Device and method for microscopy using light with differing physical properties
US-9494782-B2 · Nov 15, 2016 · US
US10754136B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10754136-B2 |
| Application number | US-201515127101-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 19, 2015 |
| Priority date | Mar 24, 2014 |
| Publication date | Aug 25, 2020 |
| Grant date | Aug 25, 2020 |
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A confocal microscope and an associated method for determining a topography of a sample by implementing a correlative spinning disk microscopy is provided. The method includes placing a sample on an object stage of the microscope. Either the object stage is moved vertically to determine the topography of the sample, while first and second images of the sample are captured in an alternating manner. A vertical focus position is stored as metadata for each image. Two first or second images are interpolated to give an intermediate image. A confocal image for a defined vertical position is generated by calculating the intermediate image with the second or first image at the position.
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The invention claimed is: 1. A method for forming at least one confocal image comprising: capturing a first wide-field image at a first vertical focus position, a first composite image at a second vertical focus position, and a second wide-field image at a third vertical focus position, the second vertical focus position being between the first vertical focus position and the third vertical focus position; forming a wide-field intermediate image for the second vertical focus position by interpolating the first wide-field image and the second wide-field image; and forming a first confocal image for the second vertical focus position by subtracting the wide-field intermediate image from the first composite image. 2. The method of claim 1 , further comprising: capturing a second composite image at a fourth vertical focus position, the fourth vertical focus position being before the first vertical focus position such that the first vertical focus position is between the fourth vertical focus position and the second vertical focus position; forming a composite intermediate image for the first vertical focus position by interpolating the first composite image and the second composite image; and forming a second confocal image for the first vertical focus position by subtracting the first wide-field image from the composite intermediate image. 3. The method of claim 1 , further comprising: capturing a second composite image at a fourth vertical focus position, the fourth vertical focus position being after the third vertical focus position such that the third vertical focus position is between the second vertical focus position and the fourth vertical position; forming a composite intermediate image for the third vertical focus positon by interpolating the first composite image and the second composite image; and forming a second confocal image for the third vertical focus positon by subtracting the second wide-field image from the composite intermediate image. 4. The method of claim 1 , further comprising: moving an object stage vertically for the capturing of the first wide-field image, the first composite image, and the second wide-field image. 5. The method of claim 4 , wherein the object stage is moved continuously vertically from the first vertical focus position, through the second vertical focus position, and to the third vertical focus position during the capturing of the first wide-field image, the first composite image, and the second wide-field image. 6. The method of claim 1 , further comprising: moving a focus drive vertically for the capturing of the first wide-field image, the first composite image, and the second wide-field image. 7. A method for forming a confocal image comprising: capturing a first composite image at a first vertical focus position, a wide-field image at a second vertical focus position, and a second composite image at a third vertical focus position, with the second vertical focus position being between the first vertical focus position and the third vertical focus position; forming a composite intermediate image for the second vertical focus position by interpolating the first composite image and the second composite image; and forming the confocal image for the second vertical focus position by subtracting the wide-field image from the composite intermediate image. 8. A method for forming a confocal image comprising: capturing a first wide-field image and a second wide-field image at a first vertical focus position and a second vertical focus position, respectively; capturing a first composite image and a second composite image at a third vertical focus position and a fourth vertical focus position, respectively, the third vertical focus positon being between the first vertical focus position and the second vertical focus position; forming a first wide-field intermediate image for a fifth vertical focus position by interpolating the first wide-field image and the second wide-field image, the fifth vertical focus position being between the third vertical focus position and the second vertical focus position; forming a composite intermediate image for the fifth vertical focus positon by interpolating the first composite image and the second composite image; and forming a confocal image for the fifth vertical focus position by subtracting the wide-field intermediate image from the composite intermediate image.
moving apertures, e.g. Nipkow disks, rotating lens arrays · CPC title
time-scale detection, e.g. strobed, ultra-fast, heterodyne detection · CPC title
providing an output produced by processing a plurality of individual source images, e.g. image tiling, montage, composite images, depth sectioning, image comparison · CPC title
Control or image processing arrangements for digital or video microscopes (G02B21/361, G02B21/362 take precedence) · CPC title
Means for illuminating specimens · CPC title
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