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46 results for “tooth development”

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zenodo32/100

Alveolar ridge alterations in the maxillary anterior region after tooth extraction through orthodontic forced eruption for implant site development: A prospective CBCT case series

<p>Dataset for all analyses done in the study</p>

opencc-by-4.0Feb 2019View details →
zenodo32/100

Figure 11 in Breaking through the eggshell: embryonic development of the premaxillary dentition in Lacerta agilis (Squamata: Unidentata) with special emphasis on the egg tooth

Figure 11. The egg tooth of Lacerta agilis at developmental stage 36. A, labiolingual histological section through the egg tooth and higher magnification of the area from the smaller box (inset), stained with H&amp;E. B, labiolingual histological section through the egg tooth and dentin under higher magnification (inset) from the egg tooth tip, stained with AZAN trichrome. C, higher magnification of the area from the larger box in A showing a reversal line (arrows). D, transverse histological section through the anterior snout showing the cellular attachment tissue connecting the egg tooth to pleura, stained with H&amp;E. E, sagittal cutaway of the snout (left), microtomographic sagittal (middle) and labiolingual (right) sections of the egg tooth. F, 3D reconstruction of the premaxilla and premaxillary teeth with exclusion of the egg tooth, ventral view. G, 3D reconstruction of the premaxilla and all premaxillary teeth, ventral view. H, 3D reconstruction of the premaxilla and the egg tooth (semi-transparent), right posterolateral view. Asterisks in E and F show the forming successor of the egg tooth. Scale bars: 100 μm.

opennotspecifiedAug 2024View details →
zenodo32/100

Figure 4 in Breaking through the eggshell: embryonic development of the premaxillary dentition in Lacerta agilis (Squamata: Unidentata) with special emphasis on the egg tooth

Figure 4. The egg tooth of Lacerta agilis at developmental stage 31. A, transverse histological section through the snout at the level of the egg tooth and forming premaxilla (asterisks), stained with H&amp;E. B, 3D reconstruction of the palate. C, transverse histological section posterior to A, stained with H&amp;E. D, transverse histological section posterior to C, stained with H&amp;E. E, 3D reconstruction of the snout showing the egg tooth and forming premaxilla (asterisks), anterior semi-transparent view. F, microtomographic frontal section through the anterior snout. G, microtomographic frontal section through the anterior snout, ventral to F. Scale bars: 50 μm for histological sections; 500 μm for microtomographic sections.

opennotspecifiedAug 2024View details →
zenodo32/100

Figure 7 in Breaking through the eggshell: embryonic development of the premaxillary dentition in Lacerta agilis (Squamata: Unidentata) with special emphasis on the egg tooth

Figure 7. The premaxillary teeth of Lacerta agilis at developmental stage 34. A, labiolingual histological section through the egg tooth, stained with H&amp;E. B, labiolingual histological section through the egg tooth, stained with AZAN trichrome. C, 3D reconstruction of the anterior snout, right lateral semi-transparent view. D, sagittal cutaway of the anterior snout. E, labiolingual histological section through the regular premaxillary tooth, stained with AZAN trichrome. F, labiolingual histological section through the regular premaxillary tooth, stained with H&amp;E. Scale bars: 50 μm for histological sections; 200 μm for 3D reconstructions.

opennotspecifiedAug 2024View details →
zenodo32/100

Figure 3 in Breaking through the eggshell: embryonic development of the premaxillary dentition in Lacerta agilis (Squamata: Unidentata) with special emphasis on the egg tooth

Figure 3. The egg tooth of Lacerta agilis at developmental stage 29. A, transverse histological section through the snout at the level of the epithelial thickening of the forming egg tooth, stained with H&amp;E. B, 3D reconstruction of the snout, lateroventral view. C, transverse histological section through the snout posterior to A, showing epithelial thickening of the forming regular premaxillary tooth (arrow). D, sagittal cutaway of the snout, stage 29, but slightly older than in A–C. E, 3D reconstruction of the snout, lateroventral semi-transparent view, stage 29, but slightly older than in A–C. F, transverse histological section through the snout at the level of the egg tooth bud (dotted line) stained with AZAN trichrome, stage 29, but slightly older than in D and E. G, transverse histological section through the snout at the level of the premaxillary dental lamina, stained with AZAN trichrome, posterior to F. Scale bars: 50 μm for histological sections; 500 μm for 3D reconstructions.

