Abstract:
There is provided a measurement apparatus including an objective lens, a stage, a setting unit, and a controller. The stage is configured to support a sample vessel in which a plurality of wells each containing a sample are arranged and to define relative positions of the sample vessel and the objective lens. The setting unit is configured to determine whether to set each of the plurality of wells to be a measurement target and set the measurement target. The controller is configured to control the stage such that a well determined to be the measurement target by the setting unit and the objective lens face each other.
Abstract:
The present technology relates to a display control apparatus and a method, an image processing apparatus and a method, and a program that enable easy and noninvasive observation of an object to be observed. A first display control unit configured to perform display control of a cell image with one or a plurality of images including cells, and a second display control unit configured to perform display control such that a part or all of a motion amount generated for each of subregions with the one or the plurality of images is associated with each of the subregions, and is superimposed on the cell image and is displayed, are provided. The present disclosure can be applied to a display control apparatus or an image processing apparatus.
Abstract:
To provide a biological signal measuring equipment that can perform the measurement in the same manner as the case of measuring a wave motion of a short period, even in the case of measuring the wave motion of a long period generated in a head portion. A biological signal measuring equipment used in the measurement of the biological signal in a head portion, has a jaw contact portion that comes into contact with a forehead; an occiput contact portion that comes into contact with the occiput; and a supporter that is interposed in a front and rear direction of the head portion and is supported by the head portion by using the jaw contact portion and the occiput contact portion as ends.
Abstract:
The present technology relates to a cell evaluation apparatus and method, and a program that are capable of easily searching for an area to be observed within cardiomyocytes without requiring special preparation. The cell evaluation apparatus includes: a motion detecting section configured to detect motion of cultured cardiomyocytes for each of partial areas of a plurality of observation fields on the cultured cardiomyocytes; a motion amount calculating section configured to calculate a motion amount of the detected motion; a pulsation information calculating section configured to calculate pulsation information on a characteristic amount of pulsations of the cultured cardiomyocytes on the basis of the calculated motion amount; an evaluation value calculating section configured to calculate an evaluation value corresponding to the plurality of observation fields, calculated on the basis of the pulsation information; and a field determining section configured to determine an observation field to be observed on the cultured cardiomyocytes, on the basis of the evaluation value.
Abstract:
PROBLEM TO BE SOLVED: To provide biological signal measuring equipment capable of measuring long-time waves generated in the head to the same level as when the short-time waves are measured. SOLUTION: The biological signal measuring equipment to be used for measuring biological signals in the head includes: a forehead abutment part to abut on the forehead; an occiput abutment part to abut on the occiput; and a supporting body for supporting the head by holding the anterior and posterior direction of the head with the forehead abutment part and the occiput abutment part as ends. COPYRIGHT: (C)2011,JPO&INPIT