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A Patent on a Good Night’s Sleep

Henry Schein Inc. Selects Itamar-Medical’s WatchPAT™ as Integral Part of Their New Dental Sleep Program

CAESAREA, Israel–(BUSINESS WIRE)–Henry Schein Inc., the largest provider of health care products and services to office-based practitioners, today announced the launch of its Sleep Complete™ program, a new integrated comprehensive solution that provides all of the information and products necessary for the successful implementation of dental sleep medicine into the dental practice. A key component of this package will be Itamar-Medical’s WatchPAT home test device for the diagnosis of obstructive sleep apnea. The Sleep Complete package will be offered to dentists through a bundled financing package which should significantly lower the financial barrier to entry that often faces dentists interested in incorporating sleep medicine into their practice.

“This collaboration will help us benefit from Henry Schein’s expert dental sales team across America”
Itamar-Medical was one of the first pioneers to introduce portable sleep diagnostic testing into the area of dental sleep medicine and now continues to the next level with the deployment of Henry Schein’s Sleep Complete program along with Modern Dental Labs (makers of The Moses oral appliance) and Nierman Practice Management (providers of a simplified billing and reimbursement software program). “This collaboration will help us benefit from Henry Schein’s expert dental sales team across America,” said Marvin Slosman, President Itamar-Medical Inc. (US). “There is tremendous opportunity to build on our success and commitment to the Dental Market through this unique offering.”

About WatchPAT

WatchPAT, the most convenient portable sleep testing device on the market, is easily installed by the patient in the comfort of their own home with over 350,000 tests worldwide. It is the only portable device providing Apnea-Hypopnea Index (AHI), Respiratory Disturbance Index (RDI), and Oxygen Desaturation Index (ODI) based on actual sleep time and sleep states (REM/Wake/Deep/Light) without a cumbersome nasal cannula or belt around the chest. This gives the patient greater comfort, more natural sleep, as well as an amazingly low failure rate. Dentists may work in concert with their local sleep physicians or call upon one of several nationwide sleep-medicine networks for completion of patient diagnosis. Sleep physicians use Itamar’s intuitive software to review the data channels and manually override the automatic suggested scoring (the actual sleep data cannot be changed). WatchPAT’s newest features include multi-night testing, tamper-proof occupational testing, and seamless web-based study-upload to Electronic Medical Records.

About Itamar Medical


Itamar Medical Ltd. is a publicly-traded medical technology company (TASE: ITMR) utilizing PAT™ (Peripheral Arterial Tone) signal technology and applications. The PAT signal is a non-invasive “window” to both the cardiovascular and autonomic nervous systems. For more information, visit www.itamar-medical.com.

Contacts

for Itamar Medical Ltd.
Daphna Triwaks, Head of Public Relations,
            +972-50-520-2322    
daphna@triwaks.co.il

A Patent on a Good Night’s Sleep

Henry Schein Inc. Selects Itamar-Medical’s WatchPAT™ as Integral Part of Their New Dental Sleep Program

CAESAREA, Israel–(BUSINESS WIRE)–Henry Schein Inc., the largest provider of health care products and services to office-based practitioners, today announced the launch of its Sleep Complete™ program, a new integrated comprehensive solution that provides all of the information and products necessary for the successful implementation of dental sleep medicine into the dental practice. A key component of this package will be Itamar-Medical’s WatchPAT home test device for the diagnosis of obstructive sleep apnea. The Sleep Complete package will be offered to dentists through a bundled financing package which should significantly lower the financial barrier to entry that often faces dentists interested in incorporating sleep medicine into their practice.

“This collaboration will help us benefit from Henry Schein’s expert dental sales team across America”
Itamar-Medical was one of the first pioneers to introduce portable sleep diagnostic testing into the area of dental sleep medicine and now continues to the next level with the deployment of Henry Schein’s Sleep Complete program along with Modern Dental Labs (makers of The Moses oral appliance) and Nierman Practice Management (providers of a simplified billing and reimbursement software program). “This collaboration will help us benefit from Henry Schein’s expert dental sales team across America,” said Marvin Slosman, President Itamar-Medical Inc. (US). “There is tremendous opportunity to build on our success and commitment to the Dental Market through this unique offering.”

