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zenodo40/100

Рис. 1. Географическое поΛожение Норского заповеΑника (А) и картосхема распоΛожения на его территории (Б) учетных пΛощаΑок с фитоценозами (L_1–L_7) на Αвух мониторинговых станциях (I–II). I — МаΛьцевская: L_1 — березняк с участием осины и Λиственницы рябинниковый вейниково-разнотравный; L_2 — осиново-беΛоберезовый рябинниковый вейниково-разнотравный Λес; L_3 — Λиственничник с участием березы пΛоскоΛистной осоково-вейниковый с разнотравьем; L_4 — беΛоберезово-Λиственничный с примесью осины роΑоΑенΑроновый бруснично-осоковый Λес; L_5 — закустаренный, преимущественно тавоΛгой ивоΛистной, разнотравно-вейниковый Λуг. II — Антоновская: L_6 — Λиственничник роΑоΑенΑроново-брусничный; L_7 — Λиственнично-беΛоберезовый с примесью пихты и еΛи закустаренный разнотравно-вейниковый Λес (коΑ типа местообитания соответствуют таковому в табΛ. 1 и 3 и на рис. 2) Fig. 1. Geographical location of the Norsky Nature Reserve (A) and the map (B) of registration sites with phytocenoses (L_1–L_7) at two monitoring stations (I–II). I — Maltsevskaya: L_1 — birch forest with aspen and larch, fieldfare reed-forb; L_2 — aspen-white-birch, fieldfare reed-forb forest; L_3 — larch forest with flat-leaved sedge-reed birch with forbs; L_4 — white-birch-larch with an admixture of aspen rhododendron lingonberry-sedge forest; L_5 — bushy, mostly meadowsweet, forb-reed grass meadow. II — Antonovskaya: L_6 — rhododendron-cowberry larch forest; L_7 — larch-white-birch with fir and spruce, shrubby forb-reed grass forest (the code of the habitat type corresponds to that in Tables 1 and 3 and in Fig. 2) in Structure and dynamics of the taxocenes of shrews in different habitats of the Norsky nature reserve

Рис. 1. Географическое поΛожение Норского заповеΑника (А) и картосхема распоΛожения на его территории (Б) учетных пΛощаΑок с фитоценозами (L_1–L_7) на Αвух мониторинговых станциях (I–II). I — МаΛьцевская: L_1 — березняк с участием осины и Λиственницы рябинниковый вейниково-разнотравный; L_2 — осиново-беΛоберезовый рябинниковый вейниково-разнотравный Λес; L_3 — Λиственничник с участием березы пΛоскоΛистной осоково-вейниковый с разнотравьем; L_4 — беΛоберезово-Λиственничный с примесью осины роΑоΑенΑроновый бруснично-осоковый Λес; L_5 — закустаренный, преимущественно тавоΛгой ивоΛистной, разнотравно-вейниковый Λуг. II — Антоновская: L_6 — Λиственничник роΑоΑенΑроново-брусничный; L_7 — Λиственнично-беΛоберезовый с примесью пихты и еΛи закустаренный разнотравно-вейниковый Λес (коΑ типа местообитания соответствуют таковому в табΛ. 1 и 3 и на рис. 2) Fig. 1. Geographical location of the Norsky Nature Reserve (A) and the map (B) of registration sites with phytocenoses (L_1–L_7) at two monitoring stations (I–II). I — Maltsevskaya: L_1 — birch forest with aspen and larch, fieldfare reed-forb; L_2 — aspen-white-birch, fieldfare reed-forb forest; L_3 — larch forest with flat-leaved sedge-reed birch with forbs; L_4 — white-birch-larch with an admixture of aspen rhododendron lingonberry-sedge forest; L_5 — bushy, mostly meadowsweet, forb-reed grass meadow. II — Antonovskaya: L_6 — rhododendron-cowberry larch forest; L_7 — larch-white-birch with fir and spruce, shrubby forb-reed grass forest (the code of the habitat type corresponds to that in Tables 1 and 3 and in Fig. 2)

