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  • A false color X-ray of a fern.
    K15Xfern01D.jpg
  • A false color X-ray of a fern.
    K15Xfern01C.jpg
  • Leaf of a Giant Amazon water lilies (Victoria amazonica).
    K15-giantwaterlily01.jpg
  • A false color x-ray of the leaf of a Giant Amazon water lilies (Victoria amazonica)
    K14X-amazon-lily01BW.jpg
  • A false color x-ray of the leaf of a Giant Amazon water lilies (Victoria amazonica)
    K14X-amazon-lily01B.jpg
  • A false color X-ray of a fern.
    K15Xfern01A.jpg
  • A false color x-ray of the leaf of a Giant Amazon water lilies (Victoria amazonica)
    K14X-amazon-lily01.jpg
  • A false color X-ray of a fern.
    K15Xfern01B.jpg
  • A false color x-ray of the leaf of a Giant Amazon water lilies (Victoria amazonica)
    K14X-amazon-lily01BW2.jpg
  • A scanning electron microscope image of the stem of a young 5-day-old cannabis (Cannabis sativa) plant stem. This image is a transverse section of the stem showing the different cell types. Cannabis is also known as help, and is a source of strong fibers for clothing, paper, and rope. This fast growing plant shows promise for being a cheep source of fibers in the future. This image shows a horizontal field of view of .3mm.
    K170510stemApan1.jpg
  • X-ray of Pacific Mistletoe (Phoradendron villosum) collected in California, USA Mistletoe is a partial parasite. It bears evergreen leaves that carry out some photosynthesis of their own, while it relies on the host plant mainly for mineral nutrients from the ground.
    K14X-mistlletoe-1C.jpg
  • A scanning electron microscope image of the stem of a young 5-day-old cannabis (Cannabis sativa) plant stem. This image is a transverse section of the stem showing the different cell types. Cannabis is also known as help, and is a source of strong fibers for clothing, paper, and rope. This fast growing plant shows promise for being a cheep source of fibers in the future. This image shows a horizontal field of view of .2mm.
    K170512stemC027A.jpg
  • X-ray of Pacific Mistletoe (Phoradendron villosum) collected in California, USA Mistletoe is a partial parasite. It bears evergreen leaves that carry out some photosynthesis of their own, while it relies on the host plant mainly for mineral nutrients from the ground.
    K14X-mistlletoe-1.jpg
  • A scanning electron microscope image of the stem of a young 5-day-old cannabis (Cannabis sativa) plant stem. This image is a transverse section of the stem showing the different cell types. Cannabis is also known as help, and is a source of strong fibers for clothing, paper, and rope. This fast growing plant shows promise for being a cheep source of fibers in the future. This image shows a horizontal field of view of .2mm.
    K170512stemC027B.jpg
  • A scanning electron microscope image of the stem of a young 5-day-old cannabis (Cannabis sativa) plant stem. This image is a transverse section of the stem showing the different cell types. Cannabis is also known as help, and is a source of strong fibers for clothing, paper, and rope. This fast growing plant shows promise for being a cheep source of fibers in the future. This image shows a horizontal field of view of .3mm.
    K170510stemApan1C.jpg
  • A scanning electron microscope image of the stem of a young 5-day-old cannabis (Cannabis sativa) plant stem. This image is a transverse section of the stem showing the different cell types. Cannabis is also known as help, and is a source of strong fibers for clothing, paper, and rope. This fast growing plant shows promise for being a cheep source of fibers in the future. This image shows a horizontal field of view of .3mm.
    K170510stemApan1B.jpg
  • X-ray of Pacific Mistletoe (Phoradendron villosum) collected in California, USA Mistletoe is a partial parasite. It bears evergreen leaves that carry out some photosynthesis of their own, while it relies on the host plant mainly for mineral nutrients from the ground.
    K14X-mistlletoe-1B.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant leaf, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The spherical cells at the top of the trichomes are 60 um in diameter.
