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Patient self-monitoring of oral anticoagulant therapy: potential benefits and implications for clinical practice.

Coumarin derivatives are widely used oral anticoagulants for patients with chronic atrial fibrillation, venous thromboembolism, valvular heart disease, myocardial infarction or a mechanical prosthetic heart valve. Because of the narrow therapeutic window associated with coumarins and the potential for drug interactions, frequent monitoring of anticoagulation is required to maintain the International Normalized Ratio (INR) between 2.0 to 3.5 for most clinical indications. Monitoring of oral anticoagulant therapy is placing a considerable burden on healthcare providers because many patients require life-long treatment with coumarins, and because of an increasing number of elderly patients with conditions that are treated with coumarins. A novel approach that might, in part, address this healthcare need is patient self-monitoring of anticoagulation with a portable coagulometer. Several cohort studies and randomized controlled trials have found that anticoagulation self-monitoring is as good as, or better than, conventional monitoring in a specialized anticoagulation clinic or by a general practitioner. The advantages of anticoagulation self-monitoring include reduced patient inconvenience relating to anticoagulation clinic visits and laboratory monitoring of warfarin therapy, and fewer INR levels outside the therapeutic INR range if INR measurements are preformed more frequently with anticoagulation self-monitoring. Thus, anticoagulation self-monitoring has the potential to reduce the incidence of thromboembolic and bleeding episodes in patients who are receiving long term oral anticoagulant therapy. The potential drawbacks of anticoagulation self-monitoring include the costs of the portable coagulometer. Additionally, self-monitoring is limited to patients who have the cognitive and physical capabilities to perform the technique required for the portable coagulometer.

Administration, Oral↗

Feasibility of monitoring populations to detect environmental carcinogens.

In relation to cancer, monitoring, i.e. "continuing observation in order to decide when changes in incidence or mortality may have occurred" can be of two types: (a) passive (or routine) monitoring using routinely collected cancer statistics for populations in general (b) active (or exposure-oriented) monitoring in which the cancer experience of groups with specific exposures is compared with that of the non-exposed. The advantages and disadvantages of mortality and morbidity data for passive monitoring are listed. It is concluded that passive monitoring can rarely do more than indicate areas for further study. The potential of active monitoring is examined by consideration of industrial and occupational exposures, the follow-up of persons on prolonged drug therapy (including transplacental effects) and changes in cancer risk following migration. As such studies are often univariate, it may not be possible to allow for the effect of other factors, and confirmatory studies will often be required. It is belived that priority should currently be given to monitoring occupational exposures, particularly those involving chemicals shown by animals studies to have carcinogenic activity. To monitor everybody for everything will result in nothing. The social responsibilities which devolve on monitors, the authorities, both sides of industry and the general public as a result of the establishment of monitoring systems are discussed. It is concluded that monitoring, active or passive, does not represent a quick road to the identification of environmental carcinogens but can point to products or processes likely to have a cancer risk - a risk which would have to be confirmed or otherwise by other methods.

Adult↗

Efficacy of conventional monitoring techniques in free tissue transfer: an 11-year experience in 750 consecutive cases.

