Anzahl der Publikationen: 16
	2024
    Eissa, Tarek  ORCID: https://orcid.org/0000-0002-8932-2553; Huber, Marinus
ORCID: https://orcid.org/0000-0002-8932-2553; Huber, Marinus  ORCID: https://orcid.org/0000-0001-5309-4475; Obermayer-Pietsch, Barbara
ORCID: https://orcid.org/0000-0001-5309-4475; Obermayer-Pietsch, Barbara  ORCID: https://orcid.org/0000-0003-3543-1807; Linkohr, Birgit
ORCID: https://orcid.org/0000-0003-3543-1807; Linkohr, Birgit  ORCID: https://orcid.org/0000-0002-3387-5685; Peters, Annette
ORCID: https://orcid.org/0000-0002-3387-5685; Peters, Annette  ORCID: https://orcid.org/0000-0001-6645-0985; Fleischmann, Frank; Žigman, Mihaela
ORCID: https://orcid.org/0000-0001-6645-0985; Fleischmann, Frank; Žigman, Mihaela  ORCID: https://orcid.org/0000-0001-8306-1922 und Kavraki, Lydia
  
(15. Oktober 2024):
		CODI: Enhancing machine learning-based molecular profiling through contextual out-of-distribution integration.
	
	 In: PNAS Nexus, Bd. 3, Nr.  10, pgae449
      
        
          
             [PDF, 4MB]
ORCID: https://orcid.org/0000-0001-8306-1922 und Kavraki, Lydia
  
(15. Oktober 2024):
		CODI: Enhancing machine learning-based molecular profiling through contextual out-of-distribution integration.
	
	 In: PNAS Nexus, Bd. 3, Nr.  10, pgae449
      
        
          
             [PDF, 4MB]
          
        
      
 
    Eissa, Tarek  ORCID: https://orcid.org/0000-0002-8932-2553; Leonardo, Cristina; Kepesidis, Kosmas V.; Fleischmann, Frank; Linkohr, Birgit
ORCID: https://orcid.org/0000-0002-8932-2553; Leonardo, Cristina; Kepesidis, Kosmas V.; Fleischmann, Frank; Linkohr, Birgit  ORCID: https://orcid.org/0000-0002-3387-5685; Meyer, Daniel; Zoka, Viola; Huber, Marinus; Voronina, Liudmila; Richter, Lothar; Peters, Annette
ORCID: https://orcid.org/0000-0002-3387-5685; Meyer, Daniel; Zoka, Viola; Huber, Marinus; Voronina, Liudmila; Richter, Lothar; Peters, Annette  ORCID: https://orcid.org/0000-0001-6645-0985 und Žigman, Mihaela
ORCID: https://orcid.org/0000-0001-6645-0985 und Žigman, Mihaela  ORCID: https://orcid.org/0000-0001-8306-1922
  
(16. Juli 2024):
		Plasma infrared fingerprinting with machine learning enables single-measurement multi-phenotype health screening.
	
	 In: Cell Reports Medicine, Bd. 5, Nr.  7, 101625
      
        
          
             [PDF, 4MB]
ORCID: https://orcid.org/0000-0001-8306-1922
  
(16. Juli 2024):
		Plasma infrared fingerprinting with machine learning enables single-measurement multi-phenotype health screening.
	
	 In: Cell Reports Medicine, Bd. 5, Nr.  7, 101625
      
        
          
             [PDF, 4MB]
          
        
      
 
2021
    Huber, Marinus; Kepesidis, Kosmas V.; Voronina, Liudmila; Božić, Maša; Trubetskov, Michael; Harbeck, Nadia; Krausz, Ferenc  ORCID: https://orcid.org/0000-0002-6525-9449 und Žigman, Mihaela
  
(2021):
		Stability of person-specific blood-based infrared molecular fingerprints opens up prospects for health monitoring.
	
	 In: Nature Communications, Bd. 12, 1511
      
        
          
             [PDF, 1MB]
ORCID: https://orcid.org/0000-0002-6525-9449 und Žigman, Mihaela
  
(2021):
		Stability of person-specific blood-based infrared molecular fingerprints opens up prospects for health monitoring.
	
