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1,148 results for “Baltic amber”
Figure 3 in A new Eocene genus of the subtribe Tylodina (Coleoptera: Curculionidae) and notes concerning local differences of Baltic amber in the Kaliningrad Region
Figure 3. Map of the administrative subdivision of the Kaliningrad Region showing the main regional Baltic amber localities.
Figure 3 in On the first Silis Charpentier, 1825 from Baltic amber (Coleoptera, Cantharidae)
Figure 3. Silis (Silis) lombardii sp. nov. in Baltic amber, holotype. (a) Detail of pronotum (ventral view), elytra, legs and antennae with numbered antennomeres, scale bar = 0.5 mm. (b) Detail of last abdominal segments (lateral view), scale bar = 0.5 mm.
Figure 1 in A new Eocene genus of the subtribe Tylodina (Coleoptera: Curculionidae) and notes concerning local differences of Baltic amber in the Kaliningrad Region
Figure 1. Baltacalles triumurbium gen. et sp. nov., holotype, 6274 (MAIG): (a) habitus, dorsal view; (b) habitus, ventrolateral view; (c) habitus, left lateral view. Scale bars = 1 mm.
Figure 2 in On the first Silis Charpentier, 1825 from Baltic amber (Coleoptera, Cantharidae)
Figure 2. Silis (Silis) lombardii sp. nov. in Baltic amber, holotype. (a) Detail of pronotum (arrow), scale bar = 0.4 mm. (b) Detail of right antenna, scale bar = 0.4 mm.
Fig. 5. Needle stonefly Euroleuctra gillesi Chen, 2018b in A new needle stonefly with parasitic mites from the Eocene Baltic amber
Fig. 5. Needle stonefly Euroleuctra gillesi Chen, 2018b (ICJUST CZT-PLE-BA3) from Eocene Baltic Amber from unknown locality in Poland. Male adult, photomicrographs of left forewing in dorsal view (A1) and terminalia in ventral view (A2).
Fig. 1 in A new needle stonefly with parasitic mites from the Eocene Baltic amber
Fig. 1. Needle stonefly Baltileuctra dewalti Chen sp. nov. (holotype, ICJUST CZT-PLE-BA8) from Eocene Baltic Amber from unknown locality in Lithuania. Photomicrographs of male adult, habitus, in dorsal (A 1) and ventral (A 2) views. Sites of parasitic mites indicated by red arrowheads.
Fig. 2 in A new needle stonefly with parasitic mites from the Eocene Baltic amber
Fig. 2. Needle stonefly Baltileuctra dewalti Chen sp. nov. (holotype, ICJUST CZT-PLE-BA8) from Eocene Baltic Amber from unknown locality in Lithuania. Male adult, left (A1, A2) and right (A3) forewings in dorsal view, left hind wing in ventral view (A4, A5). Photomicrographs (A1, A4), explanatory drawings (A2, A3, A5).
Fig. 4. Needle stonefly Baltileuctra foraminis Chen, 2018a in A new needle stonefly with parasitic mites from the Eocene Baltic amber
Fig. 4. Needle stonefly Baltileuctra foraminis Chen, 2018a (ICJUST CZT-PLE-BA2) from Eocene Baltic Amber from unknown locality in Lithuania. Male adult, photomicrographs of left forewing in dorsal view (A 1), hind wings in ventral view (A 2), and terminalia in ventral view (A 3). Outlines of subanal probe, lateral spines, and apical cercal spines indicated with black lines.
Fig. 6. Paratimia conicola Fisher, 1915 in Paratimia succinicola sp. n. (Coleoptera: Cerambycidae) from Baltic amber, with palaeogeographical remarks on the tribe Atimiini LeConte, 1873
Fig. 6. Paratimia conicola Fisher, 1915 emerged on 21.II.1962 from cones of Pinus attenuata collected by G.H. Nelson at Aetna Springs, Napa Co., California, USA (© K. Schnepp).
Fig. 2 in Two New Aphaenogaster Species (Hymenoptera, Formicidae) From Baltic Amber
Fig. 2. Photos of Aphaenogaster ribbeckei Radchenko, sp. n., holotype, worker, body in lateral view. Scale bar 1 mm.
Fig. 3 in Two New Aphaenogaster Species (Hymenoptera, Formicidae) From Baltic Amber
Fig. 3. Photos of Aphaenogaster ribbeckei Radchenko, sp. n., holotype, worker, body in dorsal view. Scale bar 0.5 mm.
