Rolf GruetterAwards:
1999 Young Investigator Award Plenary Lectureship
, International Society for Neurochemistry
2011 Fellow
, ESMRMB
2011 Teaching Award
, Section Sciences de la Vie, EPFL
Lothar HelmLothar Helm was born in Gernsbach (Germany) in 1952. He studied physics at the University of Karlsruhe (Germany) and obtained his diploma degree in 1977. He remained in Karlsruhe for his Ph.D. research with Prof. H. G. Hertz and received his degree in physical chemistry in 1980. In 1980 he joined the laboratories of Prof. André Merbach at the University of Lausanne, Switzerland. From 1983 to 2001 he was maître denseignement et de recherche at the Faculty of Science of the University of Lausanne. In 2001 he moved, together with the whole chemistry department, from the University of Lausanne to the Ecole Polytechnique Fédérale de Lausanne (EPFL). Since 2006 he is adjunct professor at the Institute of Chemical Sciences and Engineering at EPFL and director of the NMR services of the institute.
From 2007 to 2011 he was director of the "Conférence du corps Enseignant" at EPFL. Since 2011 he is member of the School Assembly of EPFL (AE).
MAIN RESEARCH INTERESTS:
Physico-chemical studies of contrast agents for medical magnetic resonance imaging (MRI)
Study of reactivity and reaction mechanisms in coordination chemistry by variable temperature and pressure nuclear magnetic resonance
Computer simulation of solvent dynamics on cations and metal complexes in solution
Professional course
Jean-Philippe AnsermetJean-Philippe Ansermet was born March 1, 1957 in Lausanne (legal origin Vaumarcus, NE). He obtained a diploma as physics engineer of EPFL in 1980. He went on to get a PhD from the University of Illinois at Urbana-Champaign where, from 1985 to 1987, he persued as post-doc with Prof. Slichter his research on catalysis by solid state NMR studies of molecules bound to the surface of catalysts. From 1987 to 1992 he worked at the materials research center of Ciba-Geigy, on polymers for microelectronics, composites, dielectrics and organic charge transfer complexes. In March 1992, as professor of experimental physics, he developed a laboratory on the theme of nanostructured materials and turned full professor in 1995. Since 1992, he teaches classical mechanics, first to future engineering students, since 2004 to physics majors. Since 2000, he teaches thermodynamics also, to the same group of students. He offers a graduate course in spintronics, and another on spin dynamics. His research activities concern the fabrication and properties of magnetic nanostructures produced by electrodeposition. His involvement since the early days of spintronics have allowed him to gain recognition for his work on giant magnetoresistance (CPP-GMR), magnetic relaxation of single nanostructures, and was among the leading groups demonstrating magnetization reversal by spin-polarized currents. Furthermore, his group uses nuclear magnetic resonance , on the one hand as means of investigation of surfaces and electrodes, on the other hand, as a local probe of the electronic properties of complex ferromagnetic oxides.
André MerbachOriginaire de Pully (Vaud), André E. Merbach est né en 1940. Il étudie à l'Ecole Polytechnique de l'Université de Lausanne (Prix Pelet et de l'A3E2PL) et obtient son diplôme d'ingénieur chimiste en 1962 avec un travail de recherche en chimie organique. En 1964, l'Université de Lausanne lui confère le doctorat ès sciences avec félicitations du jury pour ses travaux sur les systèmes quaternaires de solubilité avec formation de cristaux mixtes. Il effectue ensuite un stage postdoctoral au Lawrence Radiation Laboratory de l'Université de Californie à Berkeley, où il étudie la ionisation d'électrolytes forts par RMN.
En 1965, de retour à l'Institut de chimie minérale et analytique de l'UNIL, on lui demande de développer une recherche et de créer un enseignement en chimie de coordination. En 1971 il y est nommé professeur assistant.
En 1973, la Société Suisse de Chimie lui attribue le Prix et la Médaille Werner pour ses travaux sur la structure, la stabilité et la dynamique d'adduits d'halogénures métalliques par RMN. Cette même année, l'UNIL le nomme professeur de chimie minérale et analytique.
Il a été membre de la division mathématiques, des sciences naturelles et de l'ingénieur du Fonds national de la recherche scientifique (1985-1996). Il représente la Suisse au Comité Technique COST Chimie (Coopération Européenne dans le domaine scientifique et technique: 35 pays, 1000 groupes de recherche en chimie) et a présidé ce Comité de 1998 à 2000. Il a présidé le Comité de gestion européen pour l'Action COST D6 pour les "procédés et réactions chimiques dans des conditions extrêmes ou non classiques" (1992-1997).
Il a organisé à Lausanne, en 1992, la XXIXe Conférence Internationale de Chimie de Coordination (ICCC). L'Université Lajos Kossuth, de Debrecen (Hongrie), lui a conféré, en 1993, le doctorat honoris causa pour ses études par RMN sous haute pression des mécanismes réactionnels en chimie de coordination. Il a été appelé à la présidence de la Société Suisse de Chimie (2001-2004). L'Université de Genève lui a délivré un doctorat honoris causa en 2003.
Mor-Miri MishkovskyI am a chemist, graduated Cum Laude in 2002 from Tel Aviv University in Israel. I obtained a PhD in Physical Chemistry from the Weizmann Institute of Science in Israel on the development of new technology for rapid detection of nuclear magnetic resonance (NMR) spectroscopic data aiming at reducing the measurement time from hour to a fraction of seconds. My thesis “Methodological Developments in Ultrafast Multidimensional NMR” granted me the Auto Swartz excellence award in 2007. Since 2009 I am working with the Laboratory of Functional and Metabolic Imaging at the École Polytechnique Fédérale de Lausanne (EPFL), Switzerland, on the development of hyperpolarized (HP) magnetic resonance spectroscopy (MRS) methodologies for monitoring biochemical processes in real-time.My research is focused on the development of Magnetic Resonance (MR) Molecular Imaging by dissolution dynamic nuclear polarization (dDNP). HP agents to interrogate biochemical processes in real-time are applied in vivo in the healthy brain and disease models, aiming at improving our understanding of cerebral function and metabolism toward better clinical diagnostics and therapy.