    K170614leafC016pan03.jpg
  • Crystals in the roots of the Cannabis plant. The exact composition of these are currently unknown and their role in the life cycle of the plant is a mystery. Why are they there? What do they do? What is the chemical composition of the crystals? Just a few of the questions that seem to be a daily occurrence when looking at the cannabis plant with this level of magnification.<br />
Magnification on the printed page is 4300x at 9 inches wide.
    K170614Root-crystalscombo.jpg
  • Scanning Electron Micrograph (SEM) of a cross section of marijuana (Cannabis sativa) seed, showing the root and seed leaves enclosed. The field of view of this image is 4 mm in the horizontal direction.
    K170613cola-seedM057pan.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The head o fthe trichome is 60 um in diameter.
    K170607stemE038A-pan.jpg
  • Crystals in the roots of the Cannabis plant. The exact composition of these are currently unknown and their role in the life cycle of the plant is a mystery. Why are they there? What do they do? What is the chemical composition of the crystals? Just a few of the questions that seem to be a daily occurrence when looking at the cannabis plant with this level of magnification.<br />
Magnification on the printed page is 4300x at 9 inches wide.
    170614Root-crystalscombo.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant leaf, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The spherical cells at the top of the trichomes are 60 um in diameter.
    170614leafH046pan2.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. Magnification: 52X when printed 10 cm wide.
    170613gland-triF031pan3.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant leaf, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The spherical cells at the top of the trichomes are 60 um in diameter.
    170613cola-bladeH043pan1.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant leaf, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The spherical cells at the top of the trichomes are 60 um in diameter.
    170609bractB008PANtk.jpg
  • Scanning Electron Micrograph (SEM) of pumpkin skin(Cucurbita sp.). Magnification was 100x and the field of view of this image is 2mm wide. The stalked structures are trichomes (leaf hairs) on the under side of the pumpkin leaf.
    K170918pumpkin-bottomSEM17panC.jpg
  • False color X-ray of a Gerber daisy (Gerbera sp).
    K15X-freakdaisy-0F.jpg
  • False color X-ray of a Gerber daisy (Gerbera sp).
    K15X-freakdaisy-comp2.jpg
  • False color X-ray of a Gerber daisy (Gerbera sp).
    K15X-freakdaisy-05C..jpg
  • False color X-ray of a Gerber daisy (Gerbera sp).
    K15X-freakdaisy-03D3.jpg
  • False color X-ray of a Gerber daisy (Gerbera sp).
    K15X-freakdaisy-003A3.jpg
  • Tulips, colored X-ray.
    K15Xtulips-on-white202B.jpg
  • Tulips, colored X-ray.
    K15Xgiant-tulips02C.jpg
  • False color x-ray of Calla Lily (Zantedeschia aethiopica).
    K15XCallaLily6A.jpg
  • False color x-ray of Calla Lily (Zantedeschia aethiopica).
    K15XCallaLily05A.jpg
  • X-ray Purslane (Portulaca oleracea).  Often considered a weed, purslane is also good in salads and soups. Common purslane, also known as verdolaga, pigweed, little hogweed, red root, pursley, and moss rose) is an annual succulent in the family Portulacaceae, which may reach 40 centimetres (16 in) in height.
    K15X-Purslane03A.jpg
  • X-ray Pitcher Plant Flowers. Pitcher plant, Sarracenia purpurea. A carnivorous plant from the SE US that traps insects in its pitcher and digests them. This plant was collected in New York State.
    K15X-pitcherplantflowers03B.jpg
  • X-ray Pitcher Plant Flowers. Pitcher plant, Sarracenia purpurea. A carnivorous plant from the SE US that traps insects in its pitcher and digests them. This plant was collected in New York State.
    K15X-pitcherplantflowers03A.jpg
  • An x-ray of Hardneck garlic scapes.  These leafless stems of the garlic plant (Allium sativum) are edible and used as a vegetable.
