Search results for "Deformable mirror"

showing 5 items of 5 documents

The effect of longitudinal chromatic aberration on the lag of accommodation and depth of field.

2016

Purpose Longitudinal chromatic aberration is present in all states of accommodation and may play a role in the accommodation response and the emmetropisation process. We study the change of the depth of field (DOFi) with the state of accommodation, taking into account the longitudinal chromatic aberration. Methods Subjective DOFi was defined as the range of defocus beyond which the blur of the target (one line of optotypes of 0.1 logMAR shown on a black-and-white microdisplay, seen through different colour filters) was perceived as objectionable. The subject's eye was paralysed and different, previously-measured accommodative states (corresponding to the accommodative demands of 0D, 2D and …

AdultMaleAccommodative responseLag01 natural sciencesDeformable mirror010309 optics03 medical and health sciencesYoung Adult0302 clinical medicineOpticsPhysiological optics0103 physical sciencesChromatic aberrationHumansDepth of fieldMathematicsDepth Perceptionbusiness.industryAccommodation OcularEmmetropiaSensory SystemsOphthalmology030221 ophthalmology & optometryOptometryFemaleMonochromatic colorbusinessAccommodationColor PerceptionPhotic StimulationOptometryOphthalmicphysiological optics : the journal of the British College of Ophthalmic Opticians (Optometrists)
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Accommodation Responds to Optical Vergence and Not Defocus Blur Alone.

2017

Purpose To determine whether changes in wavefront spherical curvature (optical vergence) are a directional cue for accommodation. Methods Nine subjects participated in this experiment. The accommodation response to a monochromatic target was measured continuously with a custom-made adaptive optics system while astigmatism and higher-order aberrations were corrected in real time. There were two experimental open-loop conditions: vergence-driven condition, where the deformable mirror provided sinusoidal changes in defocus at the retina between -1 and +1 diopters (D) at 0.2 Hz; and blur-driven condition, in which the level of defocus at the retina was always 0 D, but a sinusoidal defocus blur …

AdultMalegenetic structuresVisual AcuityVergenceAstigmatismRefraction Ocular050105 experimental psychologyDeformable mirror03 medical and health sciences0302 clinical medicineOpticsmedicineHumans0501 psychology and cognitive sciencesAdaptive opticsDioptreMathematicsWavefrontbusiness.industry05 social sciencesAccommodation OcularAstigmatismConvergence Ocularmedicine.diseaseeye diseases030221 ophthalmology & optometryFemalesense organsMonochromatic colorCuesbusinessAccommodationPhotic StimulationInvestigative ophthalmologyvisual science
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Three-dimensional multiple-particle tracking with nanometric precision over tunable axial ranges

2017

The precise localization of nanometric objects in three dimensions is essential to identify functional diffusion mechanisms in complex systems at the cellular or molecular level. However, most optical methods can achieve high temporal resolution and high localization precision only in two dimensions or over a limited axial (z) range. Here we develop a novel wide-field detection system based on an electrically tunable lens that can track multiple individual nanoscale emitters in three dimensions over a tunable axial range with nanometric localization precision. The optical principle of the technique is based on the simultaneous acquisition of two images with an extended depth of field while …

0301 basic medicineOptical devicesMaterials scienceComplex system02 engineering and technologyTracking (particle physics)Deformable mirrorlaw.invention03 medical and health sciencesOpticsPosition (vector)lawAtomic and Molecular PhysicsElectronicImaging systemsDepth of fieldOptical and Magnetic MaterialsFluorescence microscopy; Imaging systems; Microscopy; Optical devices; Three-dimensional image processing; Electronic; Optical and Magnetic Materials; Atomic and Molecular Physics; and OpticsFluorescence microscopyMicroscopybusiness.industryThree-dimensional image processingFluorescence microscopy; Imaging systems; Microscopy; Optical devices; Three-dimensional image processing; Electronic Optical and Magnetic Materials; Atomic and Molecular Physics and Optics021001 nanoscience & nanotechnologyAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsNumerical apertureLens (optics)030104 developmental biologyTemporal resolutionand Optics0210 nano-technologybusinessFluorescence microscopy Imaging systems Microscopy Optical devices Three-dimensional image processing Electronic Optical and Magnetic Materials Atomic and Molecular Physics and Optics
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Temporal multiplexing with adaptive optics for simultaneous vision.

2016

We present and test a methodology for generating simultaneous vision with a deformable mirror that changed shape at 50 Hz between two vergences: 0 D (far vision) and −2.5 D (near vision). Different bifocal designs, including toric and combinations of spherical aberration, were simulated and assessed objectively. We found that typical corneal aberrations of a 60-year-old subject changes the shape of objective through-focus curves of a perfect bifocal lens. This methodology can be used to investigate subjective visual performance for different multifocal contact or intraocular lens designs.

Visual acuitygenetic structuresComputer scienceImage qualitymedicine.medical_treatmentIntraocular lensTemporal multiplexingDeformable mirrorArticlelaw.invention03 medical and health sciences0302 clinical medicineOpticslawmedicineComputer visionAdaptive opticsbusiness.industryAtomic and Molecular Physics and Opticseye diseasesLens (optics)Spherical aberration030221 ophthalmology & optometryArtificial intelligencesense organsmedicine.symptombusiness030217 neurology & neurosurgeryBiotechnologyBiomedical optics express
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Drifts in real-time partial wavefront correction and how to avoid them

2017

In visual experiments that require real-time partial correction of wavefront aberrations, small errors occur that accumulate over time and lead to drifts in Zernike coefficients of the uncorrected aberrations. A simple algorithm that does not require the inclusion of an additional optical path to obtain independent measurements of the eye's aberrations is described here, and its effectiveness in preventing these drifts is demonstrated.

Wavefrontgenetic structuresComputer sciencebusiness.industryZernike polynomialsMaterials Science (miscellaneous)Wavefront sensor01 natural scienceseye diseasesIndustrial and Manufacturing EngineeringDeformable mirror010309 optics03 medical and health sciencessymbols.namesake0302 clinical medicineOpticsOptical path0103 physical sciences030221 ophthalmology & optometrysymbolssense organsBusiness and International ManagementbusinessAdaptive opticsApplied Optics
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