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You searched for +publisher:"Delft University of Technology" +contributor:("de Jong, N."). Showing records 1 – 9 of 9 total matches.

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Delft University of Technology

1. Radhakrishnan, A. (author). Application of ultrasound to remove thrombi from the Left ventricular assist device.

Degree: 2015, Delft University of Technology

Due to limited number of donor hearts and stringent eligibility criteria for heart transplant the Left ventricular assist device (LVAD) has emerged as a relevant… (more)

Subjects/Keywords: Ultrasound; Sonothrombolysis; Left ventricular assist device

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APA (6th Edition):

Radhakrishnan, A. (. (2015). Application of ultrasound to remove thrombi from the Left ventricular assist device. (Masters Thesis). Delft University of Technology. Retrieved from http://resolver.tudelft.nl/uuid:24058bdf-d649-48a7-93c7-bb63918d0887

Chicago Manual of Style (16th Edition):

Radhakrishnan, A (author). “Application of ultrasound to remove thrombi from the Left ventricular assist device.” 2015. Masters Thesis, Delft University of Technology. Accessed October 20, 2020. http://resolver.tudelft.nl/uuid:24058bdf-d649-48a7-93c7-bb63918d0887.

MLA Handbook (7th Edition):

Radhakrishnan, A (author). “Application of ultrasound to remove thrombi from the Left ventricular assist device.” 2015. Web. 20 Oct 2020.

Vancouver:

Radhakrishnan A(. Application of ultrasound to remove thrombi from the Left ventricular assist device. [Internet] [Masters thesis]. Delft University of Technology; 2015. [cited 2020 Oct 20]. Available from: http://resolver.tudelft.nl/uuid:24058bdf-d649-48a7-93c7-bb63918d0887.

Council of Science Editors:

Radhakrishnan A(. Application of ultrasound to remove thrombi from the Left ventricular assist device. [Masters Thesis]. Delft University of Technology; 2015. Available from: http://resolver.tudelft.nl/uuid:24058bdf-d649-48a7-93c7-bb63918d0887


Delft University of Technology

2. Lopez Angarita, G.A. Closed-Loop Surface Related Multiple Estimation.

Degree: 2016, Delft University of Technology

 Surface-related multiple elimination (SRME) is one of the most commonly used methods for suppressing surface multiples. However, in order to obtain an accurate surface multiple… (more)

Subjects/Keywords: Closed Loop; Surface Multiples; Multiples; Multiple Scattering; Multiple Estimation; SRME; EPSI; Delphi multiples; CL-SRME

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APA (6th Edition):

Lopez Angarita, G. A. (2016). Closed-Loop Surface Related Multiple Estimation. (Doctoral Dissertation). Delft University of Technology. Retrieved from http://resolver.tudelft.nl/uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; urn:NBN:nl:ui:24-uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; 99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; 10.4233/uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; urn:isbn:978-94-6233-465-6 ; urn:NBN:nl:ui:24-uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; http://resolver.tudelft.nl/uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18

Chicago Manual of Style (16th Edition):

Lopez Angarita, G A. “Closed-Loop Surface Related Multiple Estimation.” 2016. Doctoral Dissertation, Delft University of Technology. Accessed October 20, 2020. http://resolver.tudelft.nl/uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; urn:NBN:nl:ui:24-uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; 99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; 10.4233/uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; urn:isbn:978-94-6233-465-6 ; urn:NBN:nl:ui:24-uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; http://resolver.tudelft.nl/uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18.

MLA Handbook (7th Edition):

Lopez Angarita, G A. “Closed-Loop Surface Related Multiple Estimation.” 2016. Web. 20 Oct 2020.

Vancouver:

Lopez Angarita GA. Closed-Loop Surface Related Multiple Estimation. [Internet] [Doctoral dissertation]. Delft University of Technology; 2016. [cited 2020 Oct 20]. Available from: http://resolver.tudelft.nl/uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; urn:NBN:nl:ui:24-uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; 99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; 10.4233/uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; urn:isbn:978-94-6233-465-6 ; urn:NBN:nl:ui:24-uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; http://resolver.tudelft.nl/uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18.

