Evaluation of microbubble contrast agents for dynamic imaging with x-ray phase contrast

被引:0
作者
T. P. Millard
M. Endrizzi
N. Everdell
L. Rigon
F. Arfelli
R. H. Menk
E. Stride
A. Olivo
机构
[1] University College London,Department of Medical Physics and Biomedical Engineering
[2] University of Trieste,Department of Physics
[3] Istituto Nazionale di Fisica Nucleare-Sezione di Trieste,Institute of Biomedical Engineering
[4] Sincrotrone Trieste SCpA,undefined
[5] University of Oxford,undefined
来源
Scientific Reports | / 5卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
X-rays are commonly used as a means to image the inside of objects opaque to visible light, as their short wavelength allows penetration through matter and the formation of high spatial resolution images. This physical effect has found particular importance in medicine where x-ray based imaging is routinely used as a diagnostic tool. Increasingly, however, imaging modalities that provide functional as well as morphological information are required. In this study the potential to use x-ray phase based imaging as a functional modality through the use of microbubbles that can be targeted to specific biological processes is explored. We show that the concentration of a microbubble suspension can be monitored quantitatively whilst in flow using x-ray phase contrast imaging. This could provide the basis for a dynamic imaging technique that combines the tissue penetration, spatial resolution and high contrast of x-ray phase based imaging with the functional information offered by targeted imaging modalities.
引用
收藏
相关论文
共 70 条
  • [11] Yashiro W(2010)Computed tomography in color: Nanok-enhanced spectral CT molecular imaging Angew. Chem. 122 9829-9833
  • [12] Harasse S(2004)Microbubbles in medical imaging: current applications and future directions Nat. Rev. Drug Discov. 3 527-533
  • [13] Kuwabara H(2014)Quantifying vascular biomarkers with contrast-enhanced molecular ultrasound imaging Cancer Res. 74 2060-2060
  • [14] Schleede S(2007)Ultrasound microbubble contrast agents: Fundamentals and application to gene and drug delivery Annu. Rev. Biomed. Eng. 9 415-447
  • [15] Hyafil F(2003)Controlled vesicle deformation and lysis by single oscillating bubbles Nature 423 153-156
  • [16] Popovtzer R(2014)Nucleic acid delivery with microbubbles and ultrasound Adv. Drug Delivery Rev. 72 82-93
  • [17] Eck W(2003)On the possibility of utilizing scattering-based contrast agents in combination with diffraction enhanced imaging Proc. SPIE 5030 274-283
  • [18] Nicholson AI(2013)Microbubbles as a scattering contrast agent for grating-based x-ray dark-field imaging Phys. Med. Biol. 58 N37-1658
  • [19] Zentgraf H(2010)Microbubbles as x-ray scattering contrast agents using analyzer-based imaging Phys. Med. Biol. 55 1643-137
  • [20] Semmler W(2007)Three-image diffraction enhanced imaging algorithm to extract absorption, refraction and ultrasmall-angle scattering Appl. Phys. Lett. 90 114102-11201