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65 results for “Auris”

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zenodo40/100

Linked collectors and determiners for: Colectas de la levadura emergente Candida auris en aguas marinas de Bocagrande-Cartagena.

Natural history specimen data linked to collectors and determiners held within, "Colectas de la levadura emergente Candida auris en aguas marinas de Bocagrande-Cartagena". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/0f74c559-440e-4799-a58f-58222c9419a8">https://bionomia.net/dataset/0f74c559-440e-4799-a58f-58222c9419a8</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/0f74c559-440e-4799-a58f-58222c9419a8">https://gbif.org/dataset/0f74c559-440e-4799-a58f-58222c9419a8</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
zenodo40/100

Figure 9 in Developmental patterns of the crocodilian and avian columella auris: reappraisal of interpretations of the derivation of the dorsal hyoid arch in archosaurian tetrapods

Figure 9. Development of the columella auris in Gallus domesticus and Coturnix japonica. A, day-8 chick embryo, ventro-right lateral view. B, day-10 chick embryo, postero-right lateral view. C, day-11 chick embryo, antero-right lateral view. D, day-7 quail embryo, left lateral view. E, day-9 quail embryo, ventro-right lateral view. F, day-9 quail embryo, ventro-left lateral view. G, day-10 quail embryo, ventropostero-right lateral view. For abbreviations see the Appendix. A–G: whole mounts.

opencc-by-4.0Jun 2009View details →
zenodo40/100

Figure 8 in Developmental patterns of the crocodilian and avian columella auris: reappraisal of interpretations of the derivation of the dorsal hyoid arch in archosaurian tetrapods

Figure 8. Development of the columella auris and surrounding tissues in Struthio camelus. A, day-16 embryo, posteroleft lateral and anteroventro-left lateral view. B, day-17 embryo, ventro-left lateral view. C, day-18 embryo, left lateral view. D, day-20 embryo, postero-left lateral view. E, day-25 embryo, antero-left lateral view. F, day-29 embryo,

opencc-by-4.0Jun 2009View details →
zenodo40/100

Figure 6 in Developmental patterns of the crocodilian and avian columella auris: reappraisal of interpretations of the derivation of the dorsal hyoid arch in archosaurian tetrapods

Figure 6. Development of the columella auris and surrounding tissues in Struthio camelus. A, day-11 embryo, ventro-right lateral view. B, day-12 embryo, ventro-right lateral view. C and D, day-13 embryo, postero-left lateral view. E, day-13 embryo, posterior view. F, day-13 embryo, postero-dorsal and posterior view. G, day-13 embryo, anterior view. For abbreviations see the Appendix. The dotted yellow circle represents the region of the tympanic process. The dotted red circle represents tympanic invagination. A and B, whole mounts; C–G, graphic reconstructions.

opencc-by-4.0Jun 2009View details →
zenodo40/100

Figure 5 in Developmental patterns of the crocodilian and avian columella auris: reappraisal of interpretations of the derivation of the dorsal hyoid arch in archosaurian tetrapods

Figure 5. Development of the columella auris of Crocodylus niloticus. A, day-17 embryo, left lateral view. B, day-21 embryo, left lateral view. C, day-25 embryo, left lateral view. D, day-26 embryo, left lateral view. E, day-26 embryo, right lateral view. F, day-27 embryo, right lateral view. G, day-29 embryo, right lateral view. H, day-29 embryo, left lateral view. I, day-30 embryo, left lateral view. J, day-35 embryo, left lateral view. K, day-40 embryo, left lateral view. For abbreviations see the Appendix. A–K, whole mounts.

opencc-by-4.0Jun 2009View details →
zenodo40/100

Figure 4 in Developmental patterns of the crocodilian and avian columella auris: reappraisal of interpretations of the derivation of the dorsal hyoid arch in archosaurian tetrapods

Figure 4. Development of the columella auris and surrounding tissues of Alligator mississippiensis. A and B, day-40 embryo, left lateral and right lateral view. C, day-40 embryo, right lateral view. D, day-42 embryo, right lateral and medial view. E, day-42 embryo, right lateral view. F, day-47 embryo, right lateral view. G, day-51 embryo, right lateral view. For abbreviations see the Appendix. A, B, and E–G, whole mounts; C and D, graphic reconstructions.

