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Theory of Biological Networks

Prof. Karen Alim

Research Field

Life is mesmerizing. How does shape and structure emerge when organism grow? We want to identify the physics that are underlying the morphing of life. Physical forces are eminent for pushing and squeezing living matter as it morphs into life. Observing the physical forces that arise from cell mechanics or fluid flows is key to understand how these physical forces generate and transport information - information that is read out by living matter and feeds back onto its dynamics but also its physical properties itself, thus morphing structures, organs and organisms. To succeed we combine quantitative observation of life with theoretical models to finally capture the key processes in simple mathematical terms. Here, it is important to choose experimental model systems that are particularly good for observation and quantification but also provide an accessible level of abstraction for theory. That is why we work with the slime mould Physarum polycephalum and at the same time built in vitro model systems in the lab. Theoretical models developed both with pen and paper and simulations in the group both inspire experiments and explain observations. Life still hides many fundamental processes that once uncovered can revolutionize our designs, engineering or medical treatment.

Address/Contact

James-Franck-Str. 1/I
85748 Garching b. München

Members of the Research Group

Professor

PhotoDegreeFirstnameLastnameRoomPhoneE-Mail
Photo von Prof. Dr. rer. nat. Karen Alim. Prof. Dr. Karen Alim 036 +49 89 289-12192 E-Mail

Office

PhotoDegreeFirstnameLastnameRoomPhoneE-Mail
Photo von Susanne Antoinette Tillich. Susanne Antoinette Tillich 209 +49 89 289-12358 E-Mail

Scientists

PhotoDegreeFirstnameLastnameRoomPhoneE-Mail
Photo von Komal Bhattacharyya M.Sc.. M.Sc. Komal Bhattacharyya 034 +49 89 289-12369 E-Mail
Photo von Dr. Siyu Chen. Dr. Siyu Chen 038 +49 89 289-51613 E-Mail
kein Photo vorhanden Dr. Agnese Codutti 033 +49 89 289-12193 E-Mail
Photo von Joao Rafael Diniz Ramos M.Sc.. M.Sc. Joao Rafael Diniz Ramos 034 +49 89 289-12369 E-Mail
kein Photo vorhanden Dr. Florian Goirand 038 +49 89 289-51613 E-Mail
Photo von Mathias Höfler M.Sc.. M.Sc. Mathias Höfler 035 +49 89 289-14612 E-Mail
kein Photo vorhanden Dr. Jean-Daniel Julien E-Mail
kein Photo vorhanden Ph.D. Mathieu le Verge--Serandour 035 +49 89 289-14612 E-Mail
kein Photo vorhanden Dr. Sophie Marbach E-Mail
Photo von Dr. rer. nat. Fatemeh Mirzapour. Dr. Fatemeh Mirzapour 033 +49 89 289-12193 E-Mail
Photo von Dr. Gabriella Mosca. Dr. Gabriella Mosca +49 221 5062141 E-Mail
Photo von Dr. rer. nat. Carsten Rohr. Dr. Carsten Rohr +49 89 289-12343 E-Mail
Photo von Lisa Schick M.Sc.. M.Sc. Lisa Schick 035 +49 89 289-14612 E-Mail
kein Photo vorhanden M.Sc. Nico Schramma E-Mail
kein Photo vorhanden M.Sc. Chun Lung Tong E-Mail
kein Photo vorhanden M.Sc. Lucas Tröger 038 +49 89 289-51613 E-Mail

Students

PhotoDegreeFirstnameLastnameRoomPhoneE-Mail
Photo von Bakk.rer.nat. Onurcan Bektas. Onurcan Bektas 033 E-Mail
kein Photo vorhanden Clara Donat E-Mail
kein Photo vorhanden Fabian Drexel E-Mail
kein Photo vorhanden Emily Eichenlaub E-Mail
kein Photo vorhanden B.Sc. Maximilian Hofacker 307 E-Mail
kein Photo vorhanden Elias Huber E-Mail
kein Photo vorhanden Jan Jedryszek E-Mail
kein Photo vorhanden B.Sc. Kim Paola Job E-Mail
kein Photo vorhanden Diana Lenski E-Mail
kein Photo vorhanden Salome Lomadze E-Mail
kein Photo vorhanden B.Sc. Adrian Paul Misselwitz 305 E-Mail
kein Photo vorhanden B.Sc. Kaspar Wachinger E-Mail

Other Staff

PhotoDegreeFirstnameLastnameRoomPhoneE-Mail
kein Photo vorhanden M.Sc. Swarnavo Basu E-Mail
kein Photo vorhanden Evelyn Packeiser 037 +49 89 289-51614 E-Mail

Teaching

Course with Participations of Group Members

Titel und Modulzuordnung
ArtSWSDozent(en)Termine
Fortgeschrittene statistische Physik
eLearning-Kurs
Zuordnung zu Modulen:
VO 4 Alim, K. Di, 08:00–10:00, PH 1121
Fr, 10:00–12:00, PH 1121
Aktuelle Entwicklungen zur Physik biologischer Netzwerke
Zuordnung zu Modulen:
PS 2 Alim, K. Mi, 10:00–12:00, CPA EG.006B
Mi, 10:00–12:00, CPA EG.006B
sowie einzelne oder verschobene Termine
Exercise to Continuum Mechanics
eLearning-Kurs
Zuordnung zu Modulen:
UE 2 Burger, L. Kienlein, M. Mirzapour, F. Quoika, P. Sustay Martinez, C. … (insgesamt 6)
Leitung/Koordination: Zacharias, M.
Übung zu Fortgeschrittene statistische Physik
Zuordnung zu Modulen:
UE 2
Leitung/Koordination: Alim, K.
Journal Club Biological Physics and Morphogenesis
Zuordnung zu Modulen:
SE 2 Alim, K. Do, 13:00–15:00, CPA EG.006B
sowie einzelne oder verschobene Termine
Repetitorium zu Aktuelle Entwicklungen zur Physik biologischer Netzwerke
Zuordnung zu Modulen:
RE 2
Leitung/Koordination: Alim, K.
Tag der Physikerinnen
aktuelle Informationen
Zuordnung zu Modulen:
KO 0.1 Alim, K. einzelne oder verschobene Termine
Tutorenseminar zu Fortgeschrittene statistische Physik
Diese Lehrveranstaltung ist keinem Modul zugeordnet.
SE 2 Alim, K.

Current and Finished Theses in the Group

Autoencoders for Anomaly Detection, Phenotype Matching and Disease Prediction of Phenotypes for Indirect Calorimetry Time Series Data of Knockout Mice.
Abschlussarbeit im Masterstudiengang Biomedical Engineering and Medical Physics
Themensteller(in): Karen Alim
Mapping network theory to network function
Abschlussarbeit im Bachelorstudiengang Physik
Themensteller(in): Karen Alim
Discovering Metastable States in Zebrafish Whole-Brain Imaging
Abschlussarbeit im Masterstudiengang Physics (Applied and Engineering Physics)
Themensteller(in): Karen Alim
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