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202 results for “sap”

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zenodo32/100

FIGURES 10–14 in A new species of Lyctocoridae (Hemiptera: Heteroptera: Cimicoidea) feeding on the exuded sap of Sawtooth Oak, Quercus acutissima, in Japan

FIGURES 10–14. Lyctocoris ichikawai sp. nov., 3, paratypes. 10, head and pronotum; 11, right fore wing; 12, right fore leg; 13, right mid leg; 14, right hind leg. Scales: 0.5 mm for 10, 11; 0.2 mm for 12–14.

opennotspecifiedDec 2012View details →
zenodo32/100

FIGURES 6–9 in A new species of Lyctocoridae (Hemiptera: Heteroptera: Cimicoidea) feeding on the exuded sap of Sawtooth Oak, Quercus acutissima, in Japan

FIGURES 6–9. SEM images of L. ichikawai sp. nov., 3. 6, ostiolar peritreme and evaporatorium, left lateroventral view; 7, aedeagus extruding from pygophore, dorsal view; 8, ditto, posterior view; 9, surface of endosoma. 6, paratype; 7–9, holotype. Abbreviations: ac=acus, end=endosoma, lp=left paramere, py=pygophore, rp=right paramere. Scales: 0.2 mm for 6–8; 0.05 mm for 9.

opennotspecifiedDec 2012View details →
zenodo32/100

FIGURES 1–5 in A new species of Lyctocoridae (Hemiptera: Heteroptera: Cimicoidea) feeding on the exuded sap of Sawtooth Oak, Quercus acutissima, in Japan

FIGURES 1–5. Lyctocoris ichikawai sp. nov., 3. 1, 2, habitus, dorsal and lateral views; 3, head and pronotum, dorsal view; 4, ostiolar peritreme and evaporatorium, left lateroventral view; 5, aedeagus extruding from pygophore, posterior view. 1–3, 5, holotype; 4, paratype. Scales: 1.0 mm for 1, 2; 0.5 mm for 3, 4; 0.2 mm for 5.

opennotspecifiedDec 2012View details →
zenodo32/100

Supplementary material for Progressive enrichment in 18O and 2H in xylem water along sap flow paths in Fagus sylvatica trees

<p>Database&nbsp;related to the results that are presented in the manuscript Montemagno et al. that will be submitted as research paper in the journal Ecohydrology:</p> <p><strong>Progressive enrichment in <sup>18</sup>O and <sup>2</sup>H in xylem water along sap flow paths in <em>Fagus sylvatica </em></strong></p> <p>Alessandro Montemagno<sup>1,3</sup>, Richard F. Keim<sup>2</sup>, Veneranda L&oacute;pez-D&iacute;as<sup>1</sup>, Victor Bense<sup>3</sup>, Adriaan J. Teuling<sup>3</sup>, Christophe Hissler<sup>1</sup></p> <p><sup>1</sup>CATchment and ecohydrology research group (CAT/ENVISION/ERIN), Luxembourg Institute of Science and Technology, Belvaux, 4408, Luxembourg</p> <p><sup>2</sup> School of Renewable Natural Resources, Louisiana State University Agricultural Center, Baton Rouge, LA 70803 USA</p> <p><sup>3 </sup>Department of Environmental Sciences, Hydrology and Quantitative Water Management Group, Wageningen University and Research, Droevendaalsesteeg 4, Wageningen, 6708 PB, The Netherlands</p> <p><em>Correspondence: </em>Alessandro Montemagno (<a href="mailto:alessandro.montemagno@outlook.com">alessandro.montemagno@outlook.com</a>), Christophe Hissler (<a href="mailto:christophe.hissler@list.lu">christophe.hissler@list.lu</a>)</p>

opencc-by-4.0Oct 2022View details →
zenodo32/100

Assessing the Efficacy and Safety of White Birch Sap for Skin Whitening: In Vivo and In Vitro Investigations