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

Рис. 4. Гистограммы распреΔеΛения гнезΔ из разных попуΛяций по биотопам (по Δоминирующему растению): 1 — крапива; 2 — вейник; 3 — поΛынь; 4 — поΛынь с разнотравьем; 5 — тростник; 6 — оΛьха и ΛеспеΔеца; 7 — спирея; 8 — разнотравье Fig. 4. Histograms of the nest distribution from different populations by biotopes (by the dominant plant): 1 — nettle; 2 — reed grass; 3 — wormwood; 4 — wormwood with herbs; 5 — reed; 6 — alder and lespedets; 7 — spirea; 8 — herbs in in the Ussuri region

Рис. 4. Гистограммы распреΔеΛения гнезΔ из разных попуΛяций по биотопам (по Δоминирующему растению): 1 — крапива; 2 — вейник; 3 — поΛынь; 4 — поΛынь с разнотравьем; 5 — тростник; 6 — оΛьха и ΛеспеΔеца; 7 — спирея; 8 — разнотравье Fig. 4. Histograms of the nest distribution from different populations by biotopes (by the dominant plant): 1 — nettle; 2 — reed grass; 3 — wormwood; 4 — wormwood with herbs; 5 — reed; 6 — alder and lespedets; 7 — spirea; 8 — herbs

opencc-by-4.0Dec 2021View details →
zenodo40/100

Рис. 2. Типичные местообитания чернобровой камышевки: a — поΛынники в пос. Гайворон; b — тростниковые пΛавни в с. Сосновка Fig. 2. Typical habitats of the black-browed warbler: a — wormwood in the Gaivoron village; b — reed floodplains in the Sosnovka village in in the Ussuri region

Рис. 2. Типичные местообитания чернобровой камышевки: a — поΛынники в пос. Гайворон; b — тростниковые пΛавни в с. Сосновка Fig. 2. Typical habitats of the black-browed warbler: a — wormwood in the Gaivoron village; b — reed floodplains in the Sosnovka village

opencc-by-4.0Dec 2021View details →
zenodo40/100

Figure 3 in Effect of reed burning and precipitation on the breeding success of Great Reed Warbler, Acrocephalus arundinaceus, on a mining pond

Figure 3. Correlation between amount of precipitation and breeding success at Bager Pond, 2008–2011. Data points are Early and Late groups in 4 years.

opencc-by-4.0Jul 2014View details →
zenodo40/100

Figure. The left-hand photo shows the Basra Reed-warbler (Acrocephalus griseldis) caught at Aras River Ornithological Research Station. The right-hand photo compares A. griseldis (left) with a Great Reed-warbler (A. arundinaceus, right). in Endangered Basra Reed-warbler (Acrocephalus griseldis) recorded for the first time in Turkey (Aves: Acrocephalidae)

Figure. The left-hand photo shows the Basra Reed-warbler (Acrocephalus griseldis) caught at Aras River Ornithological Research Station. The right-hand photo compares A. griseldis (left) with a Great Reed-warbler (A. arundinaceus, right).

opencc-by-4.0Dec 2018View details →
zenodo40/100

Linked collectors and determiners for: E.L. Reed Herbarium at Texas Tech University - Bryophytes.

Natural history specimen data linked to collectors and determiners held within, "E.L. Reed Herbarium at Texas Tech University - Bryophytes". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/8909fc7b-c981-44c2-b740-ba3655df3b56">https://bionomia.net/dataset/8909fc7b-c981-44c2-b740-ba3655df3b56</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/8909fc7b-c981-44c2-b740-ba3655df3b56">https://gbif.org/dataset/8909fc7b-c981-44c2-b740-ba3655df3b56</a>. Formatted as a Frictionless Data package.

opencc-zeroJul 2024View details →
zenodo40/100

Linked collectors and determiners for: Reed College Vascular Plant Herbarium.

Natural history specimen data linked to collectors and determiners held within, "Reed College Vascular Plant Herbarium". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/2e44f811-fc49-4945-ba2d-12c9fcdd3e09">https://bionomia.net/dataset/2e44f811-fc49-4945-ba2d-12c9fcdd3e09</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/2e44f811-fc49-4945-ba2d-12c9fcdd3e09">https://gbif.org/dataset/2e44f811-fc49-4945-ba2d-12c9fcdd3e09</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
zenodo40/100

Linked collectors and determiners for: Texas Tech University, E. L. Reed Herbarium.

