Title: | Textile Sensor for Skin Hydration Measurement |
Authors: | Balabán, Jan Blecha, Tomáš |
Citation: | BALABÁN, J. BLECHA, T. Textile Sensor for Skin Hydration Measurement. In 2022 45th International Spring Seminar on Electronics Technology : /proceedings/. Piscaway: IEEE, 2022. s. 1-5. ISBN: 978-1-66546-589-2 , ISSN: 2161-2536 |
Issue Date: | 2022 |
Publisher: | IEEE |
Document type: | konferenční příspěvek ConferenceObject |
URI: | 2-s2.0-85134256145 http://hdl.handle.net/11025/49772 |
ISBN: | 978-1-66546-589-2 |
ISSN: | 2161-2536 |
Keywords in different language: | skin hydration;smart textile;textile sensor;wearable electronics |
Abstract: | This paper deals with the design and realization of capacitive textile sensors for skin hydration measurement. Skin hydration level is an important parameter for the healthy condition of the body and is also often used in dermatology and cosmetology. Many commercial devices are known for measuring skin hydration, which is mainly determined by medical doctors but is not suitable for longterm patient monitoring. For this reason, textile sensors and wearable evaluation electronic units were designed and created. The result is a wearable system including a textile sensor that can be easily integrated into clothes for better patient comfort. Skin hydration level is calculated based on measured sensor capacity. Obtained results will be useful for the following research on in-home care and smart textile. |
Abstract in different language: | This paper deals with the design and realization of capacitive textile sensors for skin hydration measurement. Skin hydration level is an important parameter for the healthy condition of the body and is also often used in dermatology and cosmetology. Many commercial devices are known for measuring skin hydration, which is mainly determined by medical doctors but is not suitable for longterm patient monitoring. For this reason, textile sensors and wearable evaluation electronic units were designed and created. The result is a wearable system including a textile sensor that can be easily integrated into clothes for better patient comfort. Skin hydration level is calculated based on measured sensor capacity. Obtained results will be useful for the following research on in-home care and smart textile. |
Rights: | Plný text je přístupný v rámci univerzity přihlášeným uživatelům. © IEEE |
Appears in Collections: | Konferenční příspěvky / Conference Papers (KET) Konferenční příspěvky / Conference papers (RICE) OBD |
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