IP Library Granted Patent US 10,226,237
Granted Patent B2
US 10,226,237 · App. 14/632,404 · Granted Mar 12, 2019

Ultrasonic diagnosis apparatus and ultrasonic probe

Inventors: Yasuo Miyajima (Utsunomiya, JP); Hironobu Hongou (Otawara, JP); Isao Uchiumi (Nasushiobara, JP); Nobuyuki Iwama (Nasushiobara, JP); Koichi Morikawa (Nasushiobara, JP); Takatoshi Okumura (Yaita, JP)
Assignee: Toshiba Medical Systems Corporation
A61B8/546A61B8/14A61B8/4444A61B8/461A61B8/5207A61B8/56A61B8/58
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Quick Facts
Patent No.
US 10,226,237
App. No.
14/632,404
Granted
Mar 12, 2019
Kind
B2
Abstract

An ultrasonic diagnosis apparatus includes an ultrasonic probe, an image generation unit, a display unit, and a control unit. The image generation unit generates image data from a reflected wave received from the ultrasonic probe. The display unit displays the image data. The ultrasonic probe includes a plurality of temperature sensors that measure the temperature of the ultrasonic probe and a switching circuit that is connected to the respective temperature sensors and switches connection to any one of the temperature sensors to a valid state to output data from the temperature sensors to a temperature detector. The control unit includes an instruction unit that instructs the switching circuit to switch connection to any one of the temperature sensors to a valid state at a predetermined time interval and a determination unit that determines whether a temperature measured by the temperature detector is within a set temperature range.

Claims (47)

1. An ultrasonic diagnosis apparatus, comprising:

an ultrasonic probe that transmits and receives an ultrasonic wave to and from a subject;

image generation circuitry that generates image data from a reflected wave received from the ultrasonic probe;

a display that displays the generated image data; and

control circuitry that controls transmission and reception of the ultrasonic wave by the ultrasonic probe, wherein

the ultrasonic probe includes a plurality of temperature sensors that are installed at a plurality of positions within the ultrasonic probe, and a switching circuit that is connected to the respective temperature sensors and switches a connection to any one of the temperature sensors to an on state to successively output data from the respective temperature sensors to a temperature detector that measures a temperature using output data of the temperature sensors, and

the control circuitry further includes instruction circuitry that instructs the switching circuit to switch the connection to any one of the temperature sensors to the on state at a predetermined time interval, and determination circuitry that determines whether a temperature measured by the temperature detector is within a set temperature range.

2. The ultrasonic diagnosis apparatus according to claim 1 , wherein the instruction circuitry further instructs the switching circuit to switch the connection to one of the temperature sensors to the on state at the predetermined time interval that is determined based on a rate of temperature increase.

3. The ultrasonic diagnosis apparatus according to claim 2 , wherein the rate of temperature increase is derived based on at least one of a material and a thickness of the ultrasonic probe and transmitted and received ultrasonic energy.

4. The ultrasonic diagnosis apparatus according to claim 1 , wherein

the ultrasonic probe further includes a reference sensor that outputs data for the temperature detector to detect whether a connection of the temperature detector and the control circuitry is normal,

the switching circuit is further connected to the reference sensor and switches the connection to any one of the temperature sensors and the reference sensor to the on state to successively output output data of the respective sensors to the temperature detector,

the instruction circuitry further instructs the switching circuit to switch the connection to any one of the temperature sensors and the reference sensor to the on state at the predetermined time interval, and

when the connection to the reference sensor is in the on state and the connection of the temperature detector and the control circuitry is normal, the determination circuitry permits the instruction circuitry to switch the connection to any one of the temperature sensors to the on state.

5. The ultrasonic diagnosis apparatus according to claim 2 , wherein

the ultrasonic probe further includes a reference sensor that outputs data for the temperature detector to detect whether a connection of the temperature detector and the control circuitry is normal,

the switching circuit is further connected to the reference sensor and switches the connection to any one of the temperature sensors and the reference sensor to the on state to successively output output data of the respective sensors to the temperature detector,

the instruction circuitry further instructs the switching circuit to switch the connection to any one of the temperature sensors and the reference sensor to the on state at the predetermined time interval, and

when the connection to the reference sensor is in the on state and the connection of the temperature detector and the control circuitry is normal, the determination circuitry permits the instruction circuitry to switch the connection to any one of the temperature sensors to the on state.

6. The ultrasonic diagnosis apparatus according to claim 3 , wherein

the ultrasonic probe further includes a reference sensor that outputs data for the temperature detector to detect whether a connection of the temperature detector and the control circuitry is normal,

the switching circuit is further connected to the reference sensor and switches the connection to any one of the temperature sensors and the reference sensor to the on state to successively output output data of the respective sensors to the temperature detector,

the instruction circuitry instructs the switching circuit to switch the connection to any one of the temperature sensors and the reference sensor to the on state at the predetermined time interval, and

when the connection to the reference sensor is in the on state and the connection of the temperature detector and the control circuitry is normal, the determination circuitry permits the instruction circuitry to switch the connection to any one of the temperature sensors to the on state.

