Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Optical Devices”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 829 records · Page 46Linked to original sources

Low vision rehabilitation of multiple sclerosis: a case report.

A 34-year-old white male presented with a previous diagnosis of optic atrophy secondary to multiple sclerosis, seeking low vision rehabilitation. This case report is presented to illustrate the importance of prescribing both conventional optical low vision devices, as well as computer low vision aids in order to provide comprehensive low vision rehabilitation for a young visually impaired adult.

Adult↗

Hazard zones and eye protection requirements for a frosted surgical probe used with an Nd:YAG laser.

Detailed radiometric analyses are reported on selected frosted-style laser surgical probes that are in use in laser surgical procedures. These measurements were performed in order to determine their nominal hazard zone (NHZ) and the requirement for protective eyewear. All measurements were conducted under worst-case conditions using a 30-W Nd:YAG laser. The results show that for the style of probe tested, the NHZ can be considered a spherical volume of 1.3 m and will require eye protection devices having a maximum optical density rating of 4.3 at 1.06 microns for all personnel who may come within that range.

Eye Protective Devices↗

An in line non-invasive optical system to monitor pH in cell and tissue culture.

pH is an important control parameter for maintenance of cell viability and for improving tissue functions during cell and tissue culture. pH monitoring during cell/tissue culture also provides valuable information on cell metabolic processes and living environment. In this study, an on-line, non-invasive pH monitoring system was developed for use during tissue/cell culture in a perfusion system, using an optical method. This device included light sources, light detectors, light guides and a flow cell. Phenol red was used as a pH indicator dye, and the ratio of light intensities at two wavelengths was measured at the same pH value. Low solution volume as low as around 10 microl could be used to detect pH. Compared to the conventional optical methods, this non-contact optical measurement can avoid the contamination of the tip of optical fibre during the long-term monitoring. It provides a possibility to do on-line monitoring and apply feed back control to maintain the culture environment at the desired conditions required for long-term cell/tissue culture.

Cell Culture Techniques↗

A model for the modulation transfer function of cardiovascular x-ray systems.

RATIONALE AND OBJECTIVES: To derive a theoretical model for the modulation transfer function (MTF) of the complete imaging chain of a cardiovascular x-ray system. A sufficiently accurate MTF model may be used in quantitative coronary arteriographic applications to decrease the systematic overestimation of small coronary vessels. The model could be used to restore blurred images in image restoration applications and also may be used for image quality assurance measurements. METHODS: Digital images of a step wedge phantom were acquired at different modes (5-, 7-, and 9-inch) of the image intensifier and at different kilovolt levels of the x-ray generator. From these images the MTFs that were used to estimate the parameters of the model were assessed. RESULTS: The total MTF of the cardiovascular x-ray imaging chain consisting of image intensifier, video camera, optical elements, and analog/digital converter can be modeled by the simple formula MTF = e-(w/f)R, where w is the frequency in linepairs per millimeter. The constants frequency f and the device index n are parameters that can be derived for an individual x-ray system using the phantom. In this formula, the contribution from the focus of the x-ray source has been excluded. The mean square error (MSE) between the measured values and those assessed from the theoretical model of the MTF for the horizontal direction was found to be equal to 0.00003 for the 5-inch mode of image intensifier, and for the vertical resolution at the 9-inch mode this MSE was equal to 0.00038. In addition, we have demonstrated that the contributions of the video camera and the image intensifier to the total MTF can be replaced by an imaginary electron-optical device. CONCLUSION: An accurate representation for the MTF of a cardiovascular x-ray system has been derived. This MTF model can be used in x-ray image quality assurance measurements and in quantitative image processing applications.

Cardiovascular System↗

Micromechanics-based digitally controlled tunable optical beam shaper.

