18619665. RADIATION IMAGING APPARATUS, RADIATION IMAGING SYSTEM, CONTROL METHOD, AND STORAGE MEDIUM simplified abstract (CANON KABUSHIKI KAISHA)

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RADIATION IMAGING APPARATUS, RADIATION IMAGING SYSTEM, CONTROL METHOD, AND STORAGE MEDIUM

Organization Name

CANON KABUSHIKI KAISHA

Inventor(s)

HIDEAKI Morita of Tokyo (JP)

ASATO Kosuge of Kanagawa (JP)

TOSHITAKA Noro of Saitama (JP)

RADIATION IMAGING APPARATUS, RADIATION IMAGING SYSTEM, CONTROL METHOD, AND STORAGE MEDIUM - A simplified explanation of the abstract

This abstract first appeared for US patent application 18619665 titled 'RADIATION IMAGING APPARATUS, RADIATION IMAGING SYSTEM, CONTROL METHOD, AND STORAGE MEDIUM

Simplified Explanation: The radiation imaging apparatus described in the patent application is designed to perform radiation imaging and includes communication units for transmitting radiographic images and establishing wireless communication with communication devices in the imaging system.

  • Key Features and Innovation:
   - First communication unit for transmitting radiographic images within the imaging system.
   - Second communication unit for establishing wireless communication with communication devices.
   - Control unit to manage wireless communications of the communication units and adjust communication forms based on the transmission state of radiographic images.
  • Potential Applications:

The technology can be used in medical imaging systems, security screening devices, industrial inspection equipment, and other applications requiring wireless transmission of imaging data.

  • Problems Solved:

The technology addresses the need for efficient wireless communication in radiation imaging systems, improving data transmission and connectivity within the system.

  • Benefits:
   - Enhanced communication capabilities within the imaging system.
   - Improved efficiency in transmitting radiographic images wirelessly.
   - Better control over wireless communication for optimal performance.
  • Commercial Applications:

"Wireless Radiation Imaging Communication System" can be utilized in medical facilities, security checkpoints, manufacturing plants, and other industries requiring advanced imaging technology for data transmission.

  • Prior Art:

Readers can explore prior art related to wireless communication systems in medical imaging, security screening, and industrial inspection to understand the evolution of similar technologies.

  • Frequently Updated Research:

Stay informed about advancements in wireless communication technologies, medical imaging systems, and industrial inspection equipment to enhance the understanding of the field.

Questions about Wireless Radiation Imaging Communication System: 1. What are the primary components of the wireless radiation imaging apparatus? 2. How does the control unit optimize wireless communication in the imaging system?

1. A relevant generic question not answered by the article, with a detailed answer: How does the wireless communication technology in the radiation imaging apparatus improve workflow efficiency in medical settings? The wireless communication technology in the radiation imaging apparatus streamlines the transmission of radiographic images, enabling healthcare professionals to access and analyze patient data quickly. This efficiency can lead to faster diagnoses and treatment decisions, ultimately improving patient care outcomes.

2. Another relevant generic question, with a detailed answer: What are the potential security implications of wireless communication in radiation imaging systems? Wireless communication in radiation imaging systems may raise concerns about data security and privacy. Implementing encryption protocols and secure network configurations can mitigate these risks and ensure the confidentiality of sensitive medical information. Regular security audits and updates are essential to safeguard against potential cyber threats.


Original Abstract Submitted

A radiation imaging apparatus configured to perform radiation imaging includes a first communication unit configured to transmit a radiographic image with an access point included in a radiation imaging system, a second communication unit configured to perform second wireless communication for transmitting and receiving information for establishing wireless communication with a communication device included in the radiation imaging system, and a control unit configured to control wireless communications of the the first and second communication units. The control unit performs control to change a communication form of the wireless communication of at least one of the first and second communication units based on a communication state in transmission of the radiographic image through the first wireless communication.