<p><strong>Figure S1.</strong>&nbsp;Schematic diagram of fluorescence intensity of neutral-particle fluorescent zebrafish treated with WBS (50, 100 and 200&nbsp;&mu;g/mL).</p>

opencc-by-4.0May 2023View details →
zenodo32/100

FIGURE 10 in The pest sap beetle Carpophilus Myothorax truncatus Murray, 1864 (Coleoptera Nitidulidae)-a new synonymy and a related new species of Carpophilus

FIGURE 10. Phylogenetic relationships of Carpophilus species from COI DNA sequences (Maximum Likelihood tree). New sequences obtained from Australian specimens in the present study are shown in bold text, with lifestages indicated. GenBank sequences are indicated by accession numbers in round brackets, with species identifications taken directly from GenBank, and countries of origin for the three C. dimidiatus complex species shown in square brackets. Additional sequences unable to be downloaded and included on this tree from the BOLD database match C. truncatus (&gt;99%) originating from Israel (C. dimidiatus on BOLD, non-public data) and Carpophilus imitatus sp. nov. (100%) originating from Cambodia and South Korea (C. dimidiatus on BOLD, non-public data).

opennotspecifiedJun 2023View details →
zenodo32/100

FIGURE 8 in The pest sap beetle Carpophilus Myothorax truncatus Murray, 1864 (Coleoptera Nitidulidae)-a new synonymy and a related new species of Carpophilus

FIGURE 8. Additional species and characters used in dichotomous key A) Carpophilus sp., lateral head and pronotum B) Urophorus humeralis, lateral head and pronotum C) Brachypeplus sp., dorsal habitus, D) C. davidsoni dorsal habitus, E) C. dimidiatus, male paralectotype, dorsal habitus, (image taken by Michael Kuhlmann (ZMUK)), F) C. hemipterus, dorsal habitus, G) C. mutialtus, dorsal habitus, H) C. nepos, dorsal habitus, I) U. humeralis, dorsal habitus, J) C. obsoletus, dorsal habitus.

opennotspecifiedJun 2023View details →
zenodo32/100

FIGURE 9 in The pest sap beetle Carpophilus Myothorax truncatus Murray, 1864 (Coleoptera Nitidulidae)-a new synonymy and a related new species of Carpophilus

FIGURE 9. Additional characters used in dichotomous key. A) prosternum and mesosternal plate with carina, C. hemipterus, B) prosternum and mesosternal plate without carina, Carpophilus sp., C) metaventrite with large axillary space, C. marginellus, (photo image source from PaDIL (2022) website), D) metaventrite with small smooth axillary space, Carpophilus sp., E) tubercle on 9th segment of ♀, C. davidsoni, (illustration adapted from Leschen &amp; Marris 2005, page 39), F) asymmetrical mandibles, male C. mutilatus, (illustration adapted from Leschen &amp; Marris 2005, page 38), G) prosternum and hypomeron with extensive pitting, C. dimidiatus, (photo image source from Walker (2023) PaDIL website), H) prosternum and hypomeron smooth with little pitting, C. davidsoni, ….(photo image source from Walker (2023) PaDIL website), I) hind tibia, C. dimidiatus ♁ paralectotype, metatibia (image taken by Michael Kuhlmann (ZMUK)).

opennotspecifiedJun 2023View details →
zenodo32/100

FIGURE 5. Fifth instar larvae, Carpophilus truncatus. A in The pest sap beetle Carpophilus Myothorax truncatus Murray, 1864 (Coleoptera Nitidulidae)-a new synonymy and a related new species of Carpophilus

FIGURE 5. Fifth instar larvae, Carpophilus truncatus. A) dorsal habitus, B) lateral habitus, C) ventral head, D) lateral head and pronotum, E) lateral abdomen, 9th segment with dorsal sclerotized plate, F) dorsal view of 9th abdominal segment dorsal sclerotized plate. mas: medial anterior setae, pgs: pregomphal setae; pg: pregomphus, sas: sublateral anterior setae; ug: urogomphus.

