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  • By adjusting when a patient experiences light, researcher Dr. Charles A. Czeisler associate Professor of medicine at Harvard can adjust their biological time clock or circadian rhythm and cure jet lag.
    Sleep 0014 Sleep Study.jpg
  • By adjusting when a patient experiences light, researcher Dr. Charles A. Czeisler associate Professor of medicine at Harvard can adjust their biological time clock or circadian rhythm and cure jet lag.
    Sleep 0013 Sleep Study.jpg
  • By adjusting when a patient experiences light, researcher Dr. Charles A. Czeisler associate Professor of medicine at Harvard can adjust their biological time clock or circadian rhythm and cure jet lag.
    Sleep 0011a Sleep Study.jpg
  • By adjusting when a patient experiences light, researcher Dr. Charles A. Czeisler associate Professor of medicine at Harvard can adjust their biological time clock or circadian rhythm and cure jet lag.
    scf4384-004.jpg
  • By adjusting when a patient experiences light, researcher Dr. Charles A. Czeisler associate Professor of medicine at Harvard can adjust their biological time clock or circadian rhythm and cure jet lag.
    scf4327-803_Sleep 0012 Sleep Study.jpg
  • By adjusting when a patient experiences light, researcher Dr. Charles A. Czeisler associate Professor of medicine at Harvard can adjust their biological time clock or circadian rhythm and cure jet lag.
    scf4327-802_Sleep 0011a Sleep Study.jpg
  • By adjusting when a patient experiences light, researcher Dr. Charles A. Czeisler associate Professor of medicine at Harvard can adjust their biological time clock or circadian rhythm and cure jet lag.
    Sleep 0012a Sleep Study.jpg
  • By adjusting when a patient experiences light, researcher Dr. Charles A. Czeisler associate Professor of medicine at Harvard can adjust their biological time clock or circadian rhythm and cure jet lag.
    Sleep 0012 Sleep Study.jpg
  • By adjusting when a patient experiences light, researcher Dr. Charles A. Czeisler associate Professor of medicine at Harvard can adjust their biological time clock or circadian rhythm and cure jet lag.
    scf4327-804_Sleep 0013 Sleep Study.jpg
  • By adjusting when a patient experiences light, researcher Dr. Charles A. Czeisler associate Professor of medicine at Harvard can adjust their biological time clock or circadian rhythm and cure jet lag.
    fct4384-005_Sleep 0014 Sleep Study.jpg
  • By adjusting when a patient experiences light, researcher Dr. Charles A. Czeisler associate Professor of medicine at Harvard can adjust their biological time clock or circadian rhythm and cure jet lag.
    scf4384-004_Sleep 0012a Sleep Study.jpg
  • By adjusting when a patient experiences light, researcher Dr. Charles A. Czeisler associate Professor of medicine at Harvard can adjust their biological time clock or circadian rhythm and cure jet lag.
    Sleep 0011 Sleep Study.jpg
  • A reseacher at the Touch Lab uses a device to simulate the injection of a fluid in the spinal cord.  The device is outfitted with actuators and braks and gives sensitive feedback to the doctor to what the pressure feels like as the syringe enters the dagerous area around the spinal column.
    scf4374-247_Touch 0014.jpg
  • A reseacher at the Touch Lab uses a device to simulate the injection of a fluid in the spinal cord.  The device is outfitted with actuators and braks and gives sensitive feedback to the doctor to what the pressure feels like as the syringe enters the dagerous area around the spinal column.
    scf4374-250.jpg
  • A reseacher at the Touch Lab uses a device to simulate the injection of a fluid in the spinal cord.  The device is outfitted with actuators and braks and gives sensitive feedback to the doctor to what the pressure feels like as the syringe enters the dagerous area around the spinal column.
    scf4374-245.jpg
  • A reseacher at the Touch Lab uses a device to simulate the injection of a fluid in the spinal cord.  The device is outfitted with actuators and braks and gives sensitive feedback to the doctor to what the pressure feels like as the syringe enters the dagerous area around the spinal column.
    scf4374-250_Touch 0013.jpg
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