Council of Science Editors:

Lopez Angarita GA. Closed-Loop Surface Related Multiple Estimation. [Doctoral Dissertation]. Delft University of Technology; 2016. Available from: http://resolver.tudelft.nl/uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; urn:NBN:nl:ui:24-uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; 99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; 10.4233/uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; urn:isbn:978-94-6233-465-6 ; urn:NBN:nl:ui:24-uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18 ; http://resolver.tudelft.nl/uuid:99e0af9f-067e-4e67-8c81-d5beca0aeb18


Delft University of Technology

3. Yu, Z. Low-Power Receive-Electronics for a Miniature 3D Ultrasound Probe.

Degree: 2012, Delft University of Technology

 This thesis describes the design of a front-end application-specific integrated circuit (ASIC), which will be put into the tip of a miniature ultrasound probe for… (more)

Subjects/Keywords: Low-Power Receive-Electronics; Miniature 3D Ultrasound Probe

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APA (6th Edition):

Yu, Z. (2012). Low-Power Receive-Electronics for a Miniature 3D Ultrasound Probe. (Doctoral Dissertation). Delft University of Technology. Retrieved from http://resolver.tudelft.nl/uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9 ; urn:NBN:nl:ui:24-uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9 ; urn:NBN:nl:ui:24-uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9 ; http://resolver.tudelft.nl/uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9

Chicago Manual of Style (16th Edition):

Yu, Z. “Low-Power Receive-Electronics for a Miniature 3D Ultrasound Probe.” 2012. Doctoral Dissertation, Delft University of Technology. Accessed October 20, 2020. http://resolver.tudelft.nl/uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9 ; urn:NBN:nl:ui:24-uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9 ; urn:NBN:nl:ui:24-uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9 ; http://resolver.tudelft.nl/uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9.

MLA Handbook (7th Edition):

Yu, Z. “Low-Power Receive-Electronics for a Miniature 3D Ultrasound Probe.” 2012. Web. 20 Oct 2020.

Vancouver:

Yu Z. Low-Power Receive-Electronics for a Miniature 3D Ultrasound Probe. [Internet] [Doctoral dissertation]. Delft University of Technology; 2012. [cited 2020 Oct 20]. Available from: http://resolver.tudelft.nl/uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9 ; urn:NBN:nl:ui:24-uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9 ; urn:NBN:nl:ui:24-uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9 ; http://resolver.tudelft.nl/uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9.

Council of Science Editors:

Yu Z. Low-Power Receive-Electronics for a Miniature 3D Ultrasound Probe. [Doctoral Dissertation]. Delft University of Technology; 2012. Available from: http://resolver.tudelft.nl/uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9 ; urn:NBN:nl:ui:24-uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9 ; urn:NBN:nl:ui:24-uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9 ; http://resolver.tudelft.nl/uuid:f116361b-8ff7-4995-a8e5-e5354f2902b9


Delft University of Technology

4. Qu, S. Simultaneous joint migration inversion as a high-resolution time-lapse imaging method for reservoir monitoring.

Degree: 2020, Delft University of Technology

 During the past decade, time-lapse seismic technology has been widely applied in hydrocarbon reservoir management. It is a very powerful method to obtain information on… (more)

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APA (6th Edition):

Qu, S. (2020). Simultaneous joint migration inversion as a high-resolution time-lapse imaging method for reservoir monitoring. (Doctoral Dissertation). Delft University of Technology. Retrieved from http://resolver.tudelft.nl/uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; urn:NBN:nl:ui:24-uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; f22c0da3-9d85-4c3a-9c07-949e242869d6 ; 10.4233/uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; urn:isbn:978-94-6384-115-3 ; urn:NBN:nl:ui:24-uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; http://resolver.tudelft.nl/uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6

Chicago Manual of Style (16th Edition):

Qu, S. “Simultaneous joint migration inversion as a high-resolution time-lapse imaging method for reservoir monitoring.” 2020. Doctoral Dissertation, Delft University of Technology. Accessed October 20, 2020. http://resolver.tudelft.nl/uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; urn:NBN:nl:ui:24-uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; f22c0da3-9d85-4c3a-9c07-949e242869d6 ; 10.4233/uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; urn:isbn:978-94-6384-115-3 ; urn:NBN:nl:ui:24-uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; http://resolver.tudelft.nl/uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6.

MLA Handbook (7th Edition):

Qu, S. “Simultaneous joint migration inversion as a high-resolution time-lapse imaging method for reservoir monitoring.” 2020. Web. 20 Oct 2020.

Vancouver:

Qu S. Simultaneous joint migration inversion as a high-resolution time-lapse imaging method for reservoir monitoring. [Internet] [Doctoral dissertation]. Delft University of Technology; 2020. [cited 2020 Oct 20]. Available from: http://resolver.tudelft.nl/uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; urn:NBN:nl:ui:24-uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; f22c0da3-9d85-4c3a-9c07-949e242869d6 ; 10.4233/uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; urn:isbn:978-94-6384-115-3 ; urn:NBN:nl:ui:24-uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; http://resolver.tudelft.nl/uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6.

