A potentiometric tattoo sensor for monitoring ammonium in sweat.
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Summary
Testing under stringent mechanical stress expected on the epidermis shows that the analytical performance is not affected by factors such as stretching or bending, and the new wearable potentiometric tattoo sensor offers considerable promise for monitoring sport performance or detecting metabolic disorders in healthcare.
- Type
- article
- Published
- 2013-10-15
- Cited by
- 317
- References
- 23
- OpenAlex
- https://openalex.org/W2036886659
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:5373304
Keywords
Potentiometric titration, Potentiometric sensor, Perspiration, Membrane, Ammonium
References
- BIOTEX—Biosensing Textiles for Personalised Healthcare Management
- Exercise-induced sweat nitrogen excretion: evaluation of a regional collection method using gauze pads
- Ammonia and the neutrophil in the pathogenesis of hepatic encephalopathy in cirrhosis
- Electrochemical Sensing Based on Printable Temporary Transfer Tattoos
- Sweat Lactate, Ammonia, and Urea in Rugby Players
- Formulation and stability of a novel artificial human sweat under conditions of storage and use.
- Effect of a low-carbohydrate diet on plasma and sweat ammonia concentrations during prolonged nonexhausting exercise
- Poly(vinyl chloride) type ammonium ion-selective electrodes based on nonactin: solvent mediator effects
- Medical Implications of the Lactate and Ammonia Relationship in Anaerobic Exercise*
- Biology of sweat glands and their disorders. I. Normal sweat gland function.
- Tattoo-based potentiometric ion-selective sensors for epidermal pH monitoring.
- Potentiometric sensors using cotton yarns, carbon nanotubes and polymeric membranes.
- International Journal of Sports Medicine - 10 Issues per Annum!
- Wearable electrochemical sensors for in situ analysis in marine environments.
- Plasma ammonia is the principal source of ammonia in sweat
- A longitudinal study on the ammonia threshold in junior cyclists
- Sweat ammonia excretion during submaximal cycling exercise.
- Epidermal biofuel cells: energy harvesting from human perspiration.
- Thick-film textile-based amperometric sensors and biosensors.
- A wearable electrochemical sensor for the real-time measurement of sweat sodium concentration
Cited by
- The microfluidics of the eccrine sweat gland, including biomarker partitioning, transport, and biosensing implications.
- Advances in wearable chemical sensor design for monitoring biological fluids
- A reference electrode based on polyvinyl butyral (PVB) polymer for decentralized chemical measurements.
- Textile-based sampling for potentiometric determination of ions.
- Non-invasive wearable electrochemical sensors: a review.
- On-Body Chemo/Bio-Sensing - Opportunities and Challenges
- Epidermal tattoo potentiometric sodium sensors with wireless signal transduction for continuous non-invasive sweat monitoring.
- Chloride-selective electrodes based on "two-wall" aryl-extended calix[4]pyrroles: combining hydrogen bonds and anion-π interactions to achieve optimum performance.
- Tattoo Conductive Polymer Nanosheets for Skin‐Contact Applications
- Tattoo‐Based Wearable Electrochemical Devices: A Review
- Novel Ion-to-Electron Transduction Principle for Solid-Contact ISEs
- Adhesive RFID Sensor Patch for Monitoring of Sweat Electrolytes
- Electroanalysis with Membrane Electrodes and Liquid-Liquid Interfaces.
- Flexible sensors for biomedical technology.
- Personalising and crowdsourcing stress management in urban environments via s-Health
- A stretchable and wearable printed sensor for human body motion monitoring
- Toward wearable patch for sweat analysis
- A graphene-based electrochemical device with thermoresponsive microneedles for diabetes monitoring and therapy.
- A novel self-supported printed flexible strain sensor for monitoring body movement and temperature
- System-level design of an RFID sweat electrolyte sensor patch
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