Abstract:
An imaging unit (1) images an object to be imaged and acquires image data. On the other hand, an imaging information acquisition unit (2) acquires imaging information as information during imaging. A storage unit (3) contains optimal imaging condition information induced from the imaging information. An imaging information analysis unit (4) analyzes the imaging information given from the imaging information acquisition unit (2) and reads out imaging condition information optimal for imaging from the storage unit (3). An imaging condition setting unit (5) sets the imaging condition of the imaging unit (1) according to the imaging condition information obtained by the imaging condition information acquisition unit (4).
Abstract:
An imaging unit (1) images an imaging object and acquires image data. On the other hand, imaging information which is information at the time of imaging is acquired by an imaging information acquisition unit (2). A storage unit (3) contains image correction information for correcting the acquired image. An imaging information analysis unit (4) analyzes the imaging object and the imaging condition from the imaging information given from the imaging information acquisition unit (2) and reads out image correction information appropriate for the acquired image from the storage unit (3). An image processing unit (5) subjects the image data on the imaging object obtained by the imaging unit (1) to a correction process according to the image correction information obtained by the image correction information acquisition unit (4).
Abstract:
An imaging unit (1) images an object to be imaged and acquires image data. On the other hand, an imaging information acquisition unit (2) acquires imaging information as information during imaging. A storage unit (3) contains optimal imaging condition information induced from the imaging information. An imaging information analysis unit (4) analyzes the imaging information given from the imaging information acquisition unit (2) and reads out imaging condition information optimal for imaging from the storage unit (3). An imaging condition setting unit (5) sets the imaging condition of the imaging unit (1) according to the imaging condition information obtained by the imaging condition information acquisition unit (4).
Abstract:
An imaging unit (1) images an imaging object and acquires image data. On the other hand, imaging information which is information at the time of imaging is acquired by an imaging information acquisition unit (2). A storage unit (3) contains image correction information for correcting the acquired image. An imaging information analysis unit (4) analyzes the imaging object and the imaging condition from the imaging information given from the imaging information acquisition unit (2) and reads out image correction information appropriate for the acquired image from the storage unit (3). An image processing unit (5) subjects the image data on the imaging object obtained by the imaging unit (1) to a correction process according to the image correction information obtained by the image correction information acquisition unit (4).