    K15X-garlic-comp02C.jpg
  • X-ray of Anthurium Flower. Anthurium bouquet (Anthurium andraeanum)
    K15X-Anthuriumbouquet03E.jpg
  • X-ray of Anthurium Flower. Anthurium bouquet (Anthurium andraeanum)
    K15X-Anthuriumbouquet03A.jpg
  • Cannabis plant. Colored scanning electron micrograph (SEM) of the bottom surface of a cannabis (Cannabis sativa) plant.  Magnification is 90x when printed 10 cm wide.
    K14SEM-canna-29B.jpg
  • Trichomes on a Rosemary leaf, chemically stained to show detail. Magnification was 40X on the 35mm sensor.
    K14-rosemarry30.jpg
  • X-ray of daffodil flowers (Narcissus).
    K15Xdaff-batch1.jpg
  • X-ray of bleeding heart flowers (Dicentra formosa). False color x-ray.
    K14X-bleedingheartcolorW.jpg
  • X-ray of a pinecone and seeds.  The pine nuts are protected close to the stem.
    K11X-pineseedsCU2.jpg
  • X-Ray of the  Hybrid hyacinth (Hyacinthus sp.) .
    K11X-hyacinthCU2.jpg
  • X-Ray of the  Hybrid hyacinth (Hyacinthus sp.) .
    K11X-hyacinth01.jpg
  • An xray of a blooming lilac.
    K10Xlilac1B.jpg
  • An x-ray of a cocoa pod.   The cocoa pod (Theobroma cacao)..This image shows the placement of the seeds inside the pod.  This particular pod does not have as  many seeds as it should to be part of a high yield harvest.  The seeds are used for the production of chocolate.
    K12x-cocoapodA.jpg
  • An X-ray of a fall decorative gourd.
    K12X-gourd002A.jpg
  • An electrophotography discharge image of a ginko leaf (Ginkgo biloba ).  Also called Kirlian Photography, this technique shows the electrical discharge around an object. The principle of electrography is based on the corona discharge phenomenon that takes place when an electrically grounded object generates an electrical field, discharging sparks between itself and an electrode.
    K08ginko-a.jpg
  • Daffodil flower as seen in UV light. The specimen was illuminated with shortwave ultraviolet light (UV) that cannot be detected with the camera used for this image. The tissues in the plant absorbed the UV light and fluoresced in the visible spectrum. This technique is called ultraviolet light induced visible light fluorescence (UVIVLF) and is often used in biology to detect unique compounds in samples. This image is part of a series.
    K20-D_3539UVVF.jpg
  • Daffodil flower as seen in white light. The specimen was illuminated with white light to compare it with the shortwave ultraviolet light (UV) image in this series. This image is part of a series
    K20-C_3543white.jpg
  • Daffodil flower as seen in UV light. The specimen was illuminated with shortwave ultraviolet light (UV) that cannot be detected with the camera used for this image. The tissues in the plant absorbed the UV light and fluoresced in the visible spectrum. This technique is called ultraviolet light induced visible light fluorescence (UVIVLF) and is often used in biology to detect unique compounds in samples. This image is part of a series.
    K20-C_3541UVVF.jpg
  • Daffodil flower as seen in white light. The specimen was illuminated with white light to compare it with the shortwave ultraviolet light (UV) image in this series. This image is part of a series
    K20-D_3537white.jpg
  • Cannabis plant. Colored scanning electron micrograph (SEM) of the surface of a cannabis (Cannabis sativa) plant bud.  Glandular cells called trichomes are also present. These are capitate trichomes that have stalks. These trichomes secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug.  Magnification is 180x when printed 10 cm wide.
    K13SEM-pot-A01color-CSC.jpg
  • SEM image of a transverse section through a cannabis (Cannabis sativa) plant root. The root at this location is .5 mm in diameter.
    K170614rootN072pan1.jpg
  • A scanning electron microscope image of the stem of a cannabis (Cannabis sativa) plant. There are a number of different types of cell structures called trichomes in this image. The thorn-like trichomes use a physical defense while the circular glandular trichomes use chemical defense. Combined, these defenses keep insects and animals from eating the plant. Each circular glandular trichome is 50 um in diameter in this image.
