Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
124
datasets available to search
ShareScore release 0.7.1
Dataset results
124 results for “Mytilidae”
Figures 5-8 from: Isola TE, Varisco MA, Cazzaniga NJ (2018) Implanted byssal hairs on postlarval shells of Mytilus edulis platensis (Bivalvia: Mytilidae) from Patagonia. Zoologia 35: 1-5. https://doi.org/10.3897/zoologia.35.e21978
Figures 5-8 Postlarvae of Mytilusedulisplatensis: (5) an 800 µm long postlarva with the "hairy" periostracum; the eye spot is still visible; (6) a 1 mm long postlarva under SEM; (7–8) close up of adventitious hairs (SEM, 300 × and 850 × respectively).
Fig. 2 in Modiolus cimbricus sp. nov. (Bivalvia: Mytilidae) endemic in the Kattegat-Skagerrak
Fig. 2. Modiolus cimbricus sp. nov. A 17.5 mm long specimen in its ball of sand grains. This specimen has been cultured for five years. Scale bar = 5 mm.
РИС. 5. Личинки мидии Mytilus galloprovincialis на стадии великонхи с "глаЗком" (A – 275,0 мкм) и педивелигера (B – 296,0 мкм). МасШтаб: 30 мкм. A1 и B1 – СЭМ - иЗображениЯ Замкового краЯ створок великонхи с "глаЗком" и педивелигера: a – леваЯ створка; b – праваЯ створка. (Описание в тексте). in Морфометрические особенности личинок мидии Mytilus galloprovincialis (Lamarck, 1819) (Bivalvia: Mytilidae) в онтогенеЗе
РИС. 5. Личинки мидии Mytilus galloprovincialis на стадии великонхи с "глаЗком" (A – 275,0 мкм) и педивелигера (B – 296,0 мкм). МасШтаб: 30 мкм. A1 и B1 – СЭМ - иЗображениЯ Замкового краЯ створок великонхи с "глаЗком" и педивелигера: a – леваЯ створка; b – праваЯ створка. (Описание в тексте).
РИС. 2. Личинки мидии Mytilus galloprovincialis на стадии велигера (A – 105 мкм; B – 110 мкм; C – 120 мкм). МасШтаб: 30 мкм. A1; B1; C1 – СЭМ - иЗображениЯ Замкового краЯ раковины велигеров: a – леваЯ створка; b – праваЯ створка. (Описание в тексте). in Морфометрические особенности личинок мидии Mytilus galloprovincialis (Lamarck, 1819) (Bivalvia: Mytilidae) в онтогенеЗе
РИС. 2. Личинки мидии Mytilus galloprovincialis на стадии велигера (A – 105 мкм; B – 110 мкм; C – 120 мкм). МасШтаб: 30 мкм. A1; B1; C1 – СЭМ - иЗображениЯ Замкового краЯ раковины велигеров: a – леваЯ створка; b – праваЯ створка. (Описание в тексте).
РИС. 2. ИЗобраЖения раковин Mytilisepta virgata (Wiegmann, 1837) иЗ Залива Петра Великого (Японское море): A, B – длина раковины 14.4 мм; C, D – длина раковины 13.3 мм; E, F – длина раковины 10.6 мм; ЗМ ДВФУ 54678/Bv-9058. in Первая находка Mytilisepta virgata (Bivalvia: Mytilidae) в российских водах
РИС. 2. ИЗобраЖения раковин Mytilisepta virgata (Wiegmann, 1837) иЗ Залива Петра Великого (Японское море): A, B – длина раковины 14.4 мм; C, D – длина раковины 13.3 мм; E, F – длина раковины 10.6 мм; ЗМ ДВФУ 54678/Bv-9058.
Figure 2 in The gill morphology of the date mussel Lithophaga lithophaga (Bivalvia: Mytilidae)
Figure 2. Axial region of the ctenidia. a. A narrow axis and thin filaments of the gill of L. lithophaga. b. A prominent canal, full of food material (arrows) at the dorsal end of the axial region and a dentation at the lower edge (arrowhead). c. Protozoa trapped in the axial canal. Scale bar: a = 200 µm, b = 100 µm, c = 50 µm.
