Ultrasound probes and wireless ultrasound probes

By detachably connecting the ultrasound probe to a wireless unit for power and data transmission, the size, cost, and complexity of imaging ultrasound probes are reduced, improving portability and usability.

JP7680894B2Active Publication Date: 2025-05-21UEDA JAPAN RADIO
View PDF 9 Cites 0 Cited by

Patent Information

Application Number
JP2021107826
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2021-06-11
Filing Date
2021-06-29
Publication Date
2025-05-21
Estimated Expiration
2041-06-29

AI Technical Summary

Technical Problem

Conventional imaging ultrasound probes are large due to the need for large-capacity batteries and expensive due to integrated signal processing and power supply circuits, increasing the cost of maintaining multiple types.

Method used

The ultrasound probe is configured to be detachably connected to a wireless unit via a cable, which supplies power and transmits data, eliminating the need for onboard batteries and complex circuits, allowing for a simpler and more cost-effective design.

Benefits of technology

This configuration reduces the size and weight of the ultrasound probe, lowers production costs, and enhances portability and usability by separating power and processing components, reducing the physical and mental burden on patients.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007680894000001
    Figure 0007680894000001
  • Figure 0007680894000002
    Figure 0007680894000002
  • Figure 0007680894000003
    Figure 0007680894000003
Patent Text Reader

Abstract

To downsize an image processing ultrasonic probe or to simplify the configuration of the image processing ultrasonic probe.SOLUTION: An image processing ultrasonic probe 12 includes an ultrasonic vibrator 24 and a probe control unit 18. The probe control unit 18 generates a transmission signal for the ultrasonic vibrator 24 and executes processing for a reception signal based on an ultrasonic wave received at the ultrasonic vibrator 24. A radio unit 14 is wire-connected to the image processing ultrasonic probe 12 in a removable manner. The radio unit 14 acquires an image data signal from the probe control unit 18 and transmits the image data signal to an image display device wirelessly.SELECTED DRAWING: Figure 2
Need to check novelty before this filing date? Find Prior Art

Description

[Technical field]

[0001] The present invention relates to ultrasound probes and wireless ultrasound probes, and in particular to techniques for transmitting signals generated by ultrasound probes. [Background technology]

[0002] Ultrasound diagnostic systems are widely used. Ultrasound diagnostic systems generally include an ultrasound probe and a main unit. The ultrasound probe transmits ultrasound to a subject and receives the ultrasound reflected by the subject. The main unit generates ultrasound image data of the subject based on the received signal acquired from the ultrasound probe and displays an image based on the ultrasound image data.

[0003] In recent years, an ultrasound diagnostic system has been developed in which an image processing ultrasound probe is configured by integrating a function for generating ultrasound image data in an ultrasound probe, and an ultrasound image is displayed on an image display device provided separately from the image processing ultrasound probe. The image processing ultrasound probe generates ultrasound image data based on the received ultrasound and wirelessly transmits it to the image display device. The image display device displays an image based on the received ultrasound image data. For example, a smartphone, a tablet, a personal computer, or the like is used as the image display device.

[0004] The following Patent Document 1 describes an ultrasound system equipped with a wireless ultrasound probe. In this ultrasound system, the wireless ultrasound probe generates ultrasound image scan line data by transmitting and receiving ultrasound, and wirelessly transmits the data to a processor dongle. The processor dongle receives the image line data signal and performs image processing of the received image line data signal to generate an ultrasound image for display.

[0005] Patent Document 2 describes an ultrasonic diagnostic system including an ultrasonic probe device, a signal processing device, and an image display device. The ultrasonic probe device wirelessly transmits a signal obtained by transmitting and receiving ultrasonic waves to the signal processing device. The signal processing device generates an image data signal including ultrasonic image data based on the signal transmitted from the ultrasonic probe device, and wirelessly transmits the image data signal to the image display device. The image display device displays an image based on the image data signal. [Prior art documents] [Patent documents]

[0006] [Patent Document 1] JP 2018-519964 A [Patent Document 2] Patent Publication No. 2021-65584 Summary of the Invention [Problem to be solved by the invention]

[0007] The imaging ultrasound probe is equipped with a battery, and operates on the power output by the battery. Conventional imaging ultrasound probes consume a lot of power, and in order to ensure a certain amount of diagnostic time, it was necessary to install a large-capacity battery. This sometimes resulted in the imaging ultrasound probe becoming large.

