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Figs. 15–17. 15. Melania laeta Jay, 1839 in Catalog Of Recent Type Specimens In The Division Of Invertebrate Zoology, American Museum Of Natural History. V. Mollusca, Part 2 (Class Gastropoda [Exclusive Opisthobranchia And Pulmonata With Supplements To Gastropoda [Opisthobranchia], And Bivalvia
Figs. 15–17. 15. Melania laeta Jay, 1839 (syntype—AMNH 56113), X 1.5. 16. Odostomia nestho) beauforti Jacot, 1921 (holotype—AMNH 15728), X 8. 17. Turbo rotelliformis Jay, 1839 types—AMNH 56071 [right], 56071a [left]), X 1.
Figs. 1–5. 1. Ampullaria angulata Jay, 1836 in Catalog Of Recent Type Specimens In The Division Of Invertebrate Zoology, American Museum Of Natural History. V. Mollusca, Part 2 (Class Gastropoda [Exclusive Opisthobranchia And Pulmonata With Supplements To Gastropoda [Opisthobranchia], And Bivalvia
Figs. 1–5. 1. Ampullaria angulata Jay, 1836 (syntype—AMNH 56108), X 1.5. 2. brownii Jay, 1839 (syntype—AMNH 56107), X 1.25. 3. Ampullaria ochracea Jay, 1836 (
FIGURE 2. Streptocephalus longimanus. A & B in An updated and detailed taxonomical account of the large Branchiopoda (Crustacea: Branchiopoda: Anostraca, Notostraca, Spinicaudata) from the Yale North India Expedition deposited in the Yale Peabody Natural History Museum
FIGURE 2. Streptocephalus longimanus. A & B, eggs (Scale bars: A: 0.2 mm; B: 0.1 mm)
Figure 2 from: Mendez PK, Lee S, Venter CE (2018) Imaging natural history museum collections from the bottom up: 3D print technology facilitates imaging of fluid-stored arthropods with flatbed scanners. ZooKeys 795: 49-65. https://doi.org/10.3897/zookeys.795.28416
Figure 2 Fluid material scanning box: A dimensions of top-down and cross-section view of box plans, and finished box with glass affixed in B top and C bottom view.
Figure 3 from: Mendez PK, Lee S, Venter CE (2018) Imaging natural history museum collections from the bottom up: 3D print technology facilitates imaging of fluid-stored arthropods with flatbed scanners. ZooKeys 795: 49-65. https://doi.org/10.3897/zookeys.795.28416
Figure 3 Scanning process images: A scanning process with scan view setup, box covers, full scan, and cropped image B required fill levels of fluid for box covers to prevent bubbles and standoffs (left) to prevent an uneven scan (right) C six boxes set up on scanner; and D resulting full scan. Clear Plexiglas cube standoffs B and slip-joint rings D (lower-right) improve scans.
Figure 4 from: Mendez PK, Lee S, Venter CE (2018) Imaging natural history museum collections from the bottom up: 3D print technology facilitates imaging of fluid-stored arthropods with flatbed scanners. ZooKeys 795: 49-65. https://doi.org/10.3897/zookeys.795.28416
Figure 4 Cropped scan and scan resolution comparison: A final cropped scan of EMEC 37259, Psychoglyphaormiae (Ross, 1938) ♂, with standard layout of labels and specimens B–D comparison of scan resolution settings of 600 dpi, 1200 dpi, and 2400 dpi to show 100% scale display quality differences. Black scale bar is 5 mm for Rhyacophilaharmstoni Ross, 1944 ♂ (EMEC 41255, NV: White Pine Co.) in all images. Images are unmodified in software (e.g., no sharpening, white balance, or color correction).
Figure 1 from: Mendez PK, Lee S, Venter CE (2018) Imaging natural history museum collections from the bottom up: 3D print technology facilitates imaging of fluid-stored arthropods with flatbed scanners. ZooKeys 795: 49-65. https://doi.org/10.3897/zookeys.795.28416
Figure 1 Fluid-stored arthropods in A a museum jar with shell vials B shell vials in a jar rack C racks in storage shelves at the Essig Museum of Entomology. Other fluid-based storage approaches include D screw-top scintillation vials and stoppered vials. Individually capped vials are commonly stored in racks on shelves.
