FSI’s researchers assess health and medicine through the lenses of economics, nutrition and politics. They’re studying and influencing public health policies of local and national governments and the roles that corporations and nongovernmental organizations play in providing health care around the world. Scholars look at how governance affects citizens’ health, how children’s health care access affects the aging process and how to improve children’s health in Guatemala and rural China. They want to know what it will take for people to cook more safely and breathe more easily in developing countries.
FSI professors investigate how lifestyles affect health. What good does gardening do for older Americans? What are the benefits of eating organic food or growing genetically modified rice in China? They study cost-effectiveness by examining programs like those aimed at preventing the spread of tuberculosis in Russian prisons. Policies that impact obesity and undernutrition are examined; as are the public health implications of limiting salt in processed foods and the role of smoking among men who work in Chinese factories. FSI health research looks at sweeping domestic policies like the Affordable Care Act and the role of foreign aid in affecting the price of HIV drugs in Africa.
Early Infectious Disease Diagnosis Using Genomics
A key pillar and unmet need in the defense against threats to health is the ability to recognize the etiological factor(s) and predict the course of disease, at early points in the timeline of the process. This ability would enable early intervention in the disease process when there is the greatest likelihood of benefit, as well as triaging of hosts, based on individual need. Genomic tools and approaches have enabled a more detailed description of host-microbe encounters, and shed light on fundamentally important processes, including the cellular responses associated with infection. Genome-wide transcript-abundance profiles, like other comprehensive molecular readouts of host physiological state, provide a detailed blueprint of the host-pathogen dialogue during microbial disease. Studies of cancer based on genome-wide transcript-abundance profiles have led to novel signatures that predict disease outcome and serve as useful clinical classifiers. The highly dynamic and compartmentalized aspects of the host response to pathogens complicate efforts to identify predictive signatures for infectious diseases. Yet, studies of systemic infectious diseases so far suggest the possibility of successfully discriminating between different types (classes) of infection and predicting clinical outcome. In addition, host gene expression analysis could lead to the identification of early signatures associated with a protective immune response, both to natural infection and to vaccination. Early explorations in some of these areas indicate the potential feasibility of this approach but also point to important unmet challenges.
David Relman is associate professor of medicine, and of microbiology and immunology at Stanford University. He is also chief, infectious diseases section, at the VA Palo Alto Health Care System in Palo Alto, California.
A native of Boston, Massachusetts, Relman holds an SB degree from the Massachusetts Institute of Technology and received his MD degree, magna cum laude, from Harvard Medical School in 1982. Following postdoctoral clinical training at Massachusetts General Hospital in internal medicine and in infectious diseases, Relman served as a postdoctoral research fellow in microbiology at Stanford University in the laboratory of Stanley Falkow from 1986 until 1992. He joined the Stanford University faculty in 1992 and was appointed associate professor (with tenure) in 2001. His research is directed towards the characterization of the human indigenous microbial communities of the mouth and gut, with emphasis on understanding variation in diversity, succession, the effects of disturbance, and the role of these communities in oral and intestinal disease.
Experimental approaches include molecular phylogenetics, ecological statistics, single cell genomics, and community-wide metagenomics. A second area of research concerns the classification structure of humans and non-human primates with systemic infectious diseases, based on patterns of genome-wide gene transcript abundance in blood and other tissues. The goals of this work are to recognize classes of pathogen and predict clinical outcome at early time points in the disease process, as well as gain further insights into virulence (e.g., of variola and monkeypox viruses). Past achievements include the description of a novel approach for identifying previously-unknown pathogens (selected as one of the 50 most important papers of the last century by the American Society for Microbiology), the identification of a number of new human microbial pathogens, including the agent of Whipple's disease, and the most extensive descriptions to date of the human indigenous microbial community. See http://relman.stanford.edu. Relman received the Squibb Award from the Infectious Diseases Society of America (2001), the Senior Scholar Award in Global Infectious Diseases from the Ellison Medical Foundation (2002), and is a recipient of an NIH Director's Pioneer Award (2006). He is a member of the American Society for Clinical Investigation and was named a Fellow of the American Academy of Microbiology in 2003.
