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107 results for “PLS”
Text-fig. 1. Massalongo's original specimens. a: Laminarites irideaephyllus A.MASSAL.; b: Pterigophycos gazolanus A.MASSAL.; c: Pterigophycos canossae A.MASSAL.; d: Pterigophycos spectabilis A.MASSAL. Reproduced from Massalongo (1858: pls 15–17). Scale bars = 1 cm. in A Whole-Plant Specimen Of The Marine Macroalga Pterigophycos From The Eocene Of Bolca (Veneto, N-Italy)
Text-fig. 1. Massalongo's original specimens. a: Laminarites irideaephyllus A.MASSAL.; b: Pterigophycos gazolanus A.MASSAL.; c: Pterigophycos canossae A.MASSAL.; d: Pterigophycos spectabilis A.MASSAL. Reproduced from Massalongo (1858: pls 15–17). Scale bars = 1 cm.
Рис. 21–32. Lixus pulverulentus, кукоΛка, внешний виΔ и хетотаксия. 21 – виΔ снизу; 22 – виΔ сверху; 23 – виΔ сбоку; 24 – хетотаксия гоΛовы; 25 – хетотаксия переΔнеспинки; 26 – хетотаксия среΔнеспинки; 27 – хетотаксия заΔнеспинки; 28 – хетотаксия брюшного сегмента I; 29 – хетотаксия брюшного сегмента II; 30 – хетотаксия брюшного сегмента VII; 31 – хетотаксия брюшного сегмента VIII; 32 –хетотаксия брюшного сегмента IX. Figs 21–32. Lixus pulverulentus, pupa, habitus and chaetotaxy. 21 – ventral view; 22 – dorsal view; 23 – lateral view; 24 – chaetotaxy of head; 25 – chaetotaxy of pronotum; 26 – chaetotaxy of mesonotum; 27 – chaetotaxy of metanotum; 28 – chaetotaxy of abdominal segment I; 29 – chaetotaxy of abdominal segment II; 30 – chaetotaxy of abdominal segment VII; 31 – chaetotaxy of abdominal segment VIII; 32 – chaetotaxy of abdominal segment IX. ps – pseudocerci, Th n –thoracic segments, Ab n –abdominal segments; setae: as – apical, d – dorsal, ds – discal, fs – femoral, ls – lateral, os – orbital, pas – postatennal, pls – posterolateral, rs – rostral, sos – super-orbital, sls – superlateral, v – ventral, vs – vertical. in Description of the preimaginal stages and biology of the weevil Lixus (Dilixellus) pulverulentus (Scopoli, 1763) (Coleoptera: Curculionidae: Lixini)
Рис. 21–32. Lixus pulverulentus, кукоΛка, внешний виΔ и хетотаксия. 21 – виΔ снизу; 22 – виΔ сверху; 23 – виΔ сбоку; 24 – хетотаксия гоΛовы; 25 – хетотаксия переΔнеспинки; 26 – хетотаксия среΔнеспинки; 27 – хетотаксия заΔнеспинки; 28 – хетотаксия брюшного сегмента I; 29 – хетотаксия брюшного сегмента II; 30 – хетотаксия брюшного сегмента VII; 31 – хетотаксия брюшного сегмента VIII; 32 –хетотаксия брюшного сегмента IX. Figs 21–32. Lixus pulverulentus, pupa, habitus and chaetotaxy. 21 – ventral view; 22 – dorsal view; 23 – lateral view; 24 – chaetotaxy of head; 25 – chaetotaxy of pronotum; 26 – chaetotaxy of mesonotum; 27 – chaetotaxy of metanotum; 28 – chaetotaxy of abdominal segment I; 29 – chaetotaxy of abdominal segment II; 30 – chaetotaxy of abdominal segment VII; 31 – chaetotaxy of abdominal segment VIII; 32 – chaetotaxy of abdominal segment IX. ps – pseudocerci, Th n –thoracic segments, Ab n –abdominal segments; setae: as – apical, d – dorsal, ds – discal, fs – femoral, ls – lateral, os – orbital, pas – postatennal, pls – posterolateral, rs – rostral, sos – super-orbital, sls – superlateral, v – ventral, vs – vertical.
Figure 65. Rhomphaea metaltissima. A–E, spinnerets. A–D, female. A, all. B, ALS. C, PLS. D, PMS. E in Morphological phylogeny of cobweb spiders and their relatives (Araneae, Araneoidea, Theridiidae)
Figure 65. Rhomphaea metaltissima. A–E, spinnerets. A–D, female. A, all. B, ALS. C, PLS. D, PMS. E, male PMS and PLS. F, unusual setal base (arrow) posteriorly on female abdomen. Scale bars: A, 100 Mm. B, 20 Mm. C–F, 10 Mm.
Figure 23. Anelosimus rupununi, female. A, PLS. B, PMS. C, ALS. D, fourth tarsal claws. E in Morphological phylogeny of cobweb spiders and their relatives (Araneae, Araneoidea, Theridiidae)
Figure 23. Anelosimus rupununi, female. A, PLS. B, PMS. C, ALS. D, fourth tarsal claws. E, tarsal comb on fourth tarsus. F, details of serrated setae. Scale bars: A–D, F, 20 Mm; E, 100 Mm.
