IP Library Granted Patent US 12661052
Granted Patent B2
US 12661052 · App. 17/767,445 · Granted Jun 23, 2026

Method and apparatus for determining position of transitional lead, and computer device

Inventors: Jiexin Hong (Guangdong, CN); Jijie Zou (Guangdong, CN); Xiaolin Yu (Guangdong, CN); Huijie Su (Guangdong, CN)
Assignee: SHENZHEN BIOCARE BIO-MEDICAL EQUIPMENT CO., LTD.
A61B5/352
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Quick Facts
Patent No.
US 12661052
App. No.
17/767,445
Granted
Jun 23, 2026
Kind
B2
Abstract

Embodiments of the present invention disclose a method and an apparatus for determining a position of a transitional lead, and a computer device. The method includes: obtaining an R-wave amplitude corresponding to each of chest leads, where the chest leads include a V1 lead, a V2 lead, a V3 lead, a V4 lead, a VS lead, and a V6 lead; obtaining an S-wave amplitude corresponding to each chest lead; and determining a position of a transitional lead according to a sum of the R-wave amplitudes and the S-wave amplitudes corresponding to all the chest leads. In the foregoing manner, accuracy of determining the position of the transitional lead can be improved to a certain extent.

Claims (47)

1 . A method for determining a position of a transitional lead, comprising:

obtaining an R-wave amplitude corresponding to each of chest leads, wherein the chest leads comprise a V1 lead, a V2 lead, a V3 lead, a V4 lead, a V5 lead, and a V6 lead;

obtaining an S-wave amplitude corresponding to each chest lead; and

determining the position of the transitional lead according to a sum of the R-wave amplitudes and the S-wave amplitudes corresponding to all the chest leads,

wherein the determining the position of the transitional lead according to the sum of the R-wave amplitudes and the S-wave amplitudes corresponding to all the chest leads comprises:

obtaining a first amplitude sum by means of calculation according to an R-wave amplitude and an S-wave amplitude that are corresponding to the V1 lead;

obtaining a second amplitude sum by means of calculation according to an R-wave amplitude and an S-wave amplitude that are corresponding to the V2 lead;

obtaining a third amplitude sum by means of calculation according to an R-wave amplitude and an S-wave amplitude that are corresponding to the V3 lead;

obtaining a fourth amplitude sum by means of calculation according to an R-wave amplitude and an S-wave amplitude that are corresponding to the V4 lead;

obtaining a fifth amplitude sum by means of calculation according to an R-wave amplitude and an S-wave amplitude that are corresponding to the V5 lead;

obtaining a sixth amplitude sum by means of calculation according to an R-wave amplitude and an S-wave amplitude that are corresponding to the V6 lead; and

determining the position of the transitional lead according to the first amplitude sum, the second amplitude sum, the third amplitude sum, the fourth amplitude sum, the fifth amplitude sum, and the sixth amplitude sum.

2 . The method according to claim 1 , wherein the determining the position of the transitional lead according to the first amplitude sum, the second amplitude sum, the third amplitude sum, the fourth amplitude sum, the fifth amplitude sum, and the sixth amplitude sum comprises:

if the first amplitude sum, the second amplitude sum, the third amplitude sum, the fourth amplitude sum, the fifth amplitude sum, and the sixth amplitude sum comprise an amplitude sum whose value is 0, determining a target lead corresponding to the amplitude sum whose value is 0; and

determining a position corresponding to the target lead as the position of the transitional lead.

3 . The method according to claim 1 , wherein the determining the position of the transitional lead according to the first amplitude sum, the second amplitude sum, the third amplitude sum, the fourth amplitude sum, the fifth amplitude sum, and the sixth amplitude sum comprises:

if the first amplitude sum, the second amplitude sum, the third amplitude sum, the fourth amplitude sum, the fifth amplitude sum, and the sixth amplitude sum do not comprise an amplitude sum whose value is 0, determining the position of the transitional lead according to the first amplitude sum and the sixth amplitude sum.

4 . The method according to claim 3 , wherein the determining the position of the transitional lead according to the first amplitude sum and the sixth amplitude sum comprises:

obtaining a first angle corresponding to the V1 lead and a second angle corresponding to the V6 lead;

comparing a value of the first amplitude sum with 0 to obtain a first positive or negative result, and comparing a value of the sixth amplitude sum with 0 to obtain a second positive or negative result; and

determining the position of the transitional lead according to the first angle, the second angle, the first amplitude sum, the sixth amplitude sum, the first positive or negative result, and the second positive or negative result.