	 In: Nature Communications, Bd. 12, 1511
      
        
          
             [PDF, 1MB]
          
        
      
 
    Kepesidis, Kosmas V.; Bozic-Iven, Masa; Huber, Marinus; Abdel-Aziz, Nashwa; Kullab, Sharif; Abdelwarith, Ahmed; Al Diab, Mohammed; Hilal, Muath Abu; Bahadoor, Mohun R. K.; Sharma, Abhishake; Dabouz, Farida; Arafah, Maria; Azzeer, Abdallah M.; Krausz, Ferenc  ORCID: https://orcid.org/0000-0002-6525-9449; Alsaleh, Khalid; Zigman, Mihaela und Nabholtz, Jean-Marc
  
(2021):
		Breast-cancer detection using blood-based infrared molecular fingerprints.
	
	 In: BMC cancer, Bd. 21, 1287
      
        
          
             [PDF, 1MB]
ORCID: https://orcid.org/0000-0002-6525-9449; Alsaleh, Khalid; Zigman, Mihaela und Nabholtz, Jean-Marc
  
(2021):
		Breast-cancer detection using blood-based infrared molecular fingerprints.
	
	 In: BMC cancer, Bd. 21, 1287
      
        
          
             [PDF, 1MB]
          
        
      
 
    Huber, Marinus; Kepesidis, Kosmas; Voronina, Liudmila; Bozic, Masa; Trubetskov, Michael; Harbeck, Nadia; Krausz, Ferenc  ORCID: https://orcid.org/0000-0002-6525-9449 und Zigman, Mihaela
  
(2021):
		Stability of person-specific blood-based infrared molecular fingerprints opens up prospects for health monitoring.
	
	 In: Nature Communications, Bd. 12, Nr.  1, 1511
      
        
          
             [PDF, 1MB]
ORCID: https://orcid.org/0000-0002-6525-9449 und Zigman, Mihaela
  
(2021):
		Stability of person-specific blood-based infrared molecular fingerprints opens up prospects for health monitoring.
	
	 In: Nature Communications, Bd. 12, Nr.  1, 1511
      
        
          
             [PDF, 1MB]
          
        
      
 
    Huber, Marinus; Kepesidis, Kosmas; Voronina, Liudmila; Fleischmann, Frank; Fill, Ernst; Hermann, Jacqueline; Koch, Ina; Milger-Kneidinger, Katrin; Kolben, Thomas; Schulz, Gerald B.; Jokisch, Friedrich; Behr, Jürgen; Harbeck, Nadia; Reiser, Maximilian; Stief, Christian; Krausz, Ferenc  ORCID: https://orcid.org/0000-0002-6525-9449 und Zigman, Mihaela
  
(2021):
		Infrared molecular fingerprinting of blood-based liquid biopsies for the detection of cancer.
	
	 In: eLife, Bd. 10, e68758
      
        
          
             [PDF, 1MB]
ORCID: https://orcid.org/0000-0002-6525-9449 und Zigman, Mihaela
  
(2021):
		Infrared molecular fingerprinting of blood-based liquid biopsies for the detection of cancer.
	
	 In: eLife, Bd. 10, e68758
      
        
          
             [PDF, 1MB]
          
        
      
 
    Kepesidis, Kosmas V.; Bozic-Iven, Masa; Huber, Marinus; Abdel-Aziz, Nashwa; Kullab, Sharif; Abdelwarith, Ahmed; Al Diab, Abdulrahman; Al Ghamdi, Mohammed; Abu Hilal, Muath; Bahadoor, Mohun R. K.; Sharma, Abhishake; Dabouz, Farida; Arafah, Maria; Azzeer, Abdallah M.; Krausz, Ferenc  ORCID: https://orcid.org/0000-0002-6525-9449; Alsaleh, Khalid; Zigman, Mihaela und Nabholtz, Jean-Marc
  
(2021):
		Breast-cancer detection using blood-based infrared molecular fingerprints.
	
	 In: Springer Nature Cancer, Bd. 21, Nr.  1, 1287
ORCID: https://orcid.org/0000-0002-6525-9449; Alsaleh, Khalid; Zigman, Mihaela und Nabholtz, Jean-Marc
  
(2021):
		Breast-cancer detection using blood-based infrared molecular fingerprints.
	
	 In: Springer Nature Cancer, Bd. 21, Nr.  1, 1287
      
        
      
 
    Voronina, Liudmila; Leonardo, Cristina; Mueller-Reif, Johannes B.; Geyer, Philipp E.; Huber, Marinus; Trubetskov, Michael; Kepesidis, Kosmas V.; Behr, Jürgen; Mann, Matthias; Krausz, Ferenc  ORCID: https://orcid.org/0000-0002-6525-9449 und Zigman, Mihaela
  
(2021):
		Molecular Origin of Blood-Based Infrared Spectroscopic Fingerprints.
	