7. The ultrasonic diagnosis apparatus according to claim 1 , wherein when a temperature measured by the temperature detector is out of the set temperature range, the determination circuitry stops transmission and reception of the ultrasonic wave.

8. The ultrasonic diagnosis apparatus according to claim 1 , wherein when a temperature measured by the temperature detector is within the set temperature range and a difference between the temperature and a previously measured temperature is equal to or larger than a predetermined threshold, the determination circuitry stops transmission and reception of the ultrasonic wave.

9. The ultrasonic diagnosis apparatus according to claim 1 , wherein when a temperature measured by the temperature detector is within the set temperature range and a temperature continuously increases for a predetermined period, the determination circuitry stops transmission and reception of the ultrasonic wave.

10. The ultrasonic diagnosis apparatus according to claim 4 , wherein

when it is determined by the determination circuitry that a temperature measured by the temperature sensor whose connection is in the on state is out of the set temperature range, the instruction circuitry instructs the switching circuit to switch the connection to the reference sensor to the on state, and

when the connection to the reference sensor is in the on state and the connection of the temperature detector and the control circuitry is normal, the determination circuitry stops transmission and reception of the ultrasonic wave.

11. The ultrasonic diagnosis apparatus according to claim 4 , wherein

when it is determined by the determination circuitry that a temperature measured by the temperature detector is within the set temperature range and a difference between the temperature and a previously measured temperature is equal to or larger than a predetermined threshold, the instruction circuitry instructs the switching circuit to switch the connection to the reference sensor to the on state, and

when the connection to the reference sensor is in the on state and the connection of the temperature detector and the control circuitry is normal, the determination circuitry stops transmission and reception of the ultrasonic wave.

12. The ultrasonic diagnosis apparatus according to claim 4 , wherein

when it is determined by the determination circuitry that a temperature measured by the temperature detector is within the set temperature range and a temperature continuously increases for a predetermined period, the instruction circuitry instructs the switching circuit to switch the connection to the reference sensor to the on state, and

when the connection to the reference sensor is in the state and the connection of the temperature detector and the control circuitry is normal, the determination circuitry stops transmission and reception of the ultrasonic wave.

13. The ultrasonic diagnosis apparatus according to claim 1 , wherein when a temperature measured by the temperature detector is out of the set temperature range, the determination circuitry informs a user that the temperature of the ultrasonic probe is out of the set temperature range.

14. The ultrasonic diagnosis apparatus according to claim 1 , wherein when a temperature measured by the temperature detector is out of the set temperature range, the determination circuitry stops use of the ultrasonic probe.

15. The ultrasonic diagnosis apparatus according to claim 1 , further comprising changing circuitry that, when the temperature measured by the temperature detector is within the set temperature range, reduces power consumption of the ultrasonic diagnosis apparatus more than power consumption at a time when a temperature measured by the temperature detector is out of the set temperature range.

16. The ultrasonic diagnosis apparatus according to claim 15 , wherein

after a process of reducing power consumption is performed by the changing circuitry, when connection to the temperature sensor is in the on state and a temperature measured by the temperature sensor is within the set temperature range, the determination circuitry determines that diagnosis by the ultrasonic diagnosis apparatus can be performed, and

when it is determined by the determination circuitry that diagnosis by the ultrasonic diagnosis apparatus can be performed, the changing circuitry changes the reduced power consumption to power consumption before the reduction.

17. The ultrasonic diagnosis apparatus according to claim 1 , wherein one ends of signal lines of the temperature sensors are connected to the switching circuit and other ends of the signal lines of the temperature sensors are commonly connected to a ground.

18. The ultrasonic diagnosis apparatus according to claim 1 , wherein

the temperature sensors are constituted by a plurality of first temperature sensors that are installed at a plurality of positions of an acoustic module included in the ultrasonic probe, and

at least one second temperature sensor that is installed in an electronic circuit included in the ultrasonic probe.

19. The ultrasonic diagnosis apparatus according to claim 1 , wherein the temperature sensor is a thermistor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2016
From: KABUSHIKI KAISHA TOSHIBA
To: TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 039133/0915 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2015
From: MIYAJIMA, YASUO; HONGOU, HIRONOBU; UCHIUMI, ISAO; IWAMA, NOBUYUKI; MORIKAWA, KOICHI; OKUMURA, TAKATOSHI
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 035042/0322 →
Priority Claims (2)
JP 2012-231884 · Oct 19, 2012 · national
JP 2013-217765 · Oct 18, 2013 · national
Continuity (2)
Continuation PCTJP2013078382 · Oct 18, 2013
Related Publication 20150164483A1 · Jun 18, 2015