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32 results for “Whale bones”
Fig. 5 in Systematic revision of a Miocene sperm whale from Patagonia, Argentina, and the phylogenetic signal of tympano-periotic bones in Physeteroidea
Fig. 5. Schematic comparisons of the periotic of MLP 76-IX-5-1, "Preaulophyseter gualichensis" Caviglia and Jorge, 1980 (A) with "Aulophyseter" rionegrensis (B), Acrophyseter deinodon (C, modified from Lambert et al. 2016), Zygophyseter varolai (D, modified from Bianucci and Landini 2006), Aulophyseter morricei (E, modified from Kellogg 1927), Orycterocetus crocodilinus (F, modified from Kellogg 1965), and Physeter macrocephalus (G, modified from Kasuya 1973). In dorsal (A1–G1), ventral (A2–G2), medial (A3–G3), and lateral (A4–C4, E4–G4) views. Black areas indicate anatomical foramina. Not to scale.
Fig. 4 in Systematic revision of a Miocene sperm whale from Patagonia, Argentina, and the phylogenetic signal of tympano-periotic bones in Physeteroidea
Fig. 4. Isolated periotics of a sperm whale Physeteroidea indet. from the Miocene of Patagonia. A. MPEF-PV-605, right periotic. B. MPEF-PV-651, right periotic. C. MPEF-PV-6098, left periotic. D. MLP 80-VIII-30-133a, right periotic. E MLP 80-VIII-30-133b, left periotic. F. MLP 52-X-2-8, right periotic. In dorsal (A1–F1), ventral (A2–F2), medial (A3–F3), and lateral (A4–F4) views. G. MLP 56-IX-2-7, fragmentary periotic in dorsal (G1) and medial (G2) views.
Fig. 2 in Systematic revision of a Miocene sperm whale from Patagonia, Argentina, and the phylogenetic signal of tympano-periotic bones in Physeteroidea
Fig. 2. Teeth of a sperm whale Physeteroidea indet. previously described as "Preaulophyseter gualichensis" Caviglia and Jorge, 1980, MLP 76-IX5-1, from the Miocene of Gran Bajo del Gualicho Formation, Patagonia, Argentina; in labial (A1) and lingual (A2) views, and detailed view of the crown (A3) and enamel (A4). I and II refer to the two fragmentary teeth of the MLP 76-IX-5-1 (the best and worst preserved tooth, respectively).
Fig. 3. Sperm whale Physeteroidea indet. A in Systematic revision of a Miocene sperm whale from Patagonia, Argentina, and the phylogenetic signal of tympano-periotic bones in Physeteroidea
Fig. 3. Sperm whale Physeteroidea indet. A. Left periotic of nomen dubium "Preaulophyseter gualichensis" Caviglia and Jorge, 1980, MLP 76-IX-5-1, from the Miocene of Gran Bajo del Gualicho Formation, Patagonia, Argentina, in dorsal (A1, A2), ventral (A3, A4), medial (A5, A6), and lateral (A7, A8) views. B, C. Two isolated right periotics from the Miocene of Patagonia, MLP 76-IX-2-3 (B) and MLP 76-IX-2-4 (C), in dorsal (B1, C1), ventral (B2, C2), medial (B3, C3), and lateral (B4, C4) views. Photographs (A1, A3, A5, A7, B, C) and explanatory drawings (A2, A4, A6, A8). Abbreviations: abf, anterior bullar facet; aca, aperture for cochlear aqueduct; ai, anterior incisure; ao, accessory ossicle; ava, aperture for the vestibular aqueduct; eh, epitympanic hiatus; fasu, facial sulcus; fo, fenestra ovalis; fosi, foramen singulare; fr, fenestra rotunda; iam, internal acoustic meatus; lt, lateral tuberosity; mf, mallear fossa; pbf, posterior bulla facet; pofc, proximal opening of facial canal (VII); sct, spiral cribiform tract (VIII).
Fig. 1 in Systematic revision of a Miocene sperm whale from Patagonia, Argentina, and the phylogenetic signal of tympano-periotic bones in Physeteroidea
Fig. 1. Geographic location of studied area in Patagonia, southern Argentina (A) and location of the marine Miocene outcrops (B, stars) where the specimens included in this study were collected: Gran Bajo del Gualicho Formation (1) and Gaiman Formation (2).