Relman currently serves on the Board of Scientific Counselors of the National Institute of Dental and Craniofacial Research and was a member of the Board of Directors of the Infectious Diseases Society of America (2003-2006), and co-chair of the National Academy of Sciences' Committee on Advances in Technology and the Prevention of Their Application to Next Generation Biowarfare (2004-2006). He is a member of the National Science Advisory Board for Biosecurity, the Institute of Medicine's Forum on Microbial Threats, and advises several U.S. Government departments and agencies on matters related to microbial pathogen detection and future biological threats.
Reuben W. Hills Conference Room
Risk Communication and the Public Debate on Biocontainment Facilities
The siting and construction of high-level biocontainment facilities involves a complex review process with environmental impact documents, legally mandated reviews, and public involvement in decision making about associated risks. In some cases, serious public opposition and legal challenges may arise during the review and approval stages of a project. The recent proposed construction of NIH-NIAID regional and national biocontainment labs provided an opportunity for a real-time study of the review and approval processes associated with labs in many different locations. By analyzing environmental impact documents, mass media coverage, internet communications, and detailed timelines at the various labs, it was possible to identify common issues and features associated with labs in general, as well as specific concerns associated with those where public controversies and opposition arose. The study focused on both good and bad experiences at various recently proposed lab sites and compared them with other past case examples to identify 'lessons learned' that are relevant to both current and future biocontainment projects. Overall, the study documented the continuing importance of trust, transparency, and due process in public decision making and highlighted the importance of developing and implementing a comprehensive pro-active risk communication strategy at the earliest stages of project planning. The study also documented indications of public insecurity associated with biodefense research, which may translate into future problems for public health researchers.
Margaret Race is an ecologist working with NASA through the SETI Institute in Mountain View, Calif. She recently completed a study on public decision making and risk communication associated with the construction of BSL-3 and BSL-4 biocontainment labs nationwide. The study, which was begun during a fellowship at Stanford University and CISAC, reflects her longstanding interest in risk perceptions, legal and societal issues, public communication and education associated with controversial science and technological proposals. In her work with NASA, she focuses on planetary protection and the search for extraterrestrial life--which will someday involve construction of a BSL-4 biocontainment lab for handling and testing scientific samples returned from Mars and other solar system locaitons. During the past decade, she has been a lead member of an international team of researchers that helped NASA develop a protocol for the quarantine, handling, and testing of extraterrestrial samples from Mars. She has served on numerous National Resource Council studies analyzing risk communication and societal issues associated environmental protection on Earth and in space. Dr. Race received her BA degree in Biology and MS degree in Energy Management and Policy from the University of Pennsylvania, and her Ph.D. in Ecology/Zoology from the University of California at Berkeley. Her teaching and research work has included positions at Stanford University (Human Biology Program), UC Berkeley (Assistant Dean, College of Natural Resources), and Office of the President, University of California (Senior Science Policy Analyst and Director of Planning). She was also a Postdoctoral Fellow in Marine Policy and Ocean Management at Woods Hole Oceanographic Institution.
Reuben W. Hills Conference Room
Roundtable Forum - Anxious Times: Seeing Beyond a World of Perpetual Threats
Timely reunion panel hosted by Stanford president John Hennessy, moderated by Stanford alum Ted Koppel, and featuring Bill Perry and George Shultz.
The final decade of the 20th century was a time of great optimism. The fall of the Iron Curtain ushered in a new era of democracy and freedom for millions. The expansion of the European Union promised to open borders to trade and opportunity. The technology revolutions of the 1990s promised to bridge cultural gaps and unite diverse people.
