Abstract:
Provided is a culturing observation apparatus including: a light source portion that radiates illumination light into a culturing container, in which cells are being cultured, from a side surface of the culturing container, which is optically transparent, within a predetermined angular range; an image-acquisition portion that, when the illumination light radiated from the light source portion is scattered at the cells in the culturing container and when a portion of this scattered light passes through a bottom surface of the culturing container, acquires an image by capturing the scattered light that has passed through the bottom surface; and a transmitting portion that transmits the image acquired by the image-acquisition portion to an exterior.
Abstract:
An object is to lessen a troublesome checking task during cell culturing. A culture observation apparatus of the present invention includes: a light source unit that radiates illumination light onto the inside of a transparent culture vessel from a side surface of the culture vessel; an image acquisition unit that images, of the illumination light radiated from the light source unit, scattered light emitted from the inside of the culture vessel to acquire images; and a transmission unit that sends the images acquired by the image acquisition unit to the outside. The image acquisition unit includes a sensor array that has a plurality of sensors arranged in at least one line over approximately the entire length in one direction of a bottom surface of the culture vessel and a movement mechanism that relatively moves the sensor array and the culture vessel in a direction intersecting the array direction of the sensors and extending along the bottom surface.
Abstract:
An electronic circuit unit includes: a cable having a core of stranded thin wires, the core being covered with an outer surface, the outer surface at one end of the cable being removed to expose the core; a metallic tube that is tubular, the exposed core being inserted into an opening portion of the metallic tube; and a substrate including a connection land for connecting the core. The exposed core is connected to the connection land via the metallic tube by diffusion joining or ultrasound joining, the core has a diameter of 0.02 to 0.50 mm, the metallic tube has a thickness of 10 to 50 μm, and the metallic tube has an inner diameter that is larger than the diameter of the core by equal to or more than 1.1-fold and equal to or less than by 1.5-fold.
Abstract:
Provided is a cell-culturing apparatus including a culturing unit in which a culturing vessel is placed and an incubator in which a plurality of culturing units are placed in an interior thereof, and that can maintain the interior thereof at an environment that is appropriate for cell culturing, wherein the incubator includes openings that are provided for each of the plurality of culturing units and through which the culturing units can separately be moved into and out of the incubator, and closing means that are provided at the openings and that seals off the internal environment of the incubator from outside when the culturing unit is taken out of the incubator.
Abstract:
A cell culture apparatus according to the present invention includes a cell culture bag and a culture tank. The cell culture bag is composed of a bag-shaped film material capable of accommodating cells and a culture medium therein. At least a part of the bag-shaped film material is formed of a porous membrane that selectively allows a substance contained in the culture medium to pass through but does not allow the cells to pass through. The culture tank retains the cell culture bag in an immersed state in a solution.
Abstract:
A cell-culturing system includes: a solution-holding means holding a medium; and a solution-supplying means supplying the solution supplied thereto from the solution-holding means to a cell-culturing container. The solution-supplying means may supply a solution to the container via a solution dripping step. The container may be connected to the solution-supplying means at a position that is lower than the solution-supplying means in a direction in which gravity acts; the solution-supplying means may have a space in which the solution supplied thereto from the solution-holding means is made to drip; the system may be provided with a discharging port discharging the solution at a position in a container side surface at a desired height; and the solution may be discharged outside when the height of a top surface of the solution in the container reaches the port as a result of supplying the solution to the container from the solution-supplying means.
Abstract:
A cell culturing apparatus according to the present invention includes a culture-medium retaining unit that retains a culture medium for culturing a cell, a culture bag provided with a feed port and a discharge port, a culture-medium feeding unit that connects the culture-medium retaining unit and the feed port and that feeds the culture medium from the culture-medium retaining unit to the culture bag, a negative-pressure supplying unit that supplies negative pressure to the discharge port, and a waste retaining unit that retains the culture medium from the discharge port.
Abstract:
In order to determine the culturing state of cells in a culture vessel in a simple manner at an appropriate timing without removing the culture vessel from the culturing apparatus, a cell culturing apparatus includes a culturing chamber that accommodates a culture vessel, which can accommodate cells in the interior thereof, and that maintains a predetermined temperature and humidity; a touchscreen sensor that is disposed inside the culturing chamber on a mounting surface, on which the culture vessel is placed, and that is brought into tight contact with an external surface of a bottom of the culture vessel; and an output portion that exports an output from the touchscreen sensor to the exterior of the culturing chamber.
Abstract:
A cell culture container includes, in sequence from above in the gravity direction: a culture-medium holding container; a cell holding container that holds cells and a culture medium supplied from the culture-medium holding container through a supply port provided in the top surface thereof; a waste-liquid holding container that holds the culture medium discharged from the cell holding container; and a discharge mechanism for discharging the culture medium that has exceeded a predetermined level from the cell holding container to the waste-liquid holding container.
Abstract:
A cell culture apparatus of the present invention includes: a body including a space for accommodating a culture container, and an opening through which the culture container is taken in and out; a door that opens and closes the opening; an optical detection unit that includes optical sensors that optically detects an instruction to open and close the opening from a user, and converts the detection by the optical sensors to a signal and sends the signal; and a door open/close unit that receives the signal from the optical detection unit and controls open/close of the opening by the door.