About WatchPAT

WatchPAT, the most convenient portable sleep testing device on the market, is easily installed by the patient in the comfort of their own home with over 350,000 tests worldwide. It is the only portable device providing Apnea-Hypopnea Index (AHI), Respiratory Disturbance Index (RDI), and Oxygen Desaturation Index (ODI) based on actual sleep time and sleep states (REM/Wake/Deep/Light) without a cumbersome nasal cannula or belt around the chest. This gives the patient greater comfort, more natural sleep, as well as an amazingly low failure rate. Dentists may work in concert with their local sleep physicians or call upon one of several nationwide sleep-medicine networks for completion of patient diagnosis. Sleep physicians use Itamar’s intuitive software to review the data channels and manually override the automatic suggested scoring (the actual sleep data cannot be changed). WatchPAT’s newest features include multi-night testing, tamper-proof occupational testing, and seamless web-based study-upload to Electronic Medical Records.

About Itamar Medical


Itamar Medical Ltd. is a publicly-traded medical technology company (TASE: ITMR) utilizing PAT™ (Peripheral Arterial Tone) signal technology and applications. The PAT signal is a non-invasive “window” to both the cardiovascular and autonomic nervous systems. For more information, visit www.itamar-medical.com.

Contacts

for Itamar Medical Ltd.
Daphna Triwaks, Head of Public Relations,
            +972-50-520-2322    
daphna@triwaks.co.il

Shecht Roundup

Addressing the Nobel banquet, Shechtman said scientists have a duty “to promote education, rational thinking and tolerance.”
“We should also encourage our educated youth to become technological entrepreneurs. Those countries that nurture this knowhow will survive future financial and social crises. Let us advance science to create a better world for all,” he said.
Interviewed Sunday, Shechtman, 70, made clear he worried about education in Israel — specifically that of the haredi Orthodox sector, which sometimes places more a premium on religious studies than on core secular subjects.
“You can pray to the heavens, but it doesn’t put bread on the table or provide defense for the country,” he told Israel Radio.
Shechtman called for state funds to be denied to schools that neglect the core curriculum and for parents who deprive their children of a rounded education to be “punished under law.”
 “I have been associated with the Technion for half a century. First as a student and then as a faculty member. In the early days it was not easy to be admitted to the university, and even more difficult to be a student there. In my day, if you failed one course, you had to repeat the whole year. But our graduates know that they receive the best training in engineering and high-technology.”


Shecht Roundup

Addressing the Nobel banquet, Shechtman said scientists have a duty “to promote education, rational thinking and tolerance.”
“We should also encourage our educated youth to become technological entrepreneurs. Those countries that nurture this knowhow will survive future financial and social crises. Let us advance science to create a better world for all,” he said.
Interviewed Sunday, Shechtman, 70, made clear he worried about education in Israel — specifically that of the haredi Orthodox sector, which sometimes places more a premium on religious studies than on core secular subjects.
“You can pray to the heavens, but it doesn’t put bread on the table or provide defense for the country,” he told Israel Radio.
Shechtman called for state funds to be denied to schools that neglect the core curriculum and for parents who deprive their children of a rounded education to be “punished under law.”
 “I have been associated with the Technion for half a century. First as a student and then as a faculty member. In the early days it was not easy to be admitted to the university, and even more difficult to be a student there. In my day, if you failed one course, you had to repeat the whole year. But our graduates know that they receive the best training in engineering and high-technology.”


Prof. Shechtman: “Don’t dream of exits…”

Professor Dan Shechtman Speaks to 85 Swedish Business Leaders

“I tell my students… don’t dream of exits.”