Council of Science Editors:

Qu S. Simultaneous joint migration inversion as a high-resolution time-lapse imaging method for reservoir monitoring. [Doctoral Dissertation]. Delft University of Technology; 2020. Available from: http://resolver.tudelft.nl/uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; urn:NBN:nl:ui:24-uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; f22c0da3-9d85-4c3a-9c07-949e242869d6 ; 10.4233/uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; urn:isbn:978-94-6384-115-3 ; urn:NBN:nl:ui:24-uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6 ; http://resolver.tudelft.nl/uuid:f22c0da3-9d85-4c3a-9c07-949e242869d6


Delft University of Technology

5. Masaya, S. Seismic imaging based on Joint Migration Inversion: Handling missing low frequencies and horizontally propagating waves.

Degree: 2018, Delft University of Technology

 Seismic imaging is a significant technology to provide the image of the subsurface in several fields such as hydrocarbon exploration/production and civil engineering. A fundamental… (more)

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APA (6th Edition):

Masaya, S. (2018). Seismic imaging based on Joint Migration Inversion: Handling missing low frequencies and horizontally propagating waves. (Doctoral Dissertation). Delft University of Technology. Retrieved from http://resolver.tudelft.nl/uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; urn:NBN:nl:ui:24-uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; 4b348428-50dc-4594-90f0-fc1bf90661a2 ; 10.4233/uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; urn:NBN:nl:ui:24-uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; http://resolver.tudelft.nl/uuid:4b348428-50dc-4594-90f0-fc1bf90661a2

Chicago Manual of Style (16th Edition):

Masaya, S. “Seismic imaging based on Joint Migration Inversion: Handling missing low frequencies and horizontally propagating waves.” 2018. Doctoral Dissertation, Delft University of Technology. Accessed October 20, 2020. http://resolver.tudelft.nl/uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; urn:NBN:nl:ui:24-uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; 4b348428-50dc-4594-90f0-fc1bf90661a2 ; 10.4233/uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; urn:NBN:nl:ui:24-uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; http://resolver.tudelft.nl/uuid:4b348428-50dc-4594-90f0-fc1bf90661a2.

MLA Handbook (7th Edition):

Masaya, S. “Seismic imaging based on Joint Migration Inversion: Handling missing low frequencies and horizontally propagating waves.” 2018. Web. 20 Oct 2020.

Vancouver:

Masaya S. Seismic imaging based on Joint Migration Inversion: Handling missing low frequencies and horizontally propagating waves. [Internet] [Doctoral dissertation]. Delft University of Technology; 2018. [cited 2020 Oct 20]. Available from: http://resolver.tudelft.nl/uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; urn:NBN:nl:ui:24-uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; 4b348428-50dc-4594-90f0-fc1bf90661a2 ; 10.4233/uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; urn:NBN:nl:ui:24-uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; http://resolver.tudelft.nl/uuid:4b348428-50dc-4594-90f0-fc1bf90661a2.

Council of Science Editors:

Masaya S. Seismic imaging based on Joint Migration Inversion: Handling missing low frequencies and horizontally propagating waves. [Doctoral Dissertation]. Delft University of Technology; 2018. Available from: http://resolver.tudelft.nl/uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; urn:NBN:nl:ui:24-uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; 4b348428-50dc-4594-90f0-fc1bf90661a2 ; 10.4233/uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; urn:NBN:nl:ui:24-uuid:4b348428-50dc-4594-90f0-fc1bf90661a2 ; http://resolver.tudelft.nl/uuid:4b348428-50dc-4594-90f0-fc1bf90661a2


Delft University of Technology

6. Shabanimotlagh, M. Ultrasound Matrix Transducers for High Frame Rate 3D Medical Imaging.

Degree: 2018, Delft University of Technology

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APA (6th Edition):

Shabanimotlagh, M. (2018). Ultrasound Matrix Transducers for High Frame Rate 3D Medical Imaging. (Doctoral Dissertation). Delft University of Technology. Retrieved from http://resolver.tudelft.nl/uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; urn:NBN:nl:ui:24-uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; 7ce26659-91fa-45a0-bfdf-7223375fed69 ; 10.4233/uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; urn:isbn:978-94-6375-077-6 ; urn:NBN:nl:ui:24-uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; http://resolver.tudelft.nl/uuid:7ce26659-91fa-45a0-bfdf-7223375fed69

Chicago Manual of Style (16th Edition):

Shabanimotlagh, M. “Ultrasound Matrix Transducers for High Frame Rate 3D Medical Imaging.” 2018. Doctoral Dissertation, Delft University of Technology. Accessed October 20, 2020. http://resolver.tudelft.nl/uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; urn:NBN:nl:ui:24-uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; 7ce26659-91fa-45a0-bfdf-7223375fed69 ; 10.4233/uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; urn:isbn:978-94-6375-077-6 ; urn:NBN:nl:ui:24-uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; http://resolver.tudelft.nl/uuid:7ce26659-91fa-45a0-bfdf-7223375fed69.