Yet, in the first decade of the 21st century, this optimism has faded in the face of myriad threats: the menace of terrorism and nuclear proliferation, the danger of virulent pandemics, the global dependence on oil from volatile regions, and the far-reaching and often unsettling implications of an interconnected planet.
In such uneasy times, is it safe to feel safe? What is the way forward in the midst of these challenges? What will it take? What is Stanford doing to help address these issues?
Panelists
John L. Hennessy, Stanford President and Bing Presidential Professor
Jean-Pierre Garnier, MBA '74, CEO, GlaxoSmithKline
The Hon. Anthony M. Kennedy, '58, Supreme Court Justice
William J. Perry, '49, MS '50, former Secretary of Defense, Berberian Professor in the School of Engineering
Dr. Lucy Shapiro, Ludwig Professor of developmental biology and cancer researcher
George P. Shultz, former Secretary of State, Ford Distinguished Fellow, Hoover Institution
Jerry Yang, '90, MS '90, co-founder, Yahoo!
CISAC researcher mines old anthrax release for new data
In 1979, anthrax was accidentally released in the city of Sverdlovsk (pop. 1,200,000) in the former Soviet Union, infecting about 80 to 100 people and killing at least 70. Russian officials claimed at the time that tainted meat sold on the black market was responsible; American officials argued that a nearby biological weapons facility released the killer spores. In the early 1990s, Harvard researchers visited the city to piece together the epidemiology of the outbreak. Their investigation, published in Science magazine in 1994, concluded that the Soviet cover story was false.
Now, physicist Dean A. Wilkening, director of the science program at Stanford's Center for International Security and Cooperation (CISAC), has revisited this Cold War tragedy and used its real-world data to improve our ability to model the medical effects of inhalational anthrax. This, in turn, allows him to model more accurately hypothetical scenarios such as the release of a kilogram of aerosolized anthrax in Washington, D.C., today.
The models researchers have used in such thought experiments "predict very different outcomes," says Wilkening, whose work to better understand the human effects of inhalational anthrax was supported by grants from the John D. and Catherine T. MacArthur Foundation and the Carnegie Corporation. Using real-world data from the Sverdlovsk outbreak and from limited nonhuman primate experiments, he was able to eliminate two of four theoretical models currently used in "what if?" scenarios that inform bioterrorism policies ranging from how much medicine we should have on hand in the Strategic National Stockpile to how rigorous post-attack decontamination efforts need to be. He reports his findings in the May 1 issue of Proceedings of the National Academy of Sciences.
"To date, researchers haven't paid enough attention to which model they use," Wilkening says. "Different models can give predictions that vary by a factor of 10 or more, so it matters which model one uses for predicting the human effects of inhalational anthrax." Wilkening aims to anchor models on the best available data and provide realistic models that the bioterrorism community can employ in policy studies.
The Sverdlovsk outbreak is "a sort of natural experiment," he says. "It's a tragic incident, but it also is a very valuable source of scientific data that one can use to distinguish between the four models currently in use." The upshot of his analysis is that two of the models currently in use are not accurate for predicting the human response to inhalational anthrax.
Insufficient data is available to resolve which of the remaining two models he examined is most accurate. That answer will have to await further data from costly nonhuman primate experiments, should they ever be performed (none are planned). "We have to use both [models] right now, or use them as bounding cases," he advises.
Wilkening explored four policy issues that illustrate the consequences of choosing different models: 1) calculating how many anthrax-exposed people would become infected and how many would die; 2) assessing if decontamination would be needed; 3) determining how soon exposed people would show symptoms and how soon doctors would recognize those symptoms as anthrax; and 4) calculating how soon exposed people need to receive antibiotics to avoid contracting the disease.
"To figure out what happens in a bioterrorist event, you need to know two basic properties about the pathogen you're dealing with," Wilkening says. One is the dose-response curve, which determines the likelihood of becoming infected at different exposure levels--the higher the dose of anthrax you get, the higher the probability that you will become infected. The dose at which 50 percent of an exposed population becomes infected, called the ID50, is around 10,000 spores. The other basic property is the incubation-period distribution, or the time the pathogen takes to grow in the body before symptoms first appear.