Conventional free flap monitoring techniques (clinical observation, hand-held Doppler ultrasonography, surface temperature probes, and pinprick testing) are proven methods for monitoring free flaps with an external component. Buried free flaps lack an external component; thus, conventional monitoring is limited to hand-held Doppler ultrasonography. Free flap success is enhanced by the rapid identification and salvage of failing flaps. The purpose of this study was to compare the salvage rate and final outcomes of buried versus nonburied flaps monitored by conventional techniques. This study is a retrospective review of 750 free flaps performed between 1986 and 1997 for reconstruction of oncologic surgical defects. There were 673 nonburied flaps and 77 buried flaps. All flaps were monitored by using conventional techniques. Both buried and nonburied flaps were used for head and neck and extremity reconstruction. Only nonburied flaps were used for trunk and breast reconstruction. Buried flap donor sites included jejunum (n = 50), fibula (n = 16), forearm (n = 8), rectus abdominis (n = 2), and temporalis fascia (n = 1). Overall flap loss for 750 free flaps was 2.3 percent. Of the 77 buried flaps, 5 flaps were lost, yielding a loss rate of 6.5 percent. The loss rate for nonburied flaps (1.8 percent) was significantly lower than for buried flaps (p = 0.02, Fisher's exact test). Fifty-seven (8.5 percent) of the nonburied flaps were reexplored for either change in monitoring status or a wound complication. Reexploration occurred between 2 and 400 hours postoperatively (mean, 95 hours). All 44 of the salvaged flaps were nonburied; these were usually reexplored early (<48 hours) for a change in the monitoring status. Flap compromise in buried flaps usually presented late (>7 days) as a wound complication (infection, fistula). None of five buried flaps were salvageable at the time of reexploration. The overall salvage rate of nonburied flaps (77 percent) was significantly higher than that of buried flaps (0 percent, p<0.001, chi-square test). Conventional monitoring of nonburied free flaps has been highly effective in this series. These techniques have contributed to rapid identification of failing flaps and subsequent salvage in most cases. As such, conventional monitoring has led to an overall free flap success rate commensurate with current standards. In contrast, conventional monitoring of buried free flaps has not been reliable. Failing buried flaps were identified late and found to be unsalvageable at reexploration. Thus, the overall free flap success rate was significantly lower for buried free flaps. To enhance earlier identification of flap compromise in buried free flaps, alternative monitoring techniques such as implantable Doppler probes or exteriorization of flap segments are recommended.

Anastomosis, Surgical↗

Failure of electrocardiographic monitoring to detect cardiac arrest in patients with pacemakers.

Two children with cardiac pacemakers are described who experienced cardiorespiratory arrest not detected by the electrocardiographic (ECG) monitor. The pacemaker stimuli were interpreted by the monitor as a QRS complex with inhibition of the heart rate alarm, demonstrating the need for reliable non-ECG monitoring in patients with pacemakers. A review of all deaths in children with pacemakers in the last ten years also shows the high association of respiratory failure in patients with congenital heart disease and a pacemaker, underscoring this need. Various non-ECG monitoring modalities are discussed. Finally, analysis of the ECG monitor characteristics contributing to inappropriate sensing of the pacemaker stimulus was performed, showing the direct relation between the pacemaker stimulus amplitude seen by the monitor and the monitor sensitivity with inappropriate sensing, and the inverse relation between the monitor bandwidth and inappropriate sensing. Recommendations for monitor adjustment when monitoring patients with pacemakers are provided.

Adolescent↗

Self-blood-pressure monitoring--a questionnaire study: response, requirement, training, support-group popularity and recommendations.

The objective of this study was to survey hypertensive patients' response to, requirement for and training in self-blood pressure monitoring (SBPM). A total of 222 hypertensives were invited to complete a questionnaire even when not participating in the project. Questions supplied information on demographics, monitoring frequency, convenience of attending the surgery, monitor ownership and preference for and ease of self-monitoring. Comments supplied qualitative data. Training group questionnaires supplied similar data as well as SBPM data before and after training. Of 133 respondents, a higher educated, younger, wider age range wanted to participate (76; 57.2%) and tended to self-monitor. However, only an increase in further education (FE) was associated with an increased probability of participation and inclination to self-monitor in the multivariate analyses. A positive relationship exists between age and frequency in both groups. About a sixth of respondents own monitors and ownership is correlated to FE. Although most patients found it convenient to visit the surgery, the percentage finding it convenient was lower in patients attending training sessions than in the original survey, possibly indicating that independence is important for SBPM. Younger, higher-educated patients tended to self-monitor although FE was again the significant factor. Training increased preference for the idea of SBPM, prospective monitor ownership (64.8% of non-owners) and self-monitoring intention (76.1%). Patients found recording card listed cardiovascular disease (CVD) risks valuable and 69.6% (32) wanted to establish a support group. Comments and interviews indicated haphazard knowledge, routines and uncertainty about SBPM. A standardised procedure including patient assessment, SBPM protocol and lifestyle education is needed for SBPM to be successful.