[0008] In addition, the image processing ultrasonic probe is equipped with a signal processing circuit, a wireless circuit, and a power supply circuit that supplies power from a battery to these circuits in addition to multiple ultrasonic transducers. Therefore, the image processing ultrasonic probe is more expensive than a normal ultrasonic probe connected to a main device by a cable. When multiple types of image processing ultrasonic probes (e.g., linear type, convex type, micro-convex type, sector type, etc.) according to the ultrasonic scanning method are prepared in advance, the cost of maintaining the ultrasonic diagnostic system increases. Therefore, there is a demand for the development of an image processing ultrasonic probe with a simple and inexpensive configuration.

[0009] An object of the present invention is to miniaturize an imaging ultrasound probe or to simplify the configuration of an imaging ultrasound probe. [Means for solving the problem]

[0010] The ultrasonic probe according to the present invention includes an ultrasonic transducer, and a probe control unit that generates a transmission signal for the ultrasonic transducer, processes a reception signal based on an ultrasonic wave received by the ultrasonic transducer, and generates an image data signal based on the reception signal, The ultrasonic probe is connected to at least a wireless unit having a battery for supplying power to the probe control unit, or an image display device in a detachable manner by wire. When the wireless unit is connected to the ultrasonic probe by a cable, the wireless unit supplies power from the battery to the probe control unit, and Acquiring the image data signal from the probe control unit, and wirelessly transmitting the image data signal to an image display device; When the image display device is connected to the ultrasonic probe by wire, the image display device is connected to the probe control unit by wire. Supplying power At the same time, the image data signal is acquired from the probe control unit. It is characterized by:

[0013] Preferably, the wireless unit is wired to the ultrasound probe via a cable, the cable including a serial data communication line for transmitting the image data signals to the wireless unit.

[0014] Preferably, the wireless unit is wired to the ultrasound probe via a cable, the cable including a power supply line for supplying power to at least the probe control unit.

[0015] Preferably, the cable is a USB cable.

[0017] A wireless ultrasonic probe according to the present invention preferably includes the ultrasonic probe and the wireless unit. Effect of the Invention

[0018] According to the present invention, it is possible to reduce the size of an image processing ultrasonic probe, and to simplify the configuration of the image processing ultrasonic probe. [Brief description of the drawings]

[0019] [Figure 1]FIG. 1 is a diagram showing a configuration of an ultrasound diagnostic system. [Diagram 2] FIG. 1 is a diagram showing a configuration of a wireless ultrasound probe. [Diagram 3] FIG. 1 is a diagram showing a configuration of a wireless ultrasound probe. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0020] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS An embodiment of the present invention will be described with reference to the drawings. The same items shown in multiple drawings are designated by the same reference numerals and the description thereof will be omitted.

[0021] 1 shows the configuration of an ultrasound diagnostic system 100 according to an embodiment of the present invention. The ultrasound diagnostic system 100 includes an image processing ultrasound probe 12 (hereinafter referred to as the image processing probe 12), a wireless unit 14, and an image display device 16. The image processing probe 12 is an ultrasound probe in which functions for generating ultrasound image data are integrated. When ultrasound diagnosis is performed, the image processing probe 12 is supported so that the transmitting / receiving surface of the image processing probe 12 abuts against the subject.

[0022] The image processing probe 12 and the wireless unit 14 constitute a wireless ultrasound probe. The image processing probe 12 transmits ultrasound to a subject and receives ultrasound reflected by the subject. The image processing probe 12 generates a reception signal based on the received ultrasound, and generates an image data signal including information of an ultrasound image based on the reception signal. The image processing probe 12 is connected to the wireless unit 14 by a cable, and outputs the image data signal to the wireless unit 14. The wireless unit 14 wirelessly transmits the image data signal to the image display device 16. The image display device 16 may be a smartphone, a tablet, a personal computer, or the like. The image display device 16 receives the image data signal wirelessly transmitted from the wireless unit 14, and displays an ultrasound image on a display based on the image data signal.

