Electrical impedance-based biopsy for prostate cancer detection

被引:0
|
作者
Mishra, Vaishali [1 ]
Bouyad, Hamza [1 ]
Halter, Ryan J. [1 ]
机构
[1] Dartmouth Coll, Thayer Sch Engn, Hanover, NH 03755 USA
来源
2011 IEEE 37TH ANNUAL NORTHEAST BIOENGINEERING CONFERENCE (NEBEC) | 2011年
关键词
prostate cancer; biopsy; electrical impedance; spectroscopy; Impedance;
D O I
暂无
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Currently biopsy is considered the gold standard for diagnosis of prostate cancer in humans, although it samples only 19mm(3) volume of prostate, corresponding to 0.95% of a 50cm(3) prostate gland for a regular 12-core biopsy procedure. The aim of this study was to increase the sampling volume by incorporating electrical impedance spectroscopy (EIS) into the standard biopsy needle. Electrical impedance can act as a reliable biomarker for distinguishing malignant from benign tissues in human prostate. The EIS biopsy needle allows tip of the needle to act as sensor to measure the electrical impedance of the tissue core extracted. The sensitivity of the prototype device was evaluated in a series of saline bath experiments. We demonstrated that EIS biopsy needle senses 286.92 mm(3) of volume of the tissue on either side of the needle trajectory for each core, adding up to 2 X 12 X 286.92 = 6886.08 mm(3) or 13.8% of tissue's volume. Thus, measuring electrical properties in addition to core extraction is expected to enhance the sensitivity and specificity of the device. A few experiments have been conducted on ex vivo porcine samples to envisage EIS biopsy needle's ability in distinguishing two different kinds of tissues.
引用
收藏
页数:2
相关论文
共 50 条
  • [31] Prostate cancer detection with office based saturation biopsy in a repeat biopsy population
    Rabets, JC
    Jones, JS
    Patel, A
    Zippe, CD
    JOURNAL OF UROLOGY, 2004, 172 (01): : 94 - 97
  • [32] Prostate cancer detection with office based saturation biopsy in a repeat biopsy population
    Kommu, S
    Lau, DHW
    Kommu, K
    Emtage, JB
    Persad, R
    JOURNAL OF UROLOGY, 2005, 173 (03): : 1046 - 1047
  • [33] Electrical properties of phase change materials for electrical impedance-based sensing of the liquid fraction
    Mira-Hernandez, Carolina
    Travaglini, Giuseppe
    Dolfi, Andrea
    Mancin, Simone
    JOURNAL OF ENERGY STORAGE, 2025, 113
  • [34] Electrical Impedance-Based Methodology for Locating Carcinoma Emulators on Breast Models
    Gutierrez-Lopez, Marcos
    Prado-Olivarez, Juan
    Diaz-Carmona, Javier
    Herrera-Ramirez, Carlos A.
    Antonio Gutierrez-Gnecchi, Jose
    Medina-Sanchez, Carlos G.
    JOURNAL OF SENSORS, 2019, 2019
  • [35] ELECTRICAL IMPEDANCE SPECTROSCOPY FOR PROSTATE CANCER DIAGNOSIS
    Mishra, V.
    Bouayad, H.
    Schned, A.
    Heaney, J.
    Halter, R. J.
    2012 ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY (EMBC), 2012, : 3258 - 3261
  • [36] Development of a Low-Cost Electrical Impedance-Based Microflow Cytometer
    Dieujuste, Darryl
    Liu, Jia
    Du, E.
    Alvarez, Ofelia A.
    BLOOD, 2019, 134
  • [37] Reference-free impedance-based crack detection in plates
    Kim, M. K.
    Kim, E. J.
    An, Y. K.
    Park, H. W.
    Sohn, H.
    JOURNAL OF SOUND AND VIBRATION, 2011, 330 (24) : 5949 - 5962
  • [38] Impedance-Based Multimodal Electrical-Mechanical Intrinsic Flow Cytometry
    Feng, Yongxiang
    Zhu, Junwen
    Chai, Huichao
    He, Weihua
    Huang, Liang
    Wang, Wenhui
    SMALL, 2023, 19 (45)
  • [39] A High Performance Impedance-based Platform for Evaporation Rate Detection
    Chou, Wei-Lung
    Lee, Pee-Yew
    Chen, Cheng-You
    Lin, Yu-Hsin
    Lin, Yung-Sheng
    JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, 2016, (116):
  • [40] A New Impedance-Based Approach for Passive Islanding Detection Scheme
    Liu, Ning
    Aljankawey, A. S.
    Diduch, C. P.
    Chang, L.
    Su, Jianhui
    Mao, Meiqin
    2013 4TH IEEE INTERNATIONAL SYMPOSIUM ON POWER ELECTRONICS FOR DISTRIBUTED GENERATION SYSTEMS (PEDG), 2013,