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38 results for “microcrustaceans”

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Fig. 4 in Microcrustacean (Cladocera, Copepoda) Communities In Artificial Lakes In The Region Of The North Hungarian Mountains, With Special Reference To The Adventive Species

Fig. 4. Occurrences of the non-indigenous microcrustacean species in the investigated artificial lakes of north-eastern Hungary. Abbrev.: Eurytemora velox: +, Daphnia ambigua: ▲, Pleuroxus denticu-

opencc-by-4.0Dec 2012View details →
zenodo40/100

Fig. 1 in Microcrustacean (Cladocera, Copepoda) Communities In Artificial Lakes In The Region Of The North Hungarian Mountains, With Special Reference To The Adventive Species

Fig. 1. Species accumulation curves of the fish ponds for total microcrustaceans (a) and for cladocerans and copepods separately (b)

opencc-by-4.0Dec 2012View details →
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Fig. 3 in Microcrustacean (Cladocera, Copepoda) Communities In Artificial Lakes In The Region Of The North Hungarian Mountains, With Special Reference To The Adventive Species

Fig. 3. Frequency of occurrence (incl. species occurring in at least 5 fish ponds). Abbrev.: Chy_sph – Chydorus sphaericus, Bos_lon – Bosmina longirostris, Cyc_vic – Cyclops vicinus, Dap_cuc – Daphnia cucullata, Euc_ser – Eucyclops serrulatus, Aca_tra – Acanthocyclops trajani, Eud_gra – Eudiaptomus gracilis, Mac_alb – Macrocyclops albidus, Ple_adu – Pleuroxus aduncus, Sim_vet – Simocephalus vetulus, Mac_lat – Macrothrix laticornis, Euc_spe – Eucyclops speratus, The_oit – Thermocyclops oithonoides, Nit_hib – Nitocra hibernica, Alo_rec – Alona rectangula, Sca_muc – Scaphole-

opencc-by-4.0Dec 2012View details →
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Fig. 5 in Microcrustacean (Cladocera, Copepoda) Communities In Artificial Lakes In The Region Of The North Hungarian Mountains, With Special Reference To The Adventive Species

Fig. 5. The relative frequencies of Eurytemora velox (white), Eudiaptomus gracilis (black) and all other microcrustacean species (grey) in those fish ponds where the invasive E. velox was present

opencc-by-4.0Dec 2012View details →
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Figure 2 in Relative tolerance of some tropical freshwater microcrustaceans to acidification

Figure 2. Gradual changes in physicochemical parameters of pond water with decreasing pH upon addition of HCl.

opencc-by-4.0Feb 2013View details →
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Figure 5 in Relative tolerance of some tropical freshwater microcrustaceans to acidification

Figure 5. (a) Relative survival of 3 test species exposed to H O+ additions after 3 24 h; (b) dose–response curve of species against pH at 24 h.

opencc-by-4.0Feb 2013View details →
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Figure 1 in Relative tolerance of some tropical freshwater microcrustaceans to acidification

Figure 1. Annual occurrence of 3 species (numbers per milliliter) in freshwater wetlands of Midnapore during 2010 (M = Moina sp., H = Heliodiaptomus sp., and D = Daphnia sp.).

opencc-by-4.0Feb 2013View details →
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Figure 4 in Relative tolerance of some tropical freshwater microcrustaceans to acidification

Figure 4. (a) Relative survival in 3 test species exposed to H O+ additions after 1 h; 3 (b) dose–response curve of species against pH at 1 h (D = D. lumholtzi, M = adult M. brachiata, H = H. viduus).

opencc-by-4.0Feb 2013View details →
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Fig. 1 in Annot ated checklist and insular distribution of f reshwater microcrustaceans (Copepoda: Calanoida & Cyclopoida; Cladocera: Anomopoda & Ctenopoda) in the Philippines

Fig. 1. Sampling sites of recent collecting efforts for microcrustacean zooplankton (2008–2015) in the Philippines. See Table 1 for details of localities.

opencc-by-4.0Nov 2017View details →
zenodo36/100

Are rice fields less diverse and more invaded by non-native species than less impacted habitats? A test with wetland microcrustaceans

<p>Raw data of environmental variables and microcrustacean abundance community matrix</p> <p>R scripts used in the study</p>

opencc-by-4.0May 2024View details →
zenodo36/100

Microcrustaceans structure determined by the type and trophic state of lakes - Upper Paranapanema River, Brazil

<p><span>The study was conducted in a segment of the Paranapanema River basin, in southeastern Brazil, focusing on five lakes spanning an eight-kilometer stretch, to understand the different organisms' responses to distinct conditions of aquatic environments. Sampling was carried out bimonthly over the course of a year.</span></p>

opencc-by-4.0Nov 2024View details →
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Figure 8 in A new genus of cave-dwelling microcrustaceans from the Dinaric Region (south-east Europe): adaptations of true stygobitic Cladocera (Crustacea: Branchiopoda)

Figure 8. Overview of species in Brancelia gen. nov. A–B, Brancelia hercegovinae (Brancelj, 1990) from Cave Ljelješnica, Solac, Dabarsko Polje, Herzegovina (A = paratype); C, Brancelia sketi (Brancelj, 1992) from Osapska Jama Cave, Koper, Slovenia; D, Brancelia stochi (Brancelj, 1997) from Kompoljska Jama Cave, Dobrepolje, Slovenia. Specimens collected by A. Brancelj.

opennotspecifiedJan 2011View details →
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Figure 7 in A new genus of cave-dwelling microcrustaceans from the Dinaric Region (south-east Europe): adaptations of true stygobitic Cladocera (Crustacea: Branchiopoda)