Figure 5 in The gill morphology of the date mussel Lithophaga lithophaga (Bivalvia: Mytilidae)
Figure 5. Ciliation on the filaments from the frontal view in the gill of L. lithophaga. a. Three very thick layers of cilia are prominent. b. Latero-frontal cilia in pairs. c. Duality in latero-frontal cilia and aggregated (arrowheads) or singly distributed (circles) food particles on the ciliary surface. lf: latero-frontal cilia. Scale bar: a = 40 µm, b = 10 µm, c = 4 µm.
Figure 1. a in The gill morphology of the date mussel Lithophaga lithophaga (Bivalvia: Mytilidae)
Figure 1. a. General anatomy of L. lithophaga. b. Schematic view of the gills showing very prominent double sheets within the mantle cavity. c. A ridged demibranch (*). Ml: mantle layers, Mc: mantle cavity, f: foot, ea: excurrent aperture, ia: incurrent aperture, aam: anterior adductor muscle, arm: anterior retractor muscle, ih: inner hemipalp, od: outer demibranches, id: outer demibranches.
Figure 7 in The gill morphology of the date mussel Lithophaga lithophaga (Bivalvia: Mytilidae)
Figure 7. Ostia (arrows) distributed unevenly along the abfrontal surface of the lamellae. Scale bar = 10 µm.
Figures 6 from: Oliver PG (2015) Description and morphology of the "Juan de Fuca vent mussel", Benthomodiolus erebus sp. n. (Bivalvia, Mytilidae, Bathymodiolinae): "Phylogenetically basal but morphologically advanced". Zoosystematics and Evolution 91(2): 151-165. https://doi.org/10.3897/zse.91.5417
Figures 6 - a–d Shells of Benthomodiolus geikotsucola Okutani and Miyazaki, 2007. a exterior of left valve of holotype (NSMT-Mo-7670349), b–d of the dissected paratype (NSMT Mo-76704j).
Figure 3 from: Oliver PG (2015) Description and morphology of the "Juan de Fuca vent mussel", Benthomodiolus erebus sp. n. (Bivalvia, Mytilidae, Bathymodiolinae): "Phylogenetically basal but morphologically advanced". Zoosystematics and Evolution 91(2): 151-165. https://doi.org/10.3897/zse.91.5417
Figure 3 - Anatomical details of Benthomodiolus erebus sp. n. a exhalant aperture interior, b exhalant aperture exterior, c posterior viewed from the ventral, d anterior mantle edge, e middle mantle edge, f labial palps, g the alimentary system and heart.
Figure 7 from: Oliver PG (2015) Description and morphology of the "Juan de Fuca vent mussel", Benthomodiolus erebus sp. n. (Bivalvia, Mytilidae, Bathymodiolinae): "Phylogenetically basal but morphologically advanced". Zoosystematics and Evolution 91(2): 151-165. https://doi.org/10.3897/zse.91.5417
Figure 7 - Gross anatomy of Benthomodiolus geikotsucola stained with methylene green. a after removal of left valve and mantle, b after further removal of the ctenidium, c diagram of the adductor, pedal and byssal musculature.
Figure 2 from: Oliver PG (2015) Description and morphology of the "Juan de Fuca vent mussel", Benthomodiolus erebus sp. n. (Bivalvia, Mytilidae, Bathymodiolinae): "Phylogenetically basal but morphologically advanced". Zoosystematics and Evolution 91(2): 151-165. https://doi.org/10.3897/zse.91.5417
Figure 2 - Gross anatomy of Benthomodiolus erebus sp. n. a after removal of left valve and mantle, b after further removal of the ctenidium, c diagram of the adductor, pedal and byssal musculature.
Figure 1 from: Oliver PG (2015) Description and morphology of the "Juan de Fuca vent mussel", Benthomodiolus erebus sp. n. (Bivalvia, Mytilidae, Bathymodiolinae): "Phylogenetically basal but morphologically advanced". Zoosystematics and Evolution 91(2): 151-165. https://doi.org/10.3897/zse.91.5417
Figure 1 - Shells of Benthomodiolus erebus sp. n. a–d holotype, a external of left valve, b external of right valve, c internal of left valve, d dorsal (CMNML 097165), e paratype external of right valve (NMW.Z.2015.013.1a).