Prof’ Shechtman (center) with the panel participants

STOCKHOLM, SWEDEN– The Forum for Innovation Management (FIM), a forum within of the Karl-Adam Bonnier Foundation, hosted “Innovation and Entrepreneurship Education,” on December 6, 2011 at the historic mansion Nedre Manilla. Some 85 attendees from the Swedish academic, government and business communities listened to keynote speaker Distinguished Technion Professor Dan Shechtman, the 2011 Nobel Laureate in Chemistry and expert panelists, discuss the challenges facing many countries in today’s economy ways to improve performance and growth through entrepreneurship.

Matias Bonnier, Chairman of the Karl-Adam Bonnier Foundation welcomed participants and speakers to his ancestral home.

In his introduction Mikolaj Norek, FIM Director, said that like entrepreneurs, Professor Shechtman had to fight for recognition to achieve success since the scientific community did not initially believe in his discovery.

“Entrepreneurship education is vital to the survival and growth of a country’s future especially when natural resources are being depleted at an accelerated rate,” said Prof. Shechtman.

Even as a young academic Prof. Shechtman foresaw the value in educating engineers in this area. For more than 25 years he has taught technological entrepreneurship at the Technion and counts some 10,000 graduates of this course. The course exposed students to both successful and non-successful entrepreneurs and provided training legal, business and marketing professionals who offered real-world advice.

“Israel is unique as our students have completed military service where they are already exposed to some of the most sophisticated high-tech in the world. They are also older and more mature when they start their university studies,” said Prof. Shechtman.

While this may give Israel an advantage, Prof. Shechtman believes that there are similarities in small countries such as Sweden and Israel that can create the cultural environment that can ultimately foster a start-up economy.

He also said that Israel faces the challenge of many start-ups developed with an exit strategy in mind. This does not allow for the creation of larger companies that can be impactful through the production of exportable products, and most importantly in job creation.

The panelists included Prof. Anders Flodström, Former University Chancellor and Head of the Swedish National Agency for Higher Education; Maud Olofsson, Former Swedish Minister for Enterprise and Energy, Advisor to US Secretary of State Hillary Clinton on female entrepreneurship; Prof. Karin Markides, President Chalmers University of Technology; and Prof. Martin Schuurmans, Founding Chairman of the European Institute of Innovation & Technology (EIT) Governing Board.

They echoed Prof. Shechtman’s belief that entrepreneurship should start at an early age, even at the Kindergarten level, to create a spirit of entrepreneurship. Matias Bonnier commented that younger students should be active participants in their entrepreneurial education. They should interact, talk and ask questions of their teachers. He added that entrepreneurship is a bridge between societies and nations.

They also suggested that the government take an active role in setting policies that can foster growth in this area.

Tor Bonnier, Chairman of FIM, concluded the meeting with the message that it is clear that the study of entrepreneurship is important to have in any society. “It is important to foster budding entrepreneurs based on our own culture in order to be competitive in a global economy.” he said.

The event was co-created by the Israeli Embassy in Sweden.

 —

FORUM FOR INNOVATION MANAGEMENT (FIM) was established in 1999 as a non-profit activity within the Karl-Adam Bonnier Foundation.

FIM is currently in its twelve year, having organized 60 exclusive seminars bringing together influential representatives such as policy makers and selected representatives from financial, legal and academic institutions as well as practitioners in the corporate and entrepreneurial business sectors. FIM has also published two books in the series of “Swedish Innovation Force” – which summarizes many of the topics discussed at the seminars.

FIM maintains a high standard, attracting a selected audience through tailor made seminars with national and international speakers, and publications with support from Karl-Adam Bonniers Stiftelse (foundation), Vinnova, Företagarna, IVA, and Innovationsbron. Our mission is to increase the awareness of entrepreneurial and innovation issues in the Swedish academic and corporate environments. The forum enables people to cross-pollinate ideas on current and future policies and legislations that will be the foundation of our new national competitive strategy.