A digitally controlled programmable optical beam shaper that uses a two-dimensional (2-D) small-tilt micromirror device is introduced. The optical intensity profile at any spatial position can be independently modified by use of a macropixel, incorporated with binary pulse-width modulation. An experimental proof-of-concept optical beam shaper with a commercial 2-D digital micromirror device has shown that the spatial profile of a He-Ne laser beam can be digitally manipulated. Investigation of the analog intensity control showed 256-level nonlinear degamma behavior with a measured 24.5-dB optical contrast ratio and a 10-bit spatial resolution. The performance of this tunable optical beam shaper is limited by the dimensions of the micromirror, the intermirror distance, the size of the optical beam, the number of bits used to control the micromirror, the diffraction effect, and the quality of the imaging optical system.

Journal Article↗

All-optical wavelength conversion in a GaInAsP/InP optical gate loaded with a Bragg reflector.

All-optical wavelength conversion employing a GaInAsP/InP nonlinear distributed-feedback waveguide switch is investigated. The device has the advantages of simple structure, compactness, polarity-noninverted operation, and feasibility of integration with other photonic devices such as semiconductor optical amplifier and modulators. We show that the device exhibits constant conversion efficiency around -9.2 dB in a signal-wavelength range of 1530-1560 nm. Furthermore, this device can potentially be made polarization independent.

Journal Article↗

Linear and nonlinear optical properties of Ag-As-Se chalcogenide glasses for all-optical switching.

We prepared Ag(x)(As0.4Se0.6)(100-x) chalcogenide glasses by a melt-quenching method and measured their linear and nonlinear optical properties to evaluate their potential applications to all-optical ultrafast switching devices. Their nonlinear refraction and absorption were measured by the Z-scan method at 1.05 microm. The addition of Ag to As2Se3 glass led to an increase in the nonlinear refractive index without introducing an increase in the nonlinear absorption coefficient. The glass with a Ag content of x = 20 at. % revealed high nonlinearity ranging from 2000 to 27,000 times that of fused silica, depending on the incident optical intensity.

Journal Article↗

Brightness-sense and optic nerve disease.

We describe a simple device used to compare the sense of brightness in the two eyes. An investigation of brightness-sense with this device in normal persons and patients with optic nerve disease, maculopathies, cataract, and factitious visual impairment shows that brightness testing can provide useful information supplementary and complementary to conventional clinical and laboratory investigations. Impairment of brightness-sense was a consistent finding among patients with optic neuropathies and, in some cases, brightness testing appeared to be more sensitive than other techniques in establishing the presence of disease. Brightness-sense was also used to monitor the course of the patient's illness. Abnormalities were also found among some patients with unilateral maculopathies, but significant intereye differences in brightness-sense were not encountered among normal persons or patients with cataracts. Patients with factitious visual loss gave variable responses, and the nature of their disorder could be identified by the inconsistency of their responses.

Adolescent↗

Low-cost noninvasive optical CO2 sensing system for fermentation and cell culture.

High-throughput bioprocessing is a very promising technique for bioprocess development and optimization because of its high efficiency. The key to its development has been the availability of simple and inexpensive sensors to monitor the bioprocesses conducted in its small-scale bioreactors. Here we report on a low-cost noninvasive CO2 sensing system suitable for any transparent vessel. The system was composed of a CO2 sensing patch, a coaster, an interface, and a computer. The sensing film was prepared using the ion-pair technique. The coaster was a small self-made device with necessary optics and electronics for ratiometric measurements with a component cost of less than dollar 100. Results show that the system was stable and reliable despite its simplicity and low cost. The sensitivity of the CO2 sensing system was not affected by pH, media type, or temperature. It was shown to be stable for at least 10 days, long enough for most bioprocesses.

