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Geranylgeraniol prevents zoledronic acid-mediated reduction of viable mesenchymal stem cells via induction of Rho-dependent YAP activation
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Figure 4 in A new species of Phyllium (Phyllium) Illiger (Phasmida: Phylliidae) from Yap Island, Micronesia, representing a range expansion for the family
Figure 4. Phyllium (Phyllium) yapicum new species. A) Right protibia, lateral view. B) Dorsal close-up of base of head and thorax. C) Collection label.
Figure 2 in A new species of Phyllium (Phyllium) Illiger (Phasmida: Phylliidae) from Yap Island, Micronesia, representing a range expansion for the family
Figure 2. Holotype of Phyllium (Phyllium) yapicum new species. A) Dorsal view. B) Ventral view. C) Thorax side view.
Figure 1 in A new species of Phyllium (Phyllium) Illiger (Phasmida: Phylliidae) from Yap Island, Micronesia, representing a range expansion for the family
Figure 1. Historic range extremes for the Phylliidae (purple), the notable range expansion marked by Phyllium (Phyllium) yapicum new species (yellow), and the other Phylliidae rich areas nearest to Yap Island, Micronesia (red). Adapted from public domain map retrieved from https://commons.wikimedia.org/wiki/File:WorldMap-A_non- Frame.png.
FIGURE 4 in A new deep-sea species of the genus Urocaridella (Crustacea: Decapoda: Caridea: Palaemonidea) from Yap Seamount in the Western Pacific
FIGURE 4. Urocaridella liui sp. nov. holotype, female (MBM 240860). Color photograph.
FIGURE 1 in A new deep-sea species of the genus Urocaridella (Crustacea: Decapoda: Caridea: Palaemonidea) from Yap Seamount in the Western Pacific
FIGURE 1. Urocaridella liui sp. nov., holotype, female (MBM 240860). Entire animal in lateral view
Figure 2 from: Yap NWL, Tan R, Yong CLX, Tan KS, Huang D (2019) Sea anemones (Cnidaria, Actiniaria) of Singapore: redescription and taxonomy of Phymanthus pinnulatus Martens in Klunzinger, 1877. ZooKeys 840: 1-20. https://doi.org/10.3897/zookeys.840.31390
Figure 2 Holotype of Phymanthuspinnulatum Martens in Klunzinger, 1877 A entire specimen present at the Museum für Naturkunde, Berlin (ZMB Cni 1324), Germany B three pieces of the holotype removed from the Berlin specimen now at Naturhistoriska Riksmuseet (NRS76), Stockholm, Sweden. Abbreviations: m, mesenteries. mt, marginal tentacles. mf, mesenterial filaments. mp, marginal projection. o, oral disc. pd, pedal disc. Photographs by NWL Yap.
Figure 1 from: Yap NWL, Tan R, Yong CLX, Tan KS, Huang D (2019) Sea anemones (Cnidaria, Actiniaria) of Singapore: redescription and taxonomy of Phymanthus pinnulatus Martens in Klunzinger, 1877. ZooKeys 840: 1-20. https://doi.org/10.3897/zookeys.840.31390
Figure 1 Map of Singapore where specimens of Phymanthuspinnulatus were collected for this study: 1, Berlayer Creek (1°15'56"N; 103°48'25"E); 2, Big Sisters' Island (Pulau Subar Laut) (1°12'50"N; 103°50'05"E); 3, Changi East Beaches (1°18'45"N; 104°00'31"E); 4, Chek Jawa (1°24'25"N; 103°59'23"E); 5, Cyrene Reef (Terumbu Pandan) (1°15'28"N; 103°45'19"E); 6, East Coast Park Beaches (1°17'36"N; 103°53'46"E); 7, Kusu Island (Pulau Tembakul) (1°13'25"N; 103°51'39"E); 8, Pulau Hantu (1°13'35"N; 103°45'03"E); 9, Pulau Jong (1°12'54"N; 103°47'12"E); 10, Pulau Sekudu (1°24'19"N; 103°59'17"E); 11, Pulau Semakau (1°11'58"N; 103°45'31"E); 12, Pulau Tekukor (1°13'51"N; 103°50'18"E); 13, Sentosa (Tanjong Rimau) (1°14'47"N; 103°49'56"E); 14, St John's Island (1°13'17"N; 103°50'55"E); 15, Tanah Merah (1°18'45"N; 103°59'34"E); 16, Terumbu Bemban (1°12'36"N; 103°44'27"E); 17, Terumbu Pempang Tengah (1°13'33"N; 103°43'50"E); 18, Terumbu Raya (1°12'46"N; 103°45'09"E); 19, Terumbu Semakau (1°12'46"N; 103°46'07"E).