Prof. Shechtman: “Don’t dream of exits…”

Professor Dan Shechtman Speaks to 85 Swedish Business Leaders

“I tell my students… don’t dream of exits.”

Prof’ Shechtman (center) with the panel participants

STOCKHOLM, SWEDEN– The Forum for Innovation Management (FIM), a forum within of the Karl-Adam Bonnier Foundation, hosted “Innovation and Entrepreneurship Education,” on December 6, 2011 at the historic mansion Nedre Manilla. Some 85 attendees from the Swedish academic, government and business communities listened to keynote speaker Distinguished Technion Professor Dan Shechtman, the 2011 Nobel Laureate in Chemistry and expert panelists, discuss the challenges facing many countries in today’s economy ways to improve performance and growth through entrepreneurship.

Matias Bonnier, Chairman of the Karl-Adam Bonnier Foundation welcomed participants and speakers to his ancestral home.

In his introduction Mikolaj Norek, FIM Director, said that like entrepreneurs, Professor Shechtman had to fight for recognition to achieve success since the scientific community did not initially believe in his discovery.

“Entrepreneurship education is vital to the survival and growth of a country’s future especially when natural resources are being depleted at an accelerated rate,” said Prof. Shechtman.

Even as a young academic Prof. Shechtman foresaw the value in educating engineers in this area. For more than 25 years he has taught technological entrepreneurship at the Technion and counts some 10,000 graduates of this course. The course exposed students to both successful and non-successful entrepreneurs and provided training legal, business and marketing professionals who offered real-world advice.

“Israel is unique as our students have completed military service where they are already exposed to some of the most sophisticated high-tech in the world. They are also older and more mature when they start their university studies,” said Prof. Shechtman.

While this may give Israel an advantage, Prof. Shechtman believes that there are similarities in small countries such as Sweden and Israel that can create the cultural environment that can ultimately foster a start-up economy.

He also said that Israel faces the challenge of many start-ups developed with an exit strategy in mind. This does not allow for the creation of larger companies that can be impactful through the production of exportable products, and most importantly in job creation.

The panelists included Prof. Anders Flodström, Former University Chancellor and Head of the Swedish National Agency for Higher Education; Maud Olofsson, Former Swedish Minister for Enterprise and Energy, Advisor to US Secretary of State Hillary Clinton on female entrepreneurship; Prof. Karin Markides, President Chalmers University of Technology; and Prof. Martin Schuurmans, Founding Chairman of the European Institute of Innovation & Technology (EIT) Governing Board.

They echoed Prof. Shechtman’s belief that entrepreneurship should start at an early age, even at the Kindergarten level, to create a spirit of entrepreneurship. Matias Bonnier commented that younger students should be active participants in their entrepreneurial education. They should interact, talk and ask questions of their teachers. He added that entrepreneurship is a bridge between societies and nations.

They also suggested that the government take an active role in setting policies that can foster growth in this area.

Tor Bonnier, Chairman of FIM, concluded the meeting with the message that it is clear that the study of entrepreneurship is important to have in any society. “It is important to foster budding entrepreneurs based on our own culture in order to be competitive in a global economy.” he said.

The event was co-created by the Israeli Embassy in Sweden.

 —

FORUM FOR INNOVATION MANAGEMENT (FIM) was established in 1999 as a non-profit activity within the Karl-Adam Bonnier Foundation.

FIM is currently in its twelve year, having organized 60 exclusive seminars bringing together influential representatives such as policy makers and selected representatives from financial, legal and academic institutions as well as practitioners in the corporate and entrepreneurial business sectors. FIM has also published two books in the series of “Swedish Innovation Force” – which summarizes many of the topics discussed at the seminars.