Figure 25. Anelosimus studiosus, female. A, spinnerets. B, ALS. C, PLS. D, PMS. E in Morphological phylogeny of cobweb spiders and their relatives (Araneae, Araneoidea, Theridiidae)
Figure 25. Anelosimus studiosus, female. A, spinnerets. B, ALS. C, PLS. D, PMS. E, colular setae (arrow); note absence of colulus (172-1). F, cheliceral teeth. Scale bars: A, E, F, 100 Mm; B–D, 20 Mm.
Figure 9. Spinnerets. A–E, Metabus ocellatus. A, female ALS. B, female PMS. C, female PLS. D, male PLS. G, epiandrous fusules. F–H, Allende longipes. F, female ALS. G, female PMS. H, female PLS. I–J, A. nigrohumeralis. I, male PLS. J, epiandrous fusules. K–O, Mollemeta edwardsi. K, female ALS. L, female PMS. M, female PLS. N, male PLS. O in Systematics of the spider genus Metabus O. P.-Cambridge, 1899 (Araneoidea: Tetragnathidae) with additions to the tetragnathid fauna of Chile and comments on the phylogeny of Tetragnathidae
Figure 9. Spinnerets. A–E, Metabus ocellatus. A, female ALS. B, female PMS. C, female PLS. D, male PLS. G, epiandrous fusules. F–H, Allende longipes. F, female ALS. G, female PMS. H, female PLS. I–J, A. nigrohumeralis. I, male PLS. J, epiandrous fusules. K–O, Mollemeta edwardsi. K, female ALS. L, female PMS. M, female PLS. N, male PLS. O, epiandrous fusules.
Data Latihan SEM Smart-PLS
<p>Data untuk latihan olahdata SEM Smart-PLS</p>
RNA-seq data showing PLS role in gene expression control in Arabidopsis
<p class="MsoNormal">The vital plant ethylene receptor (ETR1) contains an essential Cu(I) ion, and as for other vesicular cupro-proteins, the final step of Cu(I) maturation at the endoplasmic reticulum (ER) is undefined. We previously discovered that mutants in the <em>Arabidopsis</em>gene <em>POLARIS</em> (<em>PLS</em>), encoding a 36 amino acid peptide, exhibit constitutive ethylene signalling responses. Here we report a 1:2 thiol-dependent Cu(I):PLS<sub>2</sub> complex, with an affinity of 3.79 (±1.5) x10<sup>19</sup> M<sup>-2</sup>. We demonstrate interactions with the transmembrane domain of ETR1, the Cu(I) chaperones ATX1 and CCH, and Cu(I)-transporting P<sub>1B</sub>-type ATPase RAN1 at the ER. Formation of Cu(I)-dependent PLS-cuproprotein adducts at the ER provides a mechanism to modulate the metalation of ETR1, thereby regulating its activity and representing a distinct mechanism for plant hormone receptor regulation.</p>
PLS_AUT_Species
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Safety, Efficacy, and Side Effects Study of Interventional Cryotherapy in the Pleural Space("ICE PLS")
ClinicalTrials.gov study NCT00747916. IPD Sharing: Not stated. Countries: 1. Publications: 9.
RNA-seq data showing PLS role in gene expression control in Arabidopsis
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Ohio Public Land Survey (PLS) Witness Tree GIS Shapefile
The United States Public Land Survey (PLS) divided land into one square mile units, termed sections. Surveyors used trees to locate section corners and other locations of interest (witness trees). As a result, a systematic ecological dataset was produced with regular sampling over a large region of the United States, beginning in Ohio in 1786 and continuing westward. We digitized and georeferenced archival hand drawn maps of these witness trees for 27 counties in Ohio. This dataset consists of a GIS point shapefile with 11,925 points located at section corners, recording 26,028 trees (up to four trees could be recorded at each corner). We retain species names given on each archival map key, resulting in 70 unique species common names. PLS records were obtained from hand-drawn archival maps of original witness trees produced by researchers at The Ohio State University in the 1960’s. Scans of these maps are archived as “The Edgar Nelson Transeau Ohio Vegetation Survey” at The Ohio State University: http://hdl.handle.net/1811/64106. The 27 counties are: Adams, Allen, Auglaize, Belmont, Brown, Darke, Defiance, Gallia, Guernsey, Hancock, Lawrence, Lucas, Mercer, Miami, Monroe, Montgomery, Morgan, Noble, Ottawa, Paulding, Pike, Putnam, Scioto, Seneca, Shelby, Williams, Wyandot. Coordinate Reference System: North American Datum 1983 (NAD83). This material is based upon work supported by the National Science Foundation under grants #DEB-1241874, 1241868, 1241870, 1241851, 1241891, 1241846, 1241856, 1241930.
FIGURE 6. Ateleidea spinosa spinnerets. A, female right spinning field. B, female ALS. C, female PMS. D, female PLS. E, epiandrous fusules. F in Phylogenetic placement and redescription of the spider genus Atelidea Simon, 1895 (Araneae, Tetragnathidae)
FIGURE 6. Ateleidea spinosa spinnerets. A, female right spinning field. B, female ALS. C, female PMS. D, female PLS. E, epiandrous fusules. F, male PLS.
