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1

Wang, Edward David. Canine modeling of the human cervical spine. s.n.], 1990.

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2

Hines, J. Richard. SPICE modeling guide. Oholiab Technology, 1987.

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3

Paolo, Antognetti, ed. Semiconductor device modeling with SPICE. 2nd ed. McGraw-Hill, 1993.

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4

Paolo, Antognetti, and Massobrio Giuseppe, eds. Semiconductor device modeling with SPICE. McGraw-Hill, 1988.

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5

R, Baylog Louis, ed. Dendritic spines biochemistry, modeling and properties. Nova Science Publishers, 2009.

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6

Foty, D. MOSFET modeling with SPICE: Principles and practice. Prentice Hall PTR, 1997.

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7

Su, Pu-chʻing. Computational geometry--curve and surface modeling. Academic Press, 1989.

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8

Schiring, E. E. Simulation modeling and test of a satellite despin system. AIAA, 1989.

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9

Cheng, Ron. Surface modeling using AutoSurf Release 2. Autodesk Press, 1997.

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10

FitzPatrick, Dan. Analog behavioral modeling with the Verilog-A language. Kluwer Academic Publishers, 1998.

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11

Gilsinn, David. A spline algorithm for modeling cutting errors on turning centers. U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 2000.

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12

Zeilhofer, Claudia. Multi-dimensional B-spline modeling of spatio-temporal ionospheric signals. Deutsche Geodätische Kommission bei der Bayerischen Akademie der Wissenschaften, 2008.

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13

Robert McNeel & Associates., ed. Rhinoceros: NURBS modeling for Windows : training manual. 3rd ed. Robert McNeel & Associates, 2005.

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14

Robert McNeel & Associates., ed. Rhinoceros: NURBS modeling for Windows : version 3.0, user's guide. Robert McNeel & Associates, 2002.

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15

Bartels, Richard H. An introduction to splines for use in computer graphics and geometric modeling. M. Kaufmann Publishers, 1987.

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16

Old, Oliver. Modeling Time-Varying Unconditional Variance by Means of a Free-Knot Spline-GARCH Model. Springer Fachmedien Wiesbaden, 2022. http://dx.doi.org/10.1007/978-3-658-38618-4.

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17

Kwyro, Lee, ed. Semiconductor device modeling for VLSI. Prentice Hall, 1993.

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18

Smith, C. A. B-Spline neural network modelling of the chemical additives effect on paper properties. UMIST, 1993.

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19

Ehrhardt, Nelson M. Biological and economic modeling and assessment of limited entry strategies in multi-species fisheries in South Florida. Florida Sea Grant, University of Florida, 2001.

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20

Rosen, I. Gary. Spline-based Rayleigh-Ritz methods for the approximation of the natural modes of vibration for flexible beams with tip bodies. Institute for Computer Applications in Science and Engineering, NASA Langley Research Center, 1985.

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21

Ming, Fang. Analysis of crustal structure of Venus utilizing residual line-of-sight (LOS) gravity acceleration and surface topography data ; A trial of global modeling of Venus gravity field using harmonic spline method: Final technical report. National Aeronautics and Space Administration, 1992.

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22

Prediction of loads on the lumbar spine during hammer throwing utilizing mathematical modeling. 1986.

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23

Dall’Ara, Enrico, Fabio Galbusera, Hendrik Schmidt, Marwan El-Rich, and Grace D. O’Connell, eds. Computational Modeling for the Assessment of the Biomechanical Properties of the Healthy, Diseased and Treated Spine. Frontiers Media SA, 2022. http://dx.doi.org/10.3389/978-2-83250-038-5.

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24

Schmid, Stefan, Dennis E. Anderson, Babak Bazrgari, and Lennart Scheys, eds. Using Motion Analysis Techniques and Musculoskeletal Modeling of the Spine to Better Understand Spinal Disorders and Evaluate Treatment Effects. Frontiers Media SA, 2022. http://dx.doi.org/10.3389/978-2-88976-038-1.

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25

Kuo, Chin-Chuan. Sea spike modeling. 1988.

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26

Kielkowski, Ron M. SPICE: Practical Device Modeling. McGraw-Hill Professional Publishing, 1995.

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27

Kielkowski, Ron M. SPICE: Practical Device Modeling. McGraw-Hill Professional Publishing, 1995.

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28

SPICE: Practical device modeling. McGraw-Hill, 1995.

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29

Antognetti, Paolo, and Giuseppe Massobrio. Semiconductor Device Modelling with SPICE. McGraw Hill Higher Education, 1987.

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30

Antognetti, Paolo, and Giuseppe Massobrio. Semiconductor Device Modelling with SPICE. McGraw Hill Higher Education, 1987.

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31

(Editor), Torben Anderson, and Dan Mor (Editor), eds. Integrated Modelling of Telescopes (SPIE). SPIE Society of Photo-Optical Instrumentation Engi, 2002.

