2 results match your criteria: "Information and Physics Technologies Institute (ITEFI)[Affiliation]"
J Mech Behav Biomed Mater
November 2014
Sensors and Ultrasonic Technologies Department, Information and Physics Technologies Institute (ITEFI), Spanish National Research Council (CSIC), Serrano 144, 28006 Madrid, Spain. Electronic address:
Different tissues in Phormium tenax leaves present different morphologies and mechanical properties according to the different roles or functions that they play during the plant life. This is an example of what is known as functional design, a concept which is used in different scientific fields. Four different ultrasonic techniques comprising air-coupling and gel coupling, longitudinal and shear waves, normal and oblique incidence and low (0.
View Article and Find Full Text PDFUltrasound Med Biol
September 2014
Sensors and Ultrasonic Technologies Department, Information and Physics Technologies Institute (ITEFI), Spanish National Research Council (CSIC), Madrid, Spain. Electronic address:
Described here is the application of a technique based on the excitation, sensing and spectral analysis of thickness resonances of plant leaves using air-coupled and wide-band ultrasound pulses (150-900 kHz) to monitor variations in leaf properties caused by plant responses to different environmental stimuli, such as a sudden variation in light intensity (from 2000 to 150 μmol m(-2) s(-1)), sudden watering after a drought period, and along the diurnal cycle (3-5 days, with continuous variation in light intensity from 150 to 2000 μmol m(-2) s(-1) and change in temperature of about 5°C). Four different widely available species, both monocots and dicots and evergreen and deciduous, with different leaf features (shape, size, thickness, flatness, vascular structure), were selected to test the technique. After a sudden decrease in light intensity, and depending on the species, there was a relative increase in the thickness resonant frequency from 8% to 12% over a 25- to 50-min period.
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