FIGURE 63. Glenognatha globosa. A–D, female genitalia. A, dorsal. B, ventral. C, lateral. D, uterus externus distal portion. E–G, female spinnerets. E, ALS. F, PMS. G, PLS. H–I, female tracheal system. H, dorsal. I in Revision and phylogenetic analysis of the orb-weaving spider genus Glenognatha Simon, 1887 (Araneae, Tetragnathidae)
FIGURE 63. Glenognatha globosa. A–D, female genitalia. A, dorsal. B, ventral. C, lateral. D, uterus externus distal portion. E–G, female spinnerets. E, ALS. F, PMS. G, PLS. H–I, female tracheal system. H, dorsal. I, median and lateral trunks. Scale bars, 100 µm (A–C, H–I), 10 µm (D–G). AC: aciniform gland spigots. AG: aggregate gland spigots. FL: flagelliform gland spigot. LT: lateral trunk. MAP: major ampullate gland spigot. mAP: minor ampullate gland spigot. MC: membranous chamber. MT: median trunk. PI: piriform gland spigots. UE: uterus externus.
FIGURE 55. Glenognatha gaujoni. A, male tracheal spiracle. B, epiandrous fusules. C–F, male spinnerets. C, ventral. D, ALS. E, PMS. F, PLS. G–I, male left chelicerae. G, anterior. H in Revision and phylogenetic analysis of the orb-weaving spider genus Glenognatha Simon, 1887 (Araneae, Tetragnathidae)
FIGURE 55. Glenognatha gaujoni. A, male tracheal spiracle. B, epiandrous fusules. C–F, male spinnerets. C, ventral. D, ALS. E, PMS. F, PLS. G–I, male left chelicerae. G, anterior. H, posterior (box defines area of figure I). I, cheliceral setae. Scale bars, 100 µm (A, C, G–H), 10 µm (B, D–F, I). AC: aciniform gland spigots. AG: aggregate gland spigots. CFO: cheliceral fang outgrowth. FL: flagelliform gland spigot. MAP: major ampullate gland spigot. mAP: minor ampullate gland spigot. PI: piriform gland spigots. Ret: retromarginal tooth.
User Experience Analysis of Jak Lingko Application Using Honeycomb UX Method with Smart PLS
<p><strong><em>Abstract— </em></strong>As a growing capital city, Jakarta has seen an increase in the use of public transportation such as Trans Jakarta, MRT, LRT, and KRL. These intermodal modes of transportation have become the main choice for people of Jakarta in carrying out their daily activities. To support the integration of various modes of transportation, the government through the Ministry of Transportation developed a smart transportation ecosystem based on the Jak Lingko application. Although this application has great potential in reducing congestion, the low rating of the application indicates a need for further evaluation. This study aims to analyze the level of user satisfaction with the Jak Lingko application in terms of user experience and identify areas that require improvement. A quantitative approach with a survey method was used to measure the quality of the Jak Lingko application user experience. The questionnaire was designed based on Honeycomb's UX framework which includes seven aspects: useful, usable, findable, accessible, credible, desirable, and valuable. The results show that the measurement model has good reliability and validity, with Cronbach's alpha values ranging from 0.843 to 0.945 and average AVE values above 0.5. Path analysis shows that accessibility has a significant influence on the perceived added value of the app. These findings highlight the importance of accessibility in improving the user experience of public transportation applications.</p> <p><strong><em>Keywords - </em></strong>user experience, mobile application, public transportation, Honeycomb framework, Jak Lingko, Smart PLS.</p>
FIGURE 27. Spinnerets. A–B. Sicarius rupestris. C–F. Loxosceles rufescens. A. Female. B–F. Male. A. Right PLS, mesal view. B. Left PLS. C in The placement of the spider genus Periegops and the phylogeny of Scytodoidea (Araneae: Araneomorphae)
FIGURE 27. Spinnerets. A–B. Sicarius rupestris. C–F. Loxosceles rufescens. A. Female. B–F. Male. A. Right PLS, mesal view. B. Left PLS. C. Spinnerets, posterior-ventral view, numbers on ALS articles (character 67). D. Right ALS. E. PMS, anterior view. F. Left PLS, arrow to setal pit. Scales: A–B 50 µm, C 200 µm, D–F 20 µm. Abbreviations: AC, aciniform gland spigot; MAP, major ampullate gland spigot; PI, piriform gland spigot.
Key determinants in the adoption of banking applications by older adults: A PLS-SEM-based study
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Prognostic Liver Signature for NAFLD (PLS-NAFLD) profiles of cell-based PLS system treated with free fatty acids (FFA) and IDO1 inhibitor, epacadostat.
GEO Series GSE200460. Homo sapiens. 14 samples. Type: Other.
A Pathophysiological Study of the Postprandial Human Liver (PLS)
ClinicalTrials.gov study NCT03849235. IPD Sharing: NO. Countries: 1. Publications: 0.
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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)
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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.