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51 results for “growth habit”

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zenodo44/100

NMNH Botany Plant Habit Data: NMNH Plant Growth Form Data

<p>Plant growth form data from specimen labels in the collections of the Smithsonian National Museum of Natural History Botany Department, revised draft.</p> <p>&nbsp;</p> <p>Excel version, revised March 2018. Recoded measurement types and values to FLOPO uris whenever possible.</p>

opencc-zeroAug 2024View details →
zenodo44/100

Dataset for Nanoscale Growth Mechanisms of Gypsum: Implications for Environmental Control of Crystal Habits

<p>This dataset collected here has been used in the paper &quot;Nanoscale Growth Mechanisms of Gypsum: Implications for Environmental Control of Crystal Habits&quot;.</p> <p>The files are in .dat format and each one corresponds to the images indicated in the file name.</p>

opencc-by-4.0Aug 2023View details →
zenodo40/100

Figs. 3A-D. Growth habits. A in Vegetative anatomy of some Brazilian Zygopetalinae (Orchidaceae)

Figs. 3A-D. Growth habits. A. Dichaea pendula; B. Dichaea trulla; C. Zygopetalum pedicelatum; D. Hoehneella gehrtiana.

opencc-by-4.0Jan 2019View details →
zenodo40/100

Growth form and leaf habit drive contrasting effects of Arctic amplification in long-lived woody species

<p><strong>Raw_and_STD_Chronologies.txt</strong>&nbsp;contains the raw (suffix &quot;_raw&quot;) and indexed (suffix &quot;_std&quot;) ring-width chronology derived from seven species (<em>Juniperus communis</em>&nbsp;L., <em>Betula nana</em> L., <em>Salix lanata</em> L., <em>Picea abies</em> L., <em>Pinus contorta</em> Douglas, <em>Betula pubescens</em> Ehrh., and <em>Sorbus aucuparia</em> L.) collected from ten sites located across Iceland. In the file, each column addresses the chronology belonging to a precise site&nbsp;and species, coded following the one used in the&nbsp;International Tree-Ring Data Bank (ITRDB) as listed in Grissino_Mayer (1993). This data was used to model growth trends and to perform climate-growth associations over the 1967-2018 period.</p>

opencc-by-4.0Jul 2023View details →
zenodo40/100

Fig. 3 in Growth and life habits of the Triassic cynodont Trirachodon, inferred from bone histology

Fig. 3. Transverse sections of Trirachodon tibiae. A. Tibia (NMQR3282b) showing a highly vascularized reticular network in fibro−lamellar bone. Two annuli are noted in the mid−cortex and periphery respectively (arrowheads). B. Tibia (SAM−PK−K5881c) where annuli are observed interrupt− ing the fibro−lamellar bone tissue at intervals (arrowheads). A LAG (open arrow) is observed at the periphery and secondary osteons (closed arrow) are seen scattered throughout the cortex, sometimes reaching the subperiosteal surface. Large resorption cavities are also noted. MC refers to medullary cavity. Scale bars 125 µm.

opencc-by-4.0Dec 2004View details →
dryad36/100

Hydraulic prediction of drought-induced plant dieback and top-kill depends on leaf habit and growth form

<p>Hydraulic failure caused by severe drought contributes to aboveground dieback and whole-plant death. The extent to which dieback or whole-plant death can be predicted by plant hydraulic traits has rarely been tested among species with different leaf habits and/or growth forms. We investigated 19 hydraulic traits in 40 woody species in a tropical savanna and their potential correlations with drought response during an extreme drought event during the El Niño–Southern Oscillation in 2015. Plant hydraulic trait variation was partitioned substantially by leaf habit but not growth form along a trade-off axis between traits that support drought tolerance versus avoidance. Semi-deciduous species and shrubs had the highest branch dieback and top-kill (complete aboveground death) among the leaf habits or growth forms. Dieback and top-kill were well explained by combining hydraulic traits with leaf habit and growth form, suggesting integrating life history traits with hydraulic traits will yield better predictions.</p>

opencc-zeroDec 2020View details →
dryad36/100

Hydraulic prediction of drought-induced plant dieback and top-kill depends on leaf habit and growth form

Open the record for dataset details and reuse information.

publicJul 2021View details →
dryad36/100

Modelling trait heterogeneity and inferring causal links in the macroevolution of growth habit in eudicot angiosperms

Open the record for dataset details and reuse information.

publicJan 2026View details →
zenodo32/100

FIGURE­­­ 2. Pseudolycopodiella meridionalis—(Brazil: Dusén 17492, S) A1: growth habit. A2: Close-up of anisophyllous, prostrate shoot. A3: Close-up of sporophyll. Drawing by K. Tind in The Lycopodiaceae of Panamá