opennotspecifiedAug 2024View details →
zenodo32/100

Figure 10 in Breaking through the eggshell: embryonic development of the premaxillary dentition in Lacerta agilis (Squamata: Unidentata) with special emphasis on the egg tooth

Figure 10. The egg tooth of Lacerta agilis at developmental stage 36. A, stereomicroscope photomicrograph of the anterior snout, left ventrolateral view (mirrored). B, stereomicroscope photomicrograph of the anterior palate. C, 3D reconstruction of the snout, anterior view. D, scanning electron micrograph of the egg tooth showing a disruption of the enamel organ (arrow), ventral view. E, scanning electron micrograph of the lateral border of the egg tooth showing small bulges (arrowhead). F, scanning electron micrograph of the periderm cells covering the egg tooth. G, scanning electron micrograph of the microridges on the egg tooth periderm cells. Scale bars: 200 μm in A–D; 1 μm in E–G.

opennotspecifiedAug 2024View details →
zenodo32/100

Figure 6 in Breaking through the eggshell: embryonic development of the premaxillary dentition in Lacerta agilis (Squamata: Unidentata) with special emphasis on the egg tooth

Figure 6. The egg tooth of Lacerta agilis at developmental stage 34. A, stereomicroscope photomicrograph of the anterior palate. B, 3D reconstruction of the snout, anterior semi-transparent view. C, 3D reconstruction of the palate, anteroventral view. D, scanning electron micrograph of the anterior palate and the egg tooth surface (inset). Scale bars: 100 μm; 1 μm for inset in D.

opennotspecifiedAug 2024View details →
zenodo32/100

Figure 2 in Breaking through the eggshell: embryonic development of the premaxillary dentition in Lacerta agilis (Squamata: Unidentata) with special emphasis on the egg tooth

Figure 2. Transverse histological section through the snout of a Lacerta agilis embryo, stained with AZAN trichrome; developmental stage 28. A, section at the level of the facial prominence fusion (arrows). B, section at the level of the nasal plug, anterior to A. Scale bars: 50 μm.

opennotspecifiedAug 2024View details →
zenodo32/100

Figure 5 in Breaking through the eggshell: embryonic development of the premaxillary dentition in Lacerta agilis (Squamata: Unidentata) with special emphasis on the egg tooth

Figure 5. Transverse histological section through the snout of Lacerta agilis at developmental stage 32, stained with H&amp;E. A, middle part of the developing egg tooth. B, anterior part of the developing egg tooth. C, posterior part of the developing egg tooth. D, premaxillary regular teeth at bud stage, section posterior to C. Scale bars: 50 μm; 25 μm for inset in B.

opennotspecifiedAug 2024View details →
zenodo32/100

Figure 9 in Breaking through the eggshell: embryonic development of the premaxillary dentition in Lacerta agilis (Squamata: Unidentata) with special emphasis on the egg tooth

Figure 9. The premaxillary teeth of Lacerta agilis at developmental stage 35. A, labiolingual histological section through the egg tooth showing the forming attachment tissue (asterisks), stained with AZAN trichrome. B, labiolingual histological section through the egg tooth showing the forming attachment tissue (asterisks), stained with H&amp;E. C, 3D reconstruction of the palate, non-transparent (left) and semitransparent (right) view. D, sagittal cutaway of the anterior snout. E, labiolingual histological section through the regular premaxillary tooth and forming the subsequent premaxillary teeth (arrow), stained with AZAN trichrome. F, labiolingual histological section through the regular premaxillary teeth and primordium of the egg tooth successor (arrowhead), stained with H&amp;E. Scale bars: 50 μm for histological sections; 100 μm for 3D reconstructions.

opennotspecifiedAug 2024View details →
zenodo32/100

Figure 1 in Breaking through the eggshell: embryonic development of the premaxillary dentition in Lacerta agilis (Squamata: Unidentata) with special emphasis on the egg tooth