	 In: Angewandte Chemie-International Edition, Bd. 60, Nr.  31: S. 17060-17069
ORCID: https://orcid.org/0000-0002-6525-9449 und Zigman, Mihaela
  
(2021):
		Molecular Origin of Blood-Based Infrared Spectroscopic Fingerprints.
	
	 In: Angewandte Chemie-International Edition, Bd. 60, Nr.  31: S. 17060-17069
	
      
        
      
 
    Weigel, Alexander; Jacob, Philip; Groters, David; Buberl, Theresa; Huber, Marinus; Trubetskov, Michael; Heberle, Joachim und Pupeza, Ioachim
  
(2021):
		Ultra-rapid electro-optic sampling of octave-spanning mid-infrared waveforms.
	
	 In: Optics Express, Bd. 29, Nr.  13: S. 20747-20764
	
      
        
      
 
2020
    Pupeza, Ioachim; Huber, Marinus; Trubetskov, Michael; Schweinberger, Wolfgang; Hussain, Syed A.; Hofer, Christina; Fritsch, Kilian; Poetzlberger, Markus; Vamos, Lenard; Fill, Ernst; Amotchkina, Tatiana; Kepesidis, Kosmas V.; Apolonski, Alexander; Karpowicz, Nicholas; Pervak, Vladimir; Pronin, Oleg; Fleischmann, Frank; Azzeer, Abdallah; Zigman, Mihaela und Krausz, Ferenc  ORCID: https://orcid.org/0000-0002-6525-9449
  
(2020):
		Field-resolved infrared spectroscopy of biological systems.
	
	 In: Nature, Bd. 577, Nr.  7788: S. 52-59
ORCID: https://orcid.org/0000-0002-6525-9449
  
(2020):
		Field-resolved infrared spectroscopy of biological systems.
	
	 In: Nature, Bd. 577, Nr.  7788: S. 52-59
	
      
        
      
 
2019
    Amotchkina, Tatiana; Trubetskov, Michael; Hussain, Syed Ali; Hahner, Daniel; Gerz, Daniel; Huber, Marinus; Schwenberger, Wolfgang; Pupeza, Ioachim; Krausz, Ferenc  ORCID: https://orcid.org/0000-0002-6525-9449 und Pervak, Vladimir
  
(2019):
		Broadband dispersive Ge/YbF3 mirrors for mid-infrared spectral range.
	
	 In: Optics Letters, Bd. 44, Nr.  21: S. 5210-5213
ORCID: https://orcid.org/0000-0002-6525-9449 und Pervak, Vladimir
  
(2019):
		Broadband dispersive Ge/YbF3 mirrors for mid-infrared spectral range.
	
	 In: Optics Letters, Bd. 44, Nr.  21: S. 5210-5213
	
      
        
      
 
2018
    Raunl, Alexander; Saklayen, Nabiha; Zgrabile, Christine; Shen, Weilu; Madrid, Marinna; Huber, Marinus; Hu, Evelyn und Mazur, Eric
  
(2018):
		A comparison of inverted and upright laser-activated titanium nitride micropyramids for intracellular delivery.
	
	 In: Scientific Reports, Bd. 8, 15595
      
        
          
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2017
    Saklayen, Nabiha; Kalies, Stefan; Madrid, Marinna; Nuzzo, Valeria; Huber, Marinus; Shen, Weilu; Sinanan-Singh, Jasmine; Heinemann, Dag; Heisterkamp, Alexander und Mazur, Eric
  
(2017):
		Analysis of poration-induced changes in cells from laser-activated plasmonic substrates.
	
	 In: Biomedical Optics Express, Bd. 8, Nr.  10: S. 4756-4771
	
      
        
      
 
    Saklayen, Nabiha; Huber, Marinus; Madrid, Marinna; Nuzzo, Valeria; Vulis, Daryl I.; Shen, Weilu; Nelson, Jeffery; McClelland, Arthur A.; Heisterkamp, Alexander und Mazur, Eric
  
(2017):
		Intracellular Delivery Using Nanosecond-Laser Excitation of Large-Area Plasmonic Substrates.
	
	 In: Acs Nano, Bd. 11, Nr.  4: S. 3671-3680
	
      
        
      
 
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