Nanomedicine, Volume I: Basic Capabilities

© 1999 Robert A. Freitas Jr. All Rights Reserved.

Robert A. Freitas Jr., Nanomedicine, Volume I: Basic Capabilities, Landes Bioscience, Georgetown, TX, 1999


 

References 300-399

300. Ed Regis, Nano: The Emerging Science of Nanotechnology, Little, Brown and Company, New York, 1995.

306. R.C. Merkle, "The Technical Feasibility of Cryonics," Medical Hypotheses 39(1992):6-16.

308. Klaus Weber, Mary Osborn, "The Molecules of the Cell Matrix," Scientific American 253(October 1985):110-120.

310. Fred Hapgood, "Tinytech," Omni 9(November 1986):56-62, 102.

311. Eric Drexler, "Mightier Machines from Tiny Atoms May Someday Grow," Smithsonian 13(November 1982):145-155.

312. David S. Goodsell, The Machinery of Life, Springer-Verlag, New York, 1993.

313. Wayne M. Becker, The World of the Cell, The Benjamin/Cummings Publishing Company, Menlo Park, CA, 1986.

317. Richard J. Lagow et al., "Synthesis of Linear Acetylenic Carbon: The `sp' Carbon Allotrope," Science 267(20 January 1995):362-367.

322. Gregory M. Fahy, "Molecular Nanotechnology," Clinical Chemistry 39(September 1993):2011-2016.

328. Richard Preston, The Hot Zone, Anchor Books Doubleday, NY, 1994.

330. Christopher Lampton, Nanotechnology Playhouse: Building Machines from Atoms, Waite Group Press, Corte Madera, CA, 1993.

336. Robert Dillon, Lisa Fauci, Donald Gaver III, "A Microscale Model of Bacterial Swimming, Chemotaxis and Substrate Transport," J. Theoret. Biology 177(1995):325-340.

337. Howard C. Berg, Edward M. Purcell, "Physics of Chemoreception," Biophysical Journal 20(1977):193-219.

338. George T. Yates, "How Microorganisms Move through Water," American Scientist 74(July-August 1986):358-365.

339. Isaac Asimov, Fantastic Voyage, Houghton Mifflin Company, Boston, 1966.

340. Isaac Asimov, Fantastic Voyage II: Destination Brain, Doubleday, NY, 1987.

341. Jonathan Murphy, Bob Carr, Tony Atkinson, "Nanotechnology in Medicine and the Biosciences," Trends in Biotechnology 12(August 1994):289-290.

343. Elton Elliott, ed., Nanodreams, Baen Books, Riverdale NY, 1995.

346. B. Magnussen, S. Fatikow, U. Rembold, "Actuation in Microsystems: Problem Field Overview and Practical Example of the Piezoelectric Robot for Handling of Microobjects," in Proceedings of the 1995 INRIA/IEEE Symposium on Emerging Technologies and Factory Automation, IEEE Computer Society Press, Vol. 3, 1995, pp. 21-27.

347. Y. Kubo, Isao Shimoyama, T. Kaneda, Hirofumi Miura, "Study on Wings of Flying Microrobots," in Proceedings IEEE International Conference on Robotics and Automation, IEEE Computer Society Press, Vol. 1, 1994, pp. 834-9.

348. Y. Kubo, Isao Shimoyama, Hirofumi Miura, "Study of Insect-Based Flying Microrobots," in Proceedings IEEE International Conference on Robotics and Automation, IEEE Computer Society Press, Vol. 2, 1994, pp. 386-391.

352. Takashi Yasuda, Isao Shimoyama, Hirofumi Miura, "Microrobot Actuated by a Vibration Energy Field," Sensors and Actuators 43A(1994):366-370.

355. Richard Feynman, "Infinitesimal Machinery," Journal of Microelectromechanical Systems 2(March 1991):4-14.

357. Cyberlife, Sams Publishing, Indianapolis, IN, 1994.

358. Wesley M. DuCharme, Becoming Immortal: Nanotechnology, You, and the Demise of Death, Blue Creek Ventures, Evergreen CO, 1995.