Adult↗

Survey of automated noninvasive blood pressure monitors.

Automated noninvasive blood pressure (NIBP) monitors, or automated sphygmomanometers, have been increasingly used both inside and outside clinical environments. An extensive survey of such monitors was carried out over the past five years. This survey covers a broad spectrum of monitors including ambulatory monitors, bedside and transport monitors, stress-test monitors, and monitors that are intended for self-measurement. It includes more than 400 models from suppliers in the United States and many other countries. A review of NIBP measurement methods that have been used in automated NIBP monitors is presented in this paper, along with statistical distributions of their use in the surveyed monitors and a list of the suppliers and monitors.

Blood Pressure Determination↗

ASA monitoring standards and magnetic resonance imaging.

Some patients, often because of age or altered mental state, require general anesthesia or monitored anesthesia care and sedation if adequate magnetic resonance imaging (MRI) is to be accomplished. This study evaluated whether patients can be monitored during MRI with 1.5-tesla scanners in a manner which complies with ASA monitoring standards without causing degradation of image quality. Ten volunteers were scanned in the MRI without sedation. Monitors meeting ASA standards were placed and electronic artifact produced by the magnetic resonance (MR) scanner was evaluated, after which two scans of the head and two of the chest were performed. One of each pair of scans was obtained with the monitors functioning and one with them turned off. Four radiologists, blinded as to whether the monitors were turned on or off, independently evaluated the 20 pairs of scans. Differences in diagnostic quality and image degradation between the scans were evaluated and scores assigned. All monitors functioned appropriately during the scans, with the exception of the electrocardiogram (ECG) which was grossly distorted to the extent that only ventricular rate could be evaluated. None of the head or body scans was nondiagnostic; however, images with the monitors off were of better quality overall than with them on. Two types of noise were generated and are described. During the head scans, three of seven monitoring combinations caused degradation of the images, while four were judged clinically adequate. During the body scans, two of six monitoring combinations created noticeable noise, while four introduced no significant noise. Ungated cardiac scans were nondiagnostic.(ABSTRACT TRUNCATED AT 250 WORDS)

Anesthesiology↗

Report from the NOAA workshops to standardize protocols for monitoring toxic Pfiesteria species and associated environmental conditions.

Long-term monitoring of water quality, fish health, and plankton communities in susceptible bodies of water is crucial to identify the environmental factors that contribute to outbreaks of toxic Pfiesteria complex (TPC) species. In the aftermath of the 1997 toxic Pfiesteria outbreaks in North Carolina and Maryland, federal and several state agencies agreed that there was a need to standardize monitoring protocols. The National Oceanic & Atmospheric Administration convened two workshops that brought together state, federal, and academic resource managers and scientific experts to a) seek consensus on responding to and monitoring potential toxic Pfiesteria outbreaks; b) recommend standard parameters and protocols to characterize water quality, fish health, and plankton at historical event sites and potentially susceptible sites; and c) discuss options for integrating monitoring data sets from different states into regional and national assessments. Workshop recommendations included the development of a three-tiered TPC monitoring strategy: Tier 1, rapid event response; Tier 2, comprehensive assessment; and Tier 3, routine monitoring. These tiers correspond to varying levels of water quality, fish health, and plankton monitoring frequency and intensity. Under the strategy, sites are prioritized, depending upon their history and susceptibility to TPC events, and assigned an appropriate level of monitoring activity. Participants also agreed upon a suite of water quality parameters that should be monitored. These recommendations provide guidance to state and federal agencies conducting rapid-response and assessment activities at sites of suspected toxic Pfiesteria outbreaks, as well as to states that are developing such monitoring programs for the first time.