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32

Foty, Daniel P. MOSFET Modeling With SPICE: Principles and Practice. Prentice Hall PTR, 1996.

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33

Foty, Daniel P. MOSFET Modeling With SPICE: Principles and Practice. Prentice Hall PTR, 1996.

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34

Chappell, Michael, Bradley MacIntosh, and Thomas Okell. Kinetic Modeling. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198793816.003.0004.

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The quantification of perfusion from arterial spin labeling (ASL) perfusion MRI data relies upon the principles of tracer kinetics. This chapter first outlines the simplest form of a tracer kinetic model that can be applied to ASL data, before exploring variations on this model that can be applied to extract other hemodynamic information such as arterial transit time. Finally, the chapter examines how tracer kinetic models are used with data to estimate perfusion parameters, including the use of model fitting and Bayesian inference.
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35

Bu-Qing, Su, and Liu Ding-Yuan. Computational Geometry: Curve and Surface Modeling. Academic Pr, 1989.

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36

Bu-Qing, Su, and Liu Ding-Yuan. Computational Geometry: Curve and Surface Modeling. Academic Pr, 1989.

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37

Barsky, Brian A. Computer Graphics and Geometric Modeling Using Beta-Splines. Springer, 2013.

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38

Barsky, Brian A. Computer Graphics and Geometric Modeling Using Beta-splines. Springer, 2014.

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39

Stone, Charles, Young K. N. Truong, and Charles Kooperberg. Statistical Modeling with Spline Functions: Methodology and Theory. Springer, 2005.

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40

AutoSurf Release 3: Surface modeling. Autodesk, 1996.

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41

Cheng, Ron K. C. Surface Modeling Using Autosurf Release 2. PWS Pub. Co., 2001.

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42

Yakovlev, Evgeniy, Evgeniy Gnevyshev, and Alexey Davydov. DIFFERENTIAL DIAGNOSTICS, MODERN METHODS FOR STUDYING PATHOGENESIS AND MEDICAL REHABILITATION OF CERVICO-THORACIC DORSOPATHIES. Strategy of the Future, 2023. http://dx.doi.org/10.37468/book_190723.

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The monograph contains basic information about modern concepts of the etiopathogenetic mechanisms of dorsopathy. Original research data from biomechanical analysis and three-dimensional computer modeling of the cervical spine under loads are presented that make it possible to simulate various options for biomechanics to predict the course of dorsopathy and thereby determine the rehabilitation potential in this category of patients. The features of clinical and neurological symptoms and the algorithm for the differential diagnosis of dorsopathy of cervicothoracic localization are described in detail. The main directions of medical rehabilitation are considered and an algorithm for restorative treatment of patients with dorsopathy is proposed, and a comparative analysis of standard and original methods of restorative treatment is presented.
 The monograph is recommended for neurologists, neurosurgeons, orthopedic traumatologists, specialists in physical and rehabilitation medicine, physical therapy, physiotherapists, as well as for students enrolled in advanced training cycles in medical rehabilitation.
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43

Infrared Imaging Systems: Design, Analysis, Modeling & Testing VIII (SPIE Proceedings). SPIE-International Society for Optical Engine, 1997.

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44

Wang, Fei. Selected Papers on Nanotechnology: Theory And Modeling (Spie Milestone Series). SPIE-International Society for Optical Engine, 2006.

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45

Lee, Kwyro, Trond Ytterdal, Tor A. Fjeldly, and Michael Shur. Semiconductor Device Modeling For VLSI. Prentice Hall, 1997.

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46

Lee, Kwyro, Trond Ytterdal, Tor A. Fjeldly, and Michael Shur. Semiconductor Device Modeling For VLSI. Prentice Hall, 1997.

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47

Biberman, Lucien M. ElectroOptical Imaging: System Performance and Modeling (SPIE Press Monograph Vol. PM96). SPIE Publications, 2000.

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48

Eriksson, Olle, Anders Bergman, Lars Bergqvist, and Johan Hellsvik. Outlook on Magnetization Dynamics. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198788669.003.0012.

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Since its original formulation in the mid-1990's, atomistic spin-dynamics has become an important tool for modelling of dynamic processes in magnetic materials. So far this book has described current methodological methods and functionalities of atomistic spin-dynamics simulations. Applications of DFT and ASD techniques to selected topics have been presented in this book, for instance methods for calculation of the microscopic Heisenberg and Gilbert parameter from first principles (Chapters 2 and 6), multiscale modelling of magnon spectra in bulk and thin film magnets (Chapter 9), and theoretical investigations of ultrafast switching dynamics in ferromagnets and ferrimagnets (Chapter 10), and of exotic dynamics of topologically protected spin textures (Chapter 11). In this closing chapter we give an outlook on recent and anticipated developments of the methodology.
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49

An introduction to splines for use in computer graphics and geometric modeling. Morgan Kauffman, 1987.

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50

The designer's guide to SPICE and Spectre. Kluwer Academic Publishers, 1995.

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