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US20140100459A1 - Bubble-induced color doppler feedback during histotripsy - Google Patents

Bubble-induced color doppler feedback during histotripsy
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Publication number
US20140100459A1
US20140100459A1US14/046,024US201314046024AUS2014100459A1US 20140100459 A1US20140100459 A1US 20140100459A1US 201314046024 AUS201314046024 AUS 201314046024AUS 2014100459 A1US2014100459 A1US 2014100459A1
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United States
Prior art keywords
ultrasound
doppler
tissue
histotripsy
pulses
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US14/046,024
Inventor
Zhen Xu
Ryan M. MILLER
Adam Maxwell
Charles A. Cain
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University of Michigan System
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University of Michigan System
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Publication date
Application filed by University of Michigan SystemfiledCriticalUniversity of Michigan System
Priority to PCT/US2013/063520priorityCriticalpatent/WO2014055906A1/en
Priority to US14/046,024prioritypatent/US20140100459A1/en
Assigned to NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENTreassignmentNATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENTCONFIRMATORY LICENSE (SEE DOCUMENT FOR DETAILS).Assignors: UNIVERSITY OF MICHIGAN
Assigned to THE REGENTS OF THE UNIVERSITY OF MICHIGANreassignmentTHE REGENTS OF THE UNIVERSITY OF MICHIGANASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: MAXWELL, ADAM, CAIN, CHARLES A., MILLER, Ryan M., XU, ZHEN
Publication of US20140100459A1publicationCriticalpatent/US20140100459A1/en
Priority to US15/713,441prioritypatent/US11058399B2/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A Histotripsy therapy system is provided that can include any number of features. In some embodiments, the system includes a high voltage power supply, a pulse generator electrically coupled to at least one signal switching amplifier, at least one matching network electrically coupled to the signal switching amplifier(s), and an ultrasound transducer having at least one transducer element. The Histotripsy therapy system can further include an ultrasound Doppler imaging system. The Doppler imaging system and the Histotripsy therapy system can be synchronized to enable color Doppler acquisition of the fractionation of tissue during Histotripsy therapy. Methods of use are also described.

Description

Claims (27)