    K170607stemA005pan.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant, showing glandular cells, called trichomes. These trichomes are on teh surface of the leaf. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The circular cell structure a tthe center of the frame is 40 um in diameter.
    K170524CPD-triCN101mix.jpg
  • A scanning electron microscope image of the football shaped bract of the female  cannabis (Cannabis sativa) flower. The oval bract structure houses the stigma and is responsible for producing seeds when the flower has been pollinated. This bract structure is also the location of the highest concentration of cannabinoid compounds on the plant.  This site is also the location of the highest concentration of THC. There are a number of different types of cell structures called trichomes in this image. The thorn-like trichomes use a physical defense while the circular glandular trichomes use chemical defense. Combined, these defenses keep insects and animals from eating the plant. Each circular glandular trichome is 50 um in diameter in this image.
    K170517bud-k070panA1C.jpg
  • A scanning electron microscope image of the football shaped bract of the female  cannabis (Cannabis sativa) flower. The oval bract structure houses the stigma and is responsible for producing seeds when the flower has been pollinated. This bract structure is also the location of the highest concentration of cannabinoid compounds on the plant.  This site is also the location of the highest concentration of THC. There are a number of different types of cell structures called trichomes in this image. The thorn-like trichomes use a physical defense while the circular glandular trichomes use chemical defense. Combined, these defenses keep insects and animals from eating the plant. Each circular glandular trichome is 50 um in diameter in this image.
    K170517bud-k070panA1A.jpg
  • False color Scanning Electron Micrograph (SEM) of the underside of a new marijuana leaf (Cannabis sativa). The plant produces tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The filed of view in this image is 4 mm wide.
    K170509cryotest-zhp-alcuE0.jpg
  • A scanning electron microscope image of the stem of a young cannabis (Cannabis sativa) plant. The thorn-like trichomes use a physical defense to keep insects and animals from eating the plant. The stem is 1.5 mm diameter in this image.
    K170429-5day064C.jpg
  • A scanning electron microscope image of the stem of a young cannabis (Cannabis sativa) plant. The thorn-like trichomes use a physical defense to keep insects and animals from eating the plant. The stem is 1.5 mm diameter in this image.
    K170429-5day064B.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant leaf, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The spherical cells at the top of the trichomes are 60 um in diameter.
    170614leafH046pan.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant leaf, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The spherical cells at the top of the trichomes are 60 um in diameter.
    170613cola-bladeH043pan2.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. Magnification: 52X when printed 10 cm wide.
    170613cola-bladeC015pan1.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant leaf, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The spherical cells at the top of the trichomes are 60 um in diameter.
    170613cola-bladeA002pan2.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant leaf, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The spherical cells at the top of the trichomes are 60 um in diameter.
    170609BractK035pan.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant leaf, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The spherical cells at the top of the trichomes are 60 um in diameter.
    170609BractD011pantk.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant leaf, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The spherical cells at the top of the trichomes are 60 um in diameter.
    170609bractC013pan2.jpg
  • Color-enhanced Scanning Electron Micrograph (SEM) of the surface of a marijuana (Cannabis sativa) plant leaf, showing glandular cells, called trichomes. These are capitate trichomes that have stalks. They secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug. The spherical cells at the top of the trichomes are 60 um in diameter.
    170609BractA002pantk2.jpg
  • Scanning Electron Micrograph (SEM) of pumpkin skin(Cucurbita sp.). Magnification was 100x and the field of view of this image is 2mm wide. The stalked structures are trichomes (leaf hairs) on the under side of the pumpkin leaf.
    K170918pumpkin-bottomSEM17panb.jpg
  • False color X-ray of a Gerber daisy (Gerbera sp).
    K15X-freakdaisy-comp1B.jpg
  • False color X-ray of a Gerber daisy (Gerbera sp).