Bioreactors↗

Low-temperature spectrally resolved cathodoluminescence study of degradation in opto-electronic and microelectronic devices

This study reports on the microcharacterization of devices for optoelectronic and for microelectronic applications using low temperature (T = 5 and 77 K) spectrally resolved cathodoluminescence (SCL). The mechanisms leading to compositional inhomogeneities in the regrowth regions of InP-based butt-coupled laser-waveguide devices for semiconducting optical amplifiers (SOAs) and for defect generation in the active and cladding layers of GaAs based pump lasers for erbium-doped optical fibre amplifiers (EDFAs) were studied. Beryllium outdiffusion in the base regions of GaAs-based heterojunction bipolar transistors (HBTs) after bias ageing was also studied. By comparing the CL results with TEM, SIMS and HRXRD studies and with the existing literature, the observed growth and operation induced defects were attributed, respectively, to the following mechanisms: recombination-enhanced defect glide (REDG) in the pump lasers, recombination enhanced impurity diffusion (REID) in the HBTs and electrostatically induced growth flux instabilities in the butt-coupled laser-waveguide devices.

Journal Article↗

[Comparative evaluation of 3 automated optical coagulation detection systems].

The Organon Teknika-General Diagnostics Coag A Mate X2 (CAM X2), Ortho Koagulab 40A, MLA Electra 700 (E 700), were simultaneously evaluated following the same protocol, on the same samples. Compared with the former photo-optical-based automated devices, these newer advanced instruments present a high throughput in fibrin endpoint detection, permitting fibrinogen determination with reliable results; they also present a higher degree of automatism, greater flexibility in use and easy mastering, allied to elaborated expression of results. Statistical comparison shows equivalent performance characteristics. Repetabilities are excellent for Prothrombin Time (CV: 1-2.5%) with 5 thromboplastins and for the prothrombin complex factors assays: they are also good for Activated Partial Thromboplastin Time (APTT) with 4 reagents (CV: 0.5 to 3%) provided that kaolin be not used on the KLO and E700; the same limitation exists for specific factors assays. Fibrinogen assays display good results (CV: 3-4% and 6-8%) respectively for times of 11 sec. (/=/ 2.4 g/l) and 23 sec. (/=/ 1 g/l). Standard linearities are generally excellent whatever the test. The correlation with results obtained on other devices is good (0.96 less than R less than 1). The most fully automated is the KLO with reliable system of sample delivery, automatic calibration and quality control function. The E700 is the slowest instrument, especially for APTT and the least adapted to large homogenous series, but its original loading system with binary coded cuvettes makes it interesting for emergencies and mixed tests. Controls and adjustments of the pumptubing are particularly required on the CAM X2 which is, on the other hand, the quickest instrument with its 4 photo-optical cells, well adapted to handling a large series of samples.

Autoanalysis↗

Effects of self-assembly process of latex spheres on the final topology of macroporous silica.

This paper surveys the topology of macroporous silica prepared using latex templates covering the submicrometric range (0.1-0.7 mum). The behavior of latex spheres in aqueous dispersion has been analyzed by dynamic light scattering (DLS) measurement indicating the most appropriate conditions to form well-defined cubic arrays. The optical behavior of latex spheres has been analyzed by transmittance and reflectance measurements in order to determine their diameter and filling factor when they were assembled in bidimensional arrays. Macroscopic templates have been obtained by a centrifugation process and their crystalline ordering has been confirmed by porosimetry and scanning electron microscopy. These self-assembled structures have been used to produce macroporous silica, whose final topology depends on the pore size distribution of the original template. It has been seen that latex spheres are ordered in a predominant fcc arrangement with slipping of tetragonal pores due to the action of attractive electrostatic interactions. The main effect is to change the spherical shape of voids in macroporous silica into a hexagonal configuration with possible applications to fabricate photonic devices with novel optical properties.

Journal Article↗

Image identification system based on an optical broadcast neural network processor.

We describe the implementation of a vision system based on a hardware neural processor. The architecture of the neural network processor has been designed to exploit the computational characteristics of electronics and the communication characteristics of optics in an optimal manner, thus it is based on an optical broadcast of input signals to a dense array of processing elements. The vision system has been built by use of a prototype implementation of a neural network processor with discrete optic and optoelectronic devices. It has been adapted to work as a Hamming classifier of the images taken with a 128 x 128 complementary metal-oxide semiconductor image sensor. Its results, performance characteristics of the image classification system, and an analysis of its scalability in size and speed, with the improvement of the optoelectronic neural processor, are presented.