opennotspecifiedJun 2023View details →
zenodo32/100

FIGURE 7 in The pest sap beetle Carpophilus Myothorax truncatus Murray, 1864 (Coleoptera Nitidulidae)-a new synonymy and a related new species of Carpophilus

FIGURE 7. Carpophilus imitatus sp. nov., ♁ paratype (VAITC 8601), A) – G). A) dorsal habitus, B) lateral habitus, C) ventral habitus, D) prosternum and hypomeron, E) metatibia, F) paramere, lateral view, G) paramere, dorsal view. ♀ paratype (8607), H) – M). H) dorsal habitus, I) lateral habitus, J) ventral habitus, K) prosternum and hypomeron, L) metatibia, M) antenna.

opennotspecifiedJun 2023View details →
zenodo32/100

FIGURE 6. Fifth larval instar, A in The pest sap beetle Carpophilus Myothorax truncatus Murray, 1864 (Coleoptera Nitidulidae)-a new synonymy and a related new species of Carpophilus

FIGURE 6. Fifth larval instar, A) C. hemipterus, dorsal habitus, B) C. hemipterus, lateral habitus, C) C. davidsoni, dorsal habitus, D) C. davidsoni, lateral habitus, E) C. hemipterus, lateral abdomen, 9th segment with dorsal sclerotized plate, F) C. hemipterus, dorsal abdomen, 9th segment, G) C. davidsoni, lateral abdomen, 9th segment with dorsal sclerotized plate, H) C. davidsoni, dorsal abdomen, 9th segment.

opennotspecifiedJun 2023View details →
zenodo32/100

FIGURE 11 in The pest sap beetle Carpophilus Myothorax truncatus Murray, 1864 (Coleoptera Nitidulidae)-a new synonymy and a related new species of Carpophilus

FIGURE 11. Phylogenetic relationships of Carpophilus species from 16S DNA sequences (Maximum Likelihood tree). New sequences obtained from Australian specimens in the present study are shown in bold text, with lifestage indicated. GenBank sequences are indicated by accession numbers in round brackets, with species identifications taken directly from GenBank, and countries of origin for the three C. dimidiatus complex species shown in square brackets

opennotspecifiedJun 2023View details →
zenodo32/100

FIGURE 4 in The pest sap beetle Carpophilus Myothorax truncatus Murray, 1864 (Coleoptera Nitidulidae)-a new synonymy and a related new species of Carpophilus

FIGURE 4. Carpophilus truncatus Scanning Electron Microscope (SEM) images, A) lateral habitus, B) ventral habitus, C) ventral prosternum, D) male metatibia with basal constriction.

opennotspecifiedJun 2023View details →
zenodo32/100

FIGURE 1 in The pest sap beetle Carpophilus Myothorax truncatus Murray, 1864 (Coleoptera Nitidulidae)-a new synonymy and a related new species of Carpophilus

FIGURE 1. Carpophilus truncatus syntype, ♁, A) dorsal habitus, B) lateral habitus, C) antenna, ventral view, D) prosternum and hypomeron, ventral view, E) metatibia, ventral view. C. jarjari, ♁, F) dorsal habitus, paratype, G) lateral habitus, holotype, H) antenna, ventral view, I) prosternum and hypomeron, ventral view, J) metatibia, ventral view.

opennotspecifiedJun 2023View details →
zenodo32/100

FIGURE 2 in The pest sap beetle Carpophilus Myothorax truncatus Murray, 1864 (Coleoptera Nitidulidae)-a new synonymy and a related new species of Carpophilus

FIGURE 2. Carpophilus truncatus syntype, ♁, A) paramere, lateral view, B) parameres, dorsal view, C) sternite VIII. C. jarijari holotype ♁, D) paramere, lateral view, E) parameres, dorsal view, F) sternite VIII.