[0023] FIG. 2 shows the configuration of the wireless ultrasonic probe 102. The wireless ultrasonic probe 102 includes an image processing probe 12 and a wireless unit 14 that are detachably connected by wire. The image processing probe 12 includes a transmission unit 20, a transducer array 22, a reception unit 26, a probe control unit 18, a probe-side power supply circuit 32, and a serial communication unit 30a. The probe-side power supply circuit 32 is connected to a battery 50 included in the wireless unit 14 via a power supply line 54. The probe-side power supply circuit 32 supplies the power supply power supplied from the wireless unit 14 to the transmission unit 20, the reception unit 26, the probe control unit 18, and the serial communication unit 30a. If any of the other components included in the image processing probe 12 require power supply, the probe-side power supply circuit 32 may supply the power supply power to the component. The power supply line 54 may be detachable from at least one of the probe-side power supply circuit 32 and the battery 50.

[0024] The probe control unit 18 may include a processor that executes processes according to a program. The probe control unit 18 stores the program itself or loads the program from an external memory and executes the program.

[0025] The transducer array 22 includes a plurality of ultrasonic transducers 24 arranged along the transmission / reception surface. The plurality of ultrasonic transducers 24 may be arranged in two orthogonal directions. The probe control unit 18 generates a transmission signal and outputs it to the transmission unit 20. The transmission unit 20 outputs a transmission signal with an adjusted delay time to each ultrasonic transducer 24 included in the transducer array 22. That is, the transmission unit 20 adjusts the delay time for each transmission signal output to each ultrasonic transducer 24. Each ultrasonic transducer 24 converts the transmission signal output from the transmission unit 20 into an ultrasonic wave and transmits it toward the subject. By adjusting the delay time of the transmission signal for each ultrasonic transducer 24, an ultrasonic beam is formed from the transducer array 22 toward a specific direction within the subject. Also, by adjusting the delay time, an ultrasonic wave that is approximated to a plane wave may be transmitted from the transducer array 22.

[0026] Each ultrasonic transducer 24 included in the transducer array 22 receives ultrasonic waves reflected by the subject, converts the received ultrasonic waves into electrical signals, and outputs the electrical signals to the receiving unit 26. The receiving unit 26 generates a received signal by phasing and adding the electrical signals output from each ultrasonic transducer 24. Here, phasing and adding refers to adjusting the delay time of each electrical signal and adding them together so that multiple electrical signals based on ultrasonic waves arriving from a specific direction are reinforced. When the transmitted ultrasonic waves form a beam, the delay time of each electrical signal may be adjusted so that electrical signals based on ultrasonic waves arriving from the direction of the beam are reinforced.

[0027] The receiving unit 26 outputs the received signal obtained by the phasing addition to the probe control unit 18. The probe control unit 18 performs image processing and the like on the received signal to generate ultrasound image data, generates an image data signal including information on the ultrasound image, and outputs the image data signal to the serial communication unit 30a. Here, the image data signal does not have to be the final ultrasound image data, and may be any signal including information for displaying an ultrasound image.

[0028] Signal transmission between the probe control unit 18 and the serial communication unit 30a may be in the form of parallel data or serial data. Parallel data is a data format in which multiple bits of digital data are transmitted over multiple signal transmission lines. Serial data is a data format in which multiple bits of digital data are arranged on the time axis, and the digital data is transmitted over one signal transmission line or a number of signal transmission lines fewer than the number of bits of the digital data.

[0029] One end of a serial data communication line 42 is connected to the serial communication unit 30a. The other end of the serial data communication line 42 is connected to a serial communication unit 30b included in the wireless unit 14. The serial data communication line 42 may be detachable from at least one of the serial communication units 30a and 30b. The serial communication unit 30a transmits image data signals to the wireless unit 14 in the form of serial data.

[0030] The wireless unit 14 includes a serial communication unit 30b, a wireless control unit 44, a wireless unit 46, an antenna 48, a battery 50, and a wireless-side power supply circuit 52. The battery 50 may be a disposable battery, or may be a battery (secondary battery) that can be repeatedly charged and discharged. The battery 50 supplies power to the image processing probe 12 via a power supply line 54. The battery 50 also supplies power to the wireless-side power supply circuit 52. The wireless-side power supply circuit 52 supplies power to the wireless control unit 44, the wireless unit 46, and the serial communication unit 30b. When the battery 50 is a secondary battery, the wireless unit 14 may include a charging circuit for charging the battery 50 from an external power supply device. The charging circuit may be a circuit connected to an external power supply device via a USB cable (Universal Serial Bus), or may be a circuit to which power is supplied from an external power supply device via non-contact power transmission.

