| Literature DB >> 25985458 |
Canan Dagdeviren1, Yan Shi2, Pauline Joe1, Roozbeh Ghaffari3, Guive Balooch4, Karan Usgaonkar1, Onur Gur5, Phat L Tran6, Jessi R Crosby6, Marcin Meyer7, Yewang Su8, R Chad Webb1, Andrew S Tedesco9, Marvin J Slepian10, Yonggang Huang11, John A Rogers12.
Abstract
Mechanical assessment of soft biological tissues and organs has broad relevance in clinical diagnosis and treatment of disease. Existing characterization methods are invasive, lack microscale spatial resolution, and are tailored only for specific regions of the body under quasi-static conditions. Here, we develop conformal and piezoelectric devices that enable in vivo measurements of soft tissue viscoelasticity in the near-surface regions of the epidermis. These systems achieve conformal contact with the underlying complex topography and texture of the targeted skin, as well as other organ surfaces, under both quasi-static and dynamic conditions. Experimental and theoretical characterization of the responses of piezoelectric actuator-sensor pairs laminated on a variety of soft biological tissues and organ systems in animal models provide information on the operation of the devices. Studies on human subjects establish the clinical significance of these devices for rapid and non-invasive characterization of skin mechanical properties.Entities:
Mesh:
Year: 2015 PMID: 25985458 DOI: 10.1038/nmat4289
Source DB: PubMed Journal: Nat Mater ISSN: 1476-1122 Impact factor: 43.841