Abstract:
An automatic preparation system according to embodiments includes a work table, a robot, and a jig. The robot is disposed near the work table and includes a plurality of arms. The jig is provided on the work table and rotatably holds a syringe. The robot, after taking out the syringe from a syringe storage case and attaching the syringe to the jig, operates the arms in a cooperative manner to perform a preparation of a medication using the syringe.
Abstract:
A robot control system, comprising: a first robot; a second robot; and circuitry configured to: control the first robot so that the first robot supports a first part of an indefinite-shape object placed at a predetermined location; and control the second robot so that the second robot supports a second part of the indefinite-shape object to convey the indefinite-shape object in cooperation with the first robot, the second part being different from the first part.
Abstract:
A processing system for processing experiment of biochemistry, biology and/or biotechnology includes a manual pipette which includes a piston and suctions and discharges liquid when the piston of the manual pipette is moved by external drive force, an automatic pipette which includes a piston and a built-in actuator and suctions and discharges liquid when the piston of the automatic pipette is moved by the actuator, a robot including a robotic arm which selects and grasps the manual or automatic pipette based on an operation command, and a robotic arm control device including circuitry which controls the robot such that the robotic arm selects and grasps the manual or automatic pipette based on the operation command. The operation command includes a collection of jobs that controls processes for processing a processing target in an experiment of biochemistry, biology and/or biotechnology and a container containing the processing target in a processing order.
Abstract:
A specimen processing system includes a culture vessel, a spatula, a robot, and a robot controller. The culture vessel is open on a top surface and includes a circular culture surface on which cells are culturable. The spatula includes a blade to remove the cells off the culture surface. The robot includes a hand to hold the culture vessel and/or the spatula. The robot controller includes an operation controller to control the robot to: move the spatula relative to the culture vessel with a first end of the blade on a circumference of the culture surface to remove first cells that are nearer the circumference of the culture surface; and move the spatula relative to the culture vessel to remove second cells that are inner than the first cells on the culture surface.
Abstract:
A robot system includes a robot that includes arms each including multiple joints, a controller configured to control an operation of the robot, and a tip stocker configured to supply a tip box with a pipette tip attached to and detached from a pipette with an operation of the robot. In addition, the tip stocker includes a movable member configured to be movable in accordance with an operation of the robot.
Abstract:
A processing method is for performing a processing with respect to a processing object in at least one field among biochemistry, biology, and biotechnology. The processing method includes transferring, using at least one arm of a robot configured to perform the processing, a container to a mover with the processing object attached on an inner surface of the container. The processing object is moved, using the mover, to a predetermined position on the inner surface of the container. The processing is performed, using a pipette mounted on the arm, with respect to the processing object at the predetermined position.
Abstract:
A robot system includes a robot, a hand attached to the robot, and a controller configured to control operation of the robot. The controller includes an initial control unit configured to rotate the hand in a state where the hand holds the screw cap tightened onto a conical tube in a first attitude, and a normal control unit configured to rotate the hand in a state where the hand holds the screw cap in a second attitude different from the first attitude after the hand is operated by the initial control unit.
Abstract:
A robot system includes a crane unit, a crane moving mechanism, a robot, and a controller. The crane unit is to suspend a workpiece. The crane unit moves in a horizontal direction via the crane moving mechanism. The robot is to move the crane unit in the horizontal direction via the crane moving mechanism. The controller is configured to control the crane unit to move upwardly to suspend the workpiece after controlling the robot to bring the crane unit into an engaging state in which the crane unit engages with the workpiece located at a first position. The controller is configured to control the crane unit suspending the workpiece to move downwardly to place the workpiece at a second position after controlling the robot to move the crane unit toward the second position while the crane unit suspends the workpiece.
Abstract:
A robot control system, comprising: one or more robots configured to perform work on a material including a content; and circuitry configured to: cause the one or more robots to move at least one of a cutter and the material so that a cut is made in the material with the cutter; and cause the one or more robots to rotate the material so that the cut faces downward.
Abstract:
A robot control system, comprising: a robot configured to hold a cutter; and circuitry configured to control the robot so that the robot cuts a packaging material with a blade of the cutter, and control the robot so that the blade is oriented more toward an outer side of the packaging material when the robot cuts a face of the packaging material with the blade than when the robot cuts a corner of the packaging material with the blade.