• Please log in or register to access this feature.

SEARCH

SEARCH BY CITATION

Cited in:

CrossRef

This article has been cited by:

  1. 1
    Rafael G. Mendes, Alicja Bachmatiuk, Bernd Büchner, Gianaurelio Cuniberti, Mark H. Rümmeli, Carbon nanostructures as multi-functional drug delivery platforms, Journal of Materials Chemistry B, 2013, 1, 4, 401

    CrossRef

  2. 2
    Supriya S. Kanyal, David S. Jensen, Andrew J. Miles, Andrew E. Dadson, Michael A. Vail, Rebecca Olsen, Fabien Scorza, Judy Nichols, Richard R. Vanfleet, Robert C. Davis, Matthew R. Linford, Effects of catalyst thickness on the fabrication and performance of carbon nanotube-templated thin layer chromatography plates, Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures, 2013, 31, 3, 031203

    CrossRef

  3. 3
    Sivan Peretz, Oren Regev, Carbon nanotubes as nanocarriers in medicine, Current Opinion in Colloid & Interface Science, 2012, 17, 6, 360

    CrossRef

  4. 4
    Lingjie Meng, Lvye Niu, Ling Li, Qinghua Lu, Zhaofu Fei, Paul J. Dyson, Gold Nanoparticles Grown on Ionic Liquid-Functionalized Single-Walled Carbon Nanotubes: New Materials for Photothermal Therapy, Chemistry - A European Journal, 2012, 18, 42
  5. 5
    E. Miyako, T. Deguchi, Y. Nakajima, M. Yudasaka, Y. Hagihara, M. Horie, M. Shichiri, Y. Higuchi, F. Yamashita, M. Hashida, Y. Shigeri, Y. Yoshida, S. Iijima, Photothermic regulation of gene expression triggered by laser-induced carbon nanohorns, Proceedings of the National Academy of Sciences, 2012, 109, 19, 7523

    CrossRef

  6. 6
    Guanglei Fu, Wei Liu, Shanshan Feng, Xiuli Yue, Prussian blue nanoparticles operate as a new generation of photothermal ablation agents for cancer therapy, Chemical Communications, 2012, 48, 94, 11567

    CrossRef

  7. 7
    Debaditya Choudhury, Daniel Jaque, Airan Rodenas, William T. Ramsay, Lynn Paterson, Ajoy K. Kar, Quantum dot enabled thermal imaging of optofluidic devices, Lab on a Chip, 2012, 12, 13, 2414

    CrossRef

  8. 8
    Jon R Whitney, Amanda Rodgers, Erica Harvie, William F Carswell, Suzy Torti, Alex A Puretzky, Christopher M Rouleau, David B Geohegan, Christopher G Rylander, Marissa N Rylander, Spatial and temporal measurements of temperature and cell viability in response to nanoparticle-mediated photothermal therapy, Nanomedicine, 2012, 7, 11, 1729

    CrossRef

  9. 9
    R. Lyle Hood, William F. Carswell, Amanda Rodgers, Mehmet A. Kosoglu, Marissa Nichole Rylander, David Grant, John L. Robertson, Christopher G. Rylander, Spatially controlled photothermal heating of bladder tissue through single-walled carbon nanohorns delivered with a fiberoptic microneedle device, Lasers in Medical Science, 2012,

    CrossRef

  10. 10
    Marissa Nichole Rylander, R. Jason Stafford, John Hazle, Jon Whitney, Kenneth R. Diller, Heat shock protein expression and temperature distribution in prostate tumours treated with laser irradiation and nanoshells, International Journal of Hyperthermia, 2011, 27, 8, 791

    CrossRef

  11. 11
    Qiwei Tian, Feiran Jiang, Rujia Zou, Qian Liu, Zhigang Chen, Meifang Zhu, Shiping Yang, Jinglong Wang, Jianhua Wang, Junqing Hu, Hydrophilic Cu9S5Nanocrystals: A Photothermal Agent with a 25.7% Heat Conversion Efficiency for Photothermal Ablation of Cancer Cellsin Vivo, ACS Nano, 2011, 5, 12, 9761

    CrossRef

  12. 12
    Saugata Sarkar, Kristen Zimmermann, Weinan Leng, Peter Vikesland, Jianfei Zhang, Harry Dorn, Thomas Diller, Christopher Rylander, Marissa Nichole Rylander, Measurement of the Thermal Conductivity of Carbon Nanotube–Tissue Phantom Composites with the Hot Wire Probe Method, Annals of Biomedical Engineering, 2011, 39, 6, 1745

    CrossRef

  13. 13
    Saugata Sarkar, Abhijit A. Gurjarpadhye, Christopher G. Rylander, Marissa Nichole Rylander, Optical properties of breast tumor phantoms containing carbon nanotubes and nanohorns, Journal of Biomedical Optics, 2011, 16, 5, 051304

    CrossRef