Wilkening's study brought dose-dependence to a debate over how long the incubation period is for inhalational anthrax. Published data from vaccine efficacy tests in which nonhuman primates were challenged with high doses of anthrax--up to a million spores--indicate an incubation period of one to five days. Data from Sverdlovsk, which exposed people to low doses probably on the order of 1 to 10 spores, indicate a longer incubation period, about 10 days. Whereas previous authors have debated whether nonhuman primate experiments or the Sverdlovsk data should be used to determine the incubation period for inhalational anthrax in humans, Wilkening demonstrates that both estimates are correct, with the difference between them being due to the dose dependence of the incubation period and the very different doses received in each case.
"If you are exposed to a higher dose, there is a much higher chance that an anthrax spore will germinate quickly, thus leading to a shorter incubation period," he says. "Sverdlovsk was a low-dose exposure event and, consequently, one would expect anthrax spore germination to take a longer time, thus leading to a longer incubation period."
Truth and consequences
Russian officials confiscated the medical records of the Sverdlovsk victims and have so far refused to release details of what happened on April 2, 1979. "It would be nice to know exactly what happened, because that would allow us to model the event more accurately," Wilkening says.
Nevertheless, based on weather and other data from the day of the event, scientists think that around 2 p.m. spores, or dormant cells that revive under the right conditions, were released from a military facility, and the Bacillus anthracis spores spread up to 5 kilometers downwind. People breathed in the spores, which geminated and incubated in the body for between four to 40 days before people began to feel ill or show signs of illness such as sore throat, coughing, pains, aches and runny nose--the same symptoms as flu--that indicated they had entered what doctors call the prodromal phase. Within four days, people passed the point of no return, called the fulminant phase, in which toxins from the bacteria had built up to such an extent that people went into shock and died.
It's impossible to save those who've entered the fulminant phase and difficult to save those who've entered the prodromal phase. But if people can start treatment after exposure but before symptoms appear, there's a good chance that they will survive--a conclusion Wilkening draws from work by colleagues at Stanford's Center for Health Policy. Treatment primarily consists of antibiotics such as ciprofloxacin, doxycycline or penicillin. While a vaccine to prevent anthrax exists, it is not yet available for the general public but would be made available to people exposed to anthrax, according to the Centers for Disease Control and Prevention website.
In his study, Wilkening ruled out two of the four models because they either did not fit the Sverdlovsk data or the nonhuman primate data, or both. "There are two models that people have used that should no longer be used to predict fatalities, models B and C." (The four models used in his analysis are labeled A-D for convenience.)
Using the two remaining models A and D, he predicted that a hypothetical attack releasing 1 kilogram of anthrax spores in Washington, D.C., would infect between 4,000 and 50,000 people, most of whom would die if not treated quickly with antibiotics. The difference of a factor of 10, Wilkening points out, is "an uncertainty with which we must live for the time being until better data can resolve which of the models A or D is more accurate."
Regarding decontamination efforts, the higher the probability of becoming infected at low exposure levels, the greater the need for effective decontamination, especially for indoor environments. Spores "by nature are hardy," Wilkening says. In the soil, out of the way of sunlight, they can last for a decade. "Residual contamination can be a very serious problem in the wake of an attack," Wilkening says. "Unfortunately, both models A and D predict that residual surface contamination from anthrax spores will be a problem. Consequently, we need to come up with effective indoor decontamination strategies."
Analysts such as Professor Lawrence Wein of the Graduate School of Business are considering the issue. Last year, he assessed decontamination and concluded cleaning buildings to make them safe to reoccupy was a billion-dollar proposition.
In addition, the four models make very different predictions about when symptoms would occur. The day after exposure, they predict between 10 and 1,000 people feeling sick, with more people getting sick in the viable versus discredited models.