opennotspecifiedJun 2023View details →
zenodo32/100

FIGURE 3 in The pest sap beetle Carpophilus Myothorax truncatus Murray, 1864 (Coleoptera Nitidulidae)-a new synonymy and a related new species of Carpophilus

FIGURE 3. Carpophilus truncatus syntype, ♀, A) dorsal habitus, B) ventral habitus, C) prosternum and hypomeron in ventral view, D) metatibia, ventral view. C. jarijari paratype, ♀, E) dorsal habitus, F) ventral habitus, G) prosternum and hypomeron in ventral view, H) metatibia, ventral view, I) ovipositor.

opennotspecifiedJun 2023View details →
zenodo32/100

Data of sap flow, tree size, soil water conditions and meteorology from Finland

<h3>Overview</h3><p>This data set includes the records of stem size at breast height, sap flow, soil water conditions and meteorology of/near two Scots pine (<i>Pinus sylvestris</i>) trees (named 'Pentti' and 'Sylvi') at Hyytiälä, Finland (61.8°N, 24.3°E). The data have been used in Liu <i>et al.</i> <i>Carbon source and sink limitations on boreal trees' cambial growth: implications of a coupled stomatal and growth model</i> (submitted to <i>New Phytologist</i> in October 2023). The Data Collector (Che Liu, University of Helsinki) collected the original data from SmartSMEAR (https://smear.avaa.csc.fi/) and processed to the current format and temporal resolution.</p><h3>Meanings (and units) of the columns</h3><h4>Sheet "tree_stats"&nbsp;</h4><ul><li>DBH, diameter at breast height (cm)</li><li>Asw, sapwood area (m^2)</li><li>H, tree height (m)</li></ul><h4>Sheets "Pentti_30min" and "Sylvi_30min"</h4><ul><li>DOY, day of the year</li><li>RBH, change of radius of breast height (mm), measured using the point dendrometer (AX-5 Solartron Metrology) and with thermal expansion corrected. The dendrometers were moved at the beginning of each year.</li><li>SFD, sap flow density at breast height (mol H2O m^{-2} sapwood s^{-1}), measured using the thermal dissipation method.</li><li>T_air, air temperature (°C)</li><li>Precip, rainfall (mm)</li><li>RH, relative humidity (%)</li><li>VPD, vapour pressure deficit (Pa)</li><li>D, VPD converted to mol H2O m^{-3} air using the ideal gas law</li><li>PPFD, photosynthetic photon flux density (mol m^{-2} s^{-1}), measured using Li-Cor Li-190SZ quantum sensor over the canopy (35 m high).</li><li>T_soil, soil temperature (°C) of the B horizon (10-30 cm deep)</li><li>SWC, soil water content (m^3 m^{-3}) of the B horizon (10-30 cm deep), measured using Delta-T ML3.</li></ul>

opencc-by-4.0Oct 2023View details →
ClinicalTrials.gov32/100

Comparison of the Postoperative Analgesic Efficacy of SAP and SPSIP Blocks in Patients Undergoing Mammoplasty

ClinicalTrials.gov study NCT07302399. IPD Sharing: Not stated. Countries: 1. Publications: 1.

restrictedIPD-UNDECIDEDFeb 2026View details →
ClinicalTrials.gov32/100

Erector Spinae Plane Block or Serratus Anterior Plane (SAP) Block Following Video Assisted Thoracic Surgery

ClinicalTrials.gov study NCT03960762. IPD Sharing: NO. Countries: 1. Publications: 4.

closedIPD-NOFeb 2026View details →
ClinicalTrials.gov32/100

Registry of Use and Application of Sensor Augmented Pump (SAP) Therapy Under Daily Life Conditions

ClinicalTrials.gov study NCT01718522. IPD Sharing: NO. Countries: 0. Publications: 0.

closedIPD-NOFeb 2026View details →

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International Brain Laboratory public data

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Last verified 2026-04-29Open record