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Real-time, continuous, fluorescence sensing in a freely-moving subject with an implanted hybrid VCSEL/CMOS biosensor

  • Thomas D. O'Sullivan
  • , Roxana T. Heitz
  • , Natesh Parashurama
  • , David B. Barkin
  • , Bruce A. Wooley
  • , Sanjiv S. Gambhir
  • , James S. Harris
  • , Ofer Levi
  • Stanford University
  • Texas Instruments
  • University of Toronto

Research output: Contribution to journalArticlepeer-review

20 Scopus citations

Abstract

Performance improvements in instrumentation for optical imaging have contributed greatly to molecular imaging in living subjects. In order to advance molecular imaging in freely moving, untethered subjects, we designed a miniature vertical-cavity surface-emitting laser (VCSEL)-based biosensor measuring 1cm3 and weighing 0.7g that accurately detects both fluorophore and tumor-targeted molecular probes in small animals. We integrated a critical enabling component, a complementary metal-oxide semiconductor (CMOS) read-out integrated circuit, which digitized the fluorescence signal to achieve autofluorescence-limited sensitivity. After surgical implantation of the lightweight sensor for two weeks, we obtained continuous and dynamic fluorophore measurements while the subject was un-anesthetized and mobile. The technology demonstrated here represents a critical step in the path toward untethered optical sensing using an integrated optoelectronic implant.

Original languageEnglish
Pages (from-to)1332-1341
Number of pages10
JournalBiomedical Optics Express
Volume4
Issue number8
DOIs
StatePublished - 2013

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