A61B5/6849

Transcutaneous analyte sensor

The present invention relates generally to systems and methods for measuring an analyte in a host. More particularly, the present invention relates to systems and methods for transcutaneous measurement of glucose in a host.

NEEDLE PROBE ARRAY AND METHODS REGARDING SAME

A needle probe array may be configured to penetrate into biological tissue and may be coupled to an interface board. The needle probe array may include a proximal electrical interface region, a distal biological interface region, and a plurality of needle electrodes extending from the proximal electrical interface region to the distal biological interface region. Each needle electrode may include a head portion and a tip portion, the head portion may include contact surfaces and non-contact surfaces therebetween. The contact surfaces may contact and electrically couple the needle electrode to the interface board and the non-contact surfaces may lack contact with the interface board.

Physiological signal monitoring device and sensor holder thereof
11504032 · 2022-11-22 · ·

The present invention discloses a holder carrying thereon a sensor to measure a physiological signal of an analyte in a biological fluid, wherein the sensor has a signal detection end and a signal output end, and the holder includes an implantation hole being a channel for implanting the sensor and containing a part of the sensor, a fixing indentation containing the sensor, a filler disposed in the fixing indentation to retain the sensor in the holder, and a blocking element disposed between the implantation hole and the fixing indentation to hold the sensor in the holder and restrict the filler in the fixing indentation.

SENSOR APPLICATOR ASSEMBLY FOR CONTINUOUS GLUCOSE MONITORING SYSTEM

The present invention relates to a sensor applicator assembly for a continuous glucose monitoring system and provides a sensor applicator assembly for a continuous glucose monitoring system, which is manufactured with a sensor module assembled inside an applicator, thereby minimizing additional work by a user for attaching the sensor module to the body and allowing the sensor module to be attached to the body simply by operating the applicator, and thus can be used more conveniently. A battery is built in the sensor module and a separate transmitter is connected to the sensor module so as to receive power supply from the sensor module and be continuously used semi-permanently, thereby making the assembly economical. The sensor module and the applicator are used as disposables, thereby allowing accurate and safe use and convenient maintenance.

TRANSCUTANEOUS ANALYTE SENSORS, APPLICATORS THEREFOR, AND ASSOCIATED METHODS

The present embodiments relate generally to applicators of on-skin sensor assemblies for measuring an analyte in a host, as well as their method of use and manufacture. In some aspects, an applicator for applying an on-skin sensor assembly to a skin of a host is provided. The applicator includes an applicator housing, a needle carrier assembly comprising an insertion element configured to insert a sensor of the on-skin sensor assembly into the skin of the host, a holder releasably coupled to the needle carrier assembly and configured to guide the on-skin sensor assembly while coupled to the needle carrier assembly, and a drive assembly configured to drive the insertion element from a proximal starting position to a distal insertion position, and from the distal insertion position to a proximal retraction position.

PEDESTAL FOR SENSOR ASSEMBLY PACKAGING AND SENSOR INTRODUCER REMOVAL
20220354393 · 2022-11-10 ·

A pedestal for a physiological characteristic sensor assembly and a physiological characteristic sensor assembly is provided. The pedestal includes a first side opposite a second side. The pedestal includes a sidewall that interconnects the first side and the second side. The pedestal also includes a first end opposite a second end. The pedestal includes at least one post that extends from the first side adjacent to the first end to couple the pedestal to a physiological characteristic sensor of the physiological characteristic sensor assembly. The pedestal also includes a recess defined in the sidewall at the second end. The recess has a first portion in communication with a second portion. The first portion has a first length that is less than a second length of the second portion along a perimeter of the sidewall, and the second portion is positionable to apply a force to the physiological characteristic sensor.

ANALYTE SENSOR

The present invention relates generally to systems and methods for measuring an analyte in a host. More particularly, the present invention relates to systems and methods for transcutaneous measurement of glucose in a host.

APPARATUSES FOR DETECTING BIOMARKERS AND METHODS FOR USING THE SAME
20170311807 · 2017-11-02 · ·

Apparatus, methods, and systems for detecting biomarkers are disclosed. A sensing apparatus for detecting the presence of at least one biomarker in subcutaneous tissue is disclosed, the sensing apparatus including a probe comprising a shaft, and a biomarker detection material coated on at least a portion of the shaft of the probe. The sensing apparatus further includes a sensor communicatively coupled to the biomarker detection material, the sensor configured to detect a change in at least one of an electrical property and an optical property of the biomarker detection material. When a change in the at least one of an electrical property and optical property of the biomarker detection material is detected, the change is indicative of the presence of at least one biomarker.

METHODS, SYSTEMS, AND DEVICES FOR ELECTRODE CAPACITANCE CALCULATION AND APPLICATION
20170311852 · 2017-11-02 ·

The double layer capacitance of a working electrode of a sensor may be measured with minimal disruption to the sensor equilibrium by open circuiting the working electrode and measuring the voltage drift on a periodic, or as-needed, basis. The values of the double layer capacitance may be monitored over time to determine, e.g., sensor age and condition.

Sensor applicator assembly for continuous glucose monitoring system

The present it relates to a sensor applicator assembly for a continuous glucose monitoring system and provides a sensor applicator assembly for a continuous glucose monitoring system, which is manufactured with a sensor module assembled inside an applicator, thereby minimizing additional work by a user for attaching the sensor module to the body and allowing the sensor module to be attached to the body simply by operating the applicator, and thus can be used more conveniently. A battery is built in the sensor module and a separate transmitter is connected to the sensor module so as to receive power supply from the sensor module and be continuously used semi-permanently, thereby making the assembly economical. The sensor module and the applicator are used aspsposables, thereby allowing accurate and safe use and convenient maintenance.