High frequency ultrasound tissue characterization and acoustic microscopy of intracellular changes

被引:40
|
作者
Brand, Sebastian [1 ,2 ,5 ]
Weiss, Eike C. [3 ]
Lemor, Robert M. [3 ]
Kolios, Michael C. [1 ,2 ,4 ]
机构
[1] Ryerson Univ, Dept Phys, Toronto, ON, Canada
[2] Princess Margaret Hosp, Ontario Canc Inst, Toronto, ON M4X 1K9, Canada
[3] Fraunhofer Inst Biomed Tech, St Ingbert, Germany
[4] Univ Toronto, Dept Med Biophys, Toronto, ON, Canada
[5] Univ Halle Wittenberg, Dept Orthopaed, Q BAM Lab, D-06112 Halle, Germany
来源
ULTRASOUND IN MEDICINE AND BIOLOGY | 2008年 / 34卷 / 09期
基金
加拿大自然科学与工程研究理事会;
关键词
high frequency ultrasound; acoustic microscopy; viable cells; quantitative ultrasound;
D O I
10.1016/j.ultrasmedbio.2008.01.017
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
The objective of this work is to investigate changes in the acoustic properties of cells when exposed to chemotherapy for monitoring treatment response. High frequency ultrasound spectroscopy (10-60 MHz) and scanning acoustic microscopy (0.9 GHz) were performed on HeLa cells (Ackermann et al. 1954, Masters 2002) that were exposed to the chemotherapeutic agent cisplatin. Ultrasonic radio-frequency data were acquired from pellets containing HeLa cells after exposure to cisplatin to induce apoptosis. Scanning acoustic and laser fluorescence microscopy images were recorded from single HeLa cells exposed to the same drug. Data acquisition in both cases was performed at several time points throughout the chemotherapeutic treatment for up to 27 h. In the high frequency ultrasound investigation, normalized power spectra were calculated within a region-of-interest. A 20 MHz transducer (f-number 2.35) and a 40 MHz transducer (f-number 3) were used for the data collection in the high frequency ultrasound experiments. The backscatter coefficients, integrated backscatter coefficients, mid-band fit and spectral slope were computed as a function of treatment time to monitor acoustical property changes during apoptosis. Acoustic attenuation was measured using the spectral substitution technique at all time points. Spectral parameter changes were detected after 12 h of exposure and coincided with the initiation of cell damage as assessed by optical microscopy. Integrated backscatter coefficients increased by over 100% between 0 h and 24 h of treatment, with small changes in the associated attenuation (similar to 0.1 dB/[MHz cm]). Acoustic microscopy was performed at 0.9 GHz frequency. The cell structure was imaged using staining in laser fluorescence microscopy. All cells showed excellent correspondence between the locations of apoptotic nuclear condensation observed in optical imaging and changes in attenuation contrast in acoustic microscopy images. The time after drug exposure at which such changes occurred in the optical images were coincident with the time of changes detected in the acoustic microscopy images and the high frequency ultrasound experiments.
引用
收藏
页码:1396 / 1407
页数:12
相关论文
共 50 条
  • [31] High-frequency ultrasound tissue harmonic imaging
    Silverman, RH
    Lizzi, FL
    Coleman, DJ
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2004, 45 : U933 - U933
  • [32] WIDEBAND ACOUSTIC MICROSCOPY OF TISSUE
    DAFT, CMW
    BRIGGS, GAD
    IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 1989, 36 (02) : 258 - 263
  • [33] High Frequency Broadband Arbitrary Coded Excitation in Ultrasound Microscopy
    Merilainen, A. I.
    Fabritius, T.
    Eskelinen, J.
    Haeggstrom, E.
    2012 IEEE INTERNATIONAL ULTRASONICS SYMPOSIUM (IUS), 2012,
  • [34] High resolution ply-by-ply ultrasound imaging of impact damage in thick CFRP laminates by high-frequency acoustic microscopy
    Morokov, Egor
    Levin, Vadim
    Chernov, Andrey
    Shanygin, Alexander
    COMPOSITE STRUCTURES, 2021, 256
  • [35] High power acoustic insult to living cultured cells as studied by high frequency scanning acoustic microscopy
    Miyasaka, C
    Tittmann, BR
    SMART NONDESTRUCTIVE EVALUATION FOR HEALTH MONITORING OF STRUCTURAL AND BIOLOGICAL SYSTEMS, 2002, 4702 : 349 - 356
  • [36] ATTENUATION OF ULTRASOUND - MAGNITUDE AND FREQUENCY-DEPENDENCE FOR TISSUE CHARACTERIZATION
    PARKER, KJ
    LERNER, RM
    WAAG, RC
    RADIOLOGY, 1984, 153 (03) : 785 - 788
  • [37] Intravascular ultrasound tissue characterization using radio frequency signals
    Leor, O. Rodriguez
    Salvatella, N.
    Tizon, H.
    Mauri, J.
    Nofrerias, E. Fernandez
    Caballero, K.
    Pujol, O.
    Radeva, P.
    EUROPEAN HEART JOURNAL, 2006, 27 : 136 - 137
  • [38] High-Frequency Acoustic for Nanostructure Wetting Characterization
    Li, Sizhe
    Lamant, Sebastien
    Carlier, Julien
    Toubal, Malika
    Campistron, Pierre
    Xu, Xiumei
    Vereecke, Guy
    Senez, Vincent
    Thomy, Vincent
    Nongaillard, Bertrand
    LANGMUIR, 2014, 30 (25) : 7601 - 7608
  • [39] Lab-on-a-chip for high frequency acoustic characterization
    Gao, Jiaming
    Carlier, Julien
    Wang, Shengxiang
    Campistron, Pierre
    Callens, Dorothee
    Guo, Shishang
    Zhao, Xingzhong
    Nongaillard, Bertrand
    SENSORS AND ACTUATORS B-CHEMICAL, 2013, 177 : 753 - 760
  • [40] CHARACTERIZATION OF COLLAGEN BY HIGH-FREQUENCY ULTRASOUND - EVIDENCE FOR DIFFERENT ACOUSTIC PROPERTIES BASED ON COLLAGEN FIBER MORPHOLOGY
    CHANDRARATNA, PAN
    HUTCHISON, SJ
    WHITTAKER, P
    CHANDRARATNA, P
    CIRCULATION, 1993, 88 (04) : 607 - 607