about
Diagnostic accuracy and effectiveness of automated electronic sepsis alert systems: A systematic reviewAssociation between exposure to nonactionable physiologic monitor alarms and response time in a children's hospital.Advanced Monitoring Is Associated with Fewer Alarm Events During Planned Moderate Procedure-Related Sedation: A 2-Part Pilot Trial.Medical audible alarms: a review.A Novel Sonification Strategy for Auditory Display of Heart Rate and Oxygen Saturation Changes in Clinical SettingsSystematic Review of Physiologic Monitor Alarm Characteristics and Pragmatic Interventions to Reduce Alarm FrequencyReal alerts and artifact classification in archived multi-signal vital sign monitoring data: implications for mining big data.Using Supervised Machine Learning to Classify Real Alerts and Artifact in Online Multisignal Vital Sign Monitoring DataNurse Competence on Physiologic Monitors Use: Toward Eliminating Alarm Fatigue in Intensive Care Units[Reaction time of a health care team to monitoring alarms in the intensive care unit: implications for the safety of seriously ill patients].Using a Medical Intranet of Things System to Prevent Bed Falls in an Acute Care Hospital: A Pilot Study.Insights into the problem of alarm fatigue with physiologic monitor devices: a comprehensive observational study of consecutive intensive care unit patients.Clinical Alarms in intensive care: implications of alarm fatigue for the safety of patients.Latent or manifest observers: two dichotomous approaches of surveillance in mental health nursingPrediction of Clinical Deterioration in Hospitalized Adult Patients with Hematologic Malignancies Using a Neural Network ModelA framework for reducing alarm fatigue on pediatric inpatient units.Nurses' Perceptions and Practices Toward Clinical Alarms in a Transplant Cardiac Intensive Care Unit: Exploring Key Issues Leading to Alarm Fatigue.Changes in Default Alarm Settings and Standard In-Service are Insufficient to Improve Alarm Fatigue in an Intensive Care Unit: A Pilot ProjectComparison of staff and family perceptions of causes of noise pollution in the Pediatric Intensive Care Unit and suggested intervention strategies.Over-monitoring and alarm fatigue: for whom do the bells toll?Role of Large Clinical Datasets From Physiologic Monitors in Improving the Safety of Clinical Alarm Systems and Methodological Considerations: A Case From Philips Monitors.Anaesthesia monitor alarms: a theory-driven approach.Intelligent monitoring system for intensive care units.Compliance in oxygen saturation targeting in preterm infants: a systematic review.Guiding Principles for a Pediatric Neurology ICU (neuroPICU) Bedside Multimodal Monitor: Findings from an International Working Group.Is the Sequence of SuperAlarm Triggers More Predictive Than Sequence of the Currently Utilized Patient Monitor Alarms?The implications of probability matching for clinician response to vital sign alarms: a theoretical study of alarm fatigue.Safe patient monitoring is challenging but still feasible in a neonatal intensive care unit with single family rooms.Auditing of Monitoring and Respiratory Support Equipment in a Level III-C Neonatal Intensive Care Unit.The heuristics of nurse responsiveness to critical patient monitor and ventilator alarms in a private room neonatal intensive care unit.Reducing false intracranial pressure alarms using morphological waveform featuresUser image mismatch in anaesthesia alarms: a cognitive systems analysis.Understanding heart rate alarm adjustment in the intensive care units through an analytical approach.Organizational and individual attributes influencing patient risk detection.2017 ISHNE-HRS expert consensus statement on ambulatory ECG and external cardiac monitoring/telemetry.Evaluating performance of early warning indices to predict physiological instabilities.Panoptic power and mental health nursing-space and surveillance in relation to staff, patients, and neutral places.Stimulus-response time to alarms of the intra-aortic balloon pump: safe care practices.Research: Acceptability, Feasibility, and Cost of Using Video to Evaluate Alarm Fatigue.Learning medical alarms whilst performing other tasks.
P2860
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P2860
description
2010 nî lūn-bûn
@nan
2010 թուականի Փետրուարին հրատարակուած գիտական յօդուած
@hyw
2010 թվականի փետրվարին հրատարակված գիտական հոդված
@hy
2010年の論文
@ja
2010年論文
@yue
2010年論文
@zh-hant
2010年論文
@zh-hk
2010年論文
@zh-mo
2010年論文
@zh-tw
2010年论文
@wuu
name
Intensive care unit alarms—How many do we need?*
@ast
Intensive care unit alarms—How many do we need?*
@en
type
label
Intensive care unit alarms—How many do we need?*
@ast
Intensive care unit alarms—How many do we need?*
@en
prefLabel
Intensive care unit alarms—How many do we need?*
@ast
Intensive care unit alarms—How many do we need?*
@en
P2093
P1476
Intensive care unit alarms—How many do we need?*
@en
P2093
Christian E. Wrede
Michael Imhoff
Silvia Kuhls
Sylvia Siebig
Ursula Gather
P304
P356
10.1097/CCM.0B013E3181CB0888
P407
P577
2010-02-01T00:00:00Z