Figure 5 from: Yap NWL, Tan R, Yong CLX, Tan KS, Huang D (2019) Sea anemones (Cnidaria, Actiniaria) of Singapore: redescription and taxonomy of Phymanthus pinnulatus Martens in Klunzinger, 1877. ZooKeys 840: 1-20. https://doi.org/10.3897/zookeys.840.31390
Figure 5 Detail of the oral discs of Phymanthuspinnulatus, external morphology A top view of discal tentacles present on a live individual, arranged as radial rows between intermesenterial spaces, extending from the mouth towards the region of the marginal tentacles (ZRC.CNI.1361) B side view of discal tentacles of a living specimen; note the low and reduced elevation of tentacles (ZRC.CNI.1046) C faint and reduced radial rows of discal tentacles (arrowed) present on a recent, formalin-fixed specimen (ZRC.CNI.1345) D very reduced and barely noticeable remnants of discal tentacles (arrowed) present on the holotype (NRS76); note that this specimen was preserved before 1877. Abbreviations: m, mesenteries; mt, marginal tentacles. Photographs by NWL Yap.
Figure 7 from: Yap NWL, Tan R, Yong CLX, Tan KS, Huang D (2019) Sea anemones (Cnidaria, Actiniaria) of Singapore: redescription and taxonomy of Phymanthus pinnulatus Martens in Klunzinger, 1877. ZooKeys 840: 1-20. https://doi.org/10.3897/zookeys.840.31390
Figure 7 Cnidae of PhymanthuspinnulatusA spirocyst B basitrich C spirocyst D basitrich E spirocyst F basitrich G basitrich H basitrich I basitrich J microbasic p-mastigophore K small basitrich L large basitrich M microbasic p-mastigophore. Scale bar: 10 μm. Photographs by NWL Yap.
Figure 6 from: Yap NWL, Tan R, Yong CLX, Tan KS, Huang D (2019) Sea anemones (Cnidaria, Actiniaria) of Singapore: redescription and taxonomy of Phymanthus pinnulatus Martens in Klunzinger, 1877. ZooKeys 840: 1-20. https://doi.org/10.3897/zookeys.840.31390
Figure 6 Internal musculature of PhymanthuspinnulatusA longitudinal section of ZRC.CNI.0321 at the margin, showing lack of marginal sphincter muscle. Fosse is indicated by a black star B cross-section of ZRC.CNI.0993. Note the presence of well-developed retractor muscles (white star), and oocytes. Abbreviations: a, actinopharynx; d, directives; mp, marginal projection; mt, marginal tentacle; pb, parietolbasilar muscle. Scale bar: 10 mm. Photographs by NWL Yap.
Figure 4 from: Yap NWL, Tan R, Yong CLX, Tan KS, Huang D (2019) Sea anemones (Cnidaria, Actiniaria) of Singapore: redescription and taxonomy of Phymanthus pinnulatus Martens in Klunzinger, 1877. ZooKeys 840: 1-20. https://doi.org/10.3897/zookeys.840.31390
Figure 4 Marginal tentacle and marginal projection appearance of PhymanthuspinnulatusA close-up of ramified protuberances of a living specimen. Photograph by NWL Yap B close-up of protuberances from a fixed specimen (ZRC.CNI.1345); note that finer details of protuberance branching are lost in preserved/fixed specimens, branching of protuberances now appear as knobs. Photograph by NWL Yap C a morphotype of that lacks ramified protuberances. Note that this individual (ZRC.CNI.1029) is atypical as it has lesser marginal tentacles, by which are also octo-ramously arranged. Photograph by NWL Yap. D a "smooth" tentacle morphotype, in situ. Photograph by R Tan E close-up of a marginal tentacle tip from a fixed specimen (ZRC.CNI.1342). Note absence of perforation at tip F close-up of a row of marginal projections of a fixed specimen (ZRC.CNI.1342). Note perforations (arrowed). Abbreviations: mt, marginal tentacles; mtt, marginal tentacle tip; p, protuberances. Photographs by NWL Yap.