FIM maintains a high standard, attracting a selected audience through tailor made seminars with national and international speakers, and publications with support from Karl-Adam Bonniers Stiftelse (foundation), Vinnova, Företagarna, IVA, and Innovationsbron. Our mission is to increase the awareness of entrepreneurial and innovation issues in the Swedish academic and corporate environments. The forum enables people to cross-pollinate ideas on current and future policies and legislations that will be the foundation of our new national competitive strategy.

Nobel Banquet Speech 2011 – Transcript

“A new definition of crystal emerged, one that is beautiful and humble and open to further discoveries. A humble scientist is a good scientist.”

Banquet Speech

Dan Shechtman’s speech at the Nobel Banquet, 10 December 2011.
Your Majesties, Your Royal Highnesses, Nobel Laureates, fellow scientists, ladies and gentlemen, dear family.
On April 8, 1982, I was alone in the electron microscope room when I discovered the Icosahedral Phase that opened the field of quasi–periodic crystals. However, today I am joined by many hundreds of enthusiastic scientists worldwide. I stand here as the vanguard of the science of quasicrystals, but without these dedicated scientists the field would not be where it is today. This supreme recognition of the science we have unveiled over the last quarter century is celebrated by us all.
In the beginning there were only a handful of gifted colleagues who helped launch the field. First was Ilan Blech, at the time a Technion professor, who proposed the first icosahedral model. He demonstrated, by computer simulation, that the model could produce diffraction patterns that matched those that I had observed in the electron microscope. Together we wrote the first announcement of the discovery. Then John Cahn of the US and Denis Gratias of France coauthored with us the second, modified article that was actually published first. Other key contributions to the field were made by Roger Penrose of the UK who, years earlier, created a nonrepeating aperiodic mosaic with just two rhomboid tiles, and Alan Mackay of the UK who showed that Penrose tiles produce sharp diffraction spots. Dov Levine of Israel and Paul Steinhardt of the US made the connection between my diffraction patterns and Mackay’s work. They published a theoretical paper formulating the fundamentals of quasi-crystals and coined the term. All these pioneers paved the way to the wonderful world of quasi-periodic materials.
I would like to mention two other eminent scientists who are no longer with us, whose commitment to the field was of great importance. These are Luis Michel, a prominent French mathematician, and Kehsin Kuo of China, a leader in electron microscopy, who was trained in Sweden.
We are now approaching the end of 2011, the UNESCO International Year of Chemistry, a worldwide celebration of the field. In a few weeks we will see in the New Year, 2012, the centennial of the von Laue experiment which launched the field of modern crystallography. The following year, 2013, will mark the International Year of Crystallography. The paramount recognition of the discovery of quasi-periodic crystals is, therefore, most timely.
The discovery and the ensuing progress in the field resulted in a paradigm shift in the science of crystallography. A new definition of crystal emerged, one that is beautiful and humble and open to further discoveries. A humble scientist is a good scientist.
Science is the ultimate tool to reveal the laws of nature and the one word written on its banner is TRUTH. The laws of nature are neither good nor bad. It is the way in which we apply them to our world that makes the difference.
It is therefore our duty as scientists to promote education, rational thinking and tolerance. We should also encourage our educated youth to become technological entrepreneurs. Those countries that nurture this knowhow will survive future financial and social crises. Let us advance science to create a better world for all.
———
I would like to thank the scientists who nominated me, the Nobel Committee, the Royal Swedish Academy of Sciences and the Nobel Foundation for bestowing on me this unparalleled honor.
Thank you.

Nobel Banquet Speech 2011 – Transcript

“A new definition of crystal emerged, one that is beautiful and humble and open to further discoveries. A humble scientist is a good scientist.”

