IEEE Transactions on Biomedical Engineering

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An Automated Method for Multi-DOF Cell Rotational Control Contributing to Orientation-based Cell Surgery Applications
Orientation control of biological cells has gained much attention recently due to the fact that cell rotation is both a basic and vital cell micromanipulation technique involved in many orientation-based cell surgery applications. These applications include cell injection, preimplantation genetic... Read more
Articles, Published Articles
Pre-Clinical Translation of Second Harmonic Microscopy of Meniscal and Articular Cartilage Using a Prototype Nonlinear Microendoscope
      Abstract Previous studies using nonlinear microscopy have demonstrated that osteoarthritis (OA) is characterized by the gradual replacement of Type II collagen with Type I collagen. The objective of this study was to develop a prototype nonlinear laser scanning microendoscope capable of... Read more
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Photothermal Modeling and Analysis of Intrabody Terahertz Nanoscale Communication
Wireless communication among implanted nano-biosensors will enable transformative smart health monitoring and diagnosis systems. The state of the art of nano-electronics and nano-photonics points to the terahertz (THz) band (0.1–10 THz) and optical frequency bands (infrared, 30–400 THz, and visible,... Read more
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Terahertz Channel Model and Link Budget Analysis for Intrabody Nanoscale Communication
Nanosized devices operating inside the human body open up new prospects in the healthcare domain. Invivo wireless nanosensor networks (iWNSNs) will result in a plethora of applications ranging from intrabody health-monitoring to drug-delivery systems. With the development of miniature plasmonic... Read more
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Evaluation of Mobile Phone Performance for Near-Infrared Fluorescence Imaging
Mobile phone technology represents a novel platform for optical imaging that may have significant advantages for telemedicine, global health, emergency response and military medicine applications.  Several clinical optical devices based on mobile phones have been developed, including those performing visible... Read more
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Intra-body Optical Channel Modeling for In-vivo Wireless Nanosensor Networks
In vivo wireless nanosensor networks (iWNSNs) consist of nanosized communicating devices, which can operate inside the human body in real time. iWNSNs are at the basis of transformative healthcare techniques, ranging from intra-body health-monitoring systems to drug-delivery applications. Plasmonic nanoantennas... Read more