Measurement of the volume of a leg ulcer using a laser scanner

被引:11
|
作者
Marjanovic, D
Dugdale, RE
Vowden, P
Vowden, KR
机构
[1] Bradford Royal Infirm, Dept Phys Med, Bradford BD9 6RJ, W Yorkshire, England
[2] Bradford Royal Infirm, Dept Vasc Surg, Bradford BD9 6RJ, W Yorkshire, England
关键词
laser scanning; topography; leg ulcer; volume measurement;
D O I
10.1088/0967-3334/19/4/008
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Effective management of leg ulcer healing depends on accurate and reliable measurements of wound size. Current techniques usually rely on estimates of surface area or circumference which do not fully describe the healing process. A novel instrument has been developed that is capable of measuring the variations in the surface contours (topography) of a solid object. Its primary application is to measure the size of a leg ulcer by scanning a laser displacement sensor over the affected area. There is no contact with the wound and scanning takes approximately 2 minutes to perform. Volume is calculated by subtracting the measured topography from one calculated using an algorithm to reconstruct a healthy leg surface. A study was carried out where patients had their ulcers scanned during their visits to the leg ulcer clinic. Data are presented from two venous leg ulcers showing the calculated volume reducing over time.
引用
收藏
页码:535 / 543
页数:9
相关论文
共 50 条
  • [31] Application of Replicas in the Measurement of the Wear of Forging Dies with Deep Hollows Using a Laser Scanner
    Hawryluk, Marek
    Ziemba, Jacek
    Kuran, Marek
    Janik, Marta
    JOURNAL OF TESTING AND EVALUATION, 2021, 49 (03) : 1489 - 1502
  • [32] Feasibility of approximate measurement of bladder volume in children using the Lilium α-200 portable bladder scanner
    Morizawa, Yosuke
    Hori, Shunta
    Gotoh, Daisuke
    Nakai, Yasushi
    Torimoto, Kazumasa
    Fujimoto, Kiyohide
    INTERNATIONAL JOURNAL OF UROLOGY, 2024, 31 (10) : 1166 - 1167
  • [33] Aircraft heading measurement potential from an airborne laser scanner using edge extraction
    Dickman, Jeff
    de Haag, Maarten Uijt
    2007 IEEE AEROSPACE CONFERENCE, VOLS 1-9, 2007, : 1499 - 1514
  • [34] Study on Improving Accuracy for Edge Measurement Using 3D Laser Scanner
    Hiekata, Kazuo
    Yamato, Hiroyuki
    Sun, Jingyu
    Matsubara, Hiroya
    Toki, Naoji
    PRODUCT LIFECYCLE MANAGEMENT FOR A GLOBAL MARKET (PLM 2014), 2014, 442 : 427 - 434
  • [35] Three-dimensional Measurement Using Laser Pattern And Its Application to Underwater Scanner
    Nishida, Yuya
    Shinnoki, Tomoya
    Yasukawa, Shinsuke
    Ishiii, Kazuo
    PROCEEDINGS OF THE 2021 INTERNATIONAL CONFERENCE ON ARTIFICIAL LIFE AND ROBOTICS (ICAROB 2021), 2021, : P85 - P85
  • [36] Three-dimensional Measurement Using Laser Pattern And Its Application to Underwater Scanner
    Nishida, Yuya
    Shinnoki, Tomoya
    Yasukawa, Shinsuke
    Ishii, Kazuo
    ICAROB 2019: PROCEEDINGS OF THE 2019 INTERNATIONAL CONFERENCE ON ARTIFICIAL LIFE AND ROBOTICS, 2019, : 525 - 527
  • [37] Investigation of Coastal Environment Change Using Wave Measurement Sensors and Geographical Laser Scanner
    Kim, Kyu-Han
    Shin, Bum-Shick
    Shim, Kyu-Tae
    JOURNAL OF SENSORS, 2019, 2019
  • [38] Robotic Measurement of the Weld Gap Geometry Using a 2D Laser Scanner
    Trebula, Marek
    Dekan, Martin
    Kovarikova, Zuzana
    Babinec, Andrej
    Nagy, Frantisek
    Duchon, Frantisek
    Labat, Dusan
    2022 7TH INTERNATIONAL CONFERENCE ON MECHANICAL ENGINEERING AND ROBOTICS RESEARCH, ICMERR, 2022, : 94 - 101
  • [39] 3D Shape Measurement Using Fixed Camera and Handheld Laser Scanner
    Nakai, Hirofumi
    Iwai, Daisuke
    Sato, Kosuke
    2008 PROCEEDINGS OF SICE ANNUAL CONFERENCE, VOLS 1-7, 2008, : 1477 - 1480
  • [40] An evaluation of measurement uncertainty of trajectory angles using a 3D laser scanner
    Greenwood, Stephen M.
    Paduch, Courtney D.
    Allen, Trevor T.
    JOURNAL OF FORENSIC SCIENCES, 2023, 68 (03) : 828 - 838