Abstract:
An observation vessel includes a holding portion configured to hold an observation object and an accommodation portion at least partially formed of a transparent curved surface and configured to position the holding portion. The holding portion is configured to hold the observation object at a set position separated from the curved surface toward a center of curvature of the curved surface in a first state of being positioned at a first position by the accommodation portion.
Abstract:
An immersion liquid holder 2 is an immersion liquid holder that is used for an observation device 10 for observing sample S by using an immersion method, and includes a supporting member 2b configured to support an absorption member 3 that has absorbed an immersion liquid and a connection unit 2c configured to relatively fix the absorption member 3 that has absorbed the immersion liquid with respect to an optical system, which is an optical system included in the observation device 10, and to fix the absorption member 3 on an optical path of the optical system 1, by fixing the supporting member 2b to the observation device 10.
Abstract:
Provided is an optical signal detection device that includes: an objective; a holding member provided between the objective and a sample to hold the sample; and a gel member that fills a space between the objective and the holding member. The gel member has ¼ scale penetration indicating a value of 44 to 111, both inclusive, measured based on a penetration test using a ¼ scale cone of JIS K 2220.
Abstract:
A microscope system includes: an objective; a correction apparatus which corrects a spherical aberration; a controller which obtains a plurality of combinations of a relative position of the objective to a sample and an optimum value, which is a set value of the correction apparatus in a state in which a spherical aberration caused in accordance with the relative position has been corrected, calculates a function expressing the relationship between the relative position and the optimum value on the basis of the obtained plurality of combinations by interpolation, and calculates the optimum value according to an observation target surface of the sample, on the basis of the function and the relative position which is determined from the observation target surface; and a correction apparatus driving apparatus which drives the correction apparatus in accordance with the optimum value, which is calculated by the controller.
Abstract:
A illumination apparatus for microscope comprises a light source, a spatial modulation section, a first illumination optical system, a second illumination optical system, and the spatial modulation section includes a spatial modulation element which is of reflecting type, and a polarizing element, and the first illumination optical system is disposed in an optical path from the light source up to the spatial modulation element, and the second illumination optical system is disposed in an optical path from the spatial modulation element up to a specimen position, and a position of the spatial modulation element is conjugate with the specimen position. Moreover, a microscope comprises a illumination apparatus, a main-body section, an observation unit, and a control unit, and the illumination apparatus for microscope is to be used as the illumination apparatus.
Abstract:
A microscope device includes an illumination optical system that illuminates a specimen with a light sheet, and a stereo image capturing device that captures images of the specimen in a plurality of different directions in which a resolution based on a triangulation method in a Z direction orthogonal to a direction of one or a plurality of light sheets formed on the specimen by the illumination optical system is less than a thickness in the Z direction of light sheet illumination that comprises the one or the plurality of light sheets.
Abstract:
A microscope system includes: a main body portion having an optical system for forming an image from at least observation light from a specimen; an objective lens unit having an objective lens for taking in the observation light and having a base portion with an approximately belt shape for holding the objective lens on one end; and a unit attachment portion that is held by the main body portion and is configured to detachably attach the base portion at a position where at least an optical axis of the objective lens coincides with an optical path of the observation light.
Abstract:
A microscopy system includes a microscope apparatus that has an objective and a correction device correcting for a spherical aberration, and a refractive index calculator that calculates a refractive index of a sample at a target position in the sample on the basis of a plurality of target set values each of which is a set value of the correction device and each of which corresponds to an amount of spherical aberration that occurs in the microscope apparatus when an observation target plane is situated at a different position in the sample in an optical-axis direction of the objective.
Abstract:
Fluorescence observation apparatus includes laser scanning fluorescence observation unit and wide field fluorescence observation unit. The former unit includes: lasers; scanning unit that scans sample by laser light; and detector that detects fluorescence from the sample excited by the laser light. The latter unit includes: light source to planar-illuminate the sample; excitation filters that are selectively arranged on light path from the light source, and that correspond to the lasers, respectively; and two-dimensional detector that detects fluorescence from the sample excited by light that has passed through excitation filter arranged on light path from the light source. Each of the excitation filters has optical property in which center wavelength of transmissive band is approximately the same as oscillation wavelength of corresponding laser and bandwidth of transmissive band is approximately the same as tolerance width of oscillation wavelength of corresponding laser.