Literature DB >> 11701487

Injectable electronic identification, monitoring, and stimulation systems.

P R Troyk1.   

Abstract

Historically, electronic devices such as pacemakers and neuromuscular stimulators have been surgically implanted into animals and humans. A new class of implants made possible by advances in monolithic electronic design and implant packaging is small enough to be implanted by percutaneous injection through large-gauge hypodermic needles and does not require surgical implantation. Among these, commercially available implants, known as radio frequency identification (RFID) tags, are used for livestock, pet, laboratory animal, and endangered-species identification. The RFID tag is a subminiature glass capsule containing a solenoidal coil and an integrated circuit. Acting as the implanted half of a transcutaneous magnetic link, the RFID tag is powered by and communicates with an extracorporeal magnetic reader. The tag transmits a unique identification code that serves the function of identifying the animal. Millions of RFID tags have been sold since the early 1980s. Based on the success of the RFID tags, research laboratories have developed injectable medical implants, known as micromodules. One type of micromodule, the microstimulator, is designed for use in functional-neuromuscular stimulation. Each microstimulator is uniquely addressable and could comprise one channel of a multichannel functional-neuromuscular stimulation system. Using bidirectional telemetry and commands, from a single extracorporeal transmitter, as many as 256 microstimulators could form the hardware basis for a complex functional-neuromuscular stimulation feedback-control system. Uses include stimulation of paralyzed muscle, therapeutic functional-neuromuscular stimulation, and neuromodulatory functions such as laryngeal stimulation and sleep apnea.

Entities:  

Mesh:

Year:  1999        PMID: 11701487     DOI: 10.1146/annurev.bioeng.1.1.177

Source DB:  PubMed          Journal:  Annu Rev Biomed Eng        ISSN: 1523-9829            Impact factor:   9.590


  4 in total

Review 1.  Wireless communication with implanted medical devices using the conductive properties of the body.

Authors:  John E Ferguson; A David Redish
Journal:  Expert Rev Med Devices       Date:  2011-07       Impact factor: 3.166

Review 2.  Commercial Off-the-Shelf Components (COTS) in Realizing Miniature Implantable Wireless Medical Devices: A Review.

Authors:  Sadeque Reza Khan; Andrew J Mugisha; Andreas Tsiamis; Srinjoy Mitra
Journal:  Sensors (Basel)       Date:  2022-05-10       Impact factor: 3.847

3.  Clinical Study of Using Biometrics to Identify Patient and Procedure.

Authors:  Jason W Sohn; Haksoo Kim; Samuel B Park; Soyoung Lee; James I Monroe; Thomas B Malone; Timothy Kinsella; Min Yao; Charles Kunos; Simon S Lo; Robert Shenk; Mitchell Machtay
Journal:  Front Oncol       Date:  2020-12-01       Impact factor: 6.244

Review 4.  Cell culture on MEMS platforms: a review.

Authors:  Ming Ni; Wen Hao Tong; Deepak Choudhury; Nur Aida Abdul Rahim; Ciprian Iliescu; Hanry Yu
Journal:  Int J Mol Sci       Date:  2009-12-18       Impact factor: 6.208

  4 in total

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