubarium showing overgrown proximal ventral orifice, ventral view, VU RET-18.
FIGURE 14. Gothograptus auriculatus n in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 14. Gothograptus auriculatus n. sp., proximal ends of tubaria, Bartoszyce IG-1 core, depth 1645.2 m, praedeubeli Biozone, Poland. A. immature tubarium with the first three thecae, reverse view, ZPAL G.55/27. B. ventro-lateral side of tubarium, ZPAL G.55/28. C–E. reverse views of mature tubaria with very wide lists surrounding proximal lateral orifice and prongs; C. ZPAL G.55/23; D. lateral view, ZPAL G.55/29; F.
FIGURE 13 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 13. Mature tubaria of Gothograptus auriculatus n. sp., Bartoszyce IG-1 core, depth 1645.2 m, praedeubeli Biozone, Poland. A. lateral-ventral tubarium aspect with six pairs of thecae, with the distal end broken off, ZPAL G.55/22. B. obverse side of tubarium with proximal end, holotype, ZPAL G.55/23. C, F. reverse views of distal fragments with six pairs of thecae and appendix, paratype ZPAL G.55/24; C. whole specimen; F. enlargement of distal part showing thick lists and auricle. D. part of tubarium with proximal end, reverse view, ZPAL G.55/25. E. ventral view of distal part of tubarium with beginning of appendix, ZPAL G.55/26.
FIGURE 12 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 12. Mature specimens of Gothograptus nassa (Holm, 1890) from Bartoszyce IG-1 core, depth, Poland. A. distal fragment with eight pairs of thecae and appendix, G.55/16. B. fragment of distal end, ZPAL G.55/17. C–E. tubarium with 12 pairs of thecae, ZPAL G.55/18; C. ventro-lateral view of specimen; D. enlargement of orifice of th21; E. enlargement showing thickness of hood. F. medial part of specimen with five pairs of thecae, ZPAL G.55/19. G–H. proximal fragment of fragment of specimen with five pairs of thecae, ZPAL G.55/20; G. ventro-lateral view; H. enlargement of th41. I–J. distal fragment of tubarium with 10 pairs of thecae and appendix, ZPAL G.55/21; I. whole specimen; J. enlargement of thecal hood.
FIGURE 10 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 10. Immature tubaria of Gothograptus nassa (Holm, 1890) from Bartoszyce IG-1, depth 1655.8 m, dubius/nassa Biozone, Poland. A–B. tubarium with 18 pairs of thecae, ZPAL G.28/1, A ventro-lateral view; B. enlargement of hood of th151. C–E. ventral view of tubarium with 10 pairs of thecae, ZPAL G.55/13; C. whole tubarium; D. enlargement of hood of th81; E. enlargement of hood of th102. F. tubarium with nine pairs of thecae, ZPAL G.28/2. G. tubarium with 10 pairs of thecae, ZPAL G.55/14. H. tubarium with 13 pairs of thecae, ZPAL G.55/15.
FIGURE 9 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 9. Morphology of two types of veil with coloured lists of tubaria. A–B Gothograptus obtectus Kozłowska- Dawidziuk, 1990, Lithuania, Šiupyliai-69 core, depth 1012.0 m, lundgreni Biozone; A. fragment of tubarium with two veils, ventro-lateral view; B. coloured drawing of ventral wall. C. Gothograptus velo n. sp. distal fragment of tubarium, ventro-lateral view, Zawada 1 core, depth 1533.3–1540.0 m, upper part of lundgreni Biozone, Poland, ZPAL G.XIII/25. Drawings DEB.
FIGURE 7 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 7. Thecal orifices and hoods of Gothograptus. A. Pyramidal orifices in Gothograptus domeyki n. sp., VU RET-13, Šiupyliai-69 core, Lithuania, depth 1010.0 m, upper part of lundgreni Biozone. B. rectangular orifice in Gothograptus nassa (Holm, 1890), Bartoszyce IG-1 core, depth 1656.8 m, nassa Biozone, ZPAL G.55/13.
FIGURE 5 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 5. Comparison of Gothograptus obtectus Kozłowska-Dawidziuk, 1990 (A) and (B) Gothograptus nassa (Holm, 1890), showing comparative morphology of tubaria. A. medial part of tubarium, obverse side. B. proximal part of tubarium, starting from the ancora umbrella rim, reverse side. The lists of the ancora umbrella are omitted. Drawings DEB.