Banquet Speech

Dan Shechtman’s speech at the Nobel Banquet, 10 December 2011.
Your Majesties, Your Royal Highnesses, Nobel Laureates, fellow scientists, ladies and gentlemen, dear family.
On April 8, 1982, I was alone in the electron microscope room when I discovered the Icosahedral Phase that opened the field of quasi–periodic crystals. However, today I am joined by many hundreds of enthusiastic scientists worldwide. I stand here as the vanguard of the science of quasicrystals, but without these dedicated scientists the field would not be where it is today. This supreme recognition of the science we have unveiled over the last quarter century is celebrated by us all.
In the beginning there were only a handful of gifted colleagues who helped launch the field. First was Ilan Blech, at the time a Technion professor, who proposed the first icosahedral model. He demonstrated, by computer simulation, that the model could produce diffraction patterns that matched those that I had observed in the electron microscope. Together we wrote the first announcement of the discovery. Then John Cahn of the US and Denis Gratias of France coauthored with us the second, modified article that was actually published first. Other key contributions to the field were made by Roger Penrose of the UK who, years earlier, created a nonrepeating aperiodic mosaic with just two rhomboid tiles, and Alan Mackay of the UK who showed that Penrose tiles produce sharp diffraction spots. Dov Levine of Israel and Paul Steinhardt of the US made the connection between my diffraction patterns and Mackay’s work. They published a theoretical paper formulating the fundamentals of quasi-crystals and coined the term. All these pioneers paved the way to the wonderful world of quasi-periodic materials.
I would like to mention two other eminent scientists who are no longer with us, whose commitment to the field was of great importance. These are Luis Michel, a prominent French mathematician, and Kehsin Kuo of China, a leader in electron microscopy, who was trained in Sweden.
We are now approaching the end of 2011, the UNESCO International Year of Chemistry, a worldwide celebration of the field. In a few weeks we will see in the New Year, 2012, the centennial of the von Laue experiment which launched the field of modern crystallography. The following year, 2013, will mark the International Year of Crystallography. The paramount recognition of the discovery of quasi-periodic crystals is, therefore, most timely.
The discovery and the ensuing progress in the field resulted in a paradigm shift in the science of crystallography. A new definition of crystal emerged, one that is beautiful and humble and open to further discoveries. A humble scientist is a good scientist.
Science is the ultimate tool to reveal the laws of nature and the one word written on its banner is TRUTH. The laws of nature are neither good nor bad. It is the way in which we apply them to our world that makes the difference.
It is therefore our duty as scientists to promote education, rational thinking and tolerance. We should also encourage our educated youth to become technological entrepreneurs. Those countries that nurture this knowhow will survive future financial and social crises. Let us advance science to create a better world for all.
———
I would like to thank the scientists who nominated me, the Nobel Committee, the Royal Swedish Academy of Sciences and the Nobel Foundation for bestowing on me this unparalleled honor.
Thank you.

Nobel Prize Chemistry 2011 Award Ceremony Speech


Transcript: 


Award Ceremony Speech

Presentation Speech by Professor Sven Lidin, Member of the Royal Swedish Academy of Sciences; Member of the Nobel Committee for Chemistry, 10 December 2011
Your Majesties, Your Royal Highnesses, Ladies and Gentlemen,

For three millennia we have known that five-fold symmetry is incompatible with periodicity, and for almost three centuries we believed that periodicity was a prerequisite for crystallinity. The electron diffraction pattern obtained by Dan Shechtman on April 8, 1982 shows that at least one of these statements is flawed, and it has led to a revision our view of the concepts of symmetry and crystallinity alike. The objects he discovered are aperiodic, ordered structures that allow exotic symmetries and that today are known as quasicrystals. Having the courage to believe in his observations and in himself, Dan Shechtman has changed our view of what order is and has reminded us of the importance of balance between preservation and renewal, even for the most well established paradigms. Science is a theoretical construction on an empirical fundament. Observations make or break theories.

