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298 results for “Adriatic Sea”
Fig. 14 in Seasonal dynamics of small-scale fisheries in the Adriatic Sea
Fig. 14: Size-frequency distributions of gillnet landings. TL = total length; CL = carapace length; ML = mantle length. Vertical lines: minimum landing size.
Fig. 2 in Spatial Distribution of Suspended Solids During Short-Term High River Discharge in the Bay of Koper, Northern Adriatic Sea
Fig. 2: Rižana and Badaševica river hourly (QR and QB) and daily mean (Qr and Qb) discharge with related inflow concentrations of ISS (ISS and ISS) (a). Density profile (b) and wind direction and velocity applied (average wind velocity of 1.7 m s-1 188°) during r b the high-discharge event 8th June 2011 (c) (ARSO, 2014a).
Fig. 6 in Spatial Distribution of Suspended Solids During Short-Term High River Discharge in the Bay of Koper, Northern Adriatic Sea
Fig. 6: Salinity and ISS profiles after 24-hour simulation at the comparison sites (P1- right, P2-center and P3-left); the event on 8th June 2011.
The LTER-Italy parent site "Northern Adriatic Sea".
<p>The four research sites that compose the LTER-Italy parent site "Northern Adriatic Sea", together with the fixed point observatories, are evidenced. 1: Gulf of Trieste and Mambo buoy, 2: Gulf of Venice and Acqua Alta Tower, 3: Po Delta and Romagna Coast and S1-GB and E1 buoys, 4: Senigallia-Susak Transect and TeleSenigallia Pylon.</p>
Figure 6 in Unusual winter zooplankton bloom in the open southern Adriatic Sea
Figure 6. Box-and-whisker plot of the abundance of protozoan shown by depth layers (February/March 2015, all investigated stations).
Figure 5 in Unusual winter zooplankton bloom in the open southern Adriatic Sea
Figure 5. Spatial distribution of total microzooplankton and mesozooplankton abundance along the investigated profile in February/March 2015.
Figure 3 in Unusual winter zooplankton bloom in the open southern Adriatic Sea
Figure 3. Vertical profiles of temperature, salinity, and density (sigma-t) over the investigated profile in February/March 2015.
Figure 4 in Unusual winter zooplankton bloom in the open southern Adriatic Sea
Figure 4. Vertical profiles of chlorophyll a fluorescence (Chl F) concentration and picophytoplankton,nanophytoplankton, and microphytoplankton abundance along the investigated profile in February/March 2015.
Figure 7 in Unusual winter zooplankton bloom in the open southern Adriatic Sea
Figure 7. Box-and-whisker plot of the total copepod developmental stages abundance shown by depth layers (February/March 2015, all investigated stations).
Figure 3 in Seasonal pattern of population dynamics, spawning activities, and diet composition of sardine (Sardina pilchardus Walbaum) in the eastern Adriatic Sea
Figure 3. Alternations of the mean monthly gonadosomatic index (GSI) and values of gonad masses (Wg, g) in sardines collected by commercial purse seiners during 2013 (February–November 2013) on Croatian fishing grounds.
Figure 4. A in New data on Aplidium tabarquense (Tunicata: Ascidiacea) distribution in the Adriatic Sea
Figure 4. A) Posterior region of a zooid showing the gonads in the postabdomen. ab, abdomen; pa, postabdomen; ov, ovary; ts, testis. B) Postabdomen region with ovary, composed of three oocytes and an embryo. oo, oocytes; em, embryo. C) Postabdomen with testicular follicles. tf, testicular follicles. D) Larva with ectodermal vesicles, white arrows pointing out 3 adhesive organs. ev, ectodermal vesicles; am, pointed ampullae; ao, adhesive organs.
Figure 3. Aplidium tabarquense. A in New data on Aplidium tabarquense (Tunicata: Ascidiacea) distribution in the Adriatic Sea
Figure 3. Aplidium tabarquense. A) Whole zooid (larvae in peribranchial cavity). B) Oral siphon 6-lobed and atrial aperture with simple languet. C) Thorax (white arrows point out 16 stigmata rows). an, anus. D) Stomach. E) Transversal section of stomach, white arrows pointing out 5 folds.
Figure 2. A in New data on Aplidium tabarquense (Tunicata: Ascidiacea) distribution in the Adriatic Sea
Figure 2. A) Live colony sampled in Trašte Bay. B) Zoom of the colony, with the black arrows pointing to zooid arrangements in regular systems of two parallel series. C) Magnification of the preserved sample showing the test matrix impregnated by sand.
Figure 3 in Benthic invertebrates associated with subfossil cold-water coral frames and hardgrounds in the Albanian deep waters (Adriatic Sea)
Figure 3. Cnidaria recorded from the study area: a) Leiopathes glaberrima (AL16SA1); b) Dendrophyllia cornigera (AL16SA1); c) Isidella elongata (AL16SE2); d, d1) Caryophyllia calveri (AL15SE1); e) Stenocyathus vermiformis (AL16SE2); f, f ) Lophelia pertusa 1 (AL15SE1); g) Nausithoe sp. (AL15SE1)
Figure 5 in Benthic invertebrates associated with subfossil cold-water coral frames and hardgrounds in the Albanian deep waters (Adriatic Sea)
Figure 5. Annelids associated with Lophelia subfossil colonies from stations AL15SE1 and AL16SE2: a) Hyalopomatus madreporae, b, c) Serpulidae sp. 1, d) Filogranula gracilis, e) 1: Metavermilia multicristata, 2: Janita fimbriata, f) Metavermilia multicristata.
Figure 4 in Benthic invertebrates associated with subfossil cold-water coral frames and hardgrounds in the Albanian deep waters (Adriatic Sea)
Figure 4. Mollusks associated with the Lophelia pertusa and Dendrophyllia cornigera subfossil colonies collected at AL15SE1 and AL16SE2, and AL16SA1: a) Ranella olearia; b) Orania fusulus; c) Nassarius lima; d) Pagodula echinata; e) Putzeysia wiseri; f) Eulimella bogii; g) Emarginula adriatica; h) Yoldiella philippiana; i) Kelliella miliaris; j) Spondylus gussoni; k) Timoclea ovata; l) Tropidomya abbreviata.
Figure 6 in Benthic invertebrates associated with subfossil cold-water coral frames and hardgrounds in the Albanian deep waters (Adriatic Sea)
Figure 6. SEM images of bryozoans: a) Neolagenipora eximia, stat. AL15SE1; b) Idmidronea sp. 1., stat. AL15SE1.
Figure 2 in A new record of the barred knifejaw Oplegnathus fasciatus (Perciformes, Oplegnathidae), a Pacific fish, in the Adriatic Sea (Urinj, Croatia)
Figure 2. - Catch location of O. fasciatus in the Adriatic Sea (Croatian coast, off Urinj, Rijeka Bay).
Figure 1 in A new record of the barred knifejaw Oplegnathus fasciatus (Perciformes, Oplegnathidae), a Pacific fish, in the Adriatic Sea (Urinj, Croatia)
Figure 1. - Oplegnathus fasciatus, caught in the Adriatic Sea (Croatian coast, 1 Nm off Urinj, Rijeka Bay.
Figure 1 in Lampetra soljani, a new brook lamprey from the southern Adriatic Sea basin (Petromyzontiformes: Petromyzontidae)
Figure 1. – Micropterus salmoides (22.6 cm TL) from Mala Neretva River (catalogue number MS-IOR 101016).
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