Showing results (1-10 of 9) with videos related to
Sort By:
Pageof 1
Sensors (Basel, Switzerland)|September 28, 2021
Use of the Ferroelectric Ceramic Bismuth Titanate as an Ultrasonic Transducer for High Temperatures and Nuclear RadiationBrian T Reinhardt, Bernhard R TittmannIEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|June 25, 2014
Radiation tolerance of piezoelectric bulk single-crystal aluminum nitrideDavid A Parks, Bernhard R TittmannIEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|January 30, 2013
Fine mapping of tissue properties on excised samples of melanoma and skin without the need for histological stainingBernhard R Tittmann, Chiaki Miyasaka, Elena Maeva, et al.Journal of Applied Physics|July 19, 2012
Design of acoustic beam aperture modifier using gradient-index phononic crystalsSz-Chin Steven Lin, Bernhard R Tittmann, Tony Jun HuangSensors (Basel, Switzerland)|December 17, 2024
Unique Characteristics of Pulse-Echo Sensing Systems for Ultrasonic Immersion Testing in Harsh EnvironmentsGaofeng Sha, Andrew R Bozek, Bernhard R Tittmann, et al.IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|August 21, 2007
Study of cellular adhesion with scanning acoustic microscopyBernhard R Tittmann, Chiaki Miyasaka, Andrea M Mastro, et al.IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|July 4, 2009
Acoustic imaging of thick biological tissueElena Maeva, Fedar Severin, Chiaki Miyasaka, et al.Applied Optics|January 22, 2015
Geometrical parameter analysis of a high-sensitivity fiber optic angular displacement sensorJoão M S Sakamoto, Gefeson M Pacheco, Cláudio Kitano, et al.Sensors (Basel, Switzerland)|November 6, 2019
State-of-the-Art and Practical Guide to Ultrasonic Transducers for Harsh Environments Including Temperatures above 2120 °F (1000 °C) and Neutron Flux above 1013 n/cm2Bernhard R Tittmann, Caio F G Batista, Yamankumar P Trivedi, et al.Pageof 1