Hvalabein, Whale bone
3D skráseting av skroypiligum hvalabeini í fornfrøðiligari veit við "Bønhúsið" Heimi í Húsið í Koltri. *In situ 3D photoscanning of a fragile whale bone found in an archaeological trench Heimi í Húsi, Koltur, Faroe Islands.* Model by Helgi D. Michelsen Source: Objaverse 1.0 / Sketchfab
ZooMS identification of a whale bone tool from Bronze Age Heiloo, the Netherlands
<p>This dataset contains the ZooMS data used in the palaeoproteomic identification of a whale bone tool from Bronze Age Heiloo, the Netherlands. The same project was also analysed using LC-MS/MS. The reference to the data repository containing the LC-MS/MS data can be found in the associated publication.</p>
MALDI-TOF MS spectra of archaeological whale bone specimens from Atlantic Europe
<p class="MsoNormal"><span>Whale bones are regularly found during archaeological excavations. Identification of these specimens to taxonomic levels is problematic due to their fragmented state. This lack of taxonomic resolution limits understanding of the past spatiotemporal distributions of whale populations and reconstructions of early whaling activities. To overcome this challenge, we performed Zooarchaeology by Mass-Spectrometry on an unprecedented selection of 719 archaeological and palaeontological specimens of probable whale bone from Atlantic European contexts, from the Middle to Late Neolithic (c.3500–2500 BCE) to the eighteenth century CE.</span></p> <p class="MsoNormal"><span>The results show high numbers of Balaenidae (most likely North Atlantic right whale (<em>Eubalaena glacialis</em>)) and grey whale (<em>Eschrichtius robustus</em>) specimens, two species no longer present in the eastern North Atlantic. Many of these specimens derive from contexts associated with the known medieval whaling cultures of the Basques, northern Spaniards, Normans, Flemish, Frisians, Anglo-Saxons, and Scandinavians. This association raises the likelihood that pre-industrial whaling impacted these taxa, contributing to their extinction and extirpation respectively. Much lower numbers of other large whale taxa were identified, suggesting that it was once abundant and accessible whales that suffered the greatest long-term impact. The pattern of natural abundance leading to over-exploitation, well-documented for other taxa, is thus applicable to early whaling. </span></p>
Whale bone and shell bracelet
This bracelet is made of whale bone and decorated with lines of dentalium shell. It was collected on Captian Cook's third voyage at Prince William Sound, which is located on the east side of the Kenai Peninsula, Alaska. It was previously part of the Levarian collection, which was assembled by Ashton Lever and included many items from Captain Cook's voyages. After several decades on display in London, the collection was broken up and sold at auction - where the Cuming family bought a [number of items](http://heritage.southwark.gov.uk/people/2080/leverian-museum/objects) which remain in the collection today. You can see more images and information about this object on [our website](http://heritage.southwark.gov.uk/objects/6434/bracelet?ctx=a0b2007d-0093-4646-b336-3706dc3a9ea1&idx=5). Source: Objaverse 1.0 / Sketchfab
MALDI-TOF MS spectra of archaeological whale bone specimens from Atlantic Europe
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XFP-052 Whale bone wedge, Sanak Island, Alaska
Whale bone splitting wedge, Sanak Island, Alaska. CAT# XFP-052-10.1 XFP-052 is a late prehistoric and early Historic site on Sanak Island, Alaska. It dates 1600-1800 CE. The site is heavily eroded. These artifacts were scanned with either a Faro Edge Arm or a Minolta 9i. Processed in Geomagic or Polyworks. 4-8 photos were used for texture in ZBrush. The Sanak Island artifacts are presented as a result of the research conducted under grants NSF 0326584, NSF 0508101, NSF 1139266, NSF 1321411. H. Maschner, Principal Investigator. Original digitizing work done at the IVL at Id. St. Univ. Subsequent processing completed at Global Digital Heritage. Fieldwork and analysis done with the permission and collaboration of the Pauloff Harbor Tribe and the Sanak Corporation Source: Objaverse 1.0 / Sketchfab
XFP-056 Whale bone wedge, Sanak Island, Alaska
Whale bone wedge fragment, Sanak Island, Alaska. CAT# XFP-056-5 XFP-056 is a group of large house depressions on the south shore of Pauloff Harbor, Sanak Island, Alaska. Multiple radiocarbon dates place it from 300 CE to 800 CE, although the upper most levels may date to the 13th century. These artifacts were scanned with either a Faro Edge Arm or a Minolta Vivid 9i. Processed in Geomagic or Polyworks. 4-8 photos were used for texture in ZBrush. The Sanak Island artifacts are presented as a result of the research conducted under grants NSF 0326584, NSF 0508101, NSF 1139266, NSF 1321411. H. Maschner, Principal Investigator. Original digitizing work done at the IVL at Id. St. Univ. Subsequent processing completed at Global Digital Heritage. Fieldwork and analysis done with the permission and collaboration of the Pauloff Harbor Tribe and the Sanak Corporation Source: Objaverse 1.0 / Sketchfab
XFP-052 Whale bone wedge. Sanak Island, Alaska