359. Erle E. Peacock, Jr., Wound Repair, W.B. Saunders Company, Philadelphia, 1984.

360. Thomas K. Hunt, J. Englebert Dunphy, Fundamentals of Wound Management, Appleton-Century-Crofts, New York, 1979.

361. Y.C. Fung, Biodynamics: Circulation, Springer-Verlag, New York, 1984.

362. Y.C. Fung, Biomechanics: Mechanical Properties of Living Tissues, Second Edition, Springer-Verlag, New York, 1993.

363. Y.C. Fung, Biomechanics: Motion, Flow, Stress, and Growth, Springer-Verlag, New York, 1990.

364. S.A. Wainwright, W.D. Biggs, J.D. Currey, J.M. Gosline, Mechanical Design in Organisms. John Wiley & Sons, New York, 1976.

365. D.L. Fry, "Acute vascular endothelial changes associated with increased blood velocity gradients," Circulation Res. 22(1968):165-197.

366. G.W. Schmid-Schonbein, Y.C. Fung, B.W. Zweifach, "Vascular endothelium-leukocyte interaction," Circulation Res. 36(1975):173-184.

368. E.A. Evans, W. Rawicz, "Entropy-driven tension and bending elasticity in condensed-fluid membranes," Phys. Rev. Lett. 64(1990):2094-2097.

371. Robert M. Hochmuth, "Chapter 12: Properties of red blood cells." In Richard Skalak, Shu Chien, eds., Handbook of Bioengineering, McGraw-Hill, New York, 1987.

374. M.I. Gregersen, C.A. Bryant, W.E. Hammerle, S. Usami, S. Chien, "Flow characteristics of human erythrocytes through polycarbonate sieves," Science 157(1967):825-827.

381. Kevin Kelly, Out of Control: The New Biology of Machines, Social Systems, and the Economic World, Addison-Wesley Publishing Company, New York, 1994.

382. Philip Ball, Designing the Molecular World: Chemistry at the Frontier, Princeton University Press, Princeton NJ, 1994.

383. Michael Fossel, Reversing Human Aging, William Morrow and Company, NY, 1996.

384. Laurie Garrett, The Coming Plague, Penguin Books USA, New York, 1994.

385. Albert Einstein, "Investigations on the Theory of Brownian Movement," with notes by R. Furth, translated into English from German by A.D. Cowper, Methuen, London (1926), Dover Publications (1956); original paper in Ann. Phys. 17(1905):549.

386. H.L. Goldsmith, V.T. Turitto, "Rheological aspects of thrombosis and haemostasis: basic principles and applications," Thromb. Haemostasis 55(1986):415-435.

388. Kenneth H. Keller, "Effect of fluid shear on mass transport in flowing blood," Proc. Fed. Am. Soc. Exp. Biol. 30 (September-October 1971):1591-1599.

389. E.M. Purcell, "Life at low Reynolds number," Am. J. Physics 45(January 1977):3-11.

390. Farrington Daniels, Robert A. Alberty, Physical Chemistry, Third Edition, John Wiley & Sons, New York, NY, 1966.

391. Gary L. Westbrook, "Ligand-Gated Ion Channels," in Nicholas Sperelakis, ed., Cell Physiology Source Book, Academic Press, New York, 1995, Chapter 31, pp. 431-441.

392. William A. Catterall, "Structure and function of voltage-gated ion channels," Annual Rev. Biochemistry 64(1995):493-531.

393. Paul Burgmayer, Royce W. Murray, "An ion gate membrane: Electrochemical control of ion permeability through a membrane with an embedded electrode," J. Amer. Chem. Soc. 104(1982):6139-6140.

394. Matsuhiko Nishizawa, Vinod P. Menon, Charles R. Martin, "Metal nanotubule membranes with electrochemically switchable ion-transport selectivity," Science 268(5 May 1995):700-702.

395. David A. Langs, David J. Triggle, "Structural motifs for ion channels in membranes," in Philip Yeagle, ed., The Structure of Biological Membranes, CRC Press, Boca Raton, 1992, Chapter 16, pp. 721-772.

396. Lubert Stryer, Biochemistry, 4th Edition, W.H. Freeman and Company, New York, 1995.

397. Nicholas Sperelakis, "Diffusion and Permeability," in Nicholas Sperelakis, ed., Cell Physiology Source Book, Academic Press, New York, 1995, Chapter 5, pp. 61-66.

398. Thomas M. Devlin, ed., Textbook of Biochemistry with Clinical Correlations, Third Edition, Wiley-Liss, New York, 1992.

399. Michael M. Gottesman, Ira Pastan, "Biochemistry of multidrug resistance mediated by the multidrug transporter," Ann. Rev. Biochemistry 62(1993):385-427.

 


Last updated on 25 February 2003