Abstract:
In a container main body of the stool sampling container, in a case where a direction orthogonal to the longitudinal direction is defined as the width direction, the second surface opposed to a first surface into which a stool sampling rod is inserted and into which the nozzle is inserted has a nozzle insertion portion that allows an insertion of a nozzle at a position shifted in the width direction with respect to a coaxial position on an extension line of an axis of the stool sampling rod, and the insertion of the nozzle is regulated at a place other than the nozzle insertion portion.
Abstract:
A photoacoustic probe which prevents foreign substances from entering and of which a portion of a light emitting unit to be easily damaged can be replaced is provided. An acoustic wave detector 24 detects acoustic waves. First and second light guide members 21 and 23, which form the light emitting unit, are arranged in series in a traveling direction of light. A frame body 11 holds the first light guide members 21, the second light guide members 23, and the acoustic wave detector 24. The first light guide members 21, is positioned close to a subject, is undetachably fixed to the frame body 11. Meanwhile, the second light guide members 23, which is positioned close to a light source, is detachably fixed to the frame body 11.
Abstract:
An optical fiber is inserted into an inside portion of a hollow tube of an insert and guides light emitted from a light source. A base end section includes an optical fiber insertion part used for inserting the optical fiber. An optical fiber fixing member fixes the optical fiber at a position spaced from a distal end of the optical fiber. The optical fiber insertion part has a first portion into which the optical fiber fixing member is inserted. The first portion has at least three protrusions protruding toward the center at positions spaced from each other in a circumferential direction. A size of the optical fiber fixing member in a direction perpendicular to an insertion direction into the first portion is larger than that of an inside portion of the first portion, and the optical fiber fixing member is harder than the first portion.
Abstract:
In a photoacoustic measurement probe including an acoustic wave detector and an amplifier for amplifying a detection signal of a photoacoustic wave and a probe unit and a photoacoustic measurement apparatus having such a probe, heat is efficiently dissipated from the probe.In a probe having an acoustic wave detector and an amplifier, there are provided a first heat conductive member that is in contact with a part of a side plate of a housing and the amplifier to transfer heat generated by the amplifier to the side plate and a second heat conductive member that is in contact with a part different from the part of the side plate and the acoustic wave detector to transfer heat generated by the acoustic wave detector to the side plate.
Abstract:
An acoustic wave detector that detects an acoustic wave from a subject, an optical fiber that guides light emitted from a light source to a probe body, and a light guide member that guides light from a light entrance end, which is optically coupled to the optical fiber, to a light exit end, which is located in the vicinity of the acoustic wave detector, are provided. The light guide member is secured in the probe body with a securing material provided at least partially around the light guide member. The conditional expression below is satisfied: sin−1(n2/n1)×(180°/π)
Abstract:
In a laser device and a photoacoustic measurement device including the laser device, the intensity of light at each wavelength made independently controllable. The laser device includes a laser medium which has oscillation wavelengths at a first wavelength and a second wavelength with higher light emission efficiency than at the first wavelength, an excitation section, a first resonator, a second resonator, a Q-value change unit, and a control section. The control section oscillates light having the first wavelength through Q switching when a first delay time has elapsed after the excitation of the laser medium has been started in a case where the oscillation wavelength is the first wavelength, and oscillates light having the second wavelength through Q switching when a second delay time has elapsed after the excitation of the laser medium has been started in a case where the oscillation wavelength is the second wavelength.
Abstract:
In an acoustic wave detection probe provided with a light guide section that guides measuring light such that the measuring light is outputted toward a subject and an acoustic wave transducer that detects a photoacoustic wave generated in the subject by the projection of the measuring light, the light guide section includes a homogenizer that flat-tops an energy profile of the measuring light entered from the upstream side of the optical system, a light condensing member that condenses the measuring light transmitted through the homogenizer, and a bundle fiber which includes a plurality of optical fibers and is disposed such that the measuring light transmitted through the light condensing member enters from an entrance end of the bundle fiber.
Abstract:
In an acoustic image generation apparatus with a probe having an ultrasonic transducer, providing a scanning length setting part that sets a target scanning length in a scanning process of the probe, a coordinate obtaining part that sequentially obtains a coordinate of the probe in real space, a scanned length calculation part that calculates a scanned length based on the coordinate obtained by the coordinate obtaining part, a progress level display generation part that generates a progress level display that indicates progress of the scanning process based on the target scanning length and the scanned length, and a display part that displays the progress level display.
Abstract:
Using a laser source unit, a plurality of wavelengths are switched at a high speed without increasing a rotation speed of a birefringent-filter. A Q switch and a birefringent filter are inserted into an optical resonator including a pair of mirrors facing each other with a laser rod interposed therebetween. The birefringent-filter changes an oscillation wavelength of the optical resonator in association with rotational displacement. Driving unit reciprocatively rotates the birefringent-filter in a predetermined range including a discontinuous point of change characteristics of a transmission wavelength for the rotational displacement. An emission control unit irradiates the laser rod with excitation light from a flash lamp, and then turns on the Q switch at a timing when a rotational displacement position of the birefringent-filter is set to a position corresponding to the wavelength of the pulse laser beam to be emitted, to cause the pulse laser beam to be emitted.
Abstract:
An insert according to the invention includes a needle tube that has an inclined surface having a leading end opening, a needle base that has a chamber communicating with an inside of the needle tube and holds the needle tube, and a light introduction portion that communicates with the chamber and has an insertion path into which a light guide member is inserted. In a case in which the light guide member is inserted into the insertion path, is constrained at a first constraint point, becomes free, is bent, is constrained at a second constraint point, and is inserted into the needle tube and a point where an extension line in an insertion direction of the light guide member in the vicinity of a chamber-side opening in the insertion path intersects a line which passes through the second constraint point and is parallel to an axial direction of the needle tube is an intersection point, a distance between the intersection point and the second constraint point is longer than a distance between the first constraint point and the intersection point.