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lil, left ilium;; lti, left tibia; pd, pedal digits; and ub, unidentified bony element. The white box indicates the position from which the sample was taken for histological analysis. Scale bars, 10 mm (a, c, d), 20 mm (b). in A new Jurassic scansoriopterygid and the loss of membranous wings in theropod dinosaurs
lil, left ilium;; lti, left tibia; pd, pedal digits; and ub, unidentified bony element. The white box indicates the position from which the sample was taken for histological analysis. Scale bars, 10 mm (a, c, d), 20 mm (b).
Data from: Reducing complexity and unidentifiability when modelling human atrial cells
<p>Mathematical models of a cellular action potential in cardiac modelling have become increasingly complex, particularly in gating kinetics which control the opening and closing of individual ion channel currents. As cardiac models advance towards use in personalised medicine to inform clinical decision- making, it is critical to understand the uncertainty hidden in parameter estimates from their calibration to experimental data. This study applies approximate Bayesian computation to re-calibrate the gating kinetics of four ion channels in two existing human atrial cell models to their original datasets, providing a measure of uncertainty from the parameter posterior distributions. Two approaches are investigated to reduce the uncertainty present: firstly to re-calibrate the models to a more complete 'unified' dataset and, secondly, the use of a standardised formulation with fewer parameters to constrain. The study shows that the use of more complete datasets does not eliminate uncertainty present in parameter estimates. The standardised model, particularly for the fast sodium current, shows reduced residuals from experimental data alongside lower parameter uncertainty and improved performance.</p>
FIGURE 22. Rhysida afra, R. longicornis, R. longipes longipes, R. paucidens, R. stuhlmanni stuhlmanni and R in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURE 22. Rhysida afra, R. longicornis, R. longipes longipes, R. paucidens, R. stuhlmanni stuhlmanni and R. togoensis, distribution records of specimens from Africa housed in the NHM collection.
FIGURES 31–34. Cormocephalus multispinosus Attems, 1909. Figs 31, 32. BMNH 07.10.8.16-17 in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURES 31–34. Cormocephalus multispinosus Attems, 1909. Figs 31, 32. BMNH 07.10.8.16-17 (Lesotho): Figure 31, tergite of ultimate leg-bearing segment and ultimate leg prefemora, dorsal view, scale bar 0.5 mm; Figure 32, ultimate legbearing segment and ultimate leg prefemora, ventral view, scale bar 0.5 mm. Figs 33, 34. BMNH 1934.6.5.25-30 (Namibia): Figure 33, tergite of ultimate leg-bearing segment and ultimate leg prefemora, dorsal view, scale bar 0.5 mm; Figure 34, ultimate leg-bearing segment and ultimate leg prefemora, ventral view, scale bar 0.5 mm.
FIGURE 8 in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURE 8. Otostigmus (Otostigmus) cuneiventris, O. (Parotostigmus) coltellus n. sp., O. (P.) gemmifer and O. (P.) productus, distribution records of specimens from Africa housed in the NHM collection.
FIGURE 2 in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURE 2. Cryptops (Trigonocryptops) bottegii, C. (T.) gigas, Alipes appendiculatus, A. calcipes and A. grandidieri, distribution records of specimens from Africa housed in the NHM collection.
FIGURES 15–21. Figs 15–17 in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURES 15–21. Figs 15–17. Otostigmus (Parotostigmus) gemmifer Attems, 1928, from Nigeria: Figure 15, cephalic plate and T1, dorsal view, scale bar 0.5 mm; Figure 16, forcipular segment, ventral view, scale bar 0.5 mm; Figure 17, coxopleuron and sternite of ultimate leg-bearing segment, ventral view, scale bar 0.5 mm. Figs 18–21. Otostigmus (Parotostigmus) productus Karsch, 1888, from São Tomé: Figure 18, cephalic plate and T1, dorsal view, scale bar 0.5 mm; Figure 19, forcipular segment, ventral view, scale bar 0.5 mm; Figure 20, coxopleuron and sternite of ultimate leg-bearing segment, ventral view, scale bar 0.25 mm; Figure 21, tergite of ultimate leg-bearing segment and right ultimate leg, dorsal view, scale bar 0.5 mm.
FIGURE 1 in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURE 1. All sampling sites across Africa, plus the island of Sokotra (Yemen), where scolopendromorph centipedes were collected during British surveys over the period 1892–1967.
FIGURE 38. Scolopendra oraniensis, S. subspinipes, S in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURE 38. Scolopendra oraniensis, S. subspinipes, S. valida and Scolopocryptops ferrugineus, distribution records of specimens from Africa housed in the NHM collection.
FIGURES 9–14 in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURES 9–14. Otostigmus (Parotostigmus) coltellus n. sp. Holotype BMNH 1950.3.7.127-136 (São Tomé), except figs 11, 14, paratype female from same collection: Figure 9, posterior part of cephalic plate and TT1–4, dorsal view, scale bar 2 mm; Figure 10, left antenna, dorsal view, scale bar 1 mm; Figure 11, forcipular segment, ventral view, scale bar 1 mm; Figure 12, tooth plates, scale bar 0.5 mm; Figure 13, coxopleuron and sternite of ultimate leg-bearing segment, ventral view, scale bar 1 mm; Figure 14, coxopleuron and sternite of ultimate leg-bearing segment, ventral view, scale bar 1 mm.