What is claimed is:
1. An ultrasound system configured to monitor bubble-induced color Doppler during Histotripsy treatment comprises:
a ultrasound therapy transducer configured to transmit Histotripsy pulses into a treatment region including tissue, the Histotripsy pulses having a pulse length less than 50 μsec, a peak negative pressure greater than 10 MPa, and a duty cycle less than 5%;
an ultrasound Doppler imaging system configured to transmit ultrasound imaging pulses along the propagation direction of the Histotripsy pulses and generate color Doppler imaging of the treatment region from the transmitted ultrasound imaging pulses; and
a control system configured to synchronize transmission of the ultrasound imaging pulses with transmission of the Histotripsy pulses to monitor Histotripsy tissue fractionation in real-time with the Doppler imaging.
2. The ultrasound system ofclaim 1 wherein the control system is configured to set specific Doppler parameters to follow the tissue displacement using color Doppler.
3. The ultrasound system ofclaim 2 wherein the specific Doppler parameters are selected from the group consisting of a time delay between a Doppler pulse packet and the Histotripsy pulses, a pulse repetition frequency of the Doppler pulse packet, and a number of frames in the Doppler pulse packet.
4. The ultrasound system ofclaim 1 wherein the ultrasound therapy transducer includes a hole configured to house an ultrasound imaging transducer of the ultrasound Doppler imaging system so as to align the ultrasound imaging transducer along a propagation path of the Histotripsy pulses.
5. The ultrasound system ofclaim 1 wherein the control system is configured to synchronize transmission of the ultrasound imaging pulses with transmission of the Histotripsy pulses by sending a trigger signal from the control system to the ultrasound Doppler imaging system during the transmission of each Histotrispy pulse plus a pre-determined time delay.
6. The ultrasound system ofclaim 1 wherein a pulse repetition frequency (PRF) and a number of frames of Doppler imaging pulse packet are set by the ultrasound Doppler imaging system so color Doppler flow velocity increases as a degree of tissue fractionation generated by the Histotripsy pulses increases.
7. The ultrasound system ofclaim 1 wherein an expansion of a temporal profile of a color Doppler velocity increases as a degree of tissue fractionation generated by the Histotripsy pulses increases.
8. The ultrasound system ofclaim 1 wherein a rapid expansion of a temporal profile of a color Doppler velocity corresponds to microscopic cellular damage, while a slow expansion of the temporal profile of the color Doppler velocity corresponds to macroscopic tissue structural damage generated by the Histotripsy pulses.
9. The ultrasound system ofclaim 1 wherein a saturation or decrease of expansion of a temporal profile of a color Doppler velocity indicates complete homogenization and liquefaction of the tissue.
10. The ultrasound system ofclaim 1 wherein a PRF and number of frames of color Doppler pulse packet is controlled by the ultrasound Doppler imaging system such that a direction of a color Doppler flow changes from towards an imaging transducer to away from the imaging transducer when the tissue is sufficiently fractionated by the Histotripsy pulses.
11. The ultrasound system ofclaim 1 wherein a wall filter value can be set by the ultrasound Doppler imaging system such that a color Doppler flow map matches the treatment tissue region when it has been fractionated by the Histotripsy pulses.
12. The ultrasound system ofclaim 1, wherein 2D or 3D images of the tissue can be reconstructed by scanning a focus of the ultrasound therapy transducer and collecting a color Doppler map at each position of the focus.
13. The ultrasound system ofclaim 1 wherein the Doppler imaging can be configured to monitor vessel function and cardiac function during the transmission of Histotripsy pulses.
14. The ultrasound system ofclaim 1 wherein the ultrasound Doppler imaging system can display different colors to distinguish tissue motion from blood flow.
15. A method of monitoring Doppler-based feedback during Histotrispy treatment comprising the steps of:
transmitting Histotripsy pulses into tissue having a pulse length less than 50 μsec, a peak negative pressure greater than 10 MPa, and a duty cycle less than 5% with an ultrasound therapy transducer;
obtaining color Doppler acquisition of the tissue during transmission of the Histotripsy pulses with an ultrasound imaging system; and
synchronizing the color Doppler acquisition with the transmission of Histotripsy pulses with a control system.
16. The method ofclaim 15 further comprising setting specific Doppler parameters to follow tissue displacement using color Doppler acquisition.
17. The method ofclaim 15 further comprising obtaining color Doppler acquisition along a propagation line of the Histotripsy pulses to measure tissue displacement of the tissue.
18. The method ofclaim 15 wherein the synchronizing step comprises sending a trigger signal to the ultrasound imaging system from the control system during the transmission of each Histotrispy pulse plus a pre-determined time delay.
19. The method ofclaim 15 further comprising setting a PRF and number of frames for color Doppler acquisition such that a color Doppler flow velocity increases with an increasing degree of tissue fractionation generated by the Histotripsy pulses.
20. The method ofclaim 15 further comprising setting a PRF and number of frames for color Doppler acquisition such that a direction of a color Doppler flow changes from towards the ultrasound imaging system to away from the ultrasound imaging system when the tissue is sufficiently fractionated by the Histotripsy pulses.
21. The method ofclaim 15 further comprising setting a wall filter value such that a color Doppler flow map matches a fractionated tissue region generated by the Histotripsy pulses.
22. The method ofclaim 15 further comprising reconstructing 2D or 3D Doppler imaging of a fractionated tissue by scanning a focus of the ultrasound therapy system and collecting a color Doppler map at a position of the focus.
23. The method ofclaim 15 further comprising monitoring vessel function and cardiac function during transmission of the Histotripsy pulses.
24. The method ofclaim 15 further comprising distinguishing tissue displacement from blood flow with the color Doppler acquisition.
25. The method ofclaim 15 wherein the color Doppler acquisition can be used to monitor and indicate microscopic cellular damage versus macroscopic tissue structure homogenization.
26. The ultrasound system ofclaim 4 wherein the hole is concentrically aligned within the ultrasound therapy transducer.
27. The ultrasound system ofclaim 4 wherein the hole is not concentrically aligned within the ultrasound therapy transducer.
US14/046,0242012-10-052013-10-04Bubble-induced color doppler feedback during histotripsyAbandonedUS20140100459A1 (en)

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PCT/US2013/063520WO2014055906A1 (en)2012-10-052013-10-04Bubble-induced color doppler feedback during histotripsy
US14/046,024US20140100459A1 (en)2012-10-052013-10-04Bubble-induced color doppler feedback during histotripsy
US15/713,441US11058399B2 (en)2012-10-052017-09-22Bubble-induced color doppler feedback during histotripsy

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US201261710172P2012-10-052012-10-05
US14/046,024US20140100459A1 (en)2012-10-052013-10-04Bubble-induced color doppler feedback during histotripsy

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