Natural history specimen data linked to collectors and determiners held within, "Texas Tech University, E. L. Reed Herbarium". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/a6f37a35-cb18-4395-9a0c-5be222c8e6c8">https://bionomia.net/dataset/a6f37a35-cb18-4395-9a0c-5be222c8e6c8</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/a6f37a35-cb18-4395-9a0c-5be222c8e6c8">https://gbif.org/dataset/a6f37a35-cb18-4395-9a0c-5be222c8e6c8</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
zenodo40/100

Fig. 3 in Identification and a new record from Penang Island of the rare redbellied reed snake (Calamaria albiventer) (Gray, 1835) (Serpentes: Calamariinae)

Fig. 3. Distribution of Calamaria albiventer. Star indicates type locality and circles indicate reported localities.

opencc-by-4.0Aug 2018View details →
zenodo40/100

Fig. 2. A in Identification and a new record from Penang Island of the rare redbellied reed snake (Calamaria albiventer) (Gray, 1835) (Serpentes: Calamariinae)

Fig. 2. A, Hill dipterocarp forest habitat of C. albiventer on Penang Hill, Penang Island (Photograph by Evan Quah); B, Original illustrations of C. albiventer from Gray (1835).

opencc-by-4.0Aug 2018View details →
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Fig. 1. A in Identification and a new record from Penang Island of the rare redbellied reed snake (Calamaria albiventer) (Gray, 1835) (Serpentes: Calamariinae)

Fig. 1. A, Dorsum of Calamaria albiventer (USMHC 2390) in life from Penang Hill, Penang Island; B, Venter of C. albiventer (USMHC 2390) in life from Penang Hill, Penang Island; C, Dorsum of C. albiventer (ZRC 2.3920) from Penang Hill, Penang Island; D, Venter of C. albiventer (ZRC 2.3920) from Penang Hill, Penang Island (Photographs by Evan Quah [A–B], Kevin T.Y. Chiang [C–D]).

opencc-by-4.0Aug 2018View details →
zenodo40/100

Text-fig. 2. (A) Orientation of Schizocrania filosa (HALL, 1847) on articulated shells of benthic brachiopod Rafinesquina sp. (A1–A3 – on dorsal valve of articulated shells, A4 – on ventral valve of articulated shell; forward growth direction is unclear in three specimens) from Upper Ordovician, Corryville Formation, Lawrenceburg, Indiana (after www.drydredgers.org/scizo.htm). (B) Orientation of Schizocrania multistriata (REED, 1905) shells on outer face of conulariid Metaconularia imperialis test (Dobrotivá Formation, Kařízek mine, Barrandian area; after Havlíček and Vaněk 1996); preserved conulariid shell in white, suggested outline of incomplete conulariid test in grey. Arrows indicate direction of forward growth of Schizocrania specimens. in Schizocrania (Brachiopoda, Discinoidea): Taxonomy, Occurrence, Ecology And History Of The Earliest Epizoan Lingulate Brachiopod

Text-fig. 2. (A) Orientation of Schizocrania filosa (HALL, 1847) on articulated shells of benthic brachiopod Rafinesquina sp. (A1–A3 – on dorsal valve of articulated shells, A4 – on ventral valve of articulated shell; forward growth direction is unclear in three specimens) from Upper Ordovician, Corryville Formation, Lawrenceburg, Indiana (after www.drydredgers.org/scizo.htm). (B) Orientation of Schizocrania multistriata (REED, 1905) shells on outer face of conulariid Metaconularia imperialis test (Dobrotivá Formation, Kařízek mine, Barrandian area; after Havlíček and Vaněk 1996); preserved conulariid shell in white, suggested outline of incomplete conulariid test in grey. Arrows indicate direction of forward growth of Schizocrania specimens.

