Quantitative sensory testing
Количественное сенсорное тестирование
2003-03-25
SCID: 54.1/3es9gcyd
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diabetic neuropathyquantitative sensory testingsensory threshold systemssmall fiber neuropathytest reproducibility
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Abstract (AI)
OBJECTIVE: This assessment evaluates the clinical utility, efficacy, and safety of quantitative sensory testing (QST). METHODS: By searching MEDLINE, Current Contents, and their personal files, the authors identified 350 articles. Selected articles utilized computer operated threshold systems, manually operated threshold systems, and electrical threshold devices. The authors evaluated the use of normal values and the degree of reproducibility between the same and different systems. Articles were rated using a standard classification of evidence scheme. RESULTS: Because of differences between systems, normal values from one system cannot be transposed to others. Reproducibility of results was also an important concern, and there is no consensus on how it should be defined. The authors identified no adequately powered class I studies demonstrating the effectiveness of QST in evaluating any particular disorder. A number of class II and III studies demonstrated that QST is probably or possibly useful in identifying small or large fiber sensory abnormalities in patients with diabetic neuropathy, small fiber neuropathies, uremic neuropathies, and demyelinating neuropathy. CONCLUSIONS: QST is a potentially useful tool for measuring sensory impairment for clinical and research studies. However, QST results should not be the sole criteria used to diagnose pathology. Because malingering and other nonorganic factors can influence the test results, QST is not currently useful for the purpose of resolving medicolegal matters. Well-designed studies comparing different QST devices and methodologies are needed and should include patients with abnormalities detected solely by QST.
Key Findings
1
Class II and III evidence indicates QST is probably or possibly useful for detecting small- or large-fiber abnormalities in diabetic, small-fiber, uremic, and demyelinating neuropathies.
2
No adequately powered class I studies demonstrated quantitative sensory testing effectiveness for evaluating any specific disorder.
3
Normal values obtained with one quantitative sensory testing system cannot be transferred to other systems because of inter-system differences.
4
QST may measure sensory impairment in clinical and research settings, but it should not be the sole diagnostic criterion or be used to resolve medicolegal disputes because nonorganic factors can affect results.
5
Reproducibility is a major concern in quantitative sensory testing, and no consensus exists on how reproducibility should be defined.
Research Object
quantitative sensory testing (QST) systems and their use in patients with sensory neuropathies
Research Subject
the clinical utility, efficacy, safety, normative values, and reproducibility of QST for detecting sensory abnormalities
Publication Details
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2003-03-25
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