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L M Huffman

Publications and source records attributed to L M Huffman.

10 recordsLinked to original sources

Monitoring compliance: a sensitive indicator of change.

This article is the seventh in a series designed to help anesthetists appreciate the clinical applications of equipment and monitoring systems. The use of a new technology for monitoring compliance during general tracheal anesthesia techniques is presented along with an explanation of the added clinical benefits of visually monitoring patients' compliance compared to estimating compliance by feeling the tension on the rebreathing bag.

Humans

AANA journal course: new technologies in anesthesia: update for nurse anesthetists--monitoring ventilation and compliance with Side Stream Spirometry.

A new anesthesia technology, Side Stream Spirometry, now allows clinicians to monitor pressure, volume, flow, compliance, and resistance during routine anesthesia practice. Continuous monitoring with Side Stream Spirometry is a major adjunct to patient safety because numerical and visual references show how change in one respiratory parameter affects the mechanics of the entire breath cycle. To optimize ventilation and ensure adequate oxygenation, it is common practice for clinicians to verify that the proper volume per breath is being delivered to the patient at the lowest possible pressure. For artificial ventilation to be most physiologic, each breath must be delivered with the most appropriate flow, at the required volume, under the pressure appropriate for each patient's pulmonary system, and at the correct respiratory breath rate. Side Stream Spirometry makes it possible to continuously measure lung mechanics and the gas dynamics of flow, volume and pressure. Using a simple sensor, the D-lite, Side Stream Spirometry is compatible with all common models of anesthesia machines, ventilators and breathing circuits. Side Stream Spirometry measures all parameters closest to the patient, at the tracheal tube or mask. This sensor location provides actual patient information which is not altered by the volume of gas compressed in the breathing circuit, the absorber system, or in the bellows of the ventilator. This installment of the AANA Journal Course will discuss the technology of Side Stream Spirometry and its application to monitoring pulmonary ventilation. Clinical evidence of ventilatory changes will be graphically demonstrated using the CAPNOMAC ULTIMA, a respiratory gas monitoring system, equipped with Side Stream Spirometry.

Airway Resistance

Common problems in waste gas management.

This article is the sixth in a series designed to help nurse anesthetists appreciate the clinical applications of equipment and monitoring systems. A brief overview of waste gas management is presented, as well as a description of the anesthesia machine's waste gas interface valve, how it is designed to function, clinical problems that have led to incidents, types of vacuum systems, and how to test and verify the functioning of the system before use.

Anesthesiology

Calibrated vaporizers: maintaining clinical performance.

This column is the fourth in a series of articles designed to help nurse anesthetists understand and manage equipment technology. In this issue the author explains how to maintain vaporizers to minimize the risks of overdose, which may result from high output, or awareness and recall, which low output may cause. Since calibrated vaporizers are used to dispense inhaled anesthetic drugs, both human factors and mechanical problems must be addressed to ensure accuracy and performance during use.

Anesthesia, Inhalation

Monitoring airway pressure: a new standard.

This article is the fifth of a series designed to help nurse anesthetists appreciate the clinical applications of equipment and monitoring systems. In this issue, the author describes the most recent American Society for Testing and Materials (ASTM) standard requirements for airway pressure monitoring and outlines the most important reasons for monitoring high, sustained and subatmospheric airway pressure.

Airway Resistance

AANA Journal course: new technologies in anesthesia: update for nurse anesthetists--monitoring depth of anesthesia using a reliable esophageal method. (continuing education credit)

Until recently, there had been no simple, accurate, and reliable technique for monitoring depth of anesthesia, but now a monitoring system that measures lower esophageal contractility (LEC) is available. The system consists of a monitor and a disposable esophageal stethoscope equipped with provoking and measuring balloons. Since the brain stem directly controls the motor function of the esophagus, LEC was postulated to reflect the anesthetic state of the patient. Multiple-center clinical studies have shown that LEC correlates significantly with administered levels of intravenous and inhalation anesthetic agents and patient responses to surgical stimulation. Monitoring LEC permits the clinician to administer the dose of drug needed without the complications associated with "too deep" or "too light" anesthesia.

Anesthesia, General