Examples of 'wavefront sensor' in a sentence

Meaning of "wavefront sensor"

wavefront sensor: a device used to measure and analyze the wavefront of light or sound in order to assess optical or acoustic properties

How to use "wavefront sensor" in a sentence

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wavefront sensor
Integrated surgical microscope and wavefront sensor.
A wavefront sensor is a device for measuring the aberrations of an optical wavefront.
Optical input of the wavefront sensor.
Wavefront sensor or aberrometer.
A optical axis of the wavefront sensor.
A wavefront sensor is a device that measures optical errors in terms of wavefront aberrations.
The present invention relates to a wavefront sensor based on interference.
The measured signals indicate inherent optical aberrations of the wavefront sensor.
The methods include using a wavefront sensor to provide an optical measurement of the optical element.
The aberrated wavefront is then directed to the wavefront sensor.
The integrated wavefront sensor and surgical microscope described herein provides several advantages.
The wavefront measurement can be made using a wavefront sensor.
Supplying the wavefront sensor based on interference ;.
The spherical aberration of the whole eye could be measured using a wavefront sensor.
The wavefront sensor can be a Hartmann-Shack sensor.

See also

In one embodiment, two or more gratings are aligned in series in the wavefront sensor.
Moreover, wavefront sensor data is not naturally indicative of manifest refraction.
In another example, the calibration check procedure may be applied to a wavefront sensor.
The wavefront sensor of claim 1 wherein the light source comprises a laser.
Fig . 2 shows an exemplary schematic diagram of an embodiment of the sequential wavefront sensor.
The above-described wavefront sensor can be used for a large number of applications.
Optical range and wavefront error may be measured by a Shack-Hartmann wavefront sensor.
The wavefront sensor of claim 6, wherein the focus is adjusted from myopic to hyperopic.
It specifically relates to a Hartmann-Shack wavefront sensor for acquiring the wavefront information of an eye.
The wavefront sensor of claim 2, wherein the trombone reflector comprises two prisms.
The low - and high-order aberrations of the eye are measured using a wavefront sensor or aberrometer.
Alternatively, a wavefront sensor may be used to map the irregular refractive aberrations of the eye.
FIGURE 3 illustrates a typical image of an eye captured on a wavefront sensor.
The wavefront sensor of claim 6, wherein the focus control system employs the processor.
This corresponds to 37 micron spots at the wavefront sensor.
Hartmann-Shack wavefront sensor device of the type described in the following documents,.
For example, a Shack-Hartmann wavefront sensor can be used.
Supplying a wavefront sensor based on interference according to claim 1 ;.
Again, the photodisruptive response is monitored by the wavefront sensor 16.
Wavefront sensor based on interference, comprising,.
A greater or lesser number of mirrors may be included in the wavefront sensor 14.
The wavefront sensor 14 may of course be any other suitable size and / or weight.
The device of claim 1, wherein the device is a Shack-Hartmann wavefront sensor.
One such wavefront sensor arrangement will now be explained with the aid of FIGs . 3 and 4.
The degree of correction performed by the wavefront corrector 23 is determined by the wavefront sensor 26.
Wavefront sensor having multi-power beam modes, independent adjustment camera, and accommodation range measurement.
Preferably, this focusing technique is controlled by the control system of the wavefront sensor 300.
VOLT was used to successfully measure wavefront sensor centroids over 100s intervals in open loop.
The lens 105 has a collimation function, and forms the optical input of the wavefront sensor.
Thus, the specific configuration of the wavefront sensor 14 illustrated in Fig.
The wavefront sensor according to claim 1, further comprising,.
The combination of plate 32 and planar array 36 comprises the unique wavefront sensor of this embodiment.
The wavefront sensor of claim 7, wherein the waveplate is a λ/4 waveplate.
FIG . 4 shows a typical image of an eye 10 captured on a wavefront sensor.
The wavefront sensor according to claim 1, in which the radiation splitter comprises a diffraction grating ( 12 ).

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