| Literature DB >> 29608202 |
Kaiyan Qiu1, Zichen Zhao2, Ghazaleh Haghiashtiani1, Shuang-Zhuang Guo1, Mingyu He3, Ruitao Su1, Zhijie Zhu1, Didarul B Bhuiyan4, Paari Murugan5, Fanben Meng1, Sung Hyun Park1, Chih-Chang Chu3, Brenda M Ogle4, Daniel A Saltzman6, Badrinath R Konety7, Robert M Sweet2, Michael C McAlpine1.
Abstract
The design and development of novel methodologies and customized materials to fabricate patient-specific 3D printed organ models with integrated sensing capabilities could yield advances in smart surgical aids for preoperative planning and rehearsal. Here, we demonstrate 3D printed prostate models with physical properties of tissue and integrated soft electronic sensors using custom-formulated polymeric inks. The models show high quantitative fidelity in static and dynamic mechanical properties, optical characteristics, and anatomical geometries to patient tissues and organs. The models offer tissue-mimicking tactile sensation and behavior and thus can be used for the prediction of organ physical behavior under deformation. The prediction results show good agreement with values obtained from simulations. The models also allow the application of surgical and diagnostic tools to their surface and inner channels. Finally, via the conformal integration of 3D printed soft electronic sensors, pressure applied to the models with surgical tools can be quantitatively measured.Entities:
Keywords: 3D printed sensors; 3D printing; organ models; soft materials; surgical aids
Year: 2017 PMID: 29608202 PMCID: PMC5877482 DOI: 10.1002/admt.201700235
Source DB: PubMed Journal: Adv Mater Technol