By Shuntaro Yamazaki, Masaaki Mochimaru (auth.), Xiaoyi Jiang, Olga Regina Pereira Bellon, Dmitry Goldgof, Takeshi Oishi (eds.)
This e-book constitutes the refereed lawsuits of the overseas Workshop on intensity snapshot research, held along with ICPR 2012 in Japan in November 2012. The sixteen revised complete papers offered on the workshop have been rigorously reviewed and chosen from 27 submissions and are complemented with three invited papers that have been additionally peer-reviewed. The papers are equipped in topical sections on acquisition and modeling of intensity info, processing and research of intensity facts, functions, and ICPR contest.
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Additional info for Advances in Depth Image Analysis and Applications: International Workshop, WDIA 2012, Tsukuba, Japan, November 11, 2012, Revised Selected and Invited Papers
6. The automatic activation of the internal fan (a) and its impact on distance measurements (b) at minute 18 (dashed line). The erratic change at minute 22 is discussed in Sec. 5. 5◦ C. To simulate air draft, we used a standard table fan (cf. Fig. 3(c)). It was blowing sideways at the Kinect in the warm state at a distance of 30 cm for only 10 seconds. The changes in DMP were insigniﬁcant. 18 mm for three repetitions of this experiment. The necessary warm-up time to reach the initial distance values took between 5 and 6 minutes in each repetition.
Reanimating faces in images and video. Computer Graphics Forum 22(3), 641–650 (2003) 6. : Mirror MoCap: Automatic and efficient capture of dense 3D facial motion parameters. Visual Computer 21(6), 355–372 7. : High resolution passive facial performance capture. ACM Transactions on Graphics 29(4), 41 (2010) 8. : Dense 3D motion capture from synchronized video streams. In: Image and Geometry Processing for 3-D Cinematography, 193–211 (2010) 9. : Dense 3D motion capture for human faces. In: Proceedings of IEEE Conference on Computer Vision and Pattern Recognition, pp.
Although the cropped areas of the close-up views in Fig. 1 had the same size and pixel-position for both heat states, a shift of the letters and a loss of sharpness can be noticed. Comparison Based on Dense Optical Flow. A dense optical ﬂow approach  has been applied to image pairs of the poster taken in both heat states. For visualization, the color-code proposed in  was used (cf. Fig. 2(b)). The magnitude of the optical ﬂow was small near the image center and large at its margins (cf.