Literature DB >> 2312145

System for mechanical measurements during cardiopulmonary resuscitation in humans.

K G Gruben1, J Romlein, H R Halperin, J E Tsitlik.   

Abstract

Effective study of CPR requires measurement of the mechanical properties of the human chest and the resultant vascular pressures. A computer-based mobile data acquisition system was designed and built for this purpose. During manual CPR a short cylindrical module was placed between the rescuer's hands and the patient's chest. This module, which was attached to an easily manipulated position-sensing arm, measured force and acceleration at the sternum. Three-dimensional position and orientation of the module were measured, as well as the component of the applied force which was perpendicular to the sternum. The central venous and aortic pressures were measured by high fidelity pressure transducers. All transducer signals were recorded by digital computer. Real-time feedback of sternal force and displacement, and vascular pressures was provided to the rescue team via chart recordings. An audible signal was produced as an aid in maintaining desired compression rate and duration. The system's mobility permitted rapid implementation at any hospital location. In conclusion, this system was capable of measuring, recording, and displaying multiple physical quantities during manual CPR in humans.

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Mesh:

Year:  1990        PMID: 2312145     DOI: 10.1109/10.46261

Source DB:  PubMed          Journal:  IEEE Trans Biomed Eng        ISSN: 0018-9294            Impact factor:   4.538


  2 in total

1.  Incorporation of CPR Data into ATD Chest Impact Response Requirements.

Authors:  Matthew R Maltese; Kristy B Arbogast; Vinay Nadkarni; Robert Berg; Sriram Balasubramanian; Thomas Seacrist; Richard W Kent; Daniel P Parent; Matthew Craig; Stephen A Ridella
Journal:  Ann Adv Automot Med       Date:  2010

2.  An innovative design for cardiopulmonary resuscitation manikins based on a human-like thorax and embedded flow sensors.

Authors:  Mark Thielen; Rohan Joshi; Frank Delbressine; Sidarto Bambang Oetomo; Loe Feijs
Journal:  Proc Inst Mech Eng H       Date:  2017-02-13       Impact factor: 1.617

  2 in total

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