1. Erickson S, Kruse D, Ferrara K. A hand-held, high frequency ultrasound scanner. In IEEE; 2001 [cité 21 oct 2016]. p. 1465‑8. Disponible sur: http://ieeexplore.ieee.org/document/991996/
- Lei Sun, Richard WD, Cannata JM, Feng CC, Johnson JA, Yen JT, et al. A High-Frame Rate High-Frequency Ultrasonic System for Cardiac Imaging in Mice. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control. août 2007;54(8):1648‑55.
- Richard WD, Zar DM, Solek R. A low-cost B-mode USB ultrasound probe. Ultrason Imaging. janv 2008;30(1):21‑8.
- Bezanson AB, Adamson R, Brown JA. A low-cost high frame-rate piezoelectric scanning mechanism for high-frequency ultrasound systems. In IEEE; 2011 [cité 21 oct 2016]. p. 458‑61. Disponible sur: http://ieeexplore.ieee.org/document/6293658/
- Brown JA, Leadbetter J, Leung M, Bezanson A, Adamson R. A low cost open source high frame-rate high-frequency imaging system. In IEEE; 2013 [cité 21 oct 2016]. p. 549‑52. Disponible sur: http://ieeexplore.ieee.org/document/6725177/
- Carotenuto R, Caliano G, Caronti A, Savoia A, Pappalardo M. Very fast scanning probe for ophthalmic echography using an ultrasound motor. In IEEE; 2004 [cité 21 oct 2016]. p. 1310‑3. Disponible sur: http://ieeexplore.ieee.org/document/1418032/
- Lee Y, Kang J, Sunmi Yeo, Lee J, Kim G-D, Yoo Y, et al. A new smart probe system for a tablet PC-based point-of-care ultrasound imaging system: Feasibility study. In IEEE; 2014 [cité 21 oct 2016]. p. 1611‑4. Disponible sur: http://ieeexplore.ieee.org/document/6931891/
- Ahn S, Kang J, Kim P, Lee G, Jeong E, Jung W, et al. Smartphone-based portable ultrasound imaging system: Prototype implementation and evaluation. In IEEE; 2015 [cité 21 oct 2016]. p. 1‑4. Disponible sur: http://ieeexplore.ieee.org/document/7329474/
- Ranganathan K, Santy MK, Fuller MI, Zhou S, Blalock TN, Hossack JA, et al. A prototype low-cost handheld ultrasound imaging system. In: Walker WF, Emelianov SY, éditeurs. 2004 [cité 21 oct 2016]. p. 24. Disponible sur: http://proceedings.spiedigitallibrary.org/proceeding.aspx?doi=10.1117/12.537724
- Leveques P. Architecture d’un processeur dédié aux traitements de signaux ultrasoniques en temps réel en vue d’une intégration sur puce. [Internet]. [École Polytechnique de Montréal]; 2011. Disponible sur: https://publications.polymtl.ca/509/
- Chan V, Perlas A. Basics of Ultrasound Imaging. In: Narouze SN, éditeur. Atlas of Ultrasound-Guided Procedures in Interventional Pain Management [Internet]. New York, NY: Springer New York; 2011 [cité 21 oct 2016]. p. 13‑9. Disponible sur: http://link.springer.com/10.1007/978-1-4419-1681-5_2
- Baran JM, Webster JG. Design of low-cost portable ultrasound systems: Review. In IEEE; 2009 [cité 21 oct 2016]. p. 792‑5. Disponible sur: http://ieeexplore.ieee.org/document/5332754/
- Saijo Y, Nitta S, Kobayashi K, Arai H, Nemoto Y. Development of an ultra-portable echo device connected to USB port. Ultrasonics. avr 2004;42(1-9):699‑703.
- Sharma JK. Development of a wide band front end echo sounder receiver circuit. 2015; Disponible sur: http://urn.nb.no/URN:NBN:no-51835
- Carotenuto R, Caliano G, Caronti A, Savoia A, Pappalardo M. Fast scanning probe for ophthalmic echography using an ultrasound motor. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control. nov 2005;52(11):2039‑46.
- Bharath R, Kumar P, Dusa C, Akkala V, Puli S, Ponduri H, et al. FPGA-Based Portable Ultrasound Scanning System with Automatic Kidney Detection. Journal of Imaging. 4 déc 2015;1(1):193‑219.
- Dusa C, Rajalakshmi P, Puli S, Desai UB, Merchant SN. Low complex, programmable FPGA based 8-channel ultrasound transmitter for medical imaging researches. In IEEE; 2014 [cité 21 oct 2016]. p. 252‑6. Disponible sur: http://ieeexplore.ieee.org/document/7001850/
- Raj JR, Rahman SMK, Anand S. Microcontroller USB interfacing with MATLAB GUI for low cost medical ultrasound scanners. Engineering Science and Technology, an International Journal. juin 2016;19(2):964‑9.
- Hendy AM, Hassan M, Eldeeb R, Kholy D, Youssef A-B, Kadah YM. PC-based modular digital ultrasound imaging system. In IEEE; 2009 [cité 21 oct 2016]. p. 1330‑3. Disponible sur: http://ieeexplore.ieee.org/document/5441904/
- Chiang AM, Chang PP, Broadstone SR. PC-based ultrasound imaging system in a probe. In IEEE; 2000 [cité 21 oct 2016]. p. 1255‑60. Disponible sur: http://ieeexplore.ieee.org/document/921551/
- Kyu Cheol Kim, Min Jae Kim, Hyun Suk Joo, Wooyoul Lee, Changhan Yoon, Tai-Kyong Song, et al. Smartphone-based portable ultrasound imaging system: A primary result. In IEEE; 2013 [cité 21 oct 2016]. p. 2061‑3. Disponible sur: http://ieeexplore.ieee.org/document/6725301/