Animals↗

Noninvasive monitoring of the neonatal respiratory system.

The development and use of a large variety of nonivasive respiratory monitors have provided the neonatal intensive care unit clinician with invaluable tools for continuous monitoring. Thorough understanding of how each monitor functions, what it measures, and factors that contribute to monitor errors and injuries is vital for appropriate use of this technology and for proper interpretation of monitor values. On-going patient assessment and a good understanding of physiologic principles affecting respiratory status and monitoring also are imperative to interpreting monitor values. Noninvasive monitors have raised a controversy about home use of monitors to prevent sudden infant death syndrome--a review of National Institute of Health recommendations is helpful when cardiorespiratory monitoring is an issue. Family teaching and support are beneficial for discharge planning.

Blood Gas Monitoring, Transcutaneous↗

[Accuracy, utility and complications of continuous glucose monitoring system (CGMS) in pediatric patients with type 1 diabetes].

OBJECTIVE: To evaluate the accuracy, utility and complications of continuous glucose monitoring system in children and adolescents with type 1 diabetes. METHODS: This retrospective study assessed 16 type 1 diabetic patients (16.12+/-4.41 years) submitted to continuous glucose monitoring system (Medtronic; Northridge, CA) for 72 hours. The following parameters were analyzed: mean capillary glucose level and mean glucose value measured by the continuous glucose monitoring system; glucose excursions (continuous glucose monitoring system vs. capillary glucose measurement), postprandial hyperglycemia (NR < 140 mg/dl), nocturnal hypoglycemia, complications (trauma, local infection, disconnection) and therapeutic management after continuous glucose monitoring. A1c levels were measured at the beginning and after 3 months of the study. RESULTS: The mean capillary glucose values were 214.3+/-66.5 mg/dl vs. 207.6+/-54.6 mg/dl by continuous glucose monitoring system, with a significant correlation (p = 0.001). The correlation coefficient and mean absolute error were 0.86+/-0.21 and 12.6% of the median, respectively. The continuous glucose monitoring system was significantly more efficient in detecting glucose excursion than fingerstick capillary blood sampling (p = 0.04; W = 74), and postprandial hyperglycemia was identified in 60% of type 1 diabetic patients with a median value of 157 mg/dl (< 140 mg/dl). Nocturnal hypoglycemia was detected in 46.7% of these patients. The evaluation of A1c levels in eight (50%) patients before continuous glucose monitoring and after 3 months showed a significantly lower level of A1c in this population (8.18+/-1.5 vs. 7.28+/-1.3; p = 0.034). The therapeutic management of type 1 diabetes was changed in 100% of patients. No complications were detected in 93.7% of patients. CONCLUSIONS: The continuous glucose monitoring system showed to be a very safe, well-tolerated and highly accurate method, with a low complication rate. It is a good method to identify glucose excursion and postprandial hyperglycemia, and to improve metabolic changes in therapeutic strategies, with a significant impact on the A1c levels of pediatric diabetic patients. The efficacy of the continuous glucose monitoring system in detecting hypoglycemia is still unclear in the medical literature.

Adolescent↗

Does centralized monitoring affect perinatal outcome?