"In terms of detecting the outbreak rapidly, this is a good thing because it says that doctors could recognize it [sooner]," Wilkening says.
In terms of treating people before they reach the prodromal phase, however, this is a bad thing because people become sick quicker. Wilkening's analysis may help policymakers reassess how fast antibiotics need to reach people. His best model says administering antibiotics by day three saves 90 percent of exposed people. "Today we cannot meet the three-day requirement," he warns.
More Than Humanitarianism: A Strategic U.S. Approach Toward Africa
Lyman and Morrison will discuss the Council on Foreign Relations-sponsored Independent Task Force Report on the US and Africa. The Report argues that Africa is becoming steadily more central to the United States and to the rest of the world in ways that transcend humanitarian interests. Africa now plays an increasingly significant role in supplying energy, preventing the spread of terrorism, and halting the devastation of HIV/AIDS. Africa's growing importance is reflected in the intensifying competition with China and other countries for both access to African resources and influence in this region. A more comprehensive U.S. policy toward Africa is needed, the report states, and it lays out recommendations for policymakers to craft that policy. The report is available at www.cfr.org.
Princeton N. Lyman is the Ralph Bunche Senior Fellow and Director for Africa Policy Studies at the Council on Foreign Relations. He is also an Adjunct Professor at Georgetown University. Ambassador Lyman served for over three decades at the U.S. Department of State and the U.S. Agency for International Development (USAID), completing his government service as Assistant Secretary of State for International Organization Affairs. He was previously Ambassador to South Africa, Ambassador to Nigeria, Director of Refugee Programs and Director of the USAID Mission to Ethiopia.
From 1999 to 2000, he was Senior Fellow at the United States Institute of Peace. Ambassador Lyman held the position of Executive Director of the Global Interdependence Initiative of the Aspen Institute (1999 to 2003) and has received the President's Distinguished Service Award and the Department of State Distinguished Honor Award. Ambassador Lyman has published on foreign policy, African affairs, economic development, HIV/AIDS, UN reform, and peacekeeping. He coauthored the Council on Foreign Relations Special Report entitled Giving Meaning to "Never Again": Seeking an Effective Response to the Crisis in Darfur and Beyond. His book, Partner to History: The U.S. Role in South Africa's Transition to Democracy, was published in 2002. He earned his B.A. from the University of California at Berkeley and his Ph.D. in Political Science from Harvard University. He serves as the Co-Director of the Council on Foreign Relations-sponsored Independent Task Force on Africa.
J. Stephen Morrison is Director of the Africa Program and the Task Force on HIV/AIDS at the Center for Strategic and International Studies (CSIS). He joined CSIS in January 2000 and in late 2001, launched the CSIS Task Force on HIV/AIDS. The task force is a multiyear project co-chaired by Senators Bill Frist (R-TN) and John Kerry (D-MA) and funded by the Gates Foundation and the Catherine Marron Foundation. Dr. Morrison co-chaired the reassessment of the U.S. approach to Sudan that laid the basis for the Bush administration push for a negotiated peace settlement, and in the summer of 2002 he organized an energy expert mission to the Sudan peace negotiations in Kenya.
From 1996 through early 2000, Dr. Morrison served on the Secretary of State's Policy Planning Staff, where he was responsible for African affairs and global foreign assistance issues. In that position, he led the State Department's initiative on illicit diamonds and chaired an interagency review of the U.S. government's crisis humanitarian programs. From 1993 to 1995, Dr. Morrison conceptualized and launched USAID's Office of Transition Initiatives; he served as the office's first Deputy Director and created post-conflict programs in Angola and Bosnia. From 1992 until mid-1993, Dr. Morrison was the Democracy and Governance Adviser to the U.S. embassies and USAID missions in Ethiopia and Eritrea. He serves as the Co-Director of the Council on Foreign Relations-sponsored Independent Task Force on Africa.