MLA Handbook (7th Edition):

Shabanimotlagh, M. “Ultrasound Matrix Transducers for High Frame Rate 3D Medical Imaging.” 2018. Web. 20 Oct 2020.

Vancouver:

Shabanimotlagh M. Ultrasound Matrix Transducers for High Frame Rate 3D Medical Imaging. [Internet] [Doctoral dissertation]. Delft University of Technology; 2018. [cited 2020 Oct 20]. Available from: http://resolver.tudelft.nl/uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; urn:NBN:nl:ui:24-uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; 7ce26659-91fa-45a0-bfdf-7223375fed69 ; 10.4233/uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; urn:isbn:978-94-6375-077-6 ; urn:NBN:nl:ui:24-uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; http://resolver.tudelft.nl/uuid:7ce26659-91fa-45a0-bfdf-7223375fed69.

Council of Science Editors:

Shabanimotlagh M. Ultrasound Matrix Transducers for High Frame Rate 3D Medical Imaging. [Doctoral Dissertation]. Delft University of Technology; 2018. Available from: http://resolver.tudelft.nl/uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; urn:NBN:nl:ui:24-uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; 7ce26659-91fa-45a0-bfdf-7223375fed69 ; 10.4233/uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; urn:isbn:978-94-6375-077-6 ; urn:NBN:nl:ui:24-uuid:7ce26659-91fa-45a0-bfdf-7223375fed69 ; http://resolver.tudelft.nl/uuid:7ce26659-91fa-45a0-bfdf-7223375fed69


Delft University of Technology

7. Chen, C. Front-End ASICs for 3-D Ultrasound: From Beamforming to Digitization.

Degree: 2018, Delft University of Technology

 This thesis describes the analysis, design and evaluation of front-end application-specific integrated circuits (ASICs) for 3-D medical ultrasound imaging, with the focus on the receive… (more)

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APA (6th Edition):

Chen, C. (2018). Front-End ASICs for 3-D Ultrasound: From Beamforming to Digitization. (Doctoral Dissertation). Delft University of Technology. Retrieved from http://resolver.tudelft.nl/uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; urn:NBN:nl:ui:24-uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; 10.4233/uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; urn:isbn:978-94-6299-940-4 ; urn:NBN:nl:ui:24-uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; http://resolver.tudelft.nl/uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70

Chicago Manual of Style (16th Edition):

Chen, C. “Front-End ASICs for 3-D Ultrasound: From Beamforming to Digitization.” 2018. Doctoral Dissertation, Delft University of Technology. Accessed October 20, 2020. http://resolver.tudelft.nl/uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; urn:NBN:nl:ui:24-uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; 10.4233/uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; urn:isbn:978-94-6299-940-4 ; urn:NBN:nl:ui:24-uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; http://resolver.tudelft.nl/uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70.

MLA Handbook (7th Edition):

Chen, C. “Front-End ASICs for 3-D Ultrasound: From Beamforming to Digitization.” 2018. Web. 20 Oct 2020.

Vancouver:

Chen C. Front-End ASICs for 3-D Ultrasound: From Beamforming to Digitization. [Internet] [Doctoral dissertation]. Delft University of Technology; 2018. [cited 2020 Oct 20]. Available from: http://resolver.tudelft.nl/uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; urn:NBN:nl:ui:24-uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; 10.4233/uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; urn:isbn:978-94-6299-940-4 ; urn:NBN:nl:ui:24-uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; http://resolver.tudelft.nl/uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70.

Council of Science Editors:

Chen C. Front-End ASICs for 3-D Ultrasound: From Beamforming to Digitization. [Doctoral Dissertation]. Delft University of Technology; 2018. Available from: http://resolver.tudelft.nl/uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; urn:NBN:nl:ui:24-uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; 10.4233/uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; urn:isbn:978-94-6299-940-4 ; urn:NBN:nl:ui:24-uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70 ; http://resolver.tudelft.nl/uuid:a5002bb0-4701-4e33-aef6-3c78d0c9fd70


Delft University of Technology

8. Leinders, S.M. Characterization of a novel Optical Micro-machined Ultrasound Transducer.

Degree: 2017, Delft University of Technology

 We design and demonstrate a prototype ultrasound sensor based on a photonic micro-ring resonator integrated on a silicon membrane, and show that it can detect… (more)