A retrospective study was performed comparing centralized monitoring to noncentralized monitoring in regard to perinatal outcome. The study was conducted at Lehigh Valley Hospital (Allentown, PA) between August 1994 and February 1995. All deliveries during a 28-week-period were studied retrospectively. The study was designed such that for 14 weeks all patients were centrally monitored (Group A). During the following 14 weeks, no patients were centrally monitored (Group B). Patients not requiring monitoring, such as elective cesarean sections, were excluded from the study. The variables that were studied were the 5-minute Apgar, cord blood pH, perinatal mortality, admissions to the neonatal intensive care unit (NICU), spontaneous vaginal deliveries, cesarean sections, and operative vaginal deliveries. A total of 1,622 deliveries occurred during the 28 weeks of antenatal care. Group A consisted of 805 centralized monitored patients and Group B had 817 noncentralized monitored patients. There was no statistical difference in the 5-minute Apgar, umbilical artery pH, perinatal mortality, or the NICU admissions between the two groups. However, there was a significant statistical difference in the percent of cesarean sections performed for nonreassuring fetal heart rate tracings (Group A, 17.89% vs. Group B, 12.16%; P = 0.02). The overall cesarean section rate was increased in the centrally monitored group (Group A, 23.6% vs. Group B, 18.1%; P = 0.01). There were also statistically significant differences in operative vaginal deliveries (forceps and vacuum) for fetal heart rate abnormalities between Group A, 0.52% vs. Group B, .39% (P = 0.05). Centralized monitoring may be associated with an increase in the overall cesarean section rate. In addition, the rate of operative vaginal and abdominal deliveries appears to be increased for the indication of nonreassuring fetal heart rate tracings with the use of centralized monitoring.

Apgar Score↗

Complications and use of intracranial pressure monitoring in patients with acute liver failure and severe encephalopathy.

Monitoring of intracranial pressure (ICP) in acute liver failure (ALF) is controversial as a result of the reported complication risk (approximately 20%) and limited therapeutic options for intracranial hypertension. Using prospectively collected information from 332 patients with ALF and severe encephalopathy, we evaluated a recent experience with ICP monitoring in the 24 centers constituting the U.S. ALF Study Group. Special attention was given to the rate of complications, changes in management, and outcome after liver transplantation (LT). ICP monitoring was used in 92 patients (28% of the cohort), but the frequency of monitoring differed between centers (P < 0.001). ICP monitoring was strongly associated with the indication of LT (P < 0.001). A survey performed in a subset of 58 patients with ICP monitoring revealed intracranial hemorrhage in 10.3% of the cohort, half of the complications being incidental radiological findings. However, intracranial bleeding could have contributed to the demise of 2 patients. In subjects listed for LT, ICP monitoring was associated with a higher proportion of subjects receiving vasopressors and ICP-related medications. The 30-day survival post-LT was similar in both monitored and nonmonitored groups (85% vs. 85%). In conclusion, the risk of intracranial hemorrhage following ICP monitoring may have decreased in the last decade, but major complications are still present. In the absence of ICP monitoring, however, patients listed for LT appear to be treated less aggressively for intracranial hypertension. In view of the high 30-day survival rate after LT, future studies of the impact of intracranial hypertension should also focus on long-term neurological recovery from ALF.

Adult↗

Essential monitoring examined through different lenses.

When we ask, what renders essential a particular monitoring approach during routine anesthesia for a healthy patient, perplexing questions, rather than satisfying answers, are raised. I have examined these questions with the help of three lenses that focus on the relationship between the outcome of anesthesia and the detection, and thus correction, of abnormalities during anesthesia. The first lens looks at whether the monitoring modalities accepted by anesthesiologists as "minimal" and "essential" have been scientifically proven to affect outcome from routine anesthesia. A second lens views how well monitors reveal the integrity of the organism and its components. Currently available monitors describe the output of cells or organs but relay little information about the viability of cells. Thus, they describe the symptoms rather than the causes of the pathophysiology related to anesthesia. Today's monitors also measure input, for example, the supply of oxygen, perhaps the most routinely measured of all the variables. The third lens looks at whether there are nonclinical influences on monitoring practice. This lens views the gap between recognizing monitoring possibilities and adopting them clinically; it also views geographic differences in monitoring, as well as social pressures exerted through legal proceedings. Finally, currently recognized essential monitors such as blood pressure measurement, electrocardiography, and oxygen analysis are mentioned, and candidates for inclusion in the list of essential monitors, such as oximeters, capnographs, and the automated record, are discussed.

