IP Library Granted Patent US 9,149,246
Granted Patent B2
US 9,149,246 · App. 13/279,031 · Granted Oct 6, 2015

Methods and systems for adaptively correcting exposure parameters during digital radiographic imaging

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Quick Facts
Patent No.
US 9,149,246
App. No.
13/279,031
Granted
Oct 6, 2015
Kind
B2
Abstract

Methods and systems for adaptively correcting exposure parameters during digital radiographic imaging are disclosed.

Claims (46)

1. A method for adaptively correcting exposure parameters during digital radiographic imaging, comprising:

acquiring a photographic position and a body type set by a user;

loading a set of default exposure parameters including a default exposure dose according to the photographic position and the body type, the default exposure parameters being based on a standard optimum Source Image Distance (SID); and

acquiring a current SID and adjusting the default exposure dose according to the current SID to obtain an adjusted exposure dose;

wherein the adjusted exposure dose is adjusted to be greater than the default exposure dose when the current SID is greater than the standard optimum SID and less than the default exposure dose when the current SID is less than the standard optimum SID.

2. The method according to claim 1 , further comprising: acquiring a current grid status and adaptively adjusting the adjusted exposure dose according to the current grid status to obtain a final exposure dose.

3. The method according to claim 2 , further comprising: sending the final exposure dose to an exposure generator for executing an exposure procedure.

4. The method of claim 2 , wherein adaptively adjusting the exposure dose according to the current grid status comprises:

determining a default grid status corresponding to the default exposure dose;

determining the current grid status;

keeping the adjusted exposure dose unchanged when the default grid status is the same as the current grid status;

making the final exposure dose 1/n times the adjusted exposure dose when the current grid status is that a grid is not being used but a default status is that a grid is being used; and

making the final exposure dose n times the adjusted exposure dose when the current grid status is that a grid is being used but the default status is that a grid is not being used, wherein n is a natural number.

5. The method of claim 4 , wherein n equals 2.

6. The method according to claim 1 , further comprising: sending the adjusted exposure dose to an exposure generator for executing an exposure procedure.

7. The method of claim 1 , wherein the SID and the exposure dose are related according to the following equation:

mAS.sub.(new)=mAS.sub.(std)*(SID.sub.(new)/SID.sub.(std)).sup.2

wherein SID.sub.(std) represents the standard optimum SID, mAs.sub.(std) represents the default exposure dose, SID.sub.(new) represents the current SID, and mAs.sub.(new) represents the adjusted exposure dose.

8. A method for adaptively correcting exposure parameters during digital radiographic imaging, comprising:

acquiring a photographic position and a body type set by a user;

loading a set of default exposure parameters including a default exposure dose according to the photographic position and the body type, wherein the default exposure parameters are based on a standard optimum Source Image Distance (SID);

acquiring a current grid status and adaptively adjusting the exposure dose according to the current grid status to obtain an adjusted exposure dose; and

acquiring a current SID and adjusting the adjusted exposure dose according to the current SID to obtain a final exposure dose;

wherein the adjusted exposure dose is increased when the current SID is greater than the standard optimum SID and decreased when the current SID is less than the standard optimum SID.

9. The method according to claim 8 , further comprising: sending the final exposure dose to an exposure generator for executing an exposure procedure.

10. The method according to claim 8 , further comprising: sending the adjusted exposure dose to an exposure generator for executing an exposure procedure.

11. The method of claim 8 , wherein adaptively adjusting the exposure dose according to the current grid status to obtain an adjusted exposure dose comprises:

determining a default grid status corresponding to the default exposure dose;

determining the grid status in a current imaging system;

keeping the default exposure dose unchanged when the default grid status is the same as the current grid status;

making the adjusted exposure dose 1/n times the default exposure dose when the current grid status is that a grid is not being used but the default status is that a grid is being used; and

making the adjusted exposure dose n times the default exposure dose when the current grid status is that a grid is being used but the default status is that a grid is not being used, wherein n is a natural number.

12. The method of claim 11 , wherein n equals 2.

13. A system for adaptively correcting exposure parameters during digital radiographic imaging, comprising:

a photographic position and body type acquisition unit configured to acquire a photographic position and a body type set by a user;

a default exposure parameter loading unit coupled to the photographic position and body type acquisition unit, configured to load a set of default exposure parameters including a default exposure dose according to the photographic position and the body type, wherein the default exposure parameters are based on a standard optimum Source Image Distance (SID);

an SID acquisition unit configured to acquire a current SID of the system;

an adaptive control unit coupled to the SID acquisition unit and the default exposure parameter loading unit configured to adjust the default exposure dose according to the current SID;

an exposure generator coupled to the adaptive control unit configured to execute an exposure procedure according to the adjusted exposure dose output from the adaptive control unit;

wherein the adjusted exposure dose is adjusted to be greater than the default exposure dose when the current SID is greater than the standard optimum SID and less than the default exposure dose when the current SID is less than the standard optimum SID.

14. The system of claim 13 , further comprising: a grid status acquisition unit coupled to the adaptive control unit, the grid status acquisition unit configured to acquire a current grid status of the system, wherein the adaptive control unit is further configured to adjust the default exposure dose or the adjusted exposure dose according to the current grid status.

15. A system for adaptively correcting exposure parameters during digital radiographic imaging, comprising:

means for acquiring a photographic position and a body type set by a user;

means for loading a set of default exposure parameters including a default exposure dose according to the photographic position and the body type, the default exposure parameters being based on a standard optimum Source Image Distance (SID); and

means for acquiring a current SID and adjusting the default exposure dose according to the current SID to obtain an adjusted exposure dose;

wherein the adjusted exposure dose is adjusted to be greater than the default exposure dose when the current SID is greater than the standard optimum SID and less than the default exposure dose when the current SID is less than the standard optimum SID.

Assignments (2)
LICENSE Recorded Jun 24, 2022
From: SHENZHEN MINDRAY BIOMEDICAL ELECTRONICS CO., LTD.
To: SHENZHEN MINDRAY ANIMAL MEDICAL TECHNOLOGY CO., LTD.
Reel/Frame 060440/0796 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2011
From: LIU, BINGQUAN; WANG, WEI
To: SHENZHEN MINDRAY BIO-MEDICAL ELECTRONICS CO., LTD
Reel/Frame 027102/0681 →