Customization: | Available |
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Customized: | Non-Customized |
Color: | White |
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Philips Nasal Alar FAST-Spo2 Sensor is used for rapid Spo2 detection in patients. It is different from other sensor devices in that it measures arterial oxygen saturation on the patient's nasal side. This is the best measurement site for some patients who are difficult to measure arterial oxygen saturation. Measurements at this site yield a strong and consistent signal, even in poorly perfused patients. And it is non-adhesive design, does not need any headband or adhesive. And it also has good comfort and durability, and its longest service life can reach seven days. It is a very suitable sensor device for clinical medical environment.
Color | White |
Product category | SpO2 |
Product type | Sensor |
use | Single-patient use |
Patient application | Pediatric and adult |
Recommended patient weight | ≥ 15 kg ( ≥ 33 lbs) and at least 4 yrs old |
Cable length | 1 m (3.28 ft) |
Application site | Nasal alar |
Reliable measurement :
Philips Nasal Alar FAST-Spo2 Sensor is placed at the position of the patient's nose for arterial oxygen saturation measurement. This position is the part where the nose meets the cheek, and it belongs to the facial artery, which is composed of the internal carotid artery and the carotid artery external arterial blood supply. SpO2 measurement at this site produces a strong and consistent signal and is very reliable.
Excellent location :
The measurement site of the Philips Nasal Alar FAST-Spo2 Sensor is on the patient's alar side, which is where the patient's nose meets the cheek. This site is more accessible to the anesthesiologist than traditional finger sensors. Therefore, the data of blood oxygen saturation can be measured more effectively and quickly and intuitively, which is an important indicator for evaluating patients during surgery.
Can be used for 7 days :
Philips Nasal Alar FAST-Spo2 Sensor can be used for up to 7 days. Because the alar SpO2 sensor showed a lower incidence of pressure injury over the 5-day period of sensor use compared to the forehead sensor. And it requires no headgear or adhesives, exposing the patient to minimal heat and stress.
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