Figures 5 from: Oliver PG (2015) Description and morphology of the "Juan de Fuca vent mussel", Benthomodiolus erebus sp. n. (Bivalvia, Mytilidae, Bathymodiolinae): "Phylogenetically basal but morphologically advanced". Zoosystematics and Evolution 91(2): 151-165. https://doi.org/10.3897/zse.91.5417
Figures 5 - a–b Images of the benthic habitat at the Endeavour segment and Middle Valley. a showing a clump of Ridgeia and many dead vesicomyid clams, b a clump of Ridgeia around a sulphide block
Figures 10 from: Oliver PG (2015) Description and morphology of the "Juan de Fuca vent mussel", Benthomodiolus erebus sp. n. (Bivalvia, Mytilidae, Bathymodiolinae): "Phylogenetically basal but morphologically advanced". Zoosystematics and Evolution 91(2): 151-165. https://doi.org/10.3897/zse.91.5417
Figures 10 - a–e The ctenidium of Benthomodiolus lignocola a gross anatomy, b SEM of whole filaments, c SEM of inter filamentar junction, d SEM of tip of filament, e SEM of polygonal surface of microvilli (Knudsen 1970). Figures 4f–h. The ctenidium of Benthomodiolus geikotsucola. f SEM of a whole filaments gross anatomy, g SEM of inter filamentar junction, h SEM of the polygonal surface.
Figures 4 from: Oliver PG (2015) Description and morphology of the "Juan de Fuca vent mussel", Benthomodiolus erebus sp. n. (Bivalvia, Mytilidae, Bathymodiolinae): "Phylogenetically basal but morphologically advanced". Zoosystematics and Evolution 91(2): 151-165. https://doi.org/10.3897/zse.91.5417
Figures 4 - a–e The ctenidium of Benthomodiolus erebus sp. n. a gross anatomy, b SEM of whole filament, c SEM of tip of a single filament, d SEM of inter filamental junction, e SEM of polygonal surface of microvilli. f–h The ctenidium of Benthomodiolus geikotsucola. f gross anatomy, g SEM of a whole filament, h SEM of the polygonal surface.
Figure 9 from: Oliver PG (2015) Description and morphology of the "Juan de Fuca vent mussel", Benthomodiolus erebus sp. n. (Bivalvia, Mytilidae, Bathymodiolinae): "Phylogenetically basal but morphologically advanced". Zoosystematics and Evolution 91(2): 151-165. https://doi.org/10.3897/zse.91.5417
Figure 9 - Shells and anatomy of paratypes Benthomodiolus abyssicola Knudsen, 1970 (ZMUC-BIV-30). a exterior of the right valve of the dissected specimen, b interior of left valve, c dorsal view of a small specimen with well preserved periostracal bristles, d gross anatomy, stained with methylene green after removal of right valve, mantle and ctenidium, e pedal and byssal musculature, f diagram of the gross anatomy of a paratype after Kenk in Coan and Valentich-Scott 2012.
Figure 8 from: Oliver PG (2015) Description and morphology of the "Juan de Fuca vent mussel", Benthomodiolus erebus sp. n. (Bivalvia, Mytilidae, Bathymodiolinae): "Phylogenetically basal but morphologically advanced". Zoosystematics and Evolution 91(2): 151-165. https://doi.org/10.3897/zse.91.5417
Figure 8 - Shells and anatomy of Benthomodiolus lignocola Dell, 1987. a exterior of the right valve of the holotype (MNNZ M.075023), b-d the shell of the dissected paratype MNNZ M-075248/1, e–g gross anatomy stained with methylene green. e after removal of left valve and mantle, f after further removal of the ctenidium, g diagram of the adductor, pedal and byssal musculature.
Figure 3 in First record of the Mediterranean mussel Mytilus galloprovincialis (Bivalvia, Mytilidae) in Brazil
Figure 3. Genetic identification of the focal individual by phylogenetic analysis under Bayesian Inference (BI) based on COI mitochondrial gene. Only posterior probabilities higher than 0.75 are shown. Branch lengths represent units of substitutions per site.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.