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Ultra-wide-angle Wireless Endoscope with a Backend-camera-controller Architecture

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Języki publikacji
EN
Abstrakty
EN
This paper presents a wireless endoscope with an ultra-wide FOV (Field of View) of 130° and HD resolution (1280x720 pixels). The proposed endoscope consists of a camera head, cable, camera controller, and wireless handle. The lens module with a 150° degrees AOV (Angle of View) is achieved using the plastic injection-molding process to reduce manufacturing costs. A serial CMOS image sensor using the MIPI (Mobile Industry Processor Interface) CSI-2 (Camera Serial Interface-2) interface physically separates the camera processor from the camera head. The camera head and the cable have a compact structure due to the BCC (Backend-Camera-Controller) architecture. The size of the camera head and the camera controller is 8x8x26 mm and 7x55 mm, respectively. The wireless handle supports a UWB (Ultra-Wide-Band) or a Wi-Fi communication to transmit video data. The UWB link supports a maximum data transfer rate of ~37 Mbps to transmit video data with a resolution of 1280x720 pixels at a frame rate of 30 fps in the MJPEG (Motion JPEG) format. Although the Wi-Fi link provides a lower data transfer rate (~8 Mbps Max.), it has the advantage of flexible interoperability with various mobile devices. The latency of the UWB link is measured to be ~0.1 sec. The Wi-Fi link has a larger latency (~0.5 sec) due to its lower data transfer rate. The proposed endoscope demonstrates the feasibility of a high-performance yet low-cost wireless endoscope using the BCC architecture. To the best of the author’s knowledge, the proposed endoscope has the largest FOV among all presently existing wireless endoscopes.
Twórcy
autor
  • SeoulTech (Seoul National University of Science & Technology), Seoul, Korea
autor
  • Haesung Optics Co., Ltd., Suwon, Korea
Bibliografia
  • [1] J. M. Edmonson, “History of the instruments for gastrointestinal endoscopy,” Gastrointestinal Endoscopy, vol. 37, no. 2, pp. S27-S56, 1991. DOI: http://dx.doi.org/10.1016/S0016-5107(91)70910-3
  • [2] S. J. Spaner and G. L. Warnock, “A Brief History of Endoscopy, Laparoscopy, and Laparoscopic Surgery,” J. Laparoendoscopic & Advanced Surgical Techniques, vol. 7, no. 6, pp. 369-373, Jan. 2009.
  • [3] A. R. Haas, A. Vachani and D. H. Sterman, “Advances in Diagnostic Bronchoscopy,” Amer. J. Respiratory and Critical Care Medicine, vol. 182, no. 5, pp. 589-597, 2010. DOI: 10.1164/rccm.201002-0186CI
  • [4] C. A. Rawlings, “Diagnostic Rigid Endoscopy: Otoscopy, Rhinoscopy, and Cystoscopy,” J. Amer. Animal Hospital Association, vol. 39, pp. 849-868, 2009.
  • [5] T. Nakamura and A. Terano, “Capsule endoscopy: past, present, and future,” J. Gastroenterology, vol. 43, no. 2, pp. 93-99, 2008.
  • [6] “The World of Industrial Endoscopy”, Karl Storz GmbH [online]. https://www.karlstorz.com/cps/rde/xbcr/karlstorz_assets/ASSETS/3433042.pdf.
  • [7] Flex-WiFi-9mm, Vividia [online]. http://www.amazon.com/Vividia-Waterproof-Inspection-Borescope-Endoscope/dp/B00DCVZQGC/ref=sr_1_3?ie=UTF8&qid=1390623081&sr=8-3&keywords=wifi+endoscope.
  • [8] DCiS1, General Tool [online]. http://www.generaltools.com/iborescope.html.
  • [9] BR200, Extech Instruments [online]. http://www.extech.com.
  • [10] MD-910, Dongguan Magenta Medical Instrument Co. [online]. http://www.dgmagenta.com.