FIGURE 4 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 4. Proximal ends of young and mature tubaria of (A–B) Gothograptus auriculatus n. sp., Bartoszyce IG-1 core, depth 1645.2 m, praedeubeli Biozone, light blue colour indicates ancora umbrella rim; A. immature tubarium with the first three thecae, obverse view, ZPAL G.55/6. B. mature tubarium, obverse view, with wide lists above proximal lateral orifice (dark blue), ZPAL G.55/23. C, D, E, G, H. Gothograptus nassa (Holm, 1890), Mulde Marl, Blåhäll, Gotland, Sweden Locality 813- 832, Blåhäll 1 (Spjeldnaes 1984); C. inside view of proximal end with sicula rim, ZPAL G.55/8. D. outside view of ancora, stereopair, ZPAL G.55/9. E, outside view of ancora, stereopair, ZPAL G.55/10. G. stereopair of proximal end, ventral view, ZPAL G.55/11; H. lateral view with colored reticulated wall of metasicula, ZPAL G.55/12. F. Gothograptus kozlowskii Kozłowska-Dawidziuk, 1990; erratic boulder, Jarosławiec 147, Poland, lundgreni Biozone, outside view of proximal end, with outer ancora, ZPAL G.XIII/43. Abbreviations: anc.—ancora umbrella, lat.—lateral, m-v—mid-ventral list, prox.—proximal, orif.—orifice, th—theca, umb.—umbrella.
FIGURE 2 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 2. Immature tubaria of Gothograptus auriculatus n. sp. from the Bartoszyce IG-1 core, depth 1645.6 m, praedeubeli Biozone, Poland. A. tubarium with four pairs of thecae, ZPAL G.55/1. B. tubarium with two pairs of thecae, ZPAL G.55/2. C– E. tubarium with first pair of thecae, ZPAL G.55/3; C. ventro-lateral view, D. enlargement of distal part of virga with trace of prosicular apex, E. enlargement of distal end showing virga and fragment of virgella. Abbreviation: pros.—prosicular.
FIGURE 23. Gothograptus diminutus n in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 23. Gothograptus diminutus n. sp. Bartoszyce IG-1core, Poland. A. lateral view of tubarium, almost mature, with seven pairs of thecae, 1659.9 m, ZPAL G.55/32. B, C, E. mature tubarium with six pairs of thecae and appendix, holotype, 1659.9 m, ZPAL G.29/21; B. ventro-lateral view; C, fragment of third pair of theca; E. proximal end. D. finite tubarium with six pairs of thecae and appendix, paratype, depth 1659.9 m, ZPAL G.55/34. F. mature tubarium with seven pairs of thecae, ventrolateral view, depth 1658.8 m, ZPAL G.54/8. G. young tubarium with four pairs of thecae, depth 1659.9 m, ZPAL G.55/35.
FIGURE 11 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 11. Tubaria of Gothograptus nassa (Holm, 1890) from Lithuania. A–B, E–F. Specimen with five pairs of thecae, VU RET-8, Kybartai-14 core, depth 1087.8 m, nassa Biozone; A. ventro-lateral view; B. view of distal end; E, enlargement of cross-section of nema; F, distal view of end of tubarium. C–D, G. tubarium with four pairs of thecae, ventral view, VU RET-9, Šiupyliai-69 core, depth 998.0 m, nassa Biozone; C. enlargement of th12 orifice; D. oblique view of th12 orifice; G. whole specimen.
FIGURE 1 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 1. Biostratigraphic ranges of Gothograptus Frech, 1897 species from Baltica, and two species of other genera with nassa hoods: Semigothograptus meganassa Kozłowska, 2016 and Neogothograptus eximinassa Maletz, 2008. Abbreviations: G.—Gothograptus, N.—Neogothograptus, S.—Semigothograptus.
FIGURE 8 in Evolutionary significance of the retiolitine Gothograptus (Graptolithina) with four new species from the Silurian of the East European Platform (Baltica), Poland and Lithuania
FIGURE 8. Details of bandaging in Gothograptus. A. bandaging on the surface of a nema, before it is overlain by pustular bandaging of the ancora sleeve, ZPAL G.55/42. B. pustular bandages on the surface of a hood, ZPAL G.55/41. C. bandage on the surface of a reticular list, showing pustules, ZPAL G.55/41. D. edge of a bandage on a hood; a "gluey" layer extends laterally beyond an outer granular layer, ZPAL G.55/42. E. the inner surface of the basal sheet layer of a bandage, with scattered vesicles, ZPAL G.55/44. F. bandages on the surface of a hood, ZPAL G.55/46. G. TEM section through reticular list. The pustular outer layer is electron dense; the pustules are formed from the thickening of the layer. H. broken list, thickened by successive bandages, ZPAL G.55/45. A, G. Mulde Marl, Blåhäll, Gotland, Sweden Locality 813-832, Blåhäll 1 (Spjeldnaes 1984). B–E. Mulde Marl, Dapps 2, Gotland. F, H. Mulde Marl, Tegelbruk 1, Gotland (Calner & Jeppsson 2003).
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