[0031] The serial communication unit 30b receives image data signals transmitted from the image processing probe 12 and outputs the image data signals to the wireless control unit 44. Signal transmission between the serial communication unit 30b and the wireless control unit 44 may be performed in the form of serial data or parallel data. The wireless control unit 44 may include a processor that executes processing according to a program. The wireless control unit 44 stores the program itself or reads the program from an external memory and executes the program. The wireless control unit 44 outputs the image data signals to the wireless unit 46.

[0032] The wireless unit 46 performs wireless communication with the image display device 16 (FIG. 1) via the antenna 48. That is, the wireless unit 46 wirelessly transmits image data signals. The image display device 16 receives the image data signals wirelessly transmitted from the wireless unit 46, and displays an ultrasound image of the inside of the subject on a display based on the image data signals.

[0033] The wireless unit 46 may receive a control signal wirelessly transmitted from the image display device 16 and output it to the wireless control unit 44. The wireless control unit 44 outputs the control signal output from the wireless unit 46 to the serial communication unit 30b. The serial communication unit 30b transmits the control signal to the serial communication unit 30a via the serial data communication line 42, and the serial communication unit 30a outputs the control signal to the probe control unit 18. The probe control unit 18 executes an operation in accordance with the control signal.

[0034] 3 shows a wireless ultrasonic probe 104 according to an application embodiment of the present invention. The wireless ultrasonic probe 104 detachably connects the image processing probe 12 and the wireless unit 14 with a USB cable 62. The image processing probe 12 includes a USB connector 60a. The serial communication unit 30a and the probe side power supply circuit 32 are connected to the USB connector 60a.

[0035] The wireless unit 14 includes a USB connector 60b. The serial communication unit 30b and the battery 50 are connected to the USB connector 60b. The USB cable 62 includes a serial data communication line 42 and a power supply line 54. USB plugs are connected to both ends of the USB cable 62, with the USB plug at one end connected to the USB connector 60a and the USB plug at the other end connected to the USB connector 60b.

[0036] The serial communication unit 30a transmits image data signals to the serial communication unit 30b via the USB connector 60a, the USB cable 62, and the USB connector 60b. The serial communication unit 30b transmits control signals to the serial communication unit 30a via the USB connector 60b, the USB cable 62, and the USB connector 60a. The battery 50 transmits power to the probe-side power supply circuit 32 via the USB connector 60b, the USB cable 62, and the USB connector 60a.

[0037] Thus, in the configuration shown in FIG. 3, USB plugs are connected to both ends of the USB cable 62, one end of the USB cable 62 is detachable from the image processing probe 12, and the other end is also detachable from the wireless unit 14. The USB cable 62 may be a cable having one end fixedly connected to the image processing probe 12 and the other end provided with a USB plug that is detachable from the USB connector 60b in the wireless unit 14. Alternatively, the USB cable 62 may be a cable having one end fixedly connected to the wireless unit 14 and the other end provided with a USB plug that is detachable from the USB connector 60a in the image processing probe 12. Also, one of the USB connectors 60a and 60b may be replaced with a USB plug, and the USB connector (60a or 60b) and the USB plug may be directly connected. In this case, a configuration may be used in which the housing of the image processing probe 12 and the housing of the wireless unit 14 are detachable, and the USB connector and the USB plug are connected when the housing of the image processing probe 12 is attached to the housing of the wireless unit 14.

[0038] As described above, the image processing probe 12 according to each embodiment includes an ultrasonic transducer 24 and a probe control unit 18. The probe control unit 18 generates a transmission signal for the ultrasonic transducer 24, executes processing on a reception signal based on ultrasonic waves received by the ultrasonic transducer 24, and generates an image data signal based on the reception signal. The wireless unit 14 is detachably connected to the image processing probe 12 by wire. The wireless unit 14 acquires an image data signal from the probe control unit 18 and wirelessly transmits the image data signal to the image display device 16. The cable for the wired connection may be a USB cable. The wireless unit 14 supplies power to at least the probe control unit 18. The wireless unit 14 includes a battery 50 that supplies power to at least the probe control unit 18.

[0039] According to such a configuration, the housing of the image processing probe 12 does not need to include the battery 50, the wireless control unit 44, and the wireless unit 46. This simplifies the configuration of the image processing probe 12, or reduces the size and weight of the image processing probe 12. In addition, since heat is prevented from being transferred from the battery 50 to the subject, the physical or mental burden on the patient as the subject is reduced. Furthermore, the image processing probe 12 does not need to be provided with an over-discharge and over-charge protection circuit for preventing the battery 50 from heating up.