CISAC Conference Room
Cancer Risk Following Exposure to Low Level Radiation
For the past five years, the Committee on the Biological Effects of Ionizing Radiation (BEIR VII) of the National Academy of Science has reviewed and analyzed the health risks from exposure to low levels of radiation (X-rays and gamma rays.) This re-assessment followed a period of rich accumulation of biologic and epidemiologic data from 1990 on, the year of the last previous study (BEIR V.)
The scientific evidence showed that even low doses of radiation may pose a risk of cancer, and that there was no threshold below which exposure may be viewed as harmless. Lifetime excess risks were determined for 12 relatively common cancers. While the over-all risk of cancer at low radiation levels is small, the mortality in women is higher than in men, and infants are at greater risk than adults. The presentation will review the conclusions of the 700-page report.
Herbert L. Abrams, M.D., Professor Emeritus of Radiology at Stanford, was formerly Philip H. Cook Professor and Chairman of Radiology at Harvard, and has been a CISAC Member-in-Residence since 1985. He served as one of the two physicians on the BEIR VII committee, the other members, representing radiation biology, cancer biology, physics, epidemiology and genetics. The 1st edition of his three volume work, Abrams Angiography: Vascular and Interventional Radiology, was published in 1961, the fifth edition in 2005. He is the author or co-author of six other books on Congenital Heart Disease, Coronary Arteriography, Diagnostic Decision Making, Diagnostic Technology Assessment, and Presidential Disability and of over 200 refereed papers on cardiovascular disease, health policy, disabled leadership, human instability in the nuclear forces, and inadvertent nuclear war. A member of the Institute of Medicine of the National Academy of Sciences, he was also the founding Vice-President of International Physicians for the Prevention of Nuclear War (IPPNW), recipient of the 1985 Nobel Peace Prize.
Reuben W. Hills Conference Room
Panel Discussion: Hurricane Katrina and Homeland Security: What are the Connections and Research Implications?
Lynn Eden is associate director for research/senior research scholar at CISAC. Eden received her Ph.D. in sociology from the University of Michigan, held several pre- and post-doctoral fellowships, and taught in the history department at Carnegie Mellon before coming to Stanford. Her book Whole World on Fire: Organizations, Knowledge, and Nuclear Weapons Devastation won the American Sociological Association's 2004 Robert K. Merton Award for best book in science, knowledge, and technology.
Michael May is professor emeritus (research) in the Stanford University School of Engineering and a senior fellow with the Freeman Spogli Institute for Intenrational Studies. He is the former co-director of Stanford University's Center for International Security and Cooperation, and a director emeritus of the Lawrence Livermore National Laboratory, where he worked from 1952 to 1988.
Charles Perrow is professor emeritus of sociology at Yale University. His current interests are in managing highly interactive, tightly-coupled-systems (including hospitals, nuclear plants, chemical plants, power grids, aviation, the space program, and intelligent transportation systems). These interests grew out of his work on "normal accidents," with its emphasis upon organizational design and systems theory. An organizational theorist, he is the author of a number of award winning books in the field of sociology.
Reuben W. Hills Conference Room
Lynn Eden
Not in residence
Lynn Eden is a Senior Research Scholar Emeritus. She was a Senior Research Scholar at Stanford University's Center for International Security and Cooperation until January 2016, as well as was Associate Director for Research. Eden received her Ph.D. in sociology from the University of Michigan, held several pre- and post-doctoral fellowships, and taught in the history department at Carnegie Mellon before coming to Stanford.
In the area of international security, Eden has focused on U.S. foreign and military policy, arms control, the social construction of science and technology, and organizational issues regarding nuclear policy and homeland security. She co-edited, with Steven E. Miller, Nuclear Arguments: Understanding the Strategic Nuclear Arms and Arms Control Debates (Ithaca, N.Y.: Cornell University Press, 1989). She was an editor of The Oxford Companion to American Military History (New York: Oxford University Press, 2000), which takes a social and cultural perspective on war and peace in U.S. history. That volume was chosen as a Main Selection of the History Book Club.
