Configurable platform
US-2024366089-A1 · Nov 7, 2024 · US
US9528878B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9528878-B2 |
| Application number | US-201314074892-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 8, 2013 |
| Priority date | May 17, 2011 |
| Publication date | Dec 27, 2016 |
| Grant date | Dec 27, 2016 |
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Disclosed is an imaging apparatus including: a spectroscopic measurement section configured to measure a spectral characteristic of a subject; a spectral image capture section configured to capture a subject image separated into a plurality of colors through color separation to create a plurality of spectral images; and a color separation characteristic determining section configured to determine a color separation characteristic to be used for image capturing of the spectral image capture section, based on the spectral characteristic of the subject measured by the spectroscopic measurement section. The color separation characteristic determining section determines a count of color separations in the image capturing of the spectral image capture section and spectral bands corresponding to each of the color separations.
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What is claimed is: 1. An imaging apparatus comprising: an image sensor device; and a processor comprising hardware, wherein the processor is configured to: receive a spectral characteristic of a subject, wherein the spectral characteristic is measured by a spectroscopic sensor device; determine at least one color separation within the spectral characteristic of the subject; determine a spectral wavelength band for each of the at least one color separation; control a transmittance characteristic setting of the image sensor device based on the spectral wavelength band; and control the image sensor device to capture a spectral image of the subject at the transmittance character setting, wherein the image sensor device comprises: an image sensor configured to capture the spectral image by photoelectrically converting a subject image formed by at least one image forming optical lens to create an image signal, and a filter having a variable transmittance characteristic and provided in an optical path of the at least one image forming optical lens to change a spectral characteristic of the subject light incident onto the image sensor, and wherein the processor is configured to control the transmittance characteristic setting of the image sensor device by controlling the variable transmittance characteristic of the filter, based on the spectral wavelength band. 2. The imaging apparatus according to claim 1 , further comprising the spectroscopic sensor device, wherein the spectroscopic sensor device is configured to measure the spectral characteristic of the subject within a range substantially matching a shooting field of the image sensor device. 3. The imaging apparatus according to claim 1 , further comprising the spectroscopic sensor device, wherein the spectroscopic sensor device is configured to measure the spectral characteristic of the subject within a part of a shooting field of the image sensor device. 4. The imaging apparatus according to claim 1 , further comprising the spectroscopic sensor device, wherein the spectroscopic sensor device is configured to measure the spectral characteristic of the subject in each of a plurality of areas within a shooting field of the image sensor device. 5. The imaging apparatus according to claim 1 , wherein the filter comprises one of a liquid crystal tunable filter and an acousto-optical variable wavelength filter. 6. The imaging apparatus according to claim 1 , wherein the filter comprises: a plurality of different types of optical filters having different spectral transmittance characteristics; and a filter switching actuator configured to position an optical filter of the plurality of different types of optical filters in the optical path of the at least one image forming optical lens based on the spectral wavelength band. 7. A microscope system comprising: a microscope apparatus comprising at least one image forming optical lens; and the imaging apparatus according to claim 1 , wherein the imaging apparatus is configured to control the image sensor device to capture an enlarged spectral image formed by the microscope apparatus as the spectral image of the subject. 8. An imaging apparatus comprising: an image sensor device; and a processor comprising hardware, wherein the processor is configured to: receive a spectral characteristic of a subject, wherein the spectral characteristic is measured by a spectroscopic sensor device; determine at least one color separation within the spectral characteristic of the subject; determine a spectral wavelength band for each of the at least one color separation; control a transmittance characteristic setting of the image sensor device based on the spectral wavelength band; and control the image sensor device to capture a spectral image of the subject at the transmittance character setting, wherein the image sensor device comprises: an image sensor configured to capture the spectral image by photoelectrically converting a subject image formed by at least one image forming optical lens to create an image signal; and a light source having a variable spectral radiance characteristic and configured to irradiate illumination light to the subject and change a spectral characteristic of the light used to illuminate the subject, and wherein the processor is configured to control the transmittance characteristic setting of the image sensor device by controlling the variable spectral radiance characteristic of the light source to have a spectral radiance characteristic, based on the spectral wavelength band. 9. The imaging apparatus according to claim 8 , further comprising the spectroscopic sensor device, wherein the spectroscopic sensor device is configured to measure the spectral characteristic of the subject within a range substantially matching a shooting field of the image sensor device. 10. The imaging apparatus according to claim 8 , further comprising the spectroscopic sensor device, wherein the spectroscopic sensor device is configured to measure the spectral characteristic of the subject within a part of a shooting field of the image sensor device. 11. The imaging apparatus according to claim 8 , further comprising the spectroscopic sensor device, wherein the spectroscopic sensor device is configured to measure the spectral characteristic of the subject in each of a plurality of areas within a shooting field of the image sensor device. 12. The imaging apparatus according to claim 8 , wherein the light source is configured to irradiate white light to the subject when the spectroscopic sensor device measures the spectral characteristic of the subject. 13. A microscope system comprising: a microscope apparatus comprising at least one image forming optical lens; and the imaging apparatus according to claim 8 , wherein the imaging apparatus is configured to control the image sensor device to capture an enlarged spectral image formed by the microscope apparatus as the spectral image of the subject.
for generating image signals from different wavelengths · CPC title
provided with illuminating means · CPC title
for processing colour signals · CPC title
using a sighting port, e.g. camera or human eye · CPC title
based on three different wavelength filter elements · CPC title
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