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References

1
D. Silver, N. J. Zabusky, V. Fernandez, M. Gao, and R. Samtaney. Ellipsoidal Quantification of Evolving Phenomena. In N. M. Patrikalakis, editor, Visualization of Physical Phenomena. Proceedings of Computer Graphics International '91 Symposium, pages 573-588. Springer-Verlag, June 1991.

2
N. J. Zabusky, D. Silver, and R. Pelz. Visiometrics, juxtaposition and modeling. Physics Today, 46(3):24-31, 1993.

3
D. Silver and N. J. Zabusky. Quantifying visualizations for reduced modeling in nonlinear science: Extracting structures from data sets. Journal of Visual Communication and Image Representation, 4(1):46-61, 1993.

4
N. J. Zabusky. Computational synergetics and mathematical innovation. Journal of Computational Physics, 43:195-249, 1981.

5
V.M. Fernandez, N.J. Zabusky, and V.M. Gryanik. Vortex intensification and collapse of the Lissajous-Elliptic ring: Single and multi-filament Biot-Savart simulations and visiometrics. Journal of Fluid Mechanics, 299:289-331, 1995.

6
S.-Y. Chen and X. Shan. High-Resolution turbulent simulations using the Connection Machine-2. Computers in Physics, 6(6):643-646, 1992.

7
N. J. Zabusky, V. M. Fernandez, and D. Silver. Collapse, intensification and reconnection in vortex dominated flows: visiometrics and modeling. Physica D, 86:1-11, 1995.

8
V. M. Fernandez, N. J. Zabusky, P.-F. Liu, S. Bhatt, and A. Gerasoulis. Topology alteration and temporal adaptivity extensions to a Biot-Savart fast vortex method. In Second International Workshop on Vortex Flows, Montreal, Canada, 1995.

9
N. J. Zabusky, O. N. Boratav, R. B. Pelz, M. Gao, D. Silver, and S. P. Cooper. Emergence of coherent patterns of vortex stretching during reconnection: A scattering paradigm. Physical Review Letters, 67(18):2469-2472, 1991.

10
P. G. Buning and J. L. Steger. Graphics and flow visualization in computational fluid dynamics. In Proceedings of the AIAA 7th conference in CFD, AIAA paper 85-1507, June 1985.

11
A. Globus. A software model for visualization of large unsteady 3-D CFD results. preprint, 1993.

12
D. Silver and N. J. Zabusky. 3D visualization and quantification of evolving amorphous objects. In E. J. Farrell, editor, Extracting Meaning from Complex Data: Processing, Display, Interaction II, Proceedings of SPIE-The International Society for Optical Engineering, Vol. 1459, pages 97-108, San Jose, California, February 1991.

13
D. Silver, M. Gao, and N. J. Zabusky. Visualizing causal effects in 4d space-time vector fields. In Proceedings of Visualization '91, pages 12-16. IEEE Computer Society, October 22-25, 1991.

14
A. E. Perry and M. S. Chong. A description of eddying motions and flow patterns using critical-point concepts. Ann. Rev. Fluid Mech., 19:125-155, 1987.

15
J. Villasenor and A. Vincent. An algorithm for space recognition and time tracking of vorticity tubes in turbulence. CVGIP: Image Understanding, 55(1):27-35, 1992.

16
M. Meneguzzi and A. Vincent. Dynamics of vortex tubes in three-dimensional turbulence. In J. T. Beale et al., editor, Vortex Flows and Related Numerical Methods, pages 279-291. Kluwer Academic Publishers, 1993.

17
J. Jimenez, A. A. Wray, P. G. Saffman, and R. S. Rogallo. The structure of intense vorticity in isotropic turbulence. Journal of Fluid Mechanics, 255:65-90, 1993.

18
J. G. Brasseur and Wen-Quei Lin. Structure and statistics of intermittency in homogeneous turbulent shear flow. In A. V. Johansson and P. H. Alfredsson, editors, Advances in Turbulence 3: Proceedings of the Third European Turbulence Conference, Stockholm, July 3-6 1990. Springer-Verlag.

19
C. Upson. The application visualization system: A computational environment for scientific visualization. IEEE Computer Graphics and Applications, 9(4):30-, 1989.

20
M. F. Krogh and C. D. Hansen. Visualization on massively parallel cmputers using CM/AVS. preprint, 1993.

21
G. R. Ruetsch and M. R. Maxey. The evolution of small-scale structures in homogeneous isotropic turbulence. Physics of Fluids A, 4(12):2747-2760, 1992.