
BIS™ quatro sensor
The BIS™ quatro sensor captures EEG signals from the frontal brain cortex that are processed by the BIS™ algorithm and displayed on the BIS™ monitor.
Description
Gain insight into brain response with BIS™ technology.1
BIS™ technology offers clinicians added security for providing specialized care and comfort for their patients, including those who may be more sensitive to the hemodynamic effects of anesthesia.
BIS™ monitoring provides valuable information about the patient status to help clinicians address each patient’s unique anesthetic requirements.
This technology may be particularly valuable for:
Patients with complex conditions whose status may suddenly or frequently change
Patients with cardiovascular conditions
Obese patients
Trauma patients or others requiring reduced levels of anesthesia
Features
The BIS™ quatro sensor:
Is a noninvasive sensor applied to the patient’s forehead
Offers peel-and-stick simplicity and Zipprep™ technology
Collects electroencephalograph (EEG) data using BIS™ technology
Has a density spectral array (DSA) display with unilateral sensors
Has a spectral edge frequency (SEF) display with unilateral sensors
Has a median frequency (MF) display with unilateral and bilateral sensors
Has a suppression time (ST) display
Generates a continuous live data stream
How does our sensor technology work to capture the low-voltage EEG signal?
We use a conductive ink that is printed directly on the surface of the sensor, under the adhesive foam and Zipprep™ technology. This creates an electrode surface that is helpful in picking up the low-voltage EEG.
The Zipprep™ technology helps clear away the first layer of the epidermis. The mechanical action of pressing on the electrode results in the tines clearing away some of the first layer of dead skin cells, exposing the inner, more electrically conductive layer of skin. The conductive gel within the electrode permeates into this newly exposed area, creating a good electrical pathway between the EEG-carrying inner layers of skin and the conductive traces within the sensor. The EEG signal is then carried through these traces to the BIS™ monitor.
We include a thin layer of sponge that contains a very precise amount of gel. This gel creates a bridge between the forehead and the conductive electrode surface.
These combined components help achieve an optimal environment to acquire and maintain the EEG signal.
Specifications
Shelf life | One and a half years from date of manufacture |
|---|---|
Connector (paddle) | Polycarbonate plastic (incidental patient contact) |
Tab stiffener | Polycarbonate sheet (no patient contact), one side coated with adhesive |
Module | Copper, brass, Kapton®* (no patient contact) |
Flexible circuit | Polyester screen-printed with cured Ag/AgCI and dielectric inks (incidental patient contact) |
Electrode gel | Potassium chloride (KCI) aqueous gel |
Electrode tines disk | Green nylon plastic |
Electrode sponge disk | Polyurethane, polyester foam |
Electrode tines retaining disk | 1/32 inch white polyethylene foam (no patient contact), both sides coated with medical-grade adhesive |
Basepad | 1/16 inch white polyethylene foam, both sides coasted with medical-grade adhesive |
Liner card | Silicone-coated, high-impact, polystyrene (no patient contact) |
Packaging | Paper, aluminum foil, polyethylene (no patient contact) |
Ordering information
Item number | Dimensions (in) | Weight (g) | Units per box |
|---|---|---|---|
11 x 1.1 | 3.7 | 25 |
Hours
Monday - Friday
9:00 am - 6:00 pm
Location
+91 9343002868
samratinnovationsinc@gmail.com sales@samratinnovations.com
Contact
No. 878 ,BEML Layout Road Dwaraka Nagar ,Channasandra Rajarajeshwari Nagar Bangalore-98 ,India