Fig. 1 in Two New Aphaenogaster Species (Hymenoptera, Formicidae) From Baltic Amber
Fig. 1. Photos of Aphaenogaster groehni Radchenko, sp. n., holotype, worker, body in dorso-lateral view. Scale bar 1 mm.
Figs 4–5 in A New Species Of Ctenoplectrella In Baltic Amber (Hymenoptera: Megachilidae)
Figs 4–5. Wing venation of Ctenoplectrella gorskii sp. n. as preserved; based on right forewing and hind wing of holotype female: 4 = forewing venation, with apex torn at amber surface. 5 = hind wing. Scale bar = 1 mm
Fig. 1 in A New Species Of Ctenoplectrella In Baltic Amber (Hymenoptera: Megachilidae)
Fig. 1. Photomicrograph of entire amber piece containing holotype (uppermost specimen) and paratype (lower specimen largely covered by fractures and some Schimmel, seen end on) of Ctenoplect-
Figs 2–3 in A New Species Of Ctenoplectrella In Baltic Amber (Hymenoptera: Megachilidae)
Figs 2–3. Photomicrographs of holotype female of Ctenoplectrella gorskii sp. n.: 2 = Right lateral aspect of holotype (note that head is twisted such that the vertex is seen in this view), 3 = left lateral aspect of holotype (owing to the twisted position of the head, the hypostomal fossa and postgena is visi-
FIGURE 8 in Unique fossils of caddisfly larvae from Baltic amber and in situ amber formation in aquatic ecosystems
FIGURE 8. Details of non-biting midge larva (Diptera: Chironomidae: Chironominae) in the amber piece PED 1383; volume renders of µCT-scan. A, Habitus, dorsal view. B, Habitus, dorso-posterior view. C–G, Anterior body. C, In ventral view. D, Colour-marked version of C. E, Lateral view. F. Colour-marked version of D. G, Head capsule in ventral view. H, Colour-marked version of G. Abbreviations: at = antennae; lr = labrum; me = mentum; mep = mental plates, hc = head capsule.
FIGURE 9 in Unique fossils of caddisfly larvae from Baltic amber and in situ amber formation in aquatic ecosystems
FIGURE 9. Caddisfly larvae preserved in Baltic amber from the literature, all simplified. A, Leptoceridae representative larva (Wichard et al., 2009 their fig 09.04a, b). B, Collection Hoffeins 144.1, probably Ecnomidae (Wichard et al., 2009, their fig 09.05a, b). C, Collection Gröhn 3230, Phryganidae (likely Hagenella) (Wichard et al., 2009, their fig 09.06). D, First caddisfly larva preserved with its case (Gröhn, 2015, his fig 7665).
FIGURE 5 in Unique fossils of caddisfly larvae from Baltic amber and in situ amber formation in aquatic ecosystems
FIGURE 5. Additional caddisfly larvae in the Baltic amber. A, B. Collection Gröhn L7698, Leptoceridae. A, Overview. B, Close-up on head in oblique lateral view. C, D, Representatives of Integripalpia (probably related to Leptoceridae). E, Representative of Annulipalpia. F. PED 1635, Leptoceridae. C–F, image courtesy of Jonas Damzen, used with permission
FIGURE 4. Caddisfly larva morphotype 1 in Unique fossils of caddisfly larvae from Baltic amber and in situ amber formation in aquatic ecosystems
FIGURE 4. Caddisfly larva morphotype 1, Lepidostomatidae; specimen 3 from amber piece PED 1383. A–D. Volume renders of µCT-scan. A, Head in lateral view. B, Frontal view of the larva in the case. C, Dorsal view, "roof" of the case digitally removed. D, Frontal view slightly different angle than in B. E–G, Surface reconstruction of µCT-scan, case removed. E, Dorsal view. F, Lateral view. G, Antero-lateral view. Abbreviations: lh = lateral hump of abdomen unit 1.
FIGURE 2. Caddisfly larva morphotype 1 in Unique fossils of caddisfly larvae from Baltic amber and in situ amber formation in aquatic ecosystems
FIGURE 2. Caddisfly larva morphotype 1, Lepidostomatidae; specimen 2 from amber piece PED 1383, volume renders of µCT-scan A, Habitus, antero-ventral view. B, Colour-marked version of A. C, Head in frontal view. D, Thorax and head in dorsal view. E, Head in ventral view with mouthparts. F, Head in lateral view. Abbreviations: ad = abdomen; an = antenna; hc = head capsule; la = labium; lb = labrum; md = mandible; mp = maxillary palps; pt = prothorax; t3 = trunk appendage 3.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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