Figure 3 from: Yap NWL, Tan R, Yong CLX, Tan KS, Huang D (2019) Sea anemones (Cnidaria, Actiniaria) of Singapore: redescription and taxonomy of Phymanthus pinnulatus Martens in Klunzinger, 1877. ZooKeys 840: 1-20. https://doi.org/10.3897/zookeys.840.31390
Figure 3 Living specimens of Phymanthuspinnulatus, external morphology of oral end A expanded individual of green "banded" colour morph, in situ. Photograph by R Tan B an expanded slaty-green "plain" coloured individual, with extensive branching of its protuberances, in situ. Photograph by R Tan C a third colour morph with brilliant electric blue marginal tentacles, in situ. Photograph by NWL Yap D a partially contracted individual in situ, with its oral end protruding from the substratum; note longitudinal rows of verrucae along intermesenterial spaces, extending proximally from the oral end towards mid column, in situ. Photograph by R Tan.
Fig 5 from: Tan MK, Tumbrinck J, Baroga-Barbecho JB, Yap SA (2019) A new species and morphometric analysis of Cladonotella (Tetrigidae: Cladonotinae). Journal of Orthoptera Research 28(2): 129-135. https://doi.org/10.3897/jor.28.32464
Fig 5 Over-limestone forest in Siargao Island, the habitat of Cladonotella spinulosasp. nov. The blue arrow indicates the location where the specimen was collected.
Fig 2 from: Tan MK, Tumbrinck J, Baroga-Barbecho JB, Yap SA (2019) A new species and morphometric analysis of Cladonotella (Tetrigidae: Cladonotinae). Journal of Orthoptera Research 28(2): 129-135. https://doi.org/10.3897/jor.28.32464
Fig 2 A neighbor-joining tree of Cladonotella based on seven measurements (see Tumbrinck 2014) and four categorical characters. The value indicates nodal support based on 10,000 standard bootstrap replications. Images by J. Tumbrinck (except for Cladonotella spinulosasp. nov.).
Fig 4 from: Tan MK, Tumbrinck J, Baroga-Barbecho JB, Yap SA (2019) A new species and morphometric analysis of Cladonotella (Tetrigidae: Cladonotinae). Journal of Orthoptera Research 28(2): 129-135. https://doi.org/10.3897/jor.28.32464
Fig 4 Cladonotella spinulosasp. nov. holotype: A. Face and anterior part of pronotum in frontal view; B. Head in dorsal view; C. Mouthparts in ventro-frontal view; D. Anterior and E. Middle femora in lateral views. Posterior femur in F. Lateral (posterior part) and G. Dorsal views; H. Posterior tibia and tarsus in lateral view; I. Abdominal apex in lateral view; J. Subgenital plate in ventral view. Scale bars: 1 mm.
Fig 1 from: Tan MK, Tumbrinck J, Baroga-Barbecho JB, Yap SA (2019) A new species and morphometric analysis of Cladonotella (Tetrigidae: Cladonotinae). Journal of Orthoptera Research 28(2): 129-135. https://doi.org/10.3897/jor.28.32464
Fig 1 Map of Southeast Asia. Colored regions indicate the current known distribution of Cladonotella. Images by J. Tumbrinck (except for Cladonotella spinulosasp. nov.).
Fig 3 from: Tan MK, Tumbrinck J, Baroga-Barbecho JB, Yap SA (2019) A new species and morphometric analysis of Cladonotella (Tetrigidae: Cladonotinae). Journal of Orthoptera Research 28(2): 129-135. https://doi.org/10.3897/jor.28.32464
Fig 3 Habitus of Cladonotella spinulosasp. nov. holotype in A. Lateral and B. Dorsal views. Scale bars: 2 mm.
Astrocytic Expression of Yes-Associated Protein (YAP) Regu-lates Retinal Neovascularization in a Mouse Model of Oxy-gen-Induced Retinopathy
<p>Original images used for each figure.</p>
YAP drives proliferation and tumorigenesis by recruiting Mediator to super- enhancer elements (CClp1)
GEO Series GSE62272. Homo sapiens. 6 samples. Type: Genome binding/occupancy profiling by high throughput sequencing.
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Annotated Behaviour and Observability Dataset (ABODe)
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