optical microscopic image Search Results


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Optics and Photonics scanning electron microscope images of a completed hcg vcsel
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SAS institute optical microscope images
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Alicona Imaging GmbH optical profile microscope mex
Three-dimensional profiles of the hierarchical rough zirconia surface. Notes: ( A – C ) Three-dimensional images of the hierarchical rough zirconia surface taken with an optical profile <t>microscope</t> at three different magnifications. ( D – G ) Profile curves of the hierarchical rough zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves. Appearance of distinct structures at the meso-, micro-, and nano-scales are denoted within the profile curves.
Optical Profile Microscope Mex, supplied by Alicona Imaging GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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HIROX Inc optical microscopic image
Three-dimensional profiles of the hierarchical rough zirconia surface. Notes: ( A – C ) Three-dimensional images of the hierarchical rough zirconia surface taken with an optical profile <t>microscope</t> at three different magnifications. ( D – G ) Profile curves of the hierarchical rough zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves. Appearance of distinct structures at the meso-, micro-, and nano-scales are denoted within the profile curves.
Optical Microscopic Image, supplied by HIROX Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Neaspec GmbH phase-resolved scattering type scanning optical microscope imaging (s-snom)
Three-dimensional profiles of the hierarchical rough zirconia surface. Notes: ( A – C ) Three-dimensional images of the hierarchical rough zirconia surface taken with an optical profile <t>microscope</t> at three different magnifications. ( D – G ) Profile curves of the hierarchical rough zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves. Appearance of distinct structures at the meso-, micro-, and nano-scales are denoted within the profile curves.
Phase Resolved Scattering Type Scanning Optical Microscope Imaging (S Snom), supplied by Neaspec GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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FJW OPTICAL SYSTEMS INC dissecting microscope fitted ir image converter
Three-dimensional profiles of the hierarchical rough zirconia surface. Notes: ( A – C ) Three-dimensional images of the hierarchical rough zirconia surface taken with an optical profile <t>microscope</t> at three different magnifications. ( D – G ) Profile curves of the hierarchical rough zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves. Appearance of distinct structures at the meso-, micro-, and nano-scales are denoted within the profile curves.
Dissecting Microscope Fitted Ir Image Converter, supplied by FJW OPTICAL SYSTEMS INC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Formulatrix sonicc (second-order nonlinear optical imaging chiral crystals) microscope
Three-dimensional profiles of the hierarchical rough zirconia surface. Notes: ( A – C ) Three-dimensional images of the hierarchical rough zirconia surface taken with an optical profile <t>microscope</t> at three different magnifications. ( D – G ) Profile curves of the hierarchical rough zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves. Appearance of distinct structures at the meso-, micro-, and nano-scales are denoted within the profile curves.
Sonicc (Second Order Nonlinear Optical Imaging Chiral Crystals) Microscope, supplied by Formulatrix, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Interquest Inc optical microscope image analysis treatment
Three-dimensional profiles of the hierarchical rough zirconia surface. Notes: ( A – C ) Three-dimensional images of the hierarchical rough zirconia surface taken with an optical profile <t>microscope</t> at three different magnifications. ( D – G ) Profile curves of the hierarchical rough zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves. Appearance of distinct structures at the meso-, micro-, and nano-scales are denoted within the profile curves.
Optical Microscope Image Analysis Treatment, supplied by Interquest Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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HORIBA Ltd optical microscope images horiba raman system
Three-dimensional profiles of the hierarchical rough zirconia surface. Notes: ( A – C ) Three-dimensional images of the hierarchical rough zirconia surface taken with an optical profile <t>microscope</t> at three different magnifications. ( D – G ) Profile curves of the hierarchical rough zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves. Appearance of distinct structures at the meso-, micro-, and nano-scales are denoted within the profile curves.
Optical Microscope Images Horiba Raman System, supplied by HORIBA Ltd, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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HIROX Inc optical microscope axio imager a2
Three-dimensional profiles of the hierarchical rough zirconia surface. Notes: ( A – C ) Three-dimensional images of the hierarchical rough zirconia surface taken with an optical profile <t>microscope</t> at three different magnifications. ( D – G ) Profile curves of the hierarchical rough zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves. Appearance of distinct structures at the meso-, micro-, and nano-scales are denoted within the profile curves.
Optical Microscope Axio Imager A2, supplied by HIROX Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Alicona Imaging GmbH optical roughness measuring microscope infinite focus g4
Three-dimensional profiles of the hierarchical rough zirconia surface. Notes: ( A – C ) Three-dimensional images of the hierarchical rough zirconia surface taken with an optical profile <t>microscope</t> at three different magnifications. ( D – G ) Profile curves of the hierarchical rough zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves. Appearance of distinct structures at the meso-, micro-, and nano-scales are denoted within the profile curves.
Optical Roughness Measuring Microscope Infinite Focus G4, supplied by Alicona Imaging GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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FUJIFILM optical microscope image
Three-dimensional profiles of the hierarchical rough zirconia surface. Notes: ( A – C ) Three-dimensional images of the hierarchical rough zirconia surface taken with an optical profile <t>microscope</t> at three different magnifications. ( D – G ) Profile curves of the hierarchical rough zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves. Appearance of distinct structures at the meso-, micro-, and nano-scales are denoted within the profile curves.
Optical Microscope Image, supplied by FUJIFILM, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Three-dimensional profiles of the hierarchical rough zirconia surface. Notes: ( A – C ) Three-dimensional images of the hierarchical rough zirconia surface taken with an optical profile microscope at three different magnifications. ( D – G ) Profile curves of the hierarchical rough zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves. Appearance of distinct structures at the meso-, micro-, and nano-scales are denoted within the profile curves.