Figure 1. Distribution of the egg tooth (teeth) and caruncle in amniotes. The snout drawings, except for Unidentata (based on this study), are based on the literature: Gekkota (Hermyt et al. 2020b), Sphenodon, turtle (Fioroni 1962), bird (Wang et al. 2017), crocodilian (García 2007), and monotreme (Fenelon et al. 2023). Silhouettes are from http://phylopic.org/. Note that this simplified phylogenetic tree assumes the existence of the molecular clades Unidentata (Burbrink et al. 2020) and Archelosauria (Crawford et al. 2015).

opennotspecifiedAug 2024View details →
zenodo32/100

Figure 13 in Breaking through the eggshell: embryonic development of the premaxillary dentition in Lacerta agilis (Squamata: Unidentata) with special emphasis on the egg tooth

Figure 13. The developmental sequences of the egg tooth, the most advanced regular premaxillary teeth, and the most advanced maxillary teeth.

opennotspecifiedAug 2024View details →
zenodo32/100

Figure 12 in Breaking through the eggshell: embryonic development of the premaxillary dentition in Lacerta agilis (Squamata: Unidentata) with special emphasis on the egg tooth

Figure 12. The premaxillary teeth of Lacerta agilis at developmental stage 36. A, 3D reconstruction of the anterior palate including semitransparent view (right). B, labiolingual histological section through the largest regular premaxillary tooth and higher magnification of the collagen fibres of the forming attachment tissue (asterisks in the inset), stained with AZAN trichrome. C, labiolingual histological section through the regular premaxillary teeth showing a reversal line (arrows) between the alveolar bone and premaxilla, stained with H&amp;E. D, labiolingual histological section through the successor of the egg tooth, stained with AZAN trichrome. E, labiolingual histological section through the successor of the egg tooth, stained with H&amp;E. F, transverse histological section through the snout at the level of maxillary and premaxillary dental laminae apposition, stained with H&amp;E. Scale bars: 200 μm in A; 50 μm in B–F.

opennotspecifiedAug 2024View details →
zenodo32/100

Figure 8 in Breaking through the eggshell: embryonic development of the premaxillary dentition in Lacerta agilis (Squamata: Unidentata) with special emphasis on the egg tooth

Figure 8. The egg tooth of Lacerta agilis at developmental stage 35. A, stereomicroscope photomicrograph of the anterior snout, left lateral view (mirrored), early developmental stage 35. B, stereomicroscope photomicrograph of the anterior snout, left lateral view (mirrored), at late developmental stage 35. C, stereomicroscope photomicrograph of the anterior palate, early developmental stage 35. D, stereomicroscope photomicrograph of the anterior palate, late developmental stage 35. E, scanning electron micrograph of the anterior palate, late developmental stage 35. F, magnification of the area from the box in E showing the egg tooth. G, magnification of the area from the box in F showing the small bulges (arrowheads) on the lateral border of the egg tooth. Scale bars: 200 μm in A–D; 50 μm in E, F; 5 μm in G.

opennotspecifiedAug 2024View details →
ClinicalTrials.gov32/100

Tooth Development in Molar Incisor Hypomineralisation

ClinicalTrials.gov study NCT06639815. IPD Sharing: UNDECIDED. Countries: 1. Publications: 1.

restrictedIPD-UNDECIDEDFeb 2026View details →
dryad32/100

Developing echolocation: distinctive patterns in the ontogeny of the tympanoperiotic complex in baleen and toothed whales (Cetacea)

Open the record for dataset details and reuse information.

publicJan 2022View details →
geo24/100

Human iPSC Derived Enamel Organoid Guided by Single Cell Atlas of Human Tooth Development

GEO Series GSE184749. Homo sapiens. 19 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenJan 2023View details →
geo24/100

Wnt/β-catenin signaling, which is activated in odontomas, reduces Sema3A expression to regulate odontogenic epithelial cell proliferation and tooth germ development

GEO Series GSE116739. Mus musculus. 2 samples. Type: Expression profiling by array.

openGEO-OpenMar 2019View details →
geo24/100

Keystone genes for tooth development [Rat RNA-Seq]

GEO Series GSE158697. Rattus norvegicus. 15 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenNov 2020View details →
geo24/100

Keystone genes for tooth development [single-cell RNA-seq]

GEO Series GSE142200. Mus musculus. 4 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenNov 2020View details →

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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.

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