5 . The method according to claim 4 , wherein the determining the position of the transitional lead according to the first angle, the second angle, the first amplitude sum, the sixth amplitude sum, the first positive or negative result, and the second positive or negative result comprises one of the followings:

if the first positive or negative result is that the first amplitude sum is less than 0, and the second positive or negative result is that the sixth amplitude sum is greater than 0, determining the position of the transitional lead according to the first angle, the second angle, the first amplitude sum, and the sixth amplitude; if the first positive or negative result is that the first amplitude sum is greater than 0, and the second positive or negative result is that the sixth amplitude sum is less than 0, obtaining a third angle corresponding to the phase-inverted V1 lead, wherein the third angle is determined according to the first angle, obtaining a fourth angle corresponding to the phase-inverted V6 lead, wherein the fourth angle is determined according to the second angle, and determining the position of the transitional lead according to the third angle, the fourth angle, the first amplitude sum, and the sixth amplitude sum;

if the first positive or negative result is that the first amplitude sum is less than 0, and the second positive or negative result is that the sixth amplitude sum is less than 0, obtaining a third angle corresponding to the phase-inverted V1 lead, and determining the position of the transitional lead according to the third angle, the second angle, the first amplitude sum, and the sixth amplitude sum; and

if the first positive or negative result is that the first amplitude sum is greater than 0, and the second positive or negative result is that the sixth amplitude sum is greater than 0, obtaining a fourth angle corresponding to the phase-inverted V6 lead, and determining the position of the transitional lead according to the first angle, the fourth angle, the first amplitude sum, and the sixth amplitude sum.

6 . An apparatus for determining a position of a transitional lead, comprising:

a first obtaining module, configured to obtain an R-wave amplitude corresponding to each of chest leads, wherein the chest leads comprise a V1 lead, a V2 lead, a V3 lead, a V4 lead, a V5 lead, and a V6 lead;

a second obtaining module, configured to obtain an S-wave amplitude corresponding to each chest lead; and

a position determining module, configured to determine the position of the transitional lead according to a sum of the R-wave amplitudes and the S-wave amplitudes corresponding to all the chest leads,

wherein the position determining module comprises:

a first amplitude module, configured to obtain a first amplitude sum by means of calculation according to an R-wave amplitude and an S-wave amplitude that are corresponding to the V1 lead;

a second amplitude module, configured to obtain a second amplitude sum by means of calculation according to an R-wave amplitude and an S-wave amplitude that are corresponding to the V2 lead;

a third amplitude module, configured to obtain a third amplitude sum by means of calculation according to an R-wave amplitude and an S-wave amplitude that are corresponding to the V3 lead;

a fourth amplitude module, configured to obtain a fourth amplitude sum by means of calculation according to an R-wave amplitude and an S-wave amplitude that are corresponding to the V4 lead;

a fifth amplitude module, configured to obtain a fifth amplitude sum by means of calculation according to an R-wave amplitude and an S-wave amplitude that are corresponding to the V5 lead;

a sixth amplitude module, configured to obtain a sixth amplitude sum by means of calculation according to an R-wave amplitude and an S-wave amplitude that are corresponding to the V6 lead; and

an amplitude synthesis module, configured to determine the position of the transitional lead according to the first amplitude sum, the second amplitude sum, the third amplitude sum, the fourth amplitude sum, the fifth amplitude sum, and the sixth amplitude sum.

7 . A computer device, comprising a memory, a processor, and a computer program stored in the memory and capable of running on the processor, wherein the processor implements the steps of the method for determining a position of a transitional lead according to claim 1 when executing the computer program.

8 . A computer device, comprising a memory, a processor, and a computer program stored in the memory and capable of running on the processor, wherein the processor implements the steps of the method for determining a position of a transitional lead according to claim 2 when executing the computer program.

9 . A computer device, comprising a memory, a processor, and a computer program stored in the memory and capable of running on the processor, wherein the processor implements the steps of the method for determining a position of a transitional lead according to claim 3 when executing the computer program.

10 . A computer device, comprising a memory, a processor, and a computer program stored in the memory and capable of running on the processor, wherein the processor implements the steps of the method for determining a position of a transitional lead according to claim 4 when executing the computer program.

11 . A computer device, comprising a memory, a processor, and a computer program stored in the memory and capable of running on the processor, wherein the processor implements the steps of the method for determining a position of a transitional lead according to claim 5 when executing the computer program.

12 . A computer readable storage medium, wherein the computer readable storage medium stores a computer program, and the computer program is executed by a processor to implement the steps of the method for determining a position of a transitional lead according to claim 1 .

13 . A computer readable storage medium, wherein the computer readable storage medium stores a computer program, and the computer program is executed by a processor to implement the steps of the method for determining a position of a transitional lead according to claim 2 .

14 . A computer readable storage medium, wherein the computer readable storage medium stores a computer program, and the computer program is executed by a processor to implement the steps of the method for determining a position of a transitional lead according to claim 3 .

15 . A computer readable storage medium, wherein the computer readable storage medium stores a computer program, and the computer program is executed by a processor to implement the steps of the method for determining a position of a transitional lead according to claim 4 .

16 . A computer readable storage medium, wherein the computer readable storage medium stores a computer program, and the computer program is executed by a processor to implement the steps of the method for determining a position of a transitional lead according to claim 5 .