opencc-by-4.0Jun 2009View details →
zenodo40/100

Figure 3 in Developmental patterns of the crocodilian and avian columella auris: reappraisal of interpretations of the derivation of the dorsal hyoid arch in archosaurian tetrapods

Figure 3. Development of the columella auris and surrounding tissues of Alligator mississippiensis. A, day-30 embryo, left lateral and medial view. B, day-33 embryo, left lateral view. C, day-37 embryo, right lateral and medial view. D and E, day-39 embryo, right lateral view. For abbreviations see the Appendix. A and C, graphic reconstructions; B, D, and E,

opencc-by-4.0Jun 2009View details →
zenodo40/100

Figure 2 in Developmental patterns of the crocodilian and avian columella auris: reappraisal of interpretations of the derivation of the dorsal hyoid arch in archosaurian tetrapods

Figure 2. Development of the columella auris and surrounding tissues of Alligator mississippiensis. A–C, day-21 embryos, transverse sections through the external and middle ear region. D, day-21 embryo, posterior view. E, day-22 embryo, right lateral view. F, day-25 embryo, right lateral view. G, day-27 embryo, postero-right lateral view. H, day-28 embryo, right lateral view. For abbreviations see the Appendix. A–C, histological sections; D and G, graphic reconstructions; E, F, and H, whole mounts.

opencc-by-4.0Jun 2009View details →
zenodo40/100

Figure 1 in Developmental patterns of the crocodilian and avian columella auris: reappraisal of interpretations of the derivation of the dorsal hyoid arch in archosaurian tetrapods

Figure 1. Development of the columella auris and surrounding tissues of Alligator mississippiensis. A, day-12 embryo, right lateral view. B, C, and E, day-14 embryo, postero-left lateral, posterior, and right lateral view. D and F, day-14 embryo, transverse sections through the external and middle ear region. G and H, day-16 embryo, transverse sections through the external and middle ear region. I, day-18 embryo, right lateral view. For abbreviations see the Appendix. In all figures hyal elements are distinguished in all whole mounts by yellow labels. A and I, whole mounts; B, C, and E, graphic reconstructions; D, and F–H, histological sections.

opencc-by-4.0Jun 2009View details →
zenodo36/100

Gene Ontology annotation for Candida auris genome

<p>GO annotation for Candida auris genome B8441</p>

opencc-by-4.0Nov 2023View details →
ClinicalTrials.gov36/100

Open-Label Study to Evaluate the Efficacy and Safety of Oral Ibrexafungerp (SCY-078) in Patients With Candidiasis Caused by Candida Auris (CARES)

ClinicalTrials.gov study NCT03363841. IPD Sharing: UNDECIDED. Countries: 4. Publications: 2.

restrictedIPD-UNDECIDEDFeb 2026View details →
ClinicalTrials.gov36/100

An Open-label Study of APX001 for Treatment of Patients With Candidemia/Invasive Candidiasis Caused by Candida Auris

ClinicalTrials.gov study NCT04148287. IPD Sharing: NO. Countries: 1. Publications: 1.

closedIPD-NOFeb 2026View details →
zenodo32/100

Subspecies and Distribution. M.s.spasmaLinnaeus,1758—TernateandHalmaheraIs(NMoluccas). M.s.abditumChasen,1940—AurI,offEPeninsularMalaysia. M.s.cartmataeG.S.Miller,1906—KarimataI,offWBorneo. M.s.celebenseShamel,1940—Sulawesi. M.s.ceylonenseK.Andersen,1918—SriLanka. M.s.horsfieldiBlyth,1863—peninsularIndia. M.s.kinabaluChasen,1940—MtKinabaluinNBorneo. M.s.lasiaeLyon,1916—LasiaandBabiIs,offWSumatra. M.s.majusK.Andersen,1918—mostofMyanmar,NEIndia,andBangladesh. M.s.mediumK.Andersen,1918—MalayPeninsula(includingTarutaoI)andNSumatra. M.s.minusK.Andersen,1918—SChina(Yunnan),Thailand,Laos,Vietham,andCambodia. M.s.natunaeK.Andersen&Wroughton,1907—BunguranandNorthNatunaIs. M.s.niasenseLyon,1916—NiasandSiberutIs,oftWSumatra. M.s.pangandaranaSody,1936—C&EJava. M.s.philippinenseWaterhouse,1843—Philippines. M.s.stumatisLyon,1916—SiumatI,offWSumatra. M. s. tnfolium E. Geoffroy Saint-Hilaire, 1810 — S Sumatra, W Java, and Borneo; also on South Natuna, Tambelan, Krakatau, and Kangean Is. Also recorded on Andaman Is, but subspecies involved not known. in Megadermatidae

