Abstract:
ELECTRO-MECHANICAL CHEST COMPRESSION DEVICE The invention in an aspect concerns an electro-mechanical chest compression device (2). The device comprises a housing (6) operable to support a patient's back, a motor (79) disposed in the housing and a drive spool (42) operably attached to the motor, wherein the motor is capable of rotating the drive spool. The device further comprises a belt (3) attached to the drive spool, the belt being capable of extending at least partially around the chest of a patient, wherein rotation of the drive spool tightens the belt to compress the chest of the patient. The device also includes a spline (65) attached to the belt and a slot (43) disposed in the drive spool. The slot is sized and dimensioned to engage the spline when the belt is attached to the drive spool.
Abstract:
ELECTRO-MECHANICAL CHEST COMPRESSION DEVICE The invention in an aspect concerns an electro-mechanical chest compression device (2). The device comprises a housing (6) operable to support a patient's back, a motor (79) disposed in the housing and a drive spool (42) operably attached to the motor, wherein the motor is capable of rotating the drive spool. The device further comprises a belt (3) attached to the drive spool, the belt being capable of extending at least partially around the chest of a patient, wherein rotation of the drive spool tightens the belt to compress the chest of the patient. The device also includes a spline (65) attached to the belt and a slot (43) disposed in the drive spool. The slot is sized and dimensioned to engage the spline when the belt is attached to the drive spool.
Abstract:
AUTOMATIC LIGHTWEIGHT ELECTRO-MECHANICAL CHEST COMPRESSION DEVICE AND TEMPERATURE REGULATION SYSTEM Abstract A lightweight electro-mechanical chest compression device. The device (2) is provided with a motor (79), a brake (82), a drive spool (42), a control system (83, 84, 85), and a metal channel beam (41) to brace the device and guide a compression belt (3). The belt (3) is provided in a belt cartridge (5) that attaches to the channel beam (41). In use, the belt (3) is secured around the patient (1) and to the drive spool (42). The motor (79) tightens the belt (3) by turning the drive spool (42). The electro-mechanical chest compression device (2) weights less than 30 pounds when fully assembled with its power source (21).
Abstract:
A lightweight electro-mechanical chest compression device. The device (2) is provided with a motor (79), a brake (82), a drive spool (42), a control syst em (83, 84, 85), and a metal channel beam (41) to brace the device and guide a compression belt (3). The belt (3) is provided in a belt cartridge (5) that attaches to the channel beam (41). In use, the belt (3) is secured around th e patient (1) and to the drive spool (42). The motor (79) tightens the belt (3 ) by turning the drive spool (42). The electro-mechanical chest compression device (2) weights less than 30 pounds when fully assembled with its power source (21).
Abstract:
A lightweight electro-mechanical chest compression device. The device (2) is provided with a motor (79), a brake (82), a drive spool (42), a control system (83, 84, 85), and a metal channel beam (41) to brace the device and guide a compression belt (3). The belt (3) is provided in a belt cartridge (5) that attaches to the channel beam (41). In use, the belt (3) is secured around the patient (1) and to the drive spool (42). The motor (79) tightens the belt (3) by turning the drive spool (42). The electro-mechanical chest compression device (2) weights less than 30 pounds when fully assembled with its power source (21).
Abstract:
A lightweight electro-mechanical chest compression device. The device (2) is provided with a motor (79), a brake (82), a drive spool (42), a control system (83, 84, 85), and a metal channel beam (41) to brace the device and guide a compression belt (3). The belt (3) is provided in a belt cartridge (5) that attaches to the channel beam (41). In use, the belt (3) is secured around the patient (1) and to the drive spool (42). The motor (79) tightens the belt (3) by turning the drive spool (42). The electro-mechanical chest compression device (2) weighs less than 30 pounds when fully assembled with its power source (21).
Abstract:
ELECTRO-MECHANICAL CHEST COMPRESSION DEVICE An automated chest compression device (2) comprising: a housing (6) for supporting a patient; a motor (79) within the housing (6); a conical drive spool (42) operatively connected to the motor (79); a cable, operatively connected to the conical drive spool (42) and adapted to extend at least partially around the chest of the patient; and a controller (84) operable to control the motor (79) to compress the chest to variable thresholds.
Abstract:
A lightweight electro-mechanical chest compression device. The device (2) is provided with a motor (79), a brake (82), a drive spool (42), a control system (83, 84, 85), and a metal channel beam (41) to brace the device and guide a compression belt (3). The belt (3) is provided in a belt cartridge (5) that attaches to the channel beam (41). In use, the belt (3) is secured around the patient (1) and to the drive spool (42). The motor (79) tightens the belt (3) by turning the drive spool (42). The electro-mechanical chest compression device (2) weights less than 30 pounds when fully assembled with its power source (21).