“We are like dwarves on the shoulders of giants, so that we can see more clearly than they, and things at a greater distance, not by the virtue of any sharpness of sight on our part, but because we are carried high and raised up by their great size.” This metaphor, first used by Bernard of Chartres and later by Newton and many others, hails back to antiquity and to the blind giant Orion who carried the servant Cedalion on his shoulders in his quest for the uttermost east where the sun would heal him of his blindness. The myth illustrates the progress of science. Each generation takes knowledge a little further because it builds on the results of its forebears. The image of the amassed knowledge as a blind giant with a seeing dwarf on its shoulders is an idealisation of science at its best: A relationship of mutual trust between the bearer and the borne, between the blind and the seeing. The giant provides established truths. The dwarf strives for new insight. Like every good metaphor this one not only describes the benefits of the arrangement, it also hints at the dangers.
The relation between the dwarf and the giant is fundamentally asymmetric. The dwarf can see, but the giant decides on which road the two shall take. The dilemma of the giant is that he is at the mercy of the dwarf, but he cannot trust him blindly. The paradigms of science are challenged daily on more or less solid grounds and the difficulty is to know when to take these challenges seriously. The dwarf faces the reverse problem. He depends on the giant, and without him he gets nowhere despite the clarity of his vision. In order to make his own choices he is forced down on the ground, to walk alone without the support he enjoyed on the shoulders of the giant. This year’s Chemistry Laureate was forced to do battle with the established truth. The dwarf doesn’t serve the giant by subservience but through independence. 
Coming down from the shoulders of the giant is a challenge. Not least because those that remain aloft are tempted to look down at those on the ground. The disbelief that met Dan Shechtman was appropriate and healthy. Questioning should be mutual to promote the growth of knowledge. The ridicule he suffered was, however, deeply unfair. It is far too easy for all of us to remain in our lofty positions, and with lofty disdain regard the fool who claims that we are all wrong. To be that fool on the ground takes great courage, and both he and those that spoke out on his behalf deserve great respect.
Dan Shechtman:

Your discovery of quasicrystals has created a new cross-disciplinary branch of science, drawing from, and enriching, chemistry, physics and mathematics. This is in itself of the greatest importance. It has also given us a reminder of how little we really know and perhaps even taught us some humility. That is a truly great achievement.  On behalf of the Royal Swedish Academy of Sciences I wish to convey our warmest congratulations, and I now ask you to step forward and receive your Prize from the hands of His Majesty the King.

The Nobel Laureate of Former Disgrace

“Each time I was promoted there were colleagues fighting it…”

Distinguished Prof. Dan Shechtman displays his notebook
at the Nobel Laureate lecture: Dec. 8th, 2011. Previously,
colleagues hurled at him basic textbooks in crystallography
and told him to read them!

Israeli professor Dan Shechtman was vilified for daring to challenge scientific orthodoxy

Read the full story at the Jewish Chronicle
By Nathan Jeffay, December 9, 2011

Shechtman at the Technion in Haifa, where his eureka moment led to a new theory about the way matter is arranged

It could be the closing scene of a feel-good film. But it will happen for real, tomorrow afternoon. Israeli scientist Dan Shechtman, mocked for years for his off-the-wall theory, has not only been proved correct, but he will climb to the podium at Stockholm Concert Hall and receive the Nobel Prize for chemistry. The award is often shared by several people , but he has it all to himself.

During an interview in his Haifa office shortly before travelling to Stockholm, Shechtman recalled the initial reaction to the work that earned the prize. His research-team leader gave him a bit of a talking to. “He came to my office and put a textbook on my desk, smiling sheepishly and telling me that I should read it, as what I was saying was impossible.”

Shechtman, a 70-year-old professor of materials engineering at the Technion – Israel Institute of Technology, is a modern-day Archimedes. While most Nobel winners receive their prize after painstakingly developing a theory or idea over years, like the ancient scholar who got into the bath and saw the water level rise, Shechtman had a eureka moment.

It was the morning of April 8, 1982 and he was on sabbatical from the Technion at the National Bureau of Standards in Washington DC. He looked through his electron microscope, and found something that defied the laws of science, as they were understood.