Subspecies and Distribution. M.s.spasmaLinnaeus,1758—TernateandHalmaheraIs(NMoluccas). M.s.abditumChasen,1940—AurI,offEPeninsularMalaysia. M.s.cartmataeG.S.Miller,1906—KarimataI,offWBorneo. M.s.celebenseShamel,1940—Sulawesi. M.s.ceylonenseK.Andersen,1918—SriLanka. M.s.horsfieldiBlyth,1863—peninsularIndia. M.s.kinabaluChasen,1940—MtKinabaluinNBorneo. M.s.lasiaeLyon,1916—LasiaandBabiIs,offWSumatra. M.s.majusK.Andersen,1918—mostofMyanmar,NEIndia,andBangladesh. M.s.mediumK.Andersen,1918—MalayPeninsula(includingTarutaoI)andNSumatra. M.s.minusK.Andersen,1918—SChina(Yunnan),Thailand,Laos,Vietham,andCambodia. M.s.natunaeK.Andersen&amp;Wroughton,1907—BunguranandNorthNatunaIs. M.s.niasenseLyon,1916—NiasandSiberutIs,oftWSumatra. M.s.pangandaranaSody,1936—C&amp;EJava. M.s.philippinenseWaterhouse,1843—Philippines. M.s.stumatisLyon,1916—SiumatI,offWSumatra. M. s. tnfolium E. Geoffroy Saint-Hilaire, 1810 — S Sumatra, W Java, and Borneo; also on South Natuna, Tambelan, Krakatau, and Kangean Is. Also recorded on Andaman Is, but subspecies involved not known.

opennotspecifiedOct 2019View details →
zenodo32/100

Subspecies and Distribution. M.s.spasmaLinnaeus.1758-TemateandHalmaheraIs(NMoluccas). M.s.abditumChasen,1940-AurI,offEPeninsularMalaysia. M.s.carimataeG.S.Miller.1906-KarimataI,offWBorneo. M. s. celebense Shamel, 1940 -Sulawesi. M.s.ceylonense K.Andersen,1918-SriIanka. M.s.horsfieldiBlvth,1863peninsularIndia. M.s.kinabaluChasen,1940-MtKinabaluinNBorneo. M.s.lasiaeLyon,1916-[asiaandBabils,offWSumatra. M.s.majusK.Andersen,1918mostofMyanmar,NElndia,andBangladesh. M.s.mediumK.Andersen,1918-Mal»Peninsula(includingTarutaol)andNSumatra. M.s.minusK.Andersen,1918—SChina(Yunnan),Thailand,Laos,Vietnam,andCambodia. M.s.natunae K.Andersen&Wroughton,1907—BunguranandNorthNatunaIs. M.s.niasenseLyon,1916-NiasandSiberutIs,offWSumatra. M.s.pangandaranaSody.1936-C8cEjava. M.s.philippinenseWaterhouse,1843-Philippines. M.s.siumatisLyon,1916—Siumatl,offWSumatra. M. s.trifolium E. Geoffroy Saint-Hilaire, 1810 -S Sumatra, Wjava, and Bomeo; also on South Natuna, Tarnbelan, Krakatau, and Kangean Is. Also recorded on Andaman Is, but subspecies involved not known. in Megadermatidae