Journal: International Journal of Nanomedicine

Article Title: Biological and osseointegration capabilities of hierarchically (meso-/micro-/nano-scale) roughened zirconia

doi: 10.2147/IJN.S159955

Figure Lengend Snippet: Three-dimensional profiles of the hierarchical rough zirconia surface. Notes: ( A – C ) Three-dimensional images of the hierarchical rough zirconia surface taken with an optical profile microscope at three different magnifications. ( D – G ) Profile curves of the hierarchical rough zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves. Appearance of distinct structures at the meso-, micro-, and nano-scales are denoted within the profile curves.

Article Snippet: Surface morphology was examined by scanning electron microscopy (SEM; Nova 230 Nano SEM, FEI, Hillsboro, OR, USA) and an optical profile microscope (MeX, Alicona Imaging GmbH, Raaba, Graz, Austria) for three-dimensional imaging and profiling.

Techniques: Microscopy

Three-dimensional profiles of the machined zirconia surface. Notes: ( A – C ) Three-dimensional images of the machined zirconia surface taken with an optical profile microscope at three different magnifications. ( D – G ) Profile curves of the machined zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves.

Journal: International Journal of Nanomedicine

Article Title: Biological and osseointegration capabilities of hierarchically (meso-/micro-/nano-scale) roughened zirconia

doi: 10.2147/IJN.S159955

Figure Lengend Snippet: Three-dimensional profiles of the machined zirconia surface. Notes: ( A – C ) Three-dimensional images of the machined zirconia surface taken with an optical profile microscope at three different magnifications. ( D – G ) Profile curves of the machined zirconia surface by line scanning. Long ( D , E ) and short ( F , G ) line scanning were performed. Different filter values (cutoff value λc) were applied to draw each of the profile curves.

Article Snippet: Surface morphology was examined by scanning electron microscopy (SEM; Nova 230 Nano SEM, FEI, Hillsboro, OR, USA) and an optical profile microscope (MeX, Alicona Imaging GmbH, Raaba, Graz, Austria) for three-dimensional imaging and profiling.

Techniques: Microscopy

Peri-implant tissue morphology and chemistry around zirconia implants. Notes: Zirconia implants with two different surfaces were retrieved after the biomechanical push-in test and analyzed by SEM and EDX. Low- and high-magnification SEM images are presented representing each of the machined ( A – C ) and hierarchical rough ( E – G ) zirconia implants. The percentage chemical composition from the EDX is presented along with the representative SEM magnified images ( B , C , F , G ). EDX area scans were also performed to detect Ca element as a bone ingredient ( D , H ). Abbreviations: EDX, energy dispersive X-ray spectroscopy; SEM, scanning electron microscope.

Journal: International Journal of Nanomedicine

Article Title: Biological and osseointegration capabilities of hierarchically (meso-/micro-/nano-scale) roughened zirconia

doi: 10.2147/IJN.S159955

Figure Lengend Snippet: Peri-implant tissue morphology and chemistry around zirconia implants. Notes: Zirconia implants with two different surfaces were retrieved after the biomechanical push-in test and analyzed by SEM and EDX. Low- and high-magnification SEM images are presented representing each of the machined ( A – C ) and hierarchical rough ( E – G ) zirconia implants. The percentage chemical composition from the EDX is presented along with the representative SEM magnified images ( B , C , F , G ). EDX area scans were also performed to detect Ca element as a bone ingredient ( D , H ). Abbreviations: EDX, energy dispersive X-ray spectroscopy; SEM, scanning electron microscope.

Article Snippet: Surface morphology was examined by scanning electron microscopy (SEM; Nova 230 Nano SEM, FEI, Hillsboro, OR, USA) and an optical profile microscope (MeX, Alicona Imaging GmbH, Raaba, Graz, Austria) for three-dimensional imaging and profiling.

Techniques: Spectroscopy, Microscopy