Each time I was promoted there were colleagues fighting it

Until then, it was believed that atoms are always arranged in solids in symmetrical patterns, in groups of two, three, four or six. But he was looking at an alloy and found that it contained atoms in groups of 10 around a single point. They made a pattern that did not repeat itself, flying in the face of received wisdom that patterns will always be repeated. These formations became known as “quasicrystals” – and now represent a branch of science studied worldwide.

The Nobel committee said when announcing the award that Shechtman had “forced scientists to reconsider their conception of the very nature of matter”. But to get there was a long and sometimes humiliating battle. The team leader who demanded that he reread the textbook decided that he was bringing “disgrace” to his team and expelled him. Shechtman, who had dreamed of scientific accomplishment ever since his childhood, was not discouraged. “You can say it’s funny or you can say it’s stupid, but I showed everyone who was prepared to listen,” he recalls. “I even sent Chanucah cards with the pattern on them.”

When he returned from Washington in late 1983 he found many colleagues sceptical about his theory, but discovered an ally in the form of Ilan Blech, a professor in the faculty of materials science. This gave him the confidence to write an article on his findings and submit it to the Journal of Applied Physics. It came back with a rejection letter. “The editor didn’t even send it for peer review,” he says sadly. An improved version written with three collaborators, including Blech, was accepted by Physical Review Letters and published in 1984.

“Hell broke loose,” Shechtman recalls. He started receiving letters from scientists across the world saying they had be able to replicate his experiment, but there was also a very strong critical reaction. The International Union of Crystallography and the American Chemical Society led it. In their view, the fact that quasicrystals could only be seen on electron microscopes and not x-ray microscopes undermined the findings, and they believed that he was really looking at two structures of atoms and misreading it as a single one.

Leading the opposition was the only man ever to have won two Nobel Prizes, American chemist Linus Pauling. He reportedly used to say: “There is no such thing as quasicrystals, only quasi-scientists.” Even in Shechtman’s own department at the Technion, “there were professors fighting against my promotion and each time I was promoted there was opposition,” he says.

It was not until 1987 that his findings started to become mainstream. Two groups of scientists managed to identify quasicrystals on an x-ray microscope. He recalls going to the International Union of Crystallography after this breakthrough. “They said: ‘Danny, now you’re talking’ and they accepted it.” When Pauling died in 1994, the opposition evaporated completely.

When the call came from the Nobel committee in October, he was told to keep the news a secret for half an hour, when it would be announced. “I sat at my desk for 20 minutes just looking around and thinking: ‘What does it mean?'” He was calm. “If you measured my heart rate now it is 60; I don’t know if at that moment it got as high as 61.” After 20 minutes he called his wife Zipora, a professor at Haifa University, “because she is always mad that I don’t tell her about prizes”.

He was, he says, completely unprepared for the euphoria at the Technion and his celebrity across Israel which followed. The pattern he discovered is the ultimate fashion statement at the Technion, where staff members wear ties decorated with it. Shechtman shows off a kippah with the pattern that a student crocheted for him to wear when addressing Jewish groups.

Asked what is the practical significance of his discovery, Shechtman gives a wry smile and says “very little”. Quasi-crystals have been used to make strong materials for razors and non-stick pans, but for Shechtman the important thing is the correction of an erroneous assumption about the world. In his opinion, “a humble scientist is a good scientist”, and by forcing a rethink on the basics, he believes he has made the scientific community more humble.

“The new definition of a crystal is a wonderful one, because it is humble,” he says. “It doesn’t say: ‘A crystal is…’ It says: ‘By a crystal we mean…'”

Shechtman’s personality fits his talk of humility. There is no ceremony – no waiting rooms or secretaries – when visiting his office. His hobbies confirm the impression that he is a patient man – he likes sailing and jewellery-making. He believes that there is a message for everybody in his prize. “If you find something, concentrate on it and try to see if it is real; listen to other people but if they aren’t interested, don’t take their words as fact. Continue to push your belief.”