Subspecies and Distribution. M.s.spasmaLinnaeus.1758-TemateandHalmaheraIs(NMoluccas). M.s.abditumChasen,1940-AurI,offEPeninsularMalaysia. M.s.carimataeG.S.Miller.1906-KarimataI,offWBorneo. M. s. celebense Shamel, 1940 -Sulawesi. M.s.ceylonense K.Andersen,1918-SriIanka. M.s.horsfieldiBlvth,1863peninsularIndia. M.s.kinabaluChasen,1940-MtKinabaluinNBorneo. M.s.lasiaeLyon,1916-[asiaandBabils,offWSumatra. M.s.majusK.Andersen,1918mostofMyanmar,NElndia,andBangladesh. M.s.mediumK.Andersen,1918-Mal»Peninsula(includingTarutaol)andNSumatra. M.s.minusK.Andersen,1918—SChina(Yunnan),Thailand,Laos,Vietnam,andCambodia. M.s.natunae K.Andersen&amp;Wroughton,1907—BunguranandNorthNatunaIs. M.s.niasenseLyon,1916-NiasandSiberutIs,offWSumatra. M.s.pangandaranaSody.1936-C8cEjava. M.s.philippinenseWaterhouse,1843-Philippines. M.s.siumatisLyon,1916—Siumatl,offWSumatra. M. s.trifolium E. Geoffroy Saint-Hilaire, 1810 -S Sumatra, Wjava, and Bomeo; also on South Natuna, Tarnbelan, Krakatau, and Kangean Is. Also recorded on Andaman Is, but subspecies involved not known.

opennotspecifiedOct 2019View details →
zenodo28/100

Finding Candida auris in public metagenomic repositories

<p><i>Candida auris</i>&nbsp;is a newly emerged multidrug-resistant fungus capable of causing invasive infections with high mortality. Despite intense efforts to understand how this pathogen rapidly emerged and spread worldwide, its environmental reservoirs are poorly understood. Here, we present a collaborative effort between the U.S. Centers for Disease Control and Prevention, the National Center for Biotechnology Information, and GridRepublic (a volunteer computing platform) to identify&nbsp;<i>C. auris</i>&nbsp;sequences in publicly available metagenomic datasets. We developed the MetaNISH pipeline that uses SRPRISM to align sequences to a set of reference genomes and computes a score for each reference genome. We used MetaNISH to scan ~300,000 SRA metagenomic runs from 2010 onwards and identified five datasets containing&nbsp;<i>C. auris</i> reads. Finally, GridRepublic has implemented a prospective <i>C. auris&nbsp;</i>molecular monitoring system using MetaNISH and volunteer computing.</p>

openNov 2023View details →
zenodo28/100

Figure 7 in Developmental patterns of the crocodilian and avian columella auris: reappraisal of interpretations of the derivation of the dorsal hyoid arch in archosaurian tetrapods

Figure 7. Development of the columella auris and surrounding tissues in Struthio camelus. A–F, day-13 embryo, transverse sections through the external and middle ear region. G, day-15 embryo, postero-left lateral view. H, day-16 embryo, right lateral view. For abbreviations see the Appendix. A–F, histological sections; G and H, whole mounts.

opencc-by-4.0Jun 2009View details →
zenodo28/100

Protective efficacy of anti-Hyr1p monoclonal antibody against systemic candidiasis due to multi-drug resistant Candida auris

<p>Supplementary data set&nbsp;</p>

opencc-by-4.0Dec 2022View details →
ClinicalTrials.gov28/100

Molecular Characterization of Candida Auris

ClinicalTrials.gov study NCT04121871. IPD Sharing: NO. Countries: 1. Publications: 0.

closedIPD-NOFeb 2026View details →
ClinicalTrials.gov28/100

Auris Robotic Endoscopy System for Bronchoscopy

ClinicalTrials.gov study NCT03497026. IPD Sharing: Not stated. Countries: 1. Publications: 0.

restrictedIPD-UNDECIDEDFeb 2026View details →
geo24/100

Potent synergistic interactions between lopinavir and azole antifungal drugs against emerging multidrug-resistant Candida auris

GEO Series GSE148341. Candidozyma auris. 4 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenOct 2020View details →

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International Brain Laboratory public data

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Last verified 2026-04-29Open record

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neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record