FIGURE­­­ 2. Pseudolycopodiella meridionalis—(Brazil: Dusén 17492, S) A1: growth habit. A2: Close-up of anisophyllous, prostrate shoot. A3: Close-up of sporophyll. Drawing by K. Tind

opennotspecifiedNov 2021View details →
zenodo32/100

FIGURE­­­26. Palhinhaea steyermarkii—(Ecuador: Øllgaard et al. 35959, AAU). A. Growth habit. A1. Close-up of major branchlet. A2. Close-up of terminal branchlet. A3. Portion of strobilus. A4. Close-up of strobilus apex, showing coalescent sporophyll bases. Drawing by K. Tind in The Lycopodiaceae of Panamá

FIGURE­­­26. Palhinhaea steyermarkii—(Ecuador: Øllgaard et al. 35959, AAU). A. Growth habit. A1. Close-up of major branchlet. A2. Close-up of terminal branchlet. A3. Portion of strobilus. A4. Close-up of strobilus apex, showing coalescent sporophyll bases. Drawing by K. Tind

opennotspecifiedNov 2021View details →
zenodo32/100

FIGURE­­­ 22.—A. Palhinhaea cernua—(Ecuador: Holm-Nielsen et al. 4494, AAU) A. Growth habit. A1. Branchlet with strobili. A2. Close-up of Sporophyll.—B. Palhinhaea riofrioi—(Ecuador: Harling & Andersson 12811, AAU). B-B1. Growth habit. B2. Close-up of branchlet leaf. B3. Close-up of Sporophyll. Drawing by B. Johnsen in The Lycopodiaceae of Panamá

FIGURE­­­ 22.—A. Palhinhaea cernua—(Ecuador: Holm-Nielsen et al. 4494, AAU) A. Growth habit. A1. Branchlet with strobili. A2. Close-up of Sporophyll.—B. Palhinhaea riofrioi—(Ecuador: Harling &amp; Andersson 12811, AAU). B-B1. Growth habit. B2. Close-up of branchlet leaf. B3. Close-up of Sporophyll. Drawing by B. Johnsen

opennotspecifiedNov 2021View details →
zenodo32/100

FIGURE­­­25. Palhinhaea lehmannii—Ecuador (Alston 8268, AAU) A. Growth habit. B. Part of branchlet with strobilus. C. Sporophyll. Drawing by B. Johnsen in The Lycopodiaceae of Panamá

FIGURE­­­25. Palhinhaea lehmannii—Ecuador (Alston 8268, AAU) A. Growth habit. B. Part of branchlet with strobilus. C. Sporophyll. Drawing by B. Johnsen

opennotspecifiedNov 2021View details →
zenodo32/100

FIGURE­­­20. Phlegmariurus wilsonii—(Ecuador: Ståhl & Knudsen 1476, AAU). A. Growth habit. A1. Close-up of terminal sporangiate divisions. in The Lycopodiaceae of Panamá

FIGURE­­­20. Phlegmariurus wilsonii—(Ecuador: Ståhl &amp; Knudsen 1476, AAU). A. Growth habit. A1. Close-up of terminal sporangiate divisions.

opennotspecifiedNov 2021View details →
zenodo32/100

FIGURE­­­ 2.—A. Lycopodium clavatum ssp. clavatum—(Ecuador: Harling 4091, S).A. Growth habit. A1. Close-up of branchlet leaf. A2. Close-up of sporophyll.—B. Lycopodium clavatum ssp. contiguum—(Ecuador: Cazalet & Pennington 5409, US). Growth habit. B1. Close-up of sporophylls.—C. Diphasiastrum thyoides—(Ecuador: Holm-Nielsen et al. 4818, AAU). C. Branchlet upper side left, and underside right.—D. Diphasium jussiaei—(Ecuador: Holm-Nielsen et al. 4670, AAU) D. Branchlet upper side left and underside right. Drawing by B. Johnsen in The Lycopodiaceae of Panamá

FIGURE­­­ 2.—A. Lycopodium clavatum ssp. clavatum—(Ecuador: Harling 4091, S).A. Growth habit. A1. Close-up of branchlet leaf. A2. Close-up of sporophyll.—B. Lycopodium clavatum ssp. contiguum—(Ecuador: Cazalet &amp; Pennington 5409, US). Growth habit. B1. Close-up of sporophylls.—C. Diphasiastrum thyoides—(Ecuador: Holm-Nielsen et al. 4818, AAU). C. Branchlet upper side left, and underside right.—D. Diphasium jussiaei—(Ecuador: Holm-Nielsen et al. 4670, AAU) D. Branchlet upper side left and underside right. Drawing by B. Johnsen

opennotspecifiedNov 2021View details →
zenodo32/100

FIGURE­­­.—A. Phlegmariurus watsonianus (Costa Rica: Stolze 1403, F), Panama: Woodson & Shery 690, MO). A. Growth habit. A1. Close-up of Basal division. A2. Close-up of basally auriculate leaves. A3. Close-up of terminal sporangiate division.—B. Phlegmariurus mollicomus:—(Brazil: Plowman & Martinelli 10128, AAU). B. Growth habit. B1. Close-up of juvenile plant. B2. Close-up of terminal sporangiate division. Drawing by K. Tind in The Lycopodiaceae of Panamá

