Literature DB >> 15461691

Errors in body temperature assessment related to individual variation, measuring technique and equipment.

Märtha Sund-Levander1, Ewa Grodzinsky, Dan Loyd, Lis Karin Wahren.   

Abstract

Errors in body temperature measurement might seriously influence the evaluation of an individual's health condition. We studied individual variation, measurement technique and the equipment used when assessing body temperature. In the first part of the study, three volunteers performed repeated measurements for five mornings. In the second part, the morning rectal, oral, ear and axillary temperatures were measured once in 84 men and women (19-59 years). The repeated measurements showed a daily temperature difference of 0.1-0.4 degrees C in rectal and oral temperatures, 0.2 degrees C-1.7 degrees C in the ear and 0.1-0.9 degrees C in the axillary temperatures. In the sample of 84 subjects, men and postmenopausal women had a lower mean body temperature compared to premenopausal women. The mean deviation between rectal temperature, and oral, ear and axillary temperatures, respectively, was > 0.5 degrees C, with a large individual variation. In conclusion, in order to improve the evaluation of body temperature, the assessment should be based on the individual variation, the same site of measurement and no adjustment of oral, ear or axillary temperatures to the rectal site.

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Mesh:

Year:  2004        PMID: 15461691     DOI: 10.1111/j.1440-172X.2004.00483.x

Source DB:  PubMed          Journal:  Int J Nurs Pract        ISSN: 1322-7114            Impact factor:   2.066


  8 in total

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Authors:  Pradeepa H Dakappa; Gopalkrishna K Bhat; Ganaraja Bolumbu; Sathish B Rao; Sushma Adappa; Chakrapani Mahabala
Journal:  J Clin Diagn Res       Date:  2016-09-01

2.  Towards a non-invasive interictal application of hypothermia for treating seizures: a feasibility and pilot study.

Authors:  A Bagić; W H Theodore; E A Boudreau; R Bonwetsch; J Greenfield; W Elkins; S Sato
Journal:  Acta Neurol Scand       Date:  2008-03-18       Impact factor: 3.209

3.  Assessment of axillary temperature for the evaluation of normal body temperature of healthy young adults at rest in a thermoneutral environment.

Authors:  Shuri Marui; Ayaka Misawa; Yuki Tanaka; Kei Nagashima
Journal:  J Physiol Anthropol       Date:  2017-02-22       Impact factor: 2.867

4.  Investigation of the Impact of Infrared Sensors on Core Body Temperature Monitoring by Comparing Measurement Sites.

Authors:  Hsuan-Yu Chen; Andrew Chen; Chiachung Chen
Journal:  Sensors (Basel)       Date:  2020-05-19       Impact factor: 3.576

5.  Temperature Difference between Brain and Axilla according to Body Temperature in the Patient with Brain Injury.

Authors:  Jong-Yang Oh; Kwangwook Jo; Wonil Joo; Do-Sung Yoo; Haekwan Park
Journal:  Korean J Neurotrauma       Date:  2020-10-21

6.  Investigation of Non-invasive Continuous Body Temperature Measurements in a Clinical Setting Using an Adhesive Axillary Thermometer (SteadyTemp®).

Authors:  Johannes Boyer; Jakob Eckmann; Karl Strohmayer; Werner Koele; Moritz Federspiel; Michael Schenk; Gregor Weiss; Robert Krause
Journal:  Front Digit Health       Date:  2021-12-14

7.  Individual Factors Including Age, BMI, and Heritable Factors Underlie Temperature Variation in Sickness and in Health: An Observational, Multi-cohort Study.

Authors:  Rose S Penfold; Maria Beatrice Zazzara; Marc F Österdahl; Carly Welch; Mary Ni Lochlainn; Maxim B Freidin; Ruth C E Bowyer; Ellen Thompson; Michela Antonelli; Yu Xian Rachel Tan; Carole H Sudre; Marc Modat; Benjamin Murray; Jonathan Wolf; Sebastien Ourselin; Tonny Veenith; Janet M Lord; Claire J Steves
Journal:  J Gerontol A Biol Sci Med Sci       Date:  2022-09-01       Impact factor: 6.591

8.  Thermography and thermoregulation of the face.

Authors:  Jan Rustemeyer; Jürgen Radtke; Andreas Bremerich
Journal:  Head Face Med       Date:  2007-03-15       Impact factor: 2.151

  8 in total

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