[0040] The wireless unit 14 is configured in a housing separate from the housing of the image processing probe 12. This allows the wireless unit 14 to be stored in a pocket of the clothes of a user such as a doctor or nurse, improving portability and operability. For example, a user may store the wireless unit 14 in a pocket, place the image processing probe 12 against a patient while hanging a cable connecting the wireless unit 14 and the image processing probe 12 around their neck, and refer to the display on the image display device 16. This prevents the image processing probe 12 from falling. The image display device 16 may be fixedly installed on a desk or bedside, or may be carried by the user.

[0041] Furthermore, the image processing probe 12 can be made smaller and lighter, reducing the price of the image processing probe 12. This can reduce the cost of preparing multiple types of image processing probes 12 according to ultrasonic scanning methods.

[0042] In the above description, the ultrasound diagnostic system 100 has been described in which the wireless unit 14 is detachably connected to the image processing probe 12 by wire. The image processing probe 12 may be configured to be connected to the image display device 16 by wire when the wireless unit 14 is not connected by wire. In this case, the probe control unit 18 generates an image data signal suitable for processing by the image display device 16, and transmits the image data to the image display device 16 by wire via the serial communication unit 30a and the serial data communication line 42. In addition, a power supply line 54 may be connected to the image display device 16, and power may be supplied from the image display device 16 to the probe-side power supply circuit 32.

[0043] 3, a USB plug at one end of a USB cable 62 may be connected to a USB connector 60a provided on the image processing probe 12, and a USB plug at the other end of the USB cable 62 may be connected to the image display device 16. In this case, the image processing probe 12 transmits image data signals to the image display device 16 via the USB cable 62. In addition, the image display device 16 supplies power to the image processing probe 12 via the USB cable 62.

[0044] In this way, when the wireless unit 14 is not wired to the image processing probe 12, the image display device 16 may be detachably wired to the image processing probe 12. The image display device 16 acquires image data signals and supplies power to at least the probe control unit 18 via a cable. [Explanation of symbols]

[0045] 12 image processing ultrasound probe, 14 wireless unit, 16 image display device, 18 probe control unit, 20 transmission unit, 22 transducer array, 24 ultrasound transducer, 26 reception unit, 30a, 30b serial communication unit, 32 probe side power supply circuit, 42 serial data communication line, 44 wireless control unit, 46 wireless unit, 48 antenna, 50 battery, 52 wireless side power supply circuit, 54 power supply line, 60a, 60b USB connector, 62 USB cable, 100 ultrasound diagnostic system, 102, 104 wireless ultrasound probe.

Claims

1. 1. An ultrasound probe comprising: An ultrasonic transducer; a probe control unit that generates a transmission signal for the ultrasonic transducer, processes a reception signal based on the ultrasonic waves received by the ultrasonic transducer, and generates an image data signal based on the reception signal, a wireless unit including a battery for supplying power to at least the probe control unit, or an image display device can be detachably connected to the ultrasonic probe by wire; When the wireless unit is wired to the ultrasound probe via a cable, the wireless unit supplies power from the battery to the probe control unit, acquires the image data signal from the probe control unit, and wirelessly transmits the image data signal to an image display device. An ultrasonic probe characterized in that, when the image display device is connected to the ultrasonic probe via a wired connection, the image display device supplies power to the probe control unit via a wired connection and acquires the image data signals from the probe control unit.

2. 2. The ultrasonic probe according to claim 1, The ultrasonic probe according to claim 1, wherein the cable includes a serial data communication line for transmitting the image data signal to the wireless unit.

3. 3. The ultrasonic probe according to claim 1, The ultrasonic probe according to claim 1, wherein the cable includes a power supply line for supplying power to at least the probe control unit.

4. The ultrasonic probe according to any one of claims 1 to 3, The ultrasonic probe according to claim 1, wherein the cable is a USB cable.

5. An ultrasonic probe according to any one of claims 1 to 4, The wireless unit; A wireless ultrasound probe comprising:

Citation Information

Patent Citations

  • Wireless ultrasonic probe cable

    JP2010528698A

  • Ultrasonic probe and ultrasonograph

    JP2011072467A

  • Wireless ultrasonic diagnostic system

    JP2012090712A

  • Probe for ultrasonic diagnostic apparatus

    JP2016105745A

  • Ultrasound system with processor dongle

    JP2018519964A