Eden's book Whole World on Fire: Organizations, Knowledge, and Nuclear Weapons Devastation (Ithaca: Cornell University Press, 2004; New Delhi: Manas Publications, 2004) explores how and why the U.S. government--from World War II to the present--has greatly underestimated the damage caused by nuclear weapons by failing to predict damage from firestorms. It shows how well-funded and highly professional organizations, by focusing on what they do well and systematically excluding what they don't, may build a poor representation of the world--a self-reinforcing fallacy that can have serious consequences, from the sinking of the Titanic to not predicting the vulnerability of the World Trade Center to burning jet fuel. Whole World on Fire won the American Sociological Association's 2004 Robert K. Merton Award for best book in science, knowledge, and technology.
Eden has also written on life in small-town America. Her first book, Crisis in Watertown (Ann Arbor: University of Michigan Press, 1972), was her college senior thesis; it was a finalist for a National Book Award in 1973. Her second book, Witness in Philadelphia, with Florence Mars (Baton Rouge: Louisiana State University Press, 1977), about the murders of civil rights workers Schwerner, Chaney, and Goodman in the summer of 1964, was a Book of the Month Club Alternate Selection.
Michael M. May
Michael May is Professor Emeritus (Research) in the Stanford University School of Engineering and a senior fellow with the Freeman Spogli Institute for International Studies at Stanford University. He is the former co-director of Stanford University's Center for International Security and Cooperation, having served seven years in that capacity through January 2000.
May is a director emeritus of the Lawrence Livermore National Laboratory, where he worked from 1952 to 1988, with some brief periods away from the Laboratory. While there, he held a variety of research and development positions, serving as director of the Laboratory from 1965 to 1971.
May was a technical adviser to the Threshold Test Ban Treaty negotiating team; a member of the U.S. delegation to the Strategic Arms Limitation Talks; and at various times has been a member of the Defense Science Board, the General Advisory Committee to the AEC, the Secretary of Energy Advisory Board, the RAND Corporation Board of Trustees, and the Committee on International Security and Arms Control of the National Academy of Sciences. He is a member of the International Institute on Strategic Studies, and a Fellow of the American Physical Society and the American Association for the Advancement of Science.
May received the Distinguished Public Service and Distinguished Civilian Service Medals from the Department of Defense, and the Ernest Orlando Lawrence Award from the Atomic Energy Commission, as well as other awards.
His current research interests are nuclear weapons policy in the US and in other countries; nuclear terrorism; nuclear and other forms of energy and their impact on the environment, health and safety and security; the use of statistics and mathematical models in the public sphere.
May is continuing work on creating a secure future for civilian nuclear applications. In October 2007, May hosted an international workshop on how the nuclear weapon states can help rebuild the consensus underlying the Nuclear Non-Proliferation Treaty (NPT). Proceedings and a summary report are available online or by email request. May also chaired a technical working group on nuclear forensics. The final report is available online.
In April 2007, May in cooperation with former Secretary of Defense William J. Perry and Professor Ashton Carter of Harvard hosted a workshop on what would have to be done to be ready for a terrorist nuclear detonation. The report is available online at the Preventive Defense Project. A summary, titled, "The Day After: Action Following a Nuclear Blast in a U.S. City," was published fall 2007 in Washington Quarterly and is available online.
Recent work also includes a study of nuclear postures in several countries (2007 - 2009); an article on nuclear disarmament and one on tactical nuclear weapons; and a report with Kate Marvel for the American Academy of Arts and Sciences on possible game changers in the nuclear energy industry.