Figure 7. Brancelia stochi (Brancelj, 1997) = Alona stochi Brancelj, 1997. Limb morphology of adult parthenogenetic female. Kompoljska Jama Cave, Dobrepolje, Slovenia, Leg. A. Brancelj. A, first maxilla; B, first limb; C, idem, anterior elements; D, idem, outer and inner distal lobes, with anterior seta; E, second limb; F, idem, first scraper with soft seta at basal projection; G, idem, first two setae in filter comb; H, third limb, exopodite; I, idem, setules removed; J, idem, internal endite setae; K, idem, gnathobasic portion with filter comb; L, idem, soft setae in endite; M, fourth limb, complete; N, fifth limb; O, idem, inner portion. Abbreviations: a–g, numbering for setae; as, accessory seta; eh, ejector hooks; en, endite; ep, epipodite; ex, exopodite; fc, filter comb; gn, gnathobase; IDL, inner distal lobe; il, inner lobe; ODL, outer distal lobe; pep, pre-epipodite; s, sensillum.

opennotspecifiedJan 2011View details →
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Figure 5 in A new genus of cave-dwelling microcrustaceans from the Dinaric Region (south-east Europe): adaptations of true stygobitic Cladocera (Crustacea: Branchiopoda)

Figure 5. Brancelia sketi (Brancelj, 1992) = Alona sketi Brancelj, 1992. Limb morphology of adult parthenogenetic female. Osapska Jama Cave, Koper, Slovenia, Leg. A. Brancelj. A, first limb, inner distal lobe (IDL) and outer distal lobe (ODL) removed; B, idem, anterior elements; C, ODL and IDL, with anterior seta; D, small naked seta of IDL; E; second limb, last six setae of filter comb not shown; F, idem, first scraper with soft seta at basal projection; G, third limb, exopodite; H, idem, without setules; I, third limb, internal endite setae; J, idem, soft setae; K, third limb gnathobase seta and sensillum; L, fourth limb, epipodite and exopodite; M, idem, with setules; N, fourth limb, endite; O, idem, flaming torch setae; P, fifth limb (filter comb?); Q, idem, inner portion. Abbreviations: as, accessory seta; eh, ejector hooks; en, endite; ep, epipodite; ex, exopodite; fc, filter comb; gn, gnathobase; IDL, inner distal lobe; il, inner lobe; ODL, outer distal lobe; s, sensillum.

opennotspecifiedJan 2011View details →
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Figure 11 in A new genus of cave-dwelling microcrustaceans from the Dinaric Region (south-east Europe): adaptations of true stygobitic Cladocera (Crustacea: Branchiopoda)

Figure 11. Reduction series of a homologous seta in Brancelia gen. nov. Disuse leads to a complete reduction in Brancelia stochi where the seta is a mere rudiment. The seta is located on the first limb and called the 'screening seta' by Fryer (1968).

opennotspecifiedJan 2011View details →
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Figure 4 in A new genus of cave-dwelling microcrustaceans from the Dinaric Region (south-east Europe): adaptations of true stygobitic Cladocera (Crustacea: Branchiopoda)

Figure 4. Brancelia sketi (Brancelj, 1992) = Alona sketi Brancelj, 1992. Adult parthenogenetic females. Osapska Jama Cave, Koper, Slovenia, Leg. A. Brancelj. A, habitus; B, idem, outline; C–D, labrum; E, ventral valve margin; F, first antenna; G, second antenna; H, head pores; I, postabdomen.

opennotspecifiedJan 2011View details →
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Figure 6 in A new genus of cave-dwelling microcrustaceans from the Dinaric Region (south-east Europe): adaptations of true stygobitic Cladocera (Crustacea: Branchiopoda)

Figure 6. Brancelia stochi (Brancelj, 1997) = Alona stochi Brancelj, 1997. Adult parthenogenetic females. Kompoljska Jama Cave, Dobrepolje, Slovenia, Leg. A. Brancelj. A, habitus; B, idem, outline; C, labral keel; D, ventral valve margin, anterior and medial section; E, idem, posterior section; F, first antenna; G, second antenna; H, postabdomen.

opennotspecifiedJan 2011View details →
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Figure 2 in A new genus of cave-dwelling microcrustaceans from the Dinaric Region (south-east Europe): adaptations of true stygobitic Cladocera (Crustacea: Branchiopoda)

Figure 2. Head shields of Brancelia hercegovinae (Brancelj, 1990) comb. nov. (A) and Brancelia sketi (Brancelj, 1992) comb. nov. (B), after Brancelj (1990, 1992).

opennotspecifiedJan 2011View details →
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Figure 1 in A new genus of cave-dwelling microcrustaceans from the Dinaric Region (south-east Europe): adaptations of true stygobitic Cladocera (Crustacea: Branchiopoda)

Figure 1. Brancelia hercegovinae (Brancelj, 1990) comb. nov. = Alona hercegovinae Brancelj, 1990. Adult parthenogenetic females. Cave Ljelješnica, Stolac, Dabarsko Polje, Herzegovina, Leg. A. Brancelj. A, habitus; B, idem, outline; C–D, labral keel; E, ventral valve margin; F, head pores; G, postabdomen; H, inner portion of fifth limb. Abbreviations: fc, filter comb; pr, process.

opennotspecifiedJan 2011View details →
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Figure 9 in A new genus of cave-dwelling microcrustaceans from the Dinaric Region (south-east Europe): adaptations of true stygobitic Cladocera (Crustacea: Branchiopoda)

Figure 9. Brancelia gen. nov., pictorial key to adult parthenogenetic females of the three species Brancelia hercegovinae, Brancelia sketi, and Brancelia stochi.

opennotspecifiedJan 2011View details →

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