IP Library Granted Patent US 11,523,804
Granted Patent B2
US 11,523,804 · App. 16/628,252 · Granted Dec 13, 2022

Ultrasonic diagnosis device and temperature management method

Inventors: Kazuya Motoki (Tokyo, JP); Toru Watanabe (Tokyo, JP); Gen Shiina (Tokyo, JP); Kazuhiro Kobayashi (Tokyo, JP)
Assignee: FUJIFILM HEALTHCARE CORPORATION
A61B8/546A61B8/15A61B8/4444A61B8/466A61B8/54A61B8/56G01K11/26
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Quick Facts
Patent No.
US 11,523,804
App. No.
16/628,252
Granted
Dec 13, 2022
Kind
B2
Abstract

In order to estimate a temperature of a transmission-reception wavefront of a probe head, a first computing unit and a second computing unit are provided. The first computing unit estimates a temperature TA of the transmission-reception wavefront according to a basic function based on an internal temperature T 1 , an ambient temperature T 2 , power consumption Ptotal (=Pic+Ptd), and any other parameter. The basic function is a linear function. The second computing unit estimates a temperature TB of the transmission-reception wavefront according to an auxiliary function based on a previously estimated temperature Tpre, an internal temperature difference ΔT 1 , and any other, parameter. A selection unit selects any of the temperatures TA and TB depending on situations.

Claims (35)

1. An ultrasonic diagnostic apparatus comprising: a probe head including:

an ultrasonic transducer,

an electronic circuit electrically connected to the ultrasonic transducer,

an internal temperature sensor configured to detect an internal temperature, and

a protective layer having a surface being a transmission-reception wavefront;

a processor configured to estimate a temperature of the transmission-reception wavefront based on a transmission-reception condition and the internal temperature, the processor being configured to estimate a temperature of the transmission-reception wavefront based on a function group including a basic function that is a temperature estimation function for a first period and an auxiliary function that is a temperature estimation function for a second period in which the basic function is not held, wherein the second period is a temperature change period in which changing of temperature occurs faster than a temperature change in the first period, wherein (i) a first slope of temperature in a first region and a second region of the first period is substantially constant, the temperature in the first region being offset from that in the second region, and (ii) a second slope of temperature in a first region and a second region of the second period is substantially constant, the temperature in the first region being offset from that in the second region; and

an ambient temperature sensor configured to detect an ambient temperature, wherein the processor is configured to estimate the temperature of the transmission-reception wavefront further based on the ambient temperature,

wherein the basic function temperature of the transmission-reception wavefront is a linear expression that estimates the temperature of the transmission-reception wavefront based on power consumption that is based on the transmission-reception condition, the internal temperature, and the ambient temperature, wherein the linear expression is provided by

TA=α×TI+C 1+ C 2+ C 3,

wherein TA is the temperature of the basic function, a is a slope coefficient, T 1 is the internal temperature, (C1+C2+C3) defines an intercept, C1 is determined by the multiplication of the power consumption by a predetermined coefficient, and C2 is determined by the multiplication of the ambient temperature by a predetermined coefficient, wherein the auxiliary function is a recurrence formula that estimates the temperature of the transmission-reception wavefront based on a previously estimated temperature and a difference between the internal temperature detected at a present time and the previously detected internal temperature, the recurrence formula provided by

TB=Tpre+β×ΔT 1,

wherein TB is a temperature of the auxiliary function, Tpre is the previously estimated temperature, ΔT 1 is the difference between the internal temperature detected at a present time and the previously detected internal temperature, and p is a slope coefficient, wherein the processor includes a first processor configured to perform the basic function and a second processor configured to perform the auxiliary function.

2. The apparatus according to claim 1 , further comprising

a selector circuit, the selector circuit being configured to:

compute a first temperature according to the basic function and a second temperature according to the auxiliary function in a parallel manner,

select any of the first temperature or the second temperature, and

output the selected temperature as an estimated temperature.

3. The apparatus according to claim 2 ,

wherein the selector circuit is configured to select any of the first temperature or the second temperature based on the internal temperature, and on a comparison result of the first temperature with the second temperature.

4. A temperature management method comprising:

estimating a temperature of a transmission-reception wavefront being a surface of a protective layer of a probe head, the probe head having an ultrasonic transducer, an electronic circuit, and the protective layer; and

controlling transmission and reception by the estimated temperature,

wherein the estimating includes:

computing a temperature of the transmission-reception wavefront as a first temperature based on a basic function that is a temperature estimation function in a first period,

computing a temperature of the transmission-reception wavefront as a second temperature in a second period based on an auxiliary function that is a temperature estimation function for the second period, and the second period is a temperature change period in which changing in temperature occurs faster than a temperature change in the first period,

wherein (i) a first slope of temperature in a first region and a second region of the first period is substantially constant, the temperature in the first region being offset from that in the second region, and (ii) a second slope of temperature in a first region and a second region of the second period is substantially constant, the temperature in the first region being offset from that in the second region; and

selecting the first temperature or the second temperature as an estimated temperature,

wherein the basic function temperature of the transmission-reception wavefront is a linear expression that estimates the temperature of the transmission-reception wavefront based on power consumption that is based on the transmission-reception condition, an internal temperature, and an ambient temperature, wherein the linear expression is provided by

TA=α×T 1+ C 1+ C 2+ C 3,

wherein TA is the temperature of the basic function, a is a slope coefficient, T 1 is the internal temperature, (C1+C2+C3) defines an intercept, C1 is determined by the multiplication of the power consumption by a predetermined coefficient, and C2 is determined by the multiplication of the ambient temperature by a predetermined coefficient, wherein the auxiliary function is a recurrence formula that estimates the temperature of the transmission-reception wavefront based on a previously estimated temperature and a difference between the internal temperature detected at a present time and the previously detected internal temperature, the recurrence formula provided by

TB=Tpre+β×ΔT 1,

wherein TB is a temperature of the auxiliary function, Tpre is the previously estimated temperature, ΔTi is the difference between the internal temperature detected at a present time and the previously detected internal temperature, and p is a slope coefficient, wherein the basic function is performed by a first processor and the auxiliary function is performed by a second processor.

5. The ultrasonic diagnostic apparatus of claim 1 , wherein the processor is further configured to estimate the temperature of the transmission-reception wavefront based on a diagnostic mode.

6. The ultrasonic diagnostic apparatus of claim 5 , wherein the processor is further configured to estimate the power consumption based on the transmission-reception condition, the internal temperature, the ambient temperature and the diagnostic mode.

7. The ultrasonic diagnostic apparatus of claim 5 , wherein the processor is configured to communicate with a display screen to display the estimated temperature.

Assignments (4)
MERGER Recorded Jan 10, 2025
From: FUJIFILM HEALTHCARE CORPORATION
To: FUJIFILM CORPORATION
Reel/Frame 069869/0968 →
MERGER Recorded Oct 11, 2024
From: FUJIFILM HEALTHCARE CORPORATION
To: FUJIFILM CORPORATION
Reel/Frame 069170/0453 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2021
From: HITACHI, LTD.
To: FUJIFILM HEALTHCARE CORPORATION
Reel/Frame 058451/0827 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 2, 2020
From: MOTOKI, KAZUYA; WATANABE, TORU; SHIINA, GEN; KOBAYASHI, KAZUHIRO
To: HITACHI, LTD.
Reel/Frame 051405/0831 →