Anesthesia, General↗

Inventory of ocean monitoring in the Southern California Bight.

Monitoring of the ocean environment in southern California, USA, has been conducted by a diverse array of public and private organizations with different motivations, working on a variety of spatial and temporal scales. To create a basis from which to integrate information from these diverse programs, we conducted an inventory of ocean monitoring activities in the Southern California Bight to address the following questions: (1) How much money is being expended annually on marine monitoring programs? (2) Which organizations are conducting the most monitoring? (3) How are resources allocated among the different types of monitoring programs? This inventory focused on programs existing, or those expected to be in existence, for at least 10 years and that were active at any time between 1994 and 1997. For each program identified for inclusion in this study, information was collected on the number of sites, sampling intensity, parameters measured, and methods used. Levels of effort were translated into cost estimates based upon a market survey of local consulting firms. One hundred fourteen marine monitoring programs, conducted by 65 organizations and costing US $31 million annually, were identified. Most of the effort (81 programs, 65% of samples, 70% of costs) was expended by ocean dischargers as part of their compliance with National Pollutant Discharge Elimination System (NPDES) permit requirements. Federal programs (11 programs, 25% of samples, 10% of total expenditures) expended more than state or local government programs. More than one quarter of monitoring expenditures were conducted to measure concentrations and mass of effluent inputs to the ocean. The largest effort expended on receiving water monitoring was for measuring bacteria, followed by sediments, fish/shellfish, water quality, and intertidal habitats. The large level of expenditures by individual agencies has presented opportunities for integrating small, site-specific ocean monitoring programs into regional- and national-scale monitoring and assessment programs.

Animals↗

The influence of glucose self-monitoring on glycaemic control in patients with diabetes mellitus in Sudan.

OBJECTIVE: To investigate the influence of self-monitoring of glucose on the glycaemic control in Sudanese diabetic subjects. SUBJECTS AND METHODS: A group of 193 consecutive type 2 and type 1 diabetic subjects (95 men, 98 women) were studied. In 104 subjects with type 2 diabetes fasting blood glucose was measured using a glucose meter and blood was obtained for serum glucose measurement in the laboratory. In the remaining 89 diabetic subjects random blood glucose was measured using the same glucose meter and a whole blood sample was drawn for laboratory assessment of HbA1c. Data on self-monitoring and other clinical and personal characteristics were recorded. RESULTS: More than 75% of either type 1 and type 2 diabetic patients never self-monitored blood or urine glucose. In type 2 diabetic subjects self-monitoring of blood or urine glucose was not related to glycaemic control. In type 1 diabetic subjects, however, self-monitoring of blood glucose was significantly associated with better glycaemic control, as assessed by HbA1c (P=0.02) and blood glucose at clinic visits (P< or =0.0001), and similar associations were found for urine glucose self-monitoring (P=0.04 and 0.02) respectively. Neither glycaemic control nor glucose self-monitoring was associated with education level. CONCLUSIONS: Self-monitoring of blood glucose was not found to be associated to better glycaemic control in Sudanese subjects with type 2 diabetes. In contrast, self-monitoring of both blood and urine glucose was significantly associated with glycaemic control in subjects with type 1 diabetes. Self-monitoring of urine glucose could be useful where measurement of blood glucose is not available or affordable.

Adult↗

Patterns of use of facial nerve monitoring during parotid gland surgery.