FIGURES 4–7 in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURES 4–7. Otostigmus (Otostigmus) cuneiventris Porat, 1893, from Tanzania: Figure 4, cephalic plate and T1, dorsal view, scale bar 0.5 mm; Figure 5, forcipular segment, ventral view, scale bar 0.5 mm; Figure 6, tergite of ultimate leg-bearing segment and ultimate leg prefemora, dorsal view, scale bar 0.5 mm; Figure 7, ultimate leg-bearing segment and ultimate leg prefemora, ventral view, scale bar 0.5 mm.
FIGURE 3 in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURE 3. Ethmostigmus trigonopodus, distribution records of specimens from Africa housed in the NHM collection.
FIGURE 37. Scolopendra mirabilis and S in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURE 37. Scolopendra mirabilis and S. morsitans, distribution records of specimens from Africa housed in the NHM collection.
FIGURE 30 in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURE 30. Asanada socotrana, Cormocephalus anceps and C. cupipes, distribution records of specimens from Africa housed in the NHM collection.
FIGURE 36. Scolopendra afer, S. canidens and S in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURE 36. Scolopendra afer, S. canidens and S. cingulata, distribution records of specimens from Africa housed in the NHM collection.
FIGURES 23–29. Figs 23–26. Rhysida paucidens Pocock, 1897. BMNH 1953.2.14.515 in Scolopendromorph centipedes (Chilopoda: Scolopendromorpha) in the Natural History Museum (London): A review of the hitherto unidentified species collected in Africa, with remarks on taxonomy and distribution, and a new species of Otostigmus (Parotostigmus)
FIGURES 23–29. Figs 23–26. Rhysida paucidens Pocock, 1897. BMNH 1953.2.14.515 (Ethiopia): Figure 23, cephalic plate and T1, dorsal view, scale bar 1 mm; Figure 24, forcipular segment, ventral view, scale bar 0.5 mm; Figure 25, ultimate leg prefemur, scale bar 0.5 mm; Figure 26, coxopleuron and sternite of ultimate leg-bearing segment, ventral view, scale bar 0.5 mm. Figs 27–29. Rhysida stuhlmanni stuhlmanni Kraepelin, 1903. BMNH 94.1.15.39 (Malawi): Figure 27, cephalic plate and T1, dorsal view, scale bar 1 mm; Figure 28, forcipular segment, ventral view, scale bar 0.5 mm; Figure 29, coxopleuron and sternite of ultimate leg-bearing segment, ventral view, scale bar 0.5 mm.
FIGURE 9. Unidentified Pterygotrigla larva, 14.5 in Revision of the subgenus Parapterygotrigla (Pisces: Triglidae: Pterygotrigla)
FIGURE 9. Unidentified Pterygotrigla larva, 14.5 mm SL, from the Timor Sea from Richards et al. (2000:259, Fig. 56).
Data from: Reducing complexity and unidentifiability when modelling human atrial cells
Open the record for dataset details and reuse information.
One year after ICU admission for severe community-acquired pneumonia of bacterial, viral or unidentified etiology. What are the outcomes?
<p><strong>Introduction:</strong> Multiplex polymerase chain reaction (mPCR) for respiratory virus testing is increasingly used in community-acquired pneumonia (CAP), however data on one-year outcome in intensive care unit (ICU) patients with reference to the causative pathogen are scarce. </p> <p><strong>Materials and Methods</strong>: We performed a single-center retrospective study in 123 ICU patients who had undergone respiratory virus testing for CAP by mPCR and with known one-year survival status. Functional status including dyspnea (mMRC score), autonomy (ADL Katz score) and need for new home-care ventilatory support was assessed at a one-year post-ICU follow-up. Mortality rates and functional status were compared in patients with CAP of a bacterial, viral or unidentified etiology one year after ICU admission.</p> <p><strong>Results: </strong>The bacterial, viral and unidentified groups included 19 (15.4%), 37 (30.1%), and 67 (54.5%) patients, respectively. In multivariate analysis, one-year mortality in the bacterial group was higher compared to the viral group (HR 2.92, 95% CI 1.71-7.28, p=0.02) and tended to be higher compared to the unidentified etiology group (p=0.06); but no difference was found between the viral and the unidentified etiology group (p=0.43). In 64/83 one-year survivors with a post-ICU follow-up consultation, there were no differences in mMRC score, ADL Katz score and new home-care ventilatory support between the groups (p=0.52, p=0.37, p=0.24, respectively). Severe dyspnea (mMRC score = 4 or death), severe autonomy deficiencies (ADL Katz score ≤ 2 or death), and major adverse respiratory events (new home-care ventilatory support or death) were observed in 52/104 (50.0%), 47/104 (45.2%), and 65/104 (62.5%) patients, respectively; with no difference between the bacterial, viral and unidentified group: p=0.58, p=0.06, p=0.61, respectively.</p> <p><strong>Conclusions</strong>: CAP of bacterial origin had a poorer outcome than CAP of viral or unidentified origin. At one-year, impairment of functional status was frequently observed, with no difference according to the etiology.</p>
Observational Research on Infectious Disease Outbreaks and Difficult Cases of Unidentified Etiology in Indonesia
ClinicalTrials.gov study NCT04339179. IPD Sharing: Not stated. Countries: 1. Publications: 0.
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Allen Brain Atlas
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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.