Comparison of a Continuous Noninvasive Temperature to Monitor Core Temperature Measures During Targeted Temperature Management

被引:6
作者
Wagner, Melissa [1 ]
Lim-Hing, Krista [2 ]
Bautista, Mary Ann [3 ]
Blaber, Brigid [3 ]
Ryder, Taghi [3 ]
Haymore, Joseph [4 ]
Badjatia, Neeraj [5 ]
机构
[1] Univ Maryland, Neuro Intens Care Unit, Neurocrit Care Adv Practice Providers, Med Ctr, 22 South Greene St, Baltimore, MD 21201 USA
[2] Hofstra Northwell Hlth, Zucker Sch Med, Hempstead, NY USA
[3] Univ Maryland, Med Ctr, Dept Nursing, Baltimore, MD 21201 USA
[4] Hood Coll, Dept Nursing, Frederick, MD 21701 USA
[5] Univ Maryland, Sch Med, Dept Neurol, Program Trauma, Baltimore, MD 21201 USA
关键词
Normothermia; Hypothermia; Targeted temperature management; Core temperature; Continuous noninvasive temperature monitoring; TEMPORAL-ARTERY; THERAPEUTIC HYPOTHERMIA; BLADDER; MODULATION; ACCURACY; ILL;
D O I
10.1007/s12028-020-01036-9
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
Background Temperature modulating devices (TMD) currently utilize core temperature measurements during targeted temperature management (TTM) that are currently limited to esophageal (Et), bladder (Bt), or rectal (Rt) temperatures. We assessed the ability of a continuous noninvasive temperature monitor to accurately approximate core temperature during TTM. Methods All patients undergoing TTM using a gel pad surface TMD and an existing core temperature monitoring device were eligible for this study. Core and continuous noninvasive temperature monitoring values were simultaneously recorded for up to 72 h of TTM. The two sets of temperature data were downloaded from a clinical data acquisition storage system at 1-min intervals. The Bland-Altman method assessed agreement between the core and continuous noninvasive temperature monitor values, by measuring the mean difference (+/- 2 SD) between these values. Results There were 20 subjects that underwent study between January 2018 and March 2018 (55% women, age: 57 +/- 14 years old, BMI: 28.9 + 9.8 kg/m(2), 100% mechanically ventilated). The comparison patient temperature source was predominantly esophageal (n = 10) followed by bladder (n = 5) or rectal (n = 5). There were a total of 999 h of paired patient temperature data from esophageal (50%), bladder (25%), and rectal (25%) temperatures. Bland-Altman analysis demonstrated good agreement with the superficial temperature monitor and core temperature measures in all patients overall, with a difference mean of 0.06 +/- 0.39 C (P = 0.99) and no proportional bias noted (beta =0.002,P = 0.917). Conclusions Continuous noninvasive temperature monitoring is a suitable alternative method for assessing core temperature during TTM. Future studies should focus on developing connectivity with a continuous noninvasive temperature monitor to approximate core temperature during TTM.
引用
收藏
页码:449 / 455
页数:7
相关论文
共 28 条
[1]  
[Anonymous], SPOTON TEMP MON SYST
[2]   Metabolic Impact of Shivering During Therapeutic Temperature Modulation The Bedside Shivering Assessment Scale [J].
Badjatia, Neeraj ;
Strongilis, Evangelia ;
Gordon, Errol ;
Prescutti, Mary ;
Fernandez, Luis ;
Fernandez, Andres ;
Buitrago, Manuel ;
Schmidt, J. Michael ;
Ostapkovich, Noeleen D. ;
Mayer, Stephan A. .
STROKE, 2008, 39 (12) :3242-3247
[3]   STATISTICAL METHODS FOR ASSESSING AGREEMENT BETWEEN TWO METHODS OF CLINICAL MEASUREMENT [J].
BLAND, JM ;
ALTMAN, DG .
LANCET, 1986, 1 (8476) :307-310
[4]   Comparison of Temporal Artery to Rectal Temperature Measurements in Children Up to 24 Months [J].
Carr, Elizabeth A. ;
Wilmoth, Michele L. ;
Eliades, Aris Beoglos ;
Baker, Pamela J. ;
Shelestak, Debra ;
Heisroth, Kay L. ;
Stoner, Kathryn H. .
JOURNAL OF PEDIATRIC NURSING-NURSING CARE OF CHILDREN & FAMILIES, 2011, 26 (03) :179-185
[5]   Temperature monitoring in the intensive care unit [J].
Chacko, Binila ;
Peter, John Victor .
INDIAN JOURNAL OF RESPIRATORY CARE, 2018, 7 (01) :28-32
[6]   Prevention of Shivering During Therapeutic Temperature Modulation: The Columbia Anti-Shivering Protocol [J].
Choi, H. Alex ;
Ko, Sang-Bae ;
Presciutti, Mary ;
Fernandez, Luis ;
Carpenter, Amanda M. ;
Lesch, Christine ;
Gilmore, Emily ;
Malhotra, Rishi ;
Mayer, Stephan A. ;
Lee, Kiwon ;
Claassen, Jan ;
Schmidt, J. Michael ;
Badjatia, Neeraj .
NEUROCRITICAL CARE, 2011, 14 (03) :389-394
[7]   Accuracy of Zero-Heat-Flux Cutaneous Temperature in Intensive Care Adults [J].
Dahyot-Fizelier, Claire ;
Lamarche, Solene ;
Kerforne, Thomas ;
Benard, Thierry ;
Giraud, Benoit ;
Bellier, Remy ;
Carise, Elsa ;
Frasca, Denis ;
Mimoz, Olivier .
CRITICAL CARE MEDICINE, 2017, 45 (07) :E715-E717
[8]  
Eshraghi Y, EXPLORATORY METHOD C
[9]  
Exergen, TEMP ASS VIA TEMP AR
[10]   Comparison of Temporal to Pulmonary Artery Temperature in Febrile Patients [J].
Furlong, Donna ;
Carroll, Diane L. ;
Finn, Cynthia ;
Gay, Diane ;
Gryglik, Christine ;
Donahue, Vivian .
DIMENSIONS OF CRITICAL CARE NURSING, 2015, 34 (01) :47-52