OBJECTIVE: To determine current patterns of use of facial nerve monitoring during parotid gland surgery by otolaryngologists in the United States. STUDY DESIGN AND SETTING: A questionnaire encompassing surgeon training background, practice setting, patterns of facial nerve monitor usage during parotid gland surgery, and history of permanent facial nerve injury or legal action resulting from parotid surgery was mailed to 3139 otolaryngologists in the United States. Associations between facial nerve monitor usage and dependent variables were examined by using the chi(2) test. Magnitudes of the associations were determined from odds ratios calculated using logistic regression. RESULTS: A 49.3% questionnaire response rate was achieved. Sixty percent of respondents who perform parotidectomy employed facial nerve monitoring some or all of the time. Respondents were 5.6 times more likely to use the monitor in practice if they used it in training and 79% more likely to use it if they performed more than 10 parotidectomies per year. Respondents were 35% less likely to have a history of inadvertent nerve injury if they performed more than 10 parotidectomies per year. Surgeons who employed monitoring in their practice were 20.8% less likely to have a history of a parotid surgery-associated lawsuit. Additional information regarding surgeon demographics, types of nerve monitors used, and reasons for and against monitor usage are discussed. CONCLUSION: Permanent facial nerve paralysis after parotidectomy occurs in 0-7% of cases. Currently, a majority of otolaryngologists in the United States are employing facial nerve monitoring during parotid surgery some or all of the time, even though no studies to date have demonstrated improved outcomes with its use. Physician training background and surgery caseload were significant factors influencing usage of facial nerve monitoring in this study.

Clinical Competence↗

Application of multiway ICA for on-line process monitoring of a sequencing batch reactor.

Multiway principal component analysis has been shown to be a powerful monitoring tool in many industrial batch processes. However, it has the shortcomings that all batch lengths should be equal, the measurement variables must be normally distributed and that future values of the current batch must be estimated to allow on-line monitoring. In this work, it is shown that multiway independent component analysis (MICA) can be used to overcome these drawbacks and obtain better monitoring performance. The on-line MICA monitoring of batch processes is based on a new unfolding method and independent component analysis (ICA). ICA provides better monitoring performance than PCA in cases with non-Gaussian data because it is not based on the assumption that the latent variables are normally distributed. The MICA algorithm does not require any estimation of future batch values and can also be applied to non-equal batch length data sets. This article describes the application of on-line MICA monitoring of a sequencing batch reactor (SBR). It is successfully applied to an 80L SBR for biological wastewater treatment, which is characterized by a variety of disturbance sources with non-Gaussian characteristics. The SBR poses an interesting challenge from the point of process monitoring characterized by non-stationary, batchwise, multiscale, and non-Gaussian characteristics. The results of the bench-scale SBR monitoring clearly showed the power and advantages of MICA monitoring in comparison to conventional monitoring methods.

Automation↗

Comparison of respiratory inductive plethysmography and thoracic impedance for apnea monitoring.

Thoracic impedance apnea monitors may fail to detect obstructive apnea, may falsely alarm when the infant is breathing, and may confuse cardiac artifact with respiratory impedance. Therefore, we compared the performance of a respiratory inductive plethysmograph and a thoracic impedance monitor with a reliable measure of airflow, either nasal CO2 or pneumotachograph, during 29 studies in 28 patients referred for sleep laboratory evaluation. Sleep time averaged 72 +/- 37 (SD) minutes. The inductance plethysmography and the impedance monitor detected 99.6% +/- 0.6% and 98.3% +/- 3.0% of breaths, respectively. However, in two studies, the impedance monitor detected many extra breaths, once because of cardiac-induced impedance changes and once because of partial airway obstruction-induced impedance changes. In 11 studies, cardiac artifact was sometimes misinterpreted as a breath by the impedance monitor. The impedance monitor, but not the inductance plethysmograph, missed breaths following sighs in 16 of 29 studies. Both monitors detected all 60 episodes of central apnea. The inductance plethysmography detected 35 of 38 episodes of obstructive apnea, but the impedance monitor identified only two such events. Apnea was detected falsely four times by the inductance plethysmograph and 14 times by the impedance monitor. These results suggests that a respiratory inductive plethysmograph would have significant advantages over impedance monitoring, including the ability to detect obstructive apnea, and freedom from cardiac artifact.

Apnea↗