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Koji Sugioka

Publications and source records attributed to Koji Sugioka.

6 recordsLinked to original sources

Femtosecond laser microprocessing with three-dimensionally isotropic spatial resolution using crossed-beam irradiation.

We describe the use of a crossed-beam irradiation system in three-dimensional femtosecond laser microprocessing to obtain three-dimensionally isotropic spatial resolution. In the crossed-beam geometry, two orthogonal objective lenses are arranged to share a common focal point. The synthesized focal spot produces an isotropic illumination volume. We demonstrate that microfluidic channels with substantially circular cross-sectional shapes can be directly fabricated inside glass by using the crossed-beam irradiation system.

Journal Article↗

Susceptibility of human corneal endothelial cells to HSV-1 infection.

PURPOSE: The purpose of this study was to examine the intrinsic susceptibility of cultured human corneal endothelial cells (HCEC) to herpes simplex virus-1 (HSV-1) infection. We compared HSV-1 adsorption, kinetics of HSV-1 production, and pattern of viral plaque formation in cultured HCEC with those of a cell line used routinely for laboratory HSV propagation (African green monkey kidney fibroblast CV-1 cells). METHODS: Cultured HCEC and CV-1 cells were exposed to the McKrae strain of HSV-1 at 5 and 0.0001 multiplicities of infection (MOI). Using the 50% tissue culture infectious dose (TCID(50)) titration method, viral adsorption (at 5 MOI) and total virus production (at 5 and 0.0001 MOI) were compared to assess both susceptibility to viral attachment and productive viral infection, respectively. Additionally, visual observations were made at 0.0001 MOI using bright-field microscopy and immunofluorescence staining of viral antigens to compare patterns of viral spread in confluent monolayers of both cell types. RESULTS: The percentage of HSV-1 virion particles adsorbed by cultured HCEC and CV-1 cells was similar (35.9% and 33.0%, respectively, p = 0.07, NS), indicating similar susceptibility of the two cell types to initial HSV-1 attachment and adsorption. However, maximum total virus production was more than 3-fold higher for HCEC than for CV-1 cells (p < 0.005), suggesting higher susceptibility of HCEC cells to productive viral infection. Immunofluorescence studies of infected cell monolayers corroborated these quantitative findings, with HCEC monolayers demonstrating more rapid progression of cytopathic effect than CV-1 monolayers. CONCLUSIONS: In comparison to reference CV-1 cells, cultured HCEC show similar susceptibility to HSV-1 adsorption, but higher capacity to support productive HSV-1 infection. Our results suggest that human corneal endothelial cells may be inherently susceptible to HSV-1 infection.

Adsorption↗

Microfluidic laser embedded in glass by three-dimensional femtosecond laser microprocessing.

Microfluidic dye lasers three-dimensionally embedded in glass have been fabricated for what is believed to be the first time by integrating micro-optical and microfluidic components by use of a femtosecond laser. By pumping the microfluidic laser, in which the microfluidic chamber was filled with the laser dye Rhodamine 6G dissolved in ethanol, with a frequency-doubled Nd:yttrium aluminum garnet laser, lasing action was confirmed by analysis of the emission spectra at different pump powers. In addition, by arranging two microfluidic chambers serially in the glass, we built a microfluidic twin laser that produces an array of two simultaneous laser emissions with one pump laser.

Journal Article↗

Three-dimensional micro-optical components embedded in photosensitive glass by a femtosecond laser.

We show that three-dimensional micro-optical components can be embedded in a photosensitive glass by a femtosecond (fs) laser. After exposure to the tightly focused fs laser beam, latent images are written inside the sample. Modified regions are developed by a postbaking process and then preferentially etched away in a 10%-dilute solution of hydrofluoric acid. After this process, hollow internal structures are formed that act as a mirror and a beam splitter. Furthermore, we find that postannealing smoothes the surfaces of the fabricated hollow structures, resulting in great improvement of their optical properties.

Journal Article↗

Control of the cross-sectional shape of a hollow microchannel embedded in photostructurable glass by use of a femtosecond laser.

Theoretical and experimental investigations have been made of the three-dimensional microchannel fabrication of photostructurable glass by use of a femtosecond (fs) laser. Generally, a microchannel fabricated inside glass by the scanning focal spot of a fs laser perpendicular to the direction of laser propagation assumes an elliptical shape with a cross section of large aspect ratio. We demonstrate that one can greatly reduce the aspect ratio merely by inserting a slit, which is oriented parallel to the laser's scanning direction, before the focusing lens. Computer simulations show that a more symmetrical pattern is obtained in the vicinity of the focal point with the help of such a slit, owing essentially to a diffraction effect.

Journal Article↗

Implantation of a keratoprosthesis of novel design in rabbits.

PURPOSE: To evaluate a keratoprosthesis, implanted by penetrating keratoplasty, in rabbits. METHODS: We implanted our keratoprosthesis (optics and flange portions of polymethylmethacrylate and a polyurethane skirt with micropores) into 14 eyes of 14 rabbits. In four eyes, we evaluated histologically the junction between the keratoprosthesis and host cornea. Long-term keratoprosthesis survival was evaluated in ten eyes by slit-lamp biomicroscopy. RESULTS: The histological study showed good approximation of the keratoprosthesis to the host cornea in the junction area, with overlying superficial corneal stroma on the skirt, keratocyte and collagen fiber ingrowth into the micropores, and partial migration of epithelial cells onto the skirt. However, in the long-term survival study, eight out of ten eyes developed acute suture-related inflammation, considered to be from bacterial infection, requiring enucleation 30 +/- 18 weeks after implantation. The remaining two eyes have survived for 70 and 76 weeks. CONCLUSIONS: Our keratoprosthesis was well tolerated in the short term. However, further modifications are necessary to avoid corneal infection.

Animals↗