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Original

Intracellular hyperthermia: Nanobubbles and their biomedical applications

Pages 533-541 | Received 27 Feb 2009, Accepted 21 May 2009, Published online: 24 Oct 2009

Figures & data

Table I.  The time-scale of different processes for ultrafast heating.

Figure 1. Typical heating and cooling curve of a gold nanoparticle in H2O (tptT).

Figure 1. Typical heating and cooling curve of a gold nanoparticle in H2O (tp ≪ tT).

Figure 2. The effect of laser pulses on the temperature of gold nanoparticles surrounded by water.

Figure 2. The effect of laser pulses on the temperature of gold nanoparticles surrounded by water.

Figure 3. Influence of particle size on the transient temperature profile of gold nanoparticles.

Figure 3. Influence of particle size on the transient temperature profile of gold nanoparticles.

Figure 4. Transient radial temperature profile of one gold nanoparticle in water.

Figure 4. Transient radial temperature profile of one gold nanoparticle in water.

Figure 5. Estimation of bubble parameters based on the Rayleigh equation (tp = 10 ns, rp = 30 nm).

Figure 5. Estimation of bubble parameters based on the Rayleigh equation (tp = 10 ns, rp = 30 nm).

Figure 6. Influence of particle size on bubble parameters.

Figure 6. Influence of particle size on bubble parameters.

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