The Antiplague System of the Former Soviet Union
The USSR's anti-plague system had four main responsibilities: monitor natural foci of endemic dread diseases such as plague, tularemia, anthrax, and Crimean-Congo hemorrhagic fever; protect the nation from imported exotic diseases (e.g., cholera and smallpox); protect the nation from biological warfare; and perform tasks for the Soviet offensive biological weapons program. Although the anti-plague system appears to have had successes in public health, its work undoubtedly was compromised by excessive secrecy, which led to anti-plague scientists having to overcome substantial barriers before being able to communicate with colleagues in other Soviet public health agencies, publish the results of their work, and undertake travel to non-socialist countries. This system disintegrated after December 1991, but was resurrected as elements of the newly independent states' health systems.
Reporting on the findings of a recently concluded project carried out by the Center for Nonproliferation Studies (CNS), I will discuss: (1) the threats that the anti-plague systems' human resources, pathogen culture collections, and equipment pose to international security; (2) the promises these systems hold, should they regain their former level of scientific/technical capability, for enhancing international public health; and (3) current activities by U.S. government agencies to lessen the security and safety threats of these systems and, simultaneously, increase their public health capabilities. As appropriate, I will illustrate the presentation with photos taken by CNS personnel in the course of having visited more than 40 anti-plague institutes and stations.
Dr. Raymond Zilinskas worked as a clinical microbiologist for 16 years, after graduating from California State University at Northridge with a BA in Biology, and from University of Stockholm with a Filosofie Kandidat in Organic Chemistry. He then commenced graduate studies at the University of Southern California. His dissertation addressed policy issues generated by recombinant DNA research, including the applicability of genetic engineering techniques for military and terrorist purposes. After earning a PhD, Dr. Zilinskas worked at the U.S. Office of Technology Assessment (1981-1982), United Nations Industrial Development Organization (1982-1986), and University of Maryland Biotechnology Institute (UMBI) (1987-1998). In addition, he was an Adjunct Associate Professor at the Department of International Health, School of Hygiene and Public Health, Johns Hopkins University, until 1999.
In 1993, Dr. Zilinskas was appointed William Foster Fellow at the U.S. Arms Control and Disarmament Agency (ACDA), where he worked on biological and toxin warfare issues. In 1994, ACDA seconded Dr. Zilinskas to the United Nations Special Commission (UNSCOM), where he worked as a biological analyst for seven months. He participated in two biological warfare-related inspections in Iraq (June and October 1994) encompassing 61 biological research and production facilities. He set up a database containing data about key dual-use biological equipment in Iraq and developed a protocol for UNSCOM's on-going monitoring and verification program in the biological field.
After the fellowship, Dr. Zilinskas returned to the UMBI and Johns Hopkins University. In addition, he continued to serve as a long-term consultant to ACDA (now part of the U.S. Department of State), for which he carried out studies on Cuban allegations of U.S. biological attacks against its people, animals, and plants and investigations carried out by the United Nations of chemical warfare in Southeast Asia and the Arabian Gulf region. Dr. Zilinskas also is a consultant to the U.S. Department of Defense.
In September 1998, Dr. Zilinskas was appointed Senior Scientist at the Center for Nonproliferation Studies (CNS), Monterey Institute of International Studies. On September 1, 2002, he was promoted to the Director of the Chemical and Biological Weapons Nonproliferation Program at the CNS. His research focuses on achieving effective biological arms control, assessing the proliferation potential of the former Soviet Union's biological warfare program, and meeting the threat of bioterrorism. Dr. Zilinskas' book Biological Warfare: Modern Offense and Defense, a definitive account on how modern biotechnology has qualitatively changed developments related to biological weapons and defense, was published in 1999. In 2005, the important reference work Encyclopedia of Bioterrorism Defense, which is co-edited by Richard Pilch and Dr. Zilinskas, was published by Wiley. He currently is writing a book on the former Soviet Union's biological warfare program, including its history, organization, accomplishments, and proliferation potential, which will be published in 2006.
Reuben W. Hills Conference Room, East 207, Encina Hall