FIGURE­­­.—A. Phlegmariurus watsonianus (Costa Rica: Stolze 1403, F), Panama: Woodson &amp; Shery 690, MO). A. Growth habit. A1. Close-up of Basal division. A2. Close-up of basally auriculate leaves. A3. Close-up of terminal sporangiate division.—B. Phlegmariurus mollicomus:—(Brazil: Plowman &amp; Martinelli 10128, AAU). B. Growth habit. B1. Close-up of juvenile plant. B2. Close-up of terminal sporangiate division. Drawing by K. Tind

opennotspecifiedNov 2021View details →
zenodo32/100

FIGURE­­­. Phlegmariurus talamancanus—(Costa Rica, Hickey &Regan 898, AAU). A. Growth habit. A1. Close-up of middle divisions. A2. Close-up of terminal sporangiate divisions. in The Lycopodiaceae of Panamá

FIGURE­­­. Phlegmariurus talamancanus—(Costa Rica, Hickey &amp;Regan 898, AAU). A. Growth habit. A1. Close-up of middle divisions. A2. Close-up of terminal sporangiate divisions.

opennotspecifiedNov 2021View details →
zenodo32/100

FIGURE­­­ A. Phlegmariurus taxifolius:—(Peru, Bonpland, P; type collection of Lycopodium passerinoides). A. Growth habit. A1. Close-up of basal division. A2. Close-up of terminal sporangiate division. Drawing by B. Johnsen—B. Phlegmariurus tubulosus:—(Costa Rica, Lent 1595, F). B. Growth habit. B1. Close-up of basal division. B2. Close-ups of terminal sporangiate divisions. Drawing by K. Tind in The Lycopodiaceae of Panamá

FIGURE­­­ A. Phlegmariurus taxifolius:—(Peru, Bonpland, P; type collection of Lycopodium passerinoides). A. Growth habit. A1. Close-up of basal division. A2. Close-up of terminal sporangiate division. Drawing by B. Johnsen—B. Phlegmariurus tubulosus:—(Costa Rica, Lent 1595, F). B. Growth habit. B1. Close-up of basal division. B2. Close-ups of terminal sporangiate divisions. Drawing by K. Tind

opennotspecifiedNov 2021View details →
zenodo32/100

FIGURE­­­ 6. Phlegmariurus mesoamericanus—(Panamá: Hammel 3061, MO). A. Growth habit. A1. Close-up of basal division. A2. Close-up of terminal sporangiate division. Drawing by K.Tind in The Lycopodiaceae of Panamá

FIGURE­­­ 6. Phlegmariurus mesoamericanus—(Panamá: Hammel 3061, MO). A. Growth habit. A1. Close-up of basal division. A2. Close-up of terminal sporangiate division. Drawing by K.Tind

opennotspecifiedNov 2021View details →
zenodo32/100

FIGURE­­­.­­­A. Phlegmariurus homocarpus—(Ecuador: Prieto P-224, AAU). A. Growth habit. A1. Close-up of sporangiate division.— B. Phlegmariurus linifolius var. linifolius:—(Ecuador: Holm-Nielsen et al. 2734, AAU). B. Growth habit. B1. Close-up of leaf from basal division. B2. Sporangiate middle division. B3. Close-up of terminal sporangiate division.—C. Phlegmariurus subulatus:—(Ecuador: Camp E-5189, AAU). C. Growth habit. C1. Close-up of basal expanded division. C2. Close-up of terminal sporangiate division.—D. Phlegmariurus funiformis—(Ecuador, Asplund 19290, S). D. Growth habit. D1. Close-up of sporangiate division. Drawings by B.Johnsen in The Lycopodiaceae of Panamá

FIGURE­­­.­­­A. Phlegmariurus homocarpus—(Ecuador: Prieto P-224, AAU). A. Growth habit. A1. Close-up of sporangiate division.— B. Phlegmariurus linifolius var. linifolius:—(Ecuador: Holm-Nielsen et al. 2734, AAU). B. Growth habit. B1. Close-up of leaf from basal division. B2. Sporangiate middle division. B3. Close-up of terminal sporangiate division.—C. Phlegmariurus subulatus:—(Ecuador: Camp E-5189, AAU). C. Growth habit. C1. Close-up of basal expanded division. C2. Close-up of terminal sporangiate division.—D. Phlegmariurus funiformis—(Ecuador, Asplund 19290, S). D. Growth habit. D1. Close-up of sporangiate division. Drawings by B.Johnsen

opennotspecifiedNov 2021View details →
zenodo32/100

FIGURE­­­. Phlegmariurus hoffmannii—(Costa Rica: Testo 698, AAU). A. Growth habit. A1. Close-up of sporangiate divisions. in The Lycopodiaceae of Panamá

FIGURE­­­. Phlegmariurus hoffmannii—(Costa Rica: Testo 698, AAU). A. Growth habit. A1. Close-up of sporangiate divisions.

opennotspecifiedNov 2021View 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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