Health & Environmental Research Online (HERO)


Print Feedback Export to File
1320007 
Journal Article 
IV-VI semiconductor lasers for gas phase biomarker detection - art. no. 675603 
Mccann, P; Namjou, K; Roller, C; Mcmillen, G; Kamat, P 
2007 
Unk 
Proceedings of SPIE
ISSN: 0277-786X
EISSN: 1996-756X 
Boston, MA 
PROCEEDINGS OF THE SOCIETY OF PHOTO-OPTICAL INSTRUMENTATION ENGINEERS (SPIE) 
6756 
75603-75603 
A promising absorption spectroscopy application for mid-IR lasers is exhaled breath analysis where sensitive, selective, and speedy measurement of small gas phase biomarker molecules can be used to diagnose disease and monitor therapies. Many molecules such as nitric oxide, ethane, formaldehyde, acetaldehyde, acetone, carbonyl sulfide, and carbon disulfide have been connected to diseases or conditions such as asthma, oxidative stress, breast cancer, lung cancer, diabetes, organ transplant rejection, and schizophrenia. Measuring these and other, yet to be discovered, biomarker molecules in exhaled breath with mid-IR lasers offers great potential for improving health care since such tests are non-invasive, real-time, and do not require expensive consumables or chemical reagents. Motivated by these potential benefits, mid-IR laser spectrometers equipped with presently available cryogenically-cooled IV-VI lasers mounted in compact Stirling coolers have been developed for clinical research applications. This paper will begin with a description of the development of mid-IR laser instruments and their use in the largest known exhaled breath clinical study ever performed. It will then shift to a description of recent work on the development of new IV-VI semiconductor quantum well materials and laser fabrication methods that offer the promise of low power consumption (i.e. efficient) continuous wave emission at room temperature. Taken together, the demonstration of compelling clinical applications with large market opportunities and the clear identification of a viable pathway to develop low cost mid-IR laser instrumentation can create a renewed focus for future research and development efforts within the mid-IR materials and devices area. 
mid-IR lasers; IV-VI semiconductors; tunable diode laser spectroscopy; medical diagnostics 
• Formaldehyde [archived]
     Immune Section
          No abstract
     Inflammation/Reactive Oxygen Species
          WOS
          Screened by Title/Abstract
               Related to Methodology or Process
     Retroactive RIS import
          2013
               HERO Formaldehyde Immune Section 20Mar2013
          2014
               HERO_Formaldehyde_InflammationReactiveOxygenSpecies_pid_31_uid_5713Sorting091214
               HERO_Formaldehyde_InflammationReactiveOxygenSpecies_pid_31_uid_5713
                    Screened (Title/Abstract)
                         Related to Methodology or Process
               Immune_HERO_allyr
• IRIS Formaldehyde (Inhalation) [Final 2024]
     Literature Indexing
          WoS
     Literature Identification
          Immune-Mediated Conditions in Humans, Including Asthma and Allergy
               Excluded
          Inflammation and Immune-Related Mechanistic Studies
               Excluded