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  • Dr. Mathew Botvinick with research assistant performing the rubber hand experiment.  After 10 minutes of observing the rubber hand getting the same brush stroke as their real hand  the subject perceives the rubber hand as their own.
    scf4327-898_Touch 0002.jpg
  • Dr. Mathew Botvinick with research assistant performing the rubber hand experiment.  After 10 minutes of observing the rubber hand getting the same brush stroke as their real hand  the subject perceives the rubber hand as their own.
    Touch 0020.jpg
  • Dr. Mathew Botvinick with research assistant performing the rubber hand experiment.  After 10 minutes of observing the rubber hand getting the same brush stroke as their real hand  the subject perceives the rubber hand as their own.
    scf4327-898touch 0002.jpg
  • Dr. Mathew Botvinick with research assistant performing the rubber hand experiment.  After 10 minutes of observing the rubber hand getting the same brush stroke as their real hand  the subject perceives the rubber hand as their own.
    Touch 0029.jpg
  • Dr. Mathew Botvinick with research assistant performing the rubber hand experiment.  After 10 minutes of observing the rubber hand getting the same brush stroke as their real hand  the subject perceives the rubber hand as their own.
    Touch 0020-2.jpg
  • Dr. Mathew Botvinick with research assistant performing the rubber hand experiment.  After 10 minutes of observing the rubber hand getting the same brush stroke as their real hand  the subject perceives the rubber hand as their own.
    Touch 0002.jpg
  • Dr. Mathew Botvinick with research assistant performing the rubber hand experiment.  After 10 minutes of observing the rubber hand getting the same brush stroke as their real hand  the subject perceives the rubber hand as their own.
    Touch 0029-2.jpg
  • Hair Samples for Product Testing at Gillette near Boston.
    scf4327-012_Hair 0003 Gillette Lab.jpg
  • These researchers worked at Hill Top Research Inc., Cincinnati, Ohio and every morning about 75 men and women would parade through their labs and offer up their pits, feet, breath and private parts in the name of olfactory science.
    Smell 0072d Breath Testers.jpg
  • These researchers worked at Hill Top Research Inc., Cincinnati, Ohio and every morning about 75 men and women would parade through their labs and offer up their pits, feet, breath and private parts in the name of olfactory science.
    Smell 0072b Breath Testers.jpg
  • These researchers worked at Hill Top Research Inc., Cincinnati, Ohio and every morning about 75 men and women would parade through their labs and offer up their pits, feet, breath and private parts in the name of olfactory science.
    Smell 0072b Breath Testers-2.jpg
  • These researchers worked at Hill Top Research Inc., Cincinnati, Ohio and every morning about 75 men and women would parade through their labs and offer up their pits, feet, breath and private parts in the name of olfactory science.
    scf4327-848_Smell 0072c Breath teste...jpg
  • Hair Combing Machine at Gillette near Boston.
    scf4327-012_Hair 0002 Gillette Lab.jpg
  • Hair Combing Machine at Gillette near Boston.
    scf4327-011hair 0001.jpg
  • These researchers worked at Hill Top Research Inc., Cincinnati, Ohio and every morning about 75 men and women would parade through their labs and offer up their pits, feet, breath and private parts in the name of olfactory science.
    Smell 0072 Breath Testers-2.jpg
  • Hair Combing Machine at Gillette near Boston.
    scf4373-022.jpg
  • These researchers worked at Hill Top Research Inc., Cincinnati, Ohio and every morning about 75 men and women would parade through their labs and offer up their pits, feet, breath and private parts in the name of olfactory science.
    Smell 0072 Breath Testers.jpg
  • These researchers worked at Hill Top Research Inc., Cincinnati, Ohio and every morning about 75 men and women would parade through their labs and offer up their pits, feet, breath and private parts in the name of olfactory science.
    scf4327-847_Smell 0072a Breath Teste...jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-932-sleep-sequence-014.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-925-sleep-sequence-007.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-941-sleep-sequence-023.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-940-sleep-sequence-022.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-939-sleep-sequence-021.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-938-sleep-sequence-020.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-937-sleep-sequence-019.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-931-sleep-sequence-013.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-930-sleep-sequence-012.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-929-sleep-sequence-011.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-924-sleep-sequence-006.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-919-sleep-sequence-001.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-943-sleep-sequence-025.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-942-sleep-sequence-024.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-936-sleep-sequence-018.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-935-sleep-sequence-017.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-933-sleep-sequence-015.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-928-sleep-sequence-010.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-927-sleep-sequence-009.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-923-sleep-sequence-005.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-922-sleep-sequence-004.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-921-sleep-sequence-003.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-920-sleep-sequence-002.jpg
  • Crash Test Dummies at the General Motors Crash Testing facility outside Detroit Michigan.  Dummies replicate passengers ranging from pregnant women to children.
    Crash Test Dummies 0001.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-934-sleep-sequence-016.jpg
  • Night's sleep sequence of 4 or 5 cycles of REM & non-REM sleep.  Everyone makes at least 8-12 posture shifts a night.
    scf4327-926-sleep-sequence-008.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 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 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.
    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.
    scf4327-804_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.
    scf4327-802_Sleep 0011a Sleep Study.jpg
  • Children at the Sony IMAX Theater in New York City experience an eight story high film screen in 3 dimensions with the aid of liquid crystal headsets that blink 48 times a second.
    scf4327-314_Info Rev 0010 Sony IMAX.jpg
  • Children at the Sony IMAX Theater in New York City experience an eight story high film screen in 3 dimensions with the aid of liquid crystal headsets that blink 48 times a second.
    Info Rev 0010 Sony IMAX.jpg
  • By adjusting when a patient experiences light, a researcher can adjust their biological time clock or circadian rhythm and cure jet lag.
    Sleep 0010 Sleep Study.jpg
  • By adjusting when a patient experiences light, a researcher can adjust their biological time clock or circadian rhythm and cure jet lag.  Dr. Daniel f. Kripke of the University of San Diego uses light to cure depression.
    Sleep 0009 Sleep Study.jpg
  • By adjusting when a patient experiences light, a researcher can adjust their biological time clock or circadian rhythm and cure jet lag.
    scf4327-800_Sleep 0010 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
  • Children at the Sony IMAX Theater in New York City experience an eight story high film screen in 3 dimensions with the aid of liquid crystal headsets that blink 48 times a second.
    scf4327-314info rev 0010 sony imax.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
  • 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, a researcher can adjust their biological time clock or circadian rhythm and cure jet lag.  Dr. Daniel f. Kripke of the University of San Diego uses light to cure depression.
    scf4384-003_scf4399-143_Sleep 0009 S...jpg
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