opencc-by-4.0Dec 2016View details →
dryad40/100

Removing invasive giant reed reshapes desert riparian butterfly and bird communities

<p>Giant reed (Arundo donax) is a prevalent invasive plant in desert riparian ecosystems that threatens wildlife habitat. From 2008 to 2018, under a United States–Mexico partnership, prescribed burns and herbicide applications were used to remove giant reed and promote native revegetation along the Rio Grande – Río Bravo floodplain in west Texas, USA, and Mexico. Our goal was to explore the effects of the removal efforts on butterfly and bird communities and their habitat along the United States portion of the Rio Grande – Río Bravo floodplain in Big Bend National Park, Texas. During spring and summer, 2016–2017, we surveyed butterflies, birds, and their habitat using ground-collected and remotely sensed data. Using a variety of generalized linear and N-mixture modeling routines and multivariate analyses, we found that the initial giant reed removal efforts removed key components of riparian habitat leading to reduced butterfly and bird communities. Within several years following management, giant reed levels remained low, while riparian habitat conditions and butterfly and bird communities largely rebounded, including many disturbance-sensitive butterfly species and riparian-associated bird species. Butterflies were most consistently associated with forb and grass cover, and birds with a remotely sensed index of greenness (the normalized difference vegetation index), several vegetation cover types, and habitat heterogeneity, habitat elements that were most common in locations that had the longest time to recover following management actions. Our results suggest that prescribed burns and herbicide applications, when used following protocols to minimize risk to wildlife, can limit the spread of giant reed in desert riparian systems and introduce habitat conditions that support diverse and abundant butterfly and bird communities. </p>

opencc-zeroJan 2023View details →
dryad40/100

Removing invasive giant reed reshapes desert riparian butterfly and bird communities

Open the record for dataset details and reuse information.

publicJan 2023View details →
dryad40/100

Data from: Different strokes for different croaks: Using an African reed frog species complex as a model to understand idiosyncratic population requirements for conservation management

Open the record for dataset details and reuse information.

publicNov 2025View details →
dryad40/100

Suppression of reed canarygrass by assisted succession: A sixteen-year restoration experiment

Open the record for dataset details and reuse information.

publicMar 2024View details →
dryad40/100

Potential local adaptation in populations of invasive reed canary grass (Phalaris arundinacea) across an urbanization gradient

Open the record for dataset details and reuse information.

publicSep 2022View details →
zenodo36/100

Fig. 5 in Chalcidoidea (Hymenoptera) obtained from common reed, Phragmites australis (Cav.) Trin. ex Steud. (Poaceae) in Iran with new records and descriptions of two new species

Fig. 5. Neococcidencyrtus poutiersi (Mercet, 1922), ♀. A. Lateral view. B. Dorsal view. C. Antenna.

opencc-by-4.0Aug 2020View details →
zenodo36/100

THE TUBE OF THE COMMON REED FOR NESTING OF EUROPEAN ORCHARDS BEE

<p>The tube (1) of the common reed for nesting of European orchards bee, used in agriculture in field of beekeeping and subfield of rearing technology of solitary bee species such as orchard bees. The present invention (1) relates to constructing suitable, and for orchards bees acceptable nesting material in the form of a linear tube with two separate openings (3) at its ends, made from natural materials: dry common reed stem. Subject tube (1) is cutting under a sharp angle (&alpha;). The opposite ends of the tubes (1) are in a symmetrical position, facing each as object and the image in the mirror, in relation to the central node (2). The present invention (1) has an external diameter (d) at the ends, and with overall length (2L). Figure 1.</p>

opencc-by-sa-4.0Jun 2015View details →
zenodo36/100

Charles Reed Bishop

<strong>Plaster Bust</strong> <i>by Allen Hutchison (1855 - 1929) April 1896</i> Commissioned by the Trustees of Bernice Pauahi Bishop Museum (1896.002.002) <i>"...I am glad that my friends think the bust is a good likeness..."</i> Charles R. Bishop Source: Objaverse 1.0 / Sketchfab

opencc-byApr 2016View details →

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dandi-nwb
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International Brain Laboratory public data

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Last verified 2026-04-29Open record