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Active rise and fall time compensation algorithm

A time deviation, X-ray technology, applied in the field of radiological diagnosis, can solve the problems of difficult to predict inaccuracy, time-consuming, compensation cannot take into account the change of X-ray generator, etc., to improve accuracy, high accuracy, and meet international regulatory requirements. desired effect

Pending Publication Date: 2021-11-16
KONINKLJIJKE PHILIPS NV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, compensation cannot take into account changes in the x-ray generator, e.g. due to use, and often time-consuming recalibration of the equipment is required to compensate for such changes
[0007] Additionally, such inaccuracies are more difficult to predict and may require compensation for settings of the x-ray system outside of the optimum setting values ​​to achieve improved accuracy

Method used

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  • Active rise and fall time compensation algorithm
  • Active rise and fall time compensation algorithm
  • Active rise and fall time compensation algorithm

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Embodiment Construction

[0057] The present invention will be described with respect to particular embodiments and with reference to certain drawings but the invention is not limited thereto but only by the claims. The dimensions and relative dimensions do not correspond to a practical simplification of the practice of the invention.

[0058] Furthermore, the terms first, second, etc. in the description and claims are used to distinguish similar elements and not necessarily to describe an order temporally, spatially, hierarchically or in any other way. It is to be understood that the terms so used are interchangeable under appropriate circumstances and that the embodiments of the invention described herein are capable of operation in other sequences than described or illustrated herein.

[0059] In addition, terms such as upper and lower in the specification and claims are used for descriptive purposes only, and are not used to describe relative positions. It is to be understood that the terms so use...

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PUM

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Abstract

A method is provided for compensating the settings of a pulsed X-ray system. A current, voltage and intended pulse width settings are selected for the X-ray pulses to be provided. Then, the selected pulse width setting for the set voltage and tube current is compensated, in accordance with stored normalized value or values at a predetermined temperature, taking into account the environmental temperature of the electric circuitry of the X-ray tank. The normalized values are obtained in a calibration step from the actual or effective pulse width and the difference thereof with the intended width, normalizing said value with the temperature of the circuitry providing pulsed voltage and current to the source.

Description

technical field [0001] The invention relates to the field of radiodiagnosis. More particularly, the present invention relates to methods, software products and systems for generating X-ray pulses, activating and calibrating X-ray systems, and related calibrated X-ray systems. Background technique [0002] In an x-ray machine, several different x-ray patterns can be generated. Certain x-ray patterns are more advantageous than others depending on the application, surgeon, type of surgery, and / or components used in the x-ray machine. One possible X-ray pattern is a pulsed pattern, in which the X-rays are generated with a predetermined duty cycle. [0003] According to international regulations, the applied X-ray parameters should be reported to the user within a defined accuracy. In particular, for many applications, including medical and surgical applications, the expected average tube current should be accurate within 20% of the current actually applied to the tube for any...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H05G1/04H05G1/22H05G1/32
CPCH05G1/04H05G1/22H05G1/32H05G1/265H05G1/36
Inventor J·范布鲁塞尔
Owner KONINKLJIJKE PHILIPS NV
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