Patent classifications
A61B2562/18
PHYSIOLOGICAL SIGNAL MONITORING APPARATUS
Provided is a physiological signal monitoring apparatus, including: a waterproof housing, a base, an electrocardiogram signal processing unit, an upper patch layer, a lower patch layer, and at least two electrodes, wherein the electrocardiogram signal processing unit is accommodated between the waterproof housing and the base; and the electrodes are located between the upper patch layer and the lower patch layer, and are electrically coupled to the electrocardiogram signal processing unit, so as to sense electrocardiogram signals for the electrocardiogram signal processing unit to process. Due to the special design of the upper and lower patch layers, external water vapor or moisture can be effectively prevented from directly entering an area which is in contact with skin, such that the physiological signal monitoring apparatus can be firmly attached to the skin, thereby prolonging the usage time thereof, reducing the replacement frequency of same, and specifically achieving the aim of long-term monitoring and sensing of electrocardiogram signals. The monitoring apparatus is particularly convenient and helpful for patients suffering from cardiovascular diseases and requiring long-term recording of electrocardiogram signals.
Wearable device and sensor device
A wearable device includes a wearable device main body, a sensor part configured to contact a skin surface of a user of the wearable device, and measure a bio-signal of the user, and a shock absorber that is interposed between the wearable device main body and the sensor part to mechanically connect the wearable device main body and the sensor part, and that is configured to reduce motion transmission between the wearable device main body and the sensor part to permit the wearable device main body to move independently from the sensor part.
Implantable optical sensor
An implantable optical sensor (1) comprising a substrate (2) and at least one optical microstructure (3) for evanescent field sensing integrated with the substrate (2), the at least one optical microstructure (3) being positioned to form an optical interaction area (4) on a part of a surface (5) of the substrate (2), the optical assembly (1) further comprising a thin protective layer (6) covering at least the optical interaction area (4), the thin protective layer (6) being in a predetermined material with corrosion-protection characteristics and having a predetermined thickness, so as not to affect the evanescent field sensing.
WEARABLE DEVICE
A wearable device is provided. The wearable device includes an electronic component and an encapsulant. The encapsulant includes a low-penetrability region encapsulating the electronic component and a high-penetrability region physically separated from the electronic component.
APPLICATORS FOR APPLYING TRANSCUTANEOUS ANALYTE SENSORS AND ASSOCIATED METHODS OF MANUFACTURE
- Joseph J. Baker ,
- Philip Thomas Pupa ,
- Timothy Joseph Goldsmith ,
- Jonathan Bodnar ,
- Jason Halac ,
- John Michael Gray ,
- Neal Davis Johnston ,
- Justen Deering England ,
- Peter C. Simpson ,
- Paul V. Neale ,
- Jennifer Blackwell ,
- Maria Noel Brown Wells ,
- Kenneth Pirondini ,
- Andrew Michael Reinhardt ,
- Mark Douglas Kempkey ,
- Young Woo Lee ,
- Warren Terry ,
- Patrick John Castagna ,
- Davis A. Keller ,
- Randall Scott Koplin ,
- Andrew Joncich ,
- Nirav Bhatt
Applicators for applying an on-skin assembly to skin of a host and methods of their use and/or manufacture are provided. An applicator includes an insertion assembly configured to insert at least a portion of the on-skin assembly into the skin of the host, a housing configured to house the insertion assembly, the housing comprising an aperture through which the on-skin assembly can pass, an actuation member configured to, upon activation, cause the insertion assembly to insert at least the portion of the on-skin assembly into the skin of the host, and a sealing element configured to provide a sterile barrier and a vapor barrier between an internal environment of the housing and an external environment of the housing.
Systems And Methods For Managing A Person's Position Based On A Personal Health Factor
A monitoring system and method tracks a patient's position over time and ensures that proper turning or other manipulation is done within the time prescribed. Preferably, the techniques herein continuously monitor patient position and alert medical or other personnel of the need for turning or other patient manipulation. The system may be implemented within a medical or other care facility, or within a patient's home.
APPLICATORS FOR APPLYING TRANSCUTANEOUS ANALYTE SENSORS AND ASSOCIATED METHODS OF MANUFACTURE
- Joseph J. Baker ,
- Philip Thomas Pupa ,
- Timothy Joseph Goldsmith ,
- Jonathan Bodnar ,
- Jason Halac ,
- John Michael Gray ,
- Neal Davis Johnston ,
- Justen Deering England ,
- Peter C. Simpson ,
- Paul V. Neale ,
- Jennifer Blackwell ,
- Maria Noel Brown Wells ,
- Kenneth Pirondini ,
- Andrew Michael Reinhardt ,
- Mark Douglas Kempkey ,
- Young Woo Lee ,
- Warren Terry ,
- Patrick John Castagna ,
- David A. Keller ,
- Randall Scott Koplin ,
- Andrew Joncich ,
- Nirav Bhatt
Applicators for applying an on-skin assembly to skin of a host and methods of their use and/or manufacture are provided. An applicator includes an insertion assembly configured to insert at least a portion of the on-skin assembly into the skin of the host, a housing configured to house the insertion assembly, the housing comprising an aperture through which the on-skin assembly can pass, an actuation member configured to, upon activation, cause the insertion assembly to insert at least the portion of the on-skin assembly into the skin of the host, and a sealing element configured to provide a sterile barrier and a vapor barrier between an internal environment of the housing and an external environment of the housing.
Handheld Oximeter with Display of Real-Time, Average Measurements and Average Resetting
An oximetry device sealed in a sheath directs a user to allow the oximetry device to make oximetry readings at a number of different tissue locations of a patient and average two or more of the oximetry readings by directing the lifts and placements of the oximetry device and sheath to and from the different tissue locations and detecting the lift and placements. The averages are generated and displayed on a display of the device for the oximetry readings if the lifts are made while use directions for the lifts are displayed on a display of the oximetry device. The averages are not generated if the lifts are not made while the user directions for the lifts are not displayed. The averages are simultaneously displayed with the oximetry readings which are instantaneous measurement for patient tissue.
APPARATUS, SYSTEM AND METHOD FOR MONITORING PERSONS INCLUDING WHILE SLEEPING
An apparatus for monitoring a person, including while sleeping, the apparatus including: a. a garment for a person to wear while sleeping; b. a rigid sensor device configured to detect a temperature and/or a motion of the rigid sensor device while the person is wearing the garment; and c. an elastic pocket configured to hold the rigid sensor device tightly inside the garment during the detection of the temperature and/or the motion.
Patient securing overlay for underbody supports
Apparatus and methods related to an underbody support for supporting a body of a being, such as during surgery to prevent contact pressure injuries. In certain embodiments, the underbody support may include one or more inflatable chambers enclosing a volume. At least one of the inflatable chambers may include one or more compression sensitive switches for monitoring the volume of the inflatable chamber, and the one or more compression sensitive switches may be located within the inflatable chamber. In some embodiments the one or more compression sensitive switches are sized to close when the said inflatable chamber is deflated to a desired residual volume.