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1.
Figure 2.

Figure 2. From: Relationships between tissue properties and operational parameters of a dental handpiece during simulated cavity preparation.

Procedure of modifying the handpiece into a force transducer.

Hongyan Sun, et al. J Dent Biomech. 2013;4:1758736013483747.
2.
Figure 4

Figure 4. From: Relationships between tissue properties and operational parameters of a dental handpiece during simulated cavity preparation.

(a) Feed force and rotational frequency versus bur displacement and (b) feed force versus rotational frequency.

Hongyan Sun, et al. J Dent Biomech. 2013;4:1758736013483747.
3.
Figure 6.

Figure 6. From: Relationships between tissue properties and operational parameters of a dental handpiece during simulated cavity preparation.

(a) Rotational frequency and averaged gray scale versus bur displacement and (b) averaged gray scale versus rotational frequency.

Hongyan Sun, et al. J Dent Biomech. 2013;4:1758736013483747.
4.
Figure 5.

Figure 5. From: Relationships between tissue properties and operational parameters of a dental handpiece during simulated cavity preparation.

(a) Feed force and tissue gray scale versus bur displacement and (b) feed force versus average gray scale.

Hongyan Sun, et al. J Dent Biomech. 2013;4:1758736013483747.
5.
Figure 3.

Figure 3. From: Relationships between tissue properties and operational parameters of a dental handpiece during simulated cavity preparation.

Images of the tooth with three slots: (a) parallel slots made on the flattened tooth sample and (b) micro-CT image of the horizontal cross-section.
micro-CT: micro-computed tomography.

Hongyan Sun, et al. J Dent Biomech. 2013;4:1758736013483747.
6.
Figure 1.

Figure 1. From: Relationships between tissue properties and operational parameters of a dental handpiece during simulated cavity preparation.

Apparatus setup: (a) tooth sample mounted in a Teflon ring using orthodontic resin and (b) system diagram of the experimental setup.

Hongyan Sun, et al. J Dent Biomech. 2013;4:1758736013483747.

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