Placed in two positions -- one between the ninth and 10th ribs and another on the abdomen -- the Band-Aid-like devices track the rate and volume of the wearer's respiration by measuring the local strain on the application areas. The information gleaned could, in the case of asthma, help warn of an oncoming attack.
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The devices are made by applying a very thin layer of metal to a sheet of the plastic toy and then heat-shrinking it to cause corrugation. The film is then transferred to a soft, stretchy material -- similar to small bandage -- that can be adhered to a patient.
Signals from embedded sensors can be transmitted via Bluetooth to be displayed on a smartphone app. Michelle Khine, UCI professor of biomedical engineering, in whose lab the devices were developed, said she was inspired to pursue the innovation after the birth of her son nine months ago.
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Complications required the newborn to be confined to the neonatal intensive care unit hooked up to an array of machines supplying oxygen and monitoring his breathing. If you looked at the vitals monitor, you'd see this waveform, so it looked like they were getting [respiration volume] information, but they weren't," Khine said. I wasn't allowed to carry him for eight days, so it was heartbreaking -- but also frustrating to see all of these wires hooked up to him but not giving all the information we wanted.
She said those days in the hospital following the birth of her son were strongly motivating to her as a biomedical engineer: "I sent some pictures of him all wired up to my students, and I said, 'We have to be able to do better than this.
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This is It's insane. Khine's lab is well-known for employing Shrinky Dinks as a platform for medical applications. About a decade ago, she innovated the use of the toy to produce microfluidic devices. So far, members of the Khine lab have tested the new technology on healthy subjects, but there are plans for a pilot trial with a small number of asthma sufferers in the coming months. Materials provided by University of California - Irvine. Note: Content may be edited for style and length. Science News. Reliability of conventional and new oximetry in neonatal patients.
Monitoring of Respiration and Circulation
J of Perinatol, ; Barker SJ. Anesth Analg. Capnography in Pediatrics. Bhavani Shankar Kodali MD. Sourced January Canography in Intensive Care Unit. Samuel M.
Galvagno Jr. Saunders, R. Patient safety during procedural sedation using capnography monitoring: A systematic review and meta-analysis. Volume 26, No.
Issue 49, August 8, Ramsay MAE et al. The accuracy, precision and reliability of measuring ventilatory rate and detecting ventilatory pause by rainbow acoustic monitoring and capnometry. Applegate RA et al. Macknet MR et al. Goudra BG et al. Open J Anesthesiol.
Monitoring of Respiration n Circulation
For professional use. See instructions for use for full prescribing information, including indications, contraindications, warnings, and precautions. Respiratory Care. Performance During Motion and Low Perfusion 1.
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