Abstract:
PROBLEM TO BE SOLVED: To provide an array of electrodes allowing a user to easily adjust to the correct size of the patient's head. SOLUTION: The electrode array 10 includes only three electrodes 12a, 12b, 12c for monitoring an electrophysiological signal, and includes a body 14, a satellite body 15, and a flexible body with a flexible connector for connecting the body 14 and the satellite body 15. Two electrodes 12a, 12b out of the three electrodes are disposed on the body and the electrode 12c of the rest is disposed on the satellite body 15. A conductor 16 is wired on the flexible body to carry signals from the electrodes. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an array of electrodes allowing a user to easily adjust to the correct size of the patient's head. SOLUTION: This array is self-adhesive, pre-gelled and disposable. The array fits easily over the temple and forehead areas where EEG signals can be acquired by specially designed monitors for purposes of monitoring a number of bodily phenomena, including but not limited to, depth of anesthesia, ischemia, and burst suppression. The array is connected to the monitor via a tab connector that is integral to the device. The tab connector is insertable into a reusable connector that is part of a monitoring system. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
An array of electrodes is constructed to allow the user to easily adjust to the correct size of the patient's head. The array is self-adhesive, pre-gelled and disposable. The array fits easily over the temple and forehead areas where EEG signals can be acquired by specially designed monitors for purposes of monitoring a number of bodily phenomena, including but not limited to, depth of anesthesia, and/or ischemia, and burst suppression. The array is connected to the monitor via a tab connector that is integral to the disposable device. The tab connector is insertible into a reusable connector that is part of a monitoring system.
Abstract:
An array of electrodes is constructed to allow the user to easily adjust to the correct size of the patient's head. The array is self-adhesive, pre-gelled and disposable. The array fits easily over the temple and forehead areas where EEG signals can be acquired by specially designed monitors for purposes of monitoring a number of bodily phenomena, including but not limited to, depth of anesthesia, and/or ischemia, and burst suppression. The array is connected to the monitor via a tab connector that is integral to the disposable device. The tab connector is insertible into a reusable connector that is part of a monitoring system.
Abstract:
An array of electrodes is constructed to allow the user to easily adjust to the correct size of the patient's head. The array is self-adhesive, pre-gelled and disposable. The array fits easily over the temple and forehead areas where EEG signals can be acquired by specially designed monitors for purposes of monitoring a number of bodily phenomena, including but not limited to, depth of anesthesia, and/or ischemia, and burst suppression. The array is connected to the monitor via a tab connector that is integral to the disposable device. The tab connector is insertible into a reusable connector that is part of a monitoring system.
Abstract:
An array of electrodes is constructed to allow the user to easily adjust to the correct size of the patient's head. The array is self-adhesive, pre-gelled and disposable. The array fits easily over the temple and forehead areas where EEG signals can be acquired by specially designed monitors for purposes of monitoring a number of bodily phenomena, including but not limited to, depth of anesthesia, and/or ischemia, and burst suppression. The array is connected to the monitor via a tab connector that is integral to the disposable device. The tab connector is insertible into a reusable connector that is part of a monitoring system.
Abstract:
An array of electrodes is constructed to allow the user to easily adjust to the correct size of the patient's head. The array is self-adhesive, pre-gell ed and disposable. The array fits easily over the temple and forehead areas whe re EEG signals can be acquired by specially designed monitors for purposes of monitoring a number of bodily phenomena, including but not limited to, depth of anesthesia, and/or ischemia, and burst suppression. The array is connecte d to the monitor via a tab connector that is integral to the disposable device . The tab connector is insertible into a reusable connector that is part of a monitoring system.
Abstract:
An array of electrodes is constructed to allow the user to easily adjust to the correct size of the patient's head. The array is self-adhesive, pre-gelled and disposable. The array fits easily over the temple and forehead areas where EEG signals can be acquired by specially designed monitors for purposes of monitoring a number of bodily phenomena, including but not limited to, depth of anesthesia, and/or ischemia, and burst suppression. The array is connected to the monitor via a tab connector that is integral to the disposable device. The tab connector is insertible into a reusable connector that is part of a monitoring system.
Abstract:
Disclosed is a disposable self-prepping electrode (10) which utilizes an arr ay or mat of flexile tines (24) which serve to part the high impendance outer layers of skin to expose the low impendance, blood enriched layers without scratching or abrading. The tines (24) are preferably imbedded in a conductive gel layer (14). In an alternate embodiment, a self-prepping layer of flexile tines (24) embedded in gel (14) may be a single disposable self-prepping lay er that is mounted over a permanent electrode (22).
Abstract:
An array of electrodes is constructed to allow the user to easily adjust to the correct size of the patient's head. The array is self-adhesive, pre-gelled and disposable. The array fits easily over the temple and forehead areas where EEG signals can be acquired by specially designed monitors for purposes of monitoring a number of bodily phenomena, including but not limited to, depth of anesthesia, and/or ischemia, and burst suppression. The array is connected to the monitor via a tab connector that is integral to the disposable device. The tab connector is insertible into a reusable connector that is part of a monitoring system.