Whale bone splitting wedge. Sanak Island, Alaska. Cat# XFP-052-2. XFP-052 is a late prehistoric and early Historic site on Sanak Island, Alaska. It dates 1600-1800 CE. The site is heavily eroded. These artifacts were scanned with either a Faro Edge Arm or a Minolta 9i. Processed in Geomagic or Polyworks. 4-8 photos were used for texture in ZBrush. The Sanak Island artifacts are presented as a result of the research conducted under grants NSF 0326584, NSF 0508101, NSF 1139266, NSF 1321411. H. Maschner, Principal Investigator. Original digitizing work done at the IVL at Id. St. Univ. Subsequent processing completed at Global Digital Heritage. Fieldwork and analysis done with the permission and collaboration of the Pauloff Harbor Tribe and the Sanak Corporation Source: Objaverse 1.0 / Sketchfab
XFP-121 whale bone wedge. Sanak Island, Alaska
Fragment of whale bone wedge. Sanak Island, Alaska. CAT# XFP-121-11 XFP-121 is a late prehistoric to contact period site on the west side of Sanak Island. It is dominated by the classic nucleus-satellite house styles of the Alaska Peninsula and Unimak Island. 13 of the 75 depressions are large, communal houses. Two c14 dates are about 1450 -1650 CE. These artifacts were scanned with either a Faro Edge Arm or a Minolta Vivid 9i. Processed in Geomagic or Polyworks. 4-8 photos were used for texture in ZBrush. The Sanak Island artifacts are presented as a result of the research conducted under grants NSF 0326584, NSF 0508101, NSF 1139266, NSF 1321411. H. Maschner, Principal Investigator. Original digitizing work done at the IVL at Id. St. Univ. Subsequent processing completed at Global Digital Heritage. Fieldwork and analysis done with the permission and collaboration of the Pauloff Harbor Tribe and the Sanak Corporation Source: Objaverse 1.0 / Sketchfab
FIGURE 4 in A new species of Cirratulus (Annelida: Polychaeta) described from a shallow-water whale bone in Antarctica
FIGURE 4. Cirratulus balaenophilus sp. nov. SEM micrographs. A. Thoracic region; B. Detail of anterior region showing the general arrangement of dorsal tentacles and first branchiae; C. Anterior region showing the nuchal organ; D. Detail of the nuchal organ; E. Detail of splayed fibrils in the capillary chaeta from second notopodia. br, branchiae; dT, dorsal tentacle; nuO, nuchal organ; par, parapodia; per, peristomium; pr, prostomium.
FIGURE 2 in A new species of Cirratulus (Annelida: Polychaeta) described from a shallow-water whale bone in Antarctica
FIGURE 2. Cirratulus balaenophilus sp. nov. A. Preserved holotype (CRBA-9616); B. Living adult paratype (CRBA-9617); C. Holotype stained with Methyl Green; D. Holotype mid-anterior region stained with Methyl Green; E. Living specimen crawling in the opening of one of the galleries in the bone matrix.
FIGURE 1. A in A new species of Cirratulus (Annelida: Polychaeta) described from a shallow-water whale bone in Antarctica
FIGURE 1. A. Map of the area where samples were collected; B. South Shetland Islands, Bransfield Strait and Antarctic Peninsula; C. Deception Island. GdC, "Gabriel de Castilla" Spanish Antarctic Base; Sta. 1, station where experiment was deployed (fresh bone); Sta. 2, additional bone collected via scuba-diving (old bone).
FIGURE 3 in A new species of Cirratulus (Annelida: Polychaeta) described from a shallow-water whale bone in Antarctica
FIGURE 3. Cirratulus balaenophilus sp. nov. A. Anterior region dorsal view (holotype; CRBA-9616); B. Anterior region, lateral view (adult paratype; CRBA-9617); C. Posterior region, lateral view (adult paratype; CRBA-9617). br, branchiae; dT, dorsal tentacle; nuO, nuchal organ; par, parapodia; per, peristomium; pr, prostomium.
77-47-Q302 Whale Bone Plate, Hot Springs Village
Whale Bone (vertabra) Plate, Decorated. Large Whale. Hot Springs Village, Port Moller, Alaska CAT# 77-47-Q302 Okada excavations HHQ, Level 4-8 Hot Springs 1C. 1300-1000 BCE The Hot Springs site is a massive village on the shore of Port Moller, on the Alaska Peninsula side of the southern Bering Sea. It was excavated by several different teams over the last 100 years. The main occupations are from 2000 BCE-1000 BCE, and from 100 CE to 800 CE. The Hot Springs artifacts are presented as a result of the research conducted under grants NSF 0137756, NSF 1204020, NSF 1139266, and NSF 1321411. H. Maschner, Principal Investigator. Original digitizing work done at the IVL at Id. St. Univ. Subsequent processing completed at Global Digital Heritage. Source: Objaverse 1.0 / Sketchfab
Whale Bone Mask, Hot Springs Village, AK
Whale Bone Mask, Hot Springs Village, Port Moller, Alaska Okada Excavations, HHU2. Hot Springs 1C 1300-1000 BCE. The Hot Springs site is a massive village on the shore of Port Moller, on the Alaska Peninsula side of the southern Bering Sea. It was excavated by several different teams over the last 100 years. The main occupations are from 2000 BCE-1000 BCE, and from 100 CE to 800 CE. The Hot Springs artifacts are presented as a result of the research conducted under grants NSF 0137756, NSF 1204020, NSF 1139266, and NSF 1321411. H. Maschner, Principal Investigator. Original digitizing work done at the IVL at Id. St. Univ. Subsequent processing completed at Global Digital Heritage. Source: Objaverse 1.0 / Sketchfab
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