    K15X-freakdaisy-004C.jpg
  • False color X-ray of a Gerber daisy (Gerbera sp).
    K15X-freakdaisy-001B.jpg
  • Tulips, colored X-ray.
    K15Xtulips-on-black02.jpg
  • Tulips, colored X-ray.
    K15Xgiant-tulips02A.jpg
  • A false color x-ray of teh cattail plant ((Typha latifolia).
    K15Xcattail01B.jpg
  • X-ray of Zinnia Flower (Zinnia elegans).
    K15X-zinnia01C.jpg
  • X-ray of Queen Anne's Lace, Daucus carota, New York.
    K15X-queenannslace01black-white.jpg
  • X-ray of the seedpod of an opium poppy (Papaver somniferum), an annual garden ornamental and a source of opiate narcotics.
    K15X-poppy05B.jpg
  • X-ray of the seedpod of an opium poppy (Papaver somniferum), an annual garden ornamental and a source of opiate narcotics.
    K15X-poppy04B.jpg
  • X-ray of the seedpod of an opium poppy (Papaver somniferum), an annual garden ornamental and a source of opiate narcotics.
    K15X-poppy04A.jpg
  • False color X-ray of Hellebore (Helleborus orientalis) flowers.
    K15x-Hellebore03B.jpg
  • False color X-ray of Hellebore (Helleborus orientalis) flowers.
    K15x-Hellebore-singleART01B.jpg
  • An x-ray of Hardneck garlic scapes.  These leafless stems of the garlic plant (Allium sativum) are edible and used as a vegetable.
    K15X-garlic-comp02A.jpg
  • An x-ray of Hardneck garlic scapes.  These leafless stems of the garlic plant (Allium sativum) are edible and used as a vegetable.
    K15X-garlic-comp01E.jpg
  • X-ray of Eucalyptus cinerea 'Pendula' branch.
    K15X-eucalyptus003B.jpg
  • X-ray of Eucalyptus cinerea 'Pendula' branch.
    K15X-eucalyptus003C.jpg
  • X-ray of Anthurium Flower. Anthurium bouquet (Anthurium andraeanum)
    K15X-Anthuriumbouquet03D.jpg
  • Tulips, colored X-ray.
    K15tulips-bouquet02Black.jpg
  • Unidentified freshwater bacteria collected from pond water. The red structure is a freshwater diatom. The horizontal field of view is 15 um.
    K15SEM-pondbacteria024.jpg
  • Tulips, colored X-ray.
    K15P-tulip3-01C.jpg
  • Cannabis plant. Colored scanning electron micrograph (SEM) of the surface of a cannabis (Cannabis sativa) plant.  Glandular cells called trichomes are also present. These are capitate trichomes that have stalks. These trichomes secrete a resin containing tetrahydrocannabinol (THC), the active component of cannabis when used as a drug.  Magnification is 100x when printed 10 cm wide.
    K14SEM-canna-44.jpg
  • Cannabis plant. Colored scanning electron micrograph (SEM) of the bottom surface of a cannabis (Cannabis sativa) plant.  Magnification is 90x when printed 10 cm wide.
    K14SEM-canna-29.jpg
  • Cannabis plant. Colored scanning electron micrograph (SEM) of the surface of a cannabis (Cannabis sativa) plant.  Magnification is 180x when printed 10 cm wide.
    K14SEM-canna-19.jpg
  • A false color SEM image of a Calcium oxalate crystal.  Even a small dose of calcium oxalate is enough to cause intense sensations of burning in the mouth and throat.  Commonly found in popular houseplants, such as Dumbcane, the crystals effects or symptoms may last for a week or more, making calcium oxalate crystals a non-desirable ingredient in medicinal cannabis.  It is surprising that calcium oxalate is rarely discussed in literature about medical marijuana (cannabis).  There crystals are fairly common in plants, as they make it hard for grazing animals to eat the plant. Image is 70 um wide.
    K13SEM-pot-oxalate02.jpg
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