"We are on the verge of a revolution in medicine: understanding, treating, and ultimately preventing the causes of degenerative aging. But medical revolutions only happen if we all stand up in support of funding and research. We did it for cancer. We're doing it for Alzheimer's. We can do it for aging - and create an era of longer, healthier lives!"

Required Reading
Activism and Advocacy
Calorie Restriction
The Community, Visualized
Cryonics
Healthy Life Extension Explained
Introductory Articles
Longevity Meme Newsletter
Methuselah Foundation
Mprize for Anti-Aging Research
Stem Cells, Regenerative Medicine
SENS, Negligible Senescence
What is Anti-Aging?

High Quality Supplements, Vitamins
High Quality Supplements, Vitamins

On the Causes of Aging
Accumulating AGEs
Aging Immune System
Junk in the Lysosome
Mitochondrial Free Radicals
Other Causes of Aging

Objections Answered
Boredom
Inequality and Economics
Overpopulation
Stagnation
The Tithonus Error
What About Retirement?

Recent Entries

  • On the Erosion of Telomeres
  • Things We Don't Need To Know In Order To Cure Aging
  • The Value of a Longevity Therapy
  • On Expanding the Audience
  • Timelines For Agelessness Through Medical Technology
  • Understanding Aging Conference, Los Angeles, June 27th
  • Upgrading Mitochondrial DNA to Cause Less Damage
  • Our Bioartificial Future
  • What is Cryonics?
  • Electric Pulse Interview With Aubrey de Grey
  • "Should" is a Dangerous Word
  • Small Steps Towards Engineered, Hyperefficient, Artificial Immune Systems
  • An Interview With Peter Thiel
  • The Latest Rejuvenation Research, April 2008
  • Comments on the Sirtris Acquisition
  • Body Temperature and Longevity
  • A Look at the Longevity Dividend View
  • Thrashing Out Your Regenerative Medicine Thesis Online
  • But Enough About You
  • Aging Doesn't Just Kill People, It Kills Them Horribly

    Weblogs of Interest
    Accelerating Future
    Ageing Research
    Alcor News
    April's CR Diary
    Andart
    Anti-Aging Medicine & Science
    Biosingularity
    CRON Diary
    Cryonics Society
    Depressed Metabolism
    Digital Crusader
    Distributed Republic
    Ethical Technology Blog
    Existence is Wonderful
    Frontier Channel
    Future Current
    FuturePundit
    grailsearch.org
    Longevity Science
    Marginal Revolution
    Metamagician and the Hellfire Club
    Methuselah Foundation Blog
    Mises Economics Blog
    Nanodot
    Ouroboros
    Overcoming Bias
    Pimm - Partial immortalization
    Responsible Nanotechnology
    ScienceBlogs
    Sentient Developments
    Singularity Institute Blog
    The Loom
    The Speculist
    Tangled Bank
    Transumanar

      
    Search

    Archives (Monthly)

    May 2008
    April 2008
    March 2008
    February 2008
    January 2008
    December 2007
    November 2007
    October 2007
    September 2007
    August 2007
    July 2007
    June 2007
    May 2007
    April 2007
    March 2007
    February 2007
    January 2007
    December 2006
    November 2006
    October 2006
    September 2006
    August 2006
    July 2006
    June 2006
    May 2006
    April 2006
    March 2006
    February 2006
    January 2006
    December 2005
    November 2005
    October 2005
    September 2005
    August 2005
    July 2005
    June 2005
    May 2005
    April 2005
    March 2005
    February 2005
    January 2005
    December 2004
    November 2004
    October 2004
    September 2004
    August 2004
    July 2004
    June 2004
    May 2004
    April 2004
    March 2004
    February 2004
    January 2004

    Creative Commons License
    Attribution, noncommercial, no derivative works. Play nice.

  • « MPrize Versus * | Main | Progress Rests on Better Tools and Processes »

    Monday, November 7, 2005

    An Interview With Robert Freitas

    Sander Olson was kind enough to point me to his two part interview (part one, part two) with Nanomedicine author and healthy life extension advocate Robert Freitas. Readers here will probably find the second portion of the interview to be more pertinent to advanced medical nanotechnology. Some excerpts:

    If we combine the benefits of a human physiology maintained at the level of effectiveness possessed by our bodies when we were children (e.g., dechronification), along with the ability to deal with almost any form of severe trauma (via nanosurgery), then there are very few diseases or conditions that cannot be cured using nanomedicine. The only major class of incurable illness which nanorobots can't handle is the case of brain damage in which portions of your brain have been physically destroyed. This condition might not be reversible if unique information has been irrevocably lost (say, because you neglected to make a backup copy of this information). There are several other minor "incurable" conditions, but all of these similarly relate to the loss of unique information.

    ...

    The availability of practical molecular manufacturing is an obvious and necessary precursor to the widespread use of medical nanorobotics. I would not be surprised if the 2020's are eventually dubbed the "Decade of Medical Nanorobots."

    ...

    The greatest power of nanomedicine will emerge in a decade or two as we learn to design and construct complete artificial nanorobots using diamondoid nanometer-scale parts and subsystems including sensors, motors, manipulators, power plants, and molecular computers. The development pathway will be lengthy and difficult. First, theoretical scaling studies must be used to assess basic concept feasibility. These initial studies would then be followed by more detailed computational simulations of specific nanorobot components and assemblies, and ultimately full systems simulations, all thoroughly integrated with additional simulations of massively parallel manufacturing processes from start to finish consistent with a design-for-assembly engineering philosophy. Once molecular manufacturing capabilities become available, experimental efforts may progress from component fabrication and testing, to component assembly, and finally to prototypes and mass manufacture, ultimately leading to clinical trials.

    As of 2005, progress in medical nanorobotics remains largely at the concept feasibility stage – since 1998, the author has published four theoretical nanorobot scaling studies, including the respirocytes (artificial red cells), microbivores (artificial white cells), clottocytes (artificial platelets), and the vasculoid (an artificial vascular system). These studies have not been intended to yield an actual engineering design for a future nanomedical product. Rather, the purpose was merely to examine a set of appropriate design constraints, scaling issues, and reference designs to assess whether or not the core idea might be feasible, and to determine key limitations of such designs.

    If advanced nanotechnology and molecular manufacturing are of interest to you, then you should add the Responsible Nanotechnology blog to your watch list and make the time to read through the Foresight Nanotech Institute and Center for Responsible Nanotechnology websites.

    Technorati tags:

    Posted by Reason at November 7, 2005 9:13 PM | TrackBack (3)

    Post a comment; thoughtful, considered opinions are valued. Please note that comments incorporating ad hominem attacks, advertising and other forms of inappropriate behavior are likely to be deleted.










    Remember personal info?