Algorithms↗

Growth of uniformly aligned ZnO nanowire heterojunction arrays on GaN, AlN, and Al0.5Ga0.5N substrates.

Vertically aligned single-crystal ZnO nanorods have been successfully fabricated on semiconducting GaN, Al0.5Ga0.5N, and AlN substrates through a vapor-liquid-solid process. Near-perfect alignment was observed for all substrates without lateral growth. Room-temperature photoluminescence measurements revealed a strong luminescence peak at approximately 378 nm. This work demonstrates the possibility of growing heterojunction arrays of ZnO nanorods on AlxGa1-xN, which has a tunable band gap from 3.44 to 6.20 eV by changing the Al composition from 0 to 1, and opens a new channel for building vertically aligned heterojunction device arrays with tunable optical properties and the realization of a new class of nanoheterojunction devices.

Aluminum Compounds↗

Silica films with a single-crystalline mesoporous structure.

Films of mesoporous materials attract broad interest because of their wide applicability in the fields of optics and electronics. Although many of these films have a regular local porous structure, the structural regularity has not been used practically yet because of difficulties in its control on macroscopic scales. Here, we demonstrate the preparation of mesoporous silica films whose porous structure can be described as a single crystal, that is, a long-range order of cage-like pores is maintained over centimetre scales. These films have a three-dimensional hexagonal (space group P6(3)/mmc) porous structure, and the in-plane arrangement of the pores is strictly controlled by a polymeric substrate surface that has been treated by rubbing. This new class of single-crystalline films with mesoscopic periodic structure is a significant breakthrough in bottom-up nanotechnology, and could lead to novel devices, for example, optics in a soft X-ray region, and quantum electronics.

Crystallization↗

Optically driven microelectromechanical-system deformable mirror under high-frequency AC bias.

A new, optically addressed deformable mirror device is demonstrated. The device consists of a pixellated metalized polymeric membrane mirror supported above an optically addressed photoconductive substrate. A conductive transparent ZnO layer is deposited on the back side of the substrate. A very high-frequency AC bias is applied between the membrane and the back electrode of the device. The membrane is deformed when the back of the device is illuminated because of impedance and bias redistribution between two cascaded impedances. We fabricated, demonstrated, and modeled the operation of this device.

Journal Article↗

[Use of visual aids for vision of disabled children].

OBJECTIVE: To discuss the effect of using distance and near optical low vision devices for children in low vision clinic. METHOD: 139 subjects from age 6 to 14 years were provided with 2.5 X telescopes and + 8.00D to + 40.00D glasses for improving far and near sight respectively. RESULT: 22.3% subjects' distance visual acuity was >or= 0.5 and 53.2% subjects' near visual acuity was >or= 0.5 after using distance and near low vision aids. CONCLUSIONS: Low vision aid is essential and effective in low vision clinic. It not only improves the visual acuity of visual disabled children, but also helps the development of special education through visual rehabilitation.

Adolescent↗

Quantifying Doppler angle and mapping flow velocity by a combination of Doppler-shift and Doppler-bandwidth measurements in optical Doppler tomography.

Recently we introduced a novel procedure that estimates Doppler angle and flow velocity simultaneously by combining Doppler-shift and Doppler-bandwidth measurements with a conventional single-beam optical Doppler tomography device. Here we validate this method experimentally with two Intralipid flow setups that correspond to fixed Doppler angle and fixed flow speed. One set of data has a fixed flow speed of 53.6 mm/s with a Doppler angle that changes from 56 degrees to 90 degrees; the other has a fixed Doppler angle of 80 degrees with flow speed that changes from 18.5 to 141.9 mm/s. As obtained with the method introduced here, the Doppler-angle estimation accuracies of the two sets are 97.6% and 98.2%, respectively, and the estimation accuracies of flow speeds of the two sets are 94.3% and 90.4%, respectively.

Algorithms↗