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APA (6th Edition):

Leinders, S. M. (2017). Characterization of a novel Optical Micro-machined Ultrasound Transducer. (Doctoral Dissertation). Delft University of Technology. Retrieved from http://resolver.tudelft.nl/uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; urn:NBN:nl:ui:24-uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; 474e53d4-de7a-483a-9ce8-18eb99f902fa ; 10.4233/uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; urn:isbn:978-94-028-0870-4 ; urn:NBN:nl:ui:24-uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; http://resolver.tudelft.nl/uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa

Chicago Manual of Style (16th Edition):

Leinders, S M. “Characterization of a novel Optical Micro-machined Ultrasound Transducer.” 2017. Doctoral Dissertation, Delft University of Technology. Accessed October 20, 2020. http://resolver.tudelft.nl/uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; urn:NBN:nl:ui:24-uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; 474e53d4-de7a-483a-9ce8-18eb99f902fa ; 10.4233/uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; urn:isbn:978-94-028-0870-4 ; urn:NBN:nl:ui:24-uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; http://resolver.tudelft.nl/uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa.

MLA Handbook (7th Edition):

Leinders, S M. “Characterization of a novel Optical Micro-machined Ultrasound Transducer.” 2017. Web. 20 Oct 2020.

Vancouver:

Leinders SM. Characterization of a novel Optical Micro-machined Ultrasound Transducer. [Internet] [Doctoral dissertation]. Delft University of Technology; 2017. [cited 2020 Oct 20]. Available from: http://resolver.tudelft.nl/uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; urn:NBN:nl:ui:24-uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; 474e53d4-de7a-483a-9ce8-18eb99f902fa ; 10.4233/uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; urn:isbn:978-94-028-0870-4 ; urn:NBN:nl:ui:24-uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; http://resolver.tudelft.nl/uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa.

Council of Science Editors:

Leinders SM. Characterization of a novel Optical Micro-machined Ultrasound Transducer. [Doctoral Dissertation]. Delft University of Technology; 2017. Available from: http://resolver.tudelft.nl/uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; urn:NBN:nl:ui:24-uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; 474e53d4-de7a-483a-9ce8-18eb99f902fa ; 10.4233/uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; urn:isbn:978-94-028-0870-4 ; urn:NBN:nl:ui:24-uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa ; http://resolver.tudelft.nl/uuid:474e53d4-de7a-483a-9ce8-18eb99f902fa


Delft University of Technology

9. Nathanail, K. (author). 3D Transesophageal echocardiography using a fast-rotating transducer.

Degree: Electrical Engineering, Mathematics, Computer Sci, Biomechanical Engineering (BmechE), 2008, Delft University of Technology

Echocardiography is a diagnostic modality which is widely used in cardiology, using ultrasound to image the living heart and assess its physiological function. Three-dimensional echocardiography… (more)

Subjects/Keywords: tee; fast-rotating; three-dimensional; interpolation; echocardiography

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APA · Chicago · MLA · Vancouver · CSE | Export to Zotero / EndNote / Reference Manager

APA (6th Edition):

Nathanail, K. (. (2008). 3D Transesophageal echocardiography using a fast-rotating transducer. (Masters Thesis). Delft University of Technology. Retrieved from http://resolver.tudelft.nl/uuid:1f285e6f-31c3-4173-9281-9dca204d28fe

Chicago Manual of Style (16th Edition):

Nathanail, K (author). “3D Transesophageal echocardiography using a fast-rotating transducer.” 2008. Masters Thesis, Delft University of Technology. Accessed October 20, 2020. http://resolver.tudelft.nl/uuid:1f285e6f-31c3-4173-9281-9dca204d28fe.

MLA Handbook (7th Edition):

Nathanail, K (author). “3D Transesophageal echocardiography using a fast-rotating transducer.” 2008. Web. 20 Oct 2020.

Vancouver:

Nathanail K(. 3D Transesophageal echocardiography using a fast-rotating transducer. [Internet] [Masters thesis]. Delft University of Technology; 2008. [cited 2020 Oct 20]. Available from: http://resolver.tudelft.nl/uuid:1f285e6f-31c3-4173-9281-9dca204d28fe.

Council of Science Editors:

Nathanail K(. 3D Transesophageal echocardiography using a fast-rotating transducer. [Masters Thesis]. Delft University of Technology; 2008. Available from: http://resolver.tudelft.nl/uuid:1f285e6f-31c3-4173-9281-9dca204d28fe

.