Figure 5 from: Mendez PK, Lee S, Venter CE (2018) Imaging natural history museum collections from the bottom up: 3D print technology facilitates imaging of fluid-stored arthropods with flatbed scanners. ZooKeys 795: 49-65. https://doi.org/10.3897/zookeys.795.28416
Figure 5 Example scans of different species and life stages of Essig Museum of Entomology Trichoptera showing detail of morphological features ADolophilodesnovusamericana (Ling, 1938) ♂, CA: Marin Co., EMEC 373433 BWormaldia sp. larvae, CA: Nevada Co., EMEC 1194742 CLimnephilusfrijole Ross, 1944 genitalic dissections of ♀♂, CA: Modoc Co., EMEC 373223 D larva and E case of Yphriacalifornica (Banks, 1907), CA: El Dorado Co., EMEC 373355 FLimnephilidae pupa, no location data, EMEC 373316 GPsychoglyphaormiae ♀ (Ross, 1938), CA: Nevada Co., EMEC 373259 HPsychoglypha sp. ♀, CA: Nevada Co., EMEC 373266 and IHesperophylaxdesignatus (Walker, 1852) case, CA: Mono Co., EMEC 373246. All scans are unmodified in software (no sharpening, white balance, or color correction). Scale bar: 5mm.
Figure 1 from: Gonzáles P, Cano A, Robinson H (2018) A new genus of Compositae (Eupatorieae, Piqueriinae) from Peru, named Centenaria to honour the 100 th anniversary of the Natural History Museum of the National University Mayor of San Marcos. PhytoKeys 113: 69-77. https://doi.org/10.3897/phytokeys.113.28242
Figure 1 Centenariarupacquiana. A Plant B leaf (adaxial surface) C mature leaf (abaxial surface) D mature leaf (adaxial surface) E upper leaf F uppermost leaf bracteiform G capitula (upper view) H involucre I inner phyllaries J outer phyllaries K flower (frontal view) L flower (lateral view) M flower tube with glandular trichomes N flower (upper view) O style and stamens P, Q scale of pappus R achene without pappus. Photos by P. Gonzáles.
Figure 2 from: Berger A (2018) Rediscovery of Chamisso's type specimens of Hawaiian Psychotria (Rubiaceae, Psychotrieae) in the herbarium of the Natural History Museum, Vienna. PhytoKeys 114: 27-42. https://doi.org/10.3897/phytokeys.114.29426
Figure 2 Lectotype of Psychotriamariniana (Cham. & Schltdl.) Fosberg collected by L.K.A. von Chamisso during the Romanzoffian Expedition in 1817 (L.K.A. von Chamisso s.n., W-Endl. 0066414). The sheet originates from the private herbarium of S.L. Endlicher, now preserved at the Herbarium of the Natural History Museum, Vienna. Photo: Courtesy of the Natural History Museum, Vienna.
Figure 1 from: Berger A (2018) Rediscovery of Chamisso's type specimens of Hawaiian Psychotria (Rubiaceae, Psychotrieae) in the herbarium of the Natural History Museum, Vienna. PhytoKeys 114: 27-42. https://doi.org/10.3897/phytokeys.114.29426
Figure 1 Lectotype of Psychotriakaduana (Cham. & Schltdl.) Fosberg collected by L.K.A. von Chamisso during the Romanzoffian Expedition in 1817 (L.K.A. von Chamisso s.n., W-Endl. 0065914). The sheet originates from the private herbarium of S.L. Endlicher, now preserved at the Herbarium of the Natural History Museum, Vienna. Photo: Courtesy of the Natural History Museum, Vienna.
Figure 9 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 9 Second of two OUMNH paralectotypes for Ululaaurifera McLachlan, 1871 (NEUR0077-02, sex undetermined).
Figure 88 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 88 Second of two OUMNH syntypes for Myrmeleonnotatus Rambur, 1842 (NEUR0060-02, sex undetermined).
Figure 87 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 87 First of two OUMNH syntypes for Myrmeleonnotatus Rambur, 1842 (NEUR0060-01, sex undetermined).
Figure 78 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 78 First of two OUMNH syntypes for Myrmeleonatomarius Rambur, 1842 (NEUR0062-01, probably female).
Figure 79 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 79 Second of two OUMNH syntypes for Myrmeleonatomarius Rambur, 1842 (NEUR0062-02, sex undetermined).
Figure 8 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 8 First of two OUMNH paralectotypes for Ululaaurifera McLachlan, 1871 (NEUR0077-01, sex undetermined).
Figure 91 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 91 Second of two OUMNH syntypes of Myrmeleonobscurus Rambur, 1842 (NEUR0061-2, sex undetermined).
Figure 94 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 94 OUMNH paralectotype of Palparespulchellus Esben-Petersen, 1922 (NEUR0076, sex undetermined).
Figure 80 from: Tauber CA, Simmons Z, Tauber AJ (2019) Type specimens of Neuropterida in the Hope Entomological Collection, Oxford University Museum of Natural History. ZooKeys 823: 1-126. https://doi.org/10.3897/zookeys.823.30231
Figure 80 One of three OUMNH paralectotypes for Acanthaclisisdistincta Rambur, 1842 (NEUR0059-01, female). Note: This specimen appears to be Rambur's female specimen from Mauritius.
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