  • [11] WF200, CrazyFire [online]. http://www.amazon.com/CrazyFire%C2%AE-WF200-Endoscope-Inspection-Flashlight/dp/B00H2JCENS.
  • [12] R. Hill, C. Madden, A. van den Hengel, A., H. Detmold and A. Dick, “Measuring Latency for Video Surveillance Systems,” Digital Image Computing: Techniques and Applications (DICTA), Dec. 2009, pp. 89-95. doi: 10.1109/DICTA.2009.23
  • [13] MIPI camera interface specifications [online]. http://mipi.org/specifications/camera-interface.
  • [14] E. Baum and P. Schwarz, “Endoscopic instrument,” U.S. Patent 8690759 B2, 2011.
  • [15] J. R. Freer, “Serial versus parallel,” in Computer Communications & Networks, Taylor & Francis: London and New York, 1996, pp. 8-9.
  • [16] D. Shim, J. Yeon, J. Yi, J. Park, S. N. Park and N. Lee, “A Wide-angle Camera Module for Disposable Endoscopy,” Optical Review, vol. 23, no. 4, pp. 596–600, Aug. 2016
  • [17] OV9728 datasheet, OmniVision Technologies Inc. [online]. http://www.ovt.com/download_document.php?type=sensor&sensorid=131.
  • [18] OV10633 datasheet, OmniVision Technologies Inc. [online]. http://www.ovt.com/download_document.php?type=sensor&sensorid=110.
  • [19] SPCA2088A, Sunplus Innovative Technology Inc. [online]. http://www.sunplusit.com/english/products/pccamera/SPCA2088A.aspx
  • [20] PM25LV512 / PM25LV010 datasheet, Programmable Microelectronics Corp. [online]. http://www.alldatasheet.com/datasheet-pdf/pdf/153937/PMC/PM25LV512-25SCE.html
  • [21] K. Siwiak and D. McKeown, Ultra-Wideband Radio Technology. Wiley, 2004.
  • [22] AL5616 (UWB Radio Card Adapter), Alereon [online]. http://www.alereon.com/products/reference-design-boards/al5616-world wide-wireless-usb-adapter.
  • [23] Wireless USB (WUSB) [online]. http://www.usb.org/developers/wusb/.
  • [24] S. Ida and D. Muto, “Biconical antenna,” US7221326 B2, 2007.
  • [25] P. S. Carter, “Short Wave Antenna,” U.S. Patent 2175252, 1939.
  • [26] O. Lodge, “Electric Telegraphy,” U.S. Patent 609154, 1898.
  • [27] D. Shim, H. Kim, M. Lee, J. Kim, J. Yi, K. Kang, J. Kang and N. Lee, “An Ultra-Wide-Angle Wireless Camera using Ultra Wide Band Communication,” Int. J. Sensor Networks, vol. 19, no. 1, pp. 37-45, 2015.
  • [28] MST-WF12M datasheet, Misumi Electronic Corp. [online]. http://www.misumi.com.tw/pdf/2013/MST_WF12m.pdf.
  • [29] TS3USB30 datasheet, Texas Instruments [online]. http://www.ti.com/product/TS3USB30.
  • [30] LT1761 datasheet, Linear Technology [online]. www.linear.com/docs/2732.
  • [31] MC74VHC1GT14 datasheet, On Semiconductor [online]. http://www.onsemi.com/pub_link/Collateral/MC74VHC1GT14-D.PDF.
  • [32] ICR16850-26H, SDI [online]. http://www.samsungsdi.co.kr/lithium-ion-battery/it-devices/power-bank.html.
  • [33] Nexus 7, Google [online]. https://store.google.com/product/nexus_7.
  • [34] VLC Media player, Video LAN [online]. http://www.videolan.org/vlc/index.ko.html.
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
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Bibliografia
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bwmeta1.element.baztech-f8681d8f-e075-467b-a843-1c8a1d621066
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