Literature DB >> 22543045

Estimating efficacy and drug ED50's using von Frey thresholds: impact of weber's law and log transformation.

Charles Mills1, David Leblond, Shailen Joshi, Chang Zhu, Gin Hsieh, Peer Jacobson, Michael Meyer, Michael Decker.   

Abstract

UNLABELLED: The use of von Frey filaments, originally developed by Maximilian von Frey, has become the cornerstone for assaying mechanical sensitivity in animal models and is widely used for human assessment. While there are certain limitations associated with their use that make comparisons between studies not straightforward at times, such as stimulus duration and testing frequency, von Frey filaments provide a good measurement of mechanosensation. Here we describe the application of von Frey filaments to testing in animal models, specifically with respect to determining changes in sensory thresholds in a pain state using the Dixon up-down method. In a literature survey, we found that up to 75% of reports using this method analyze the data with parametric statistical analysis and of those that used nonparametric analysis, none took into account that mechanical sensation is perceived on a logarithmic scale (Weber's Law) when calculating efficacy. Here we outline a more rigorous analysis for calculating efficacy and ED(50)'s from von Frey data that incorporates Weber's Law. We show that this analysis makes statistical and biological sense and provide a specific example of how this change affects data analysis that brings results from animal models more in line with clinical observations. PERSPECTIVE: This focus article argues that analyzing von Frey paw withdrawal threshold data obtained by using the Dixon up-down method without considering Weber's Law is inappropriate. An analysis method that incorporates how mechanical sensation is perceived and how its application brings results from animal models more in line with clinical data is presented.
Copyright © 2012 American Pain Society. Published by Elsevier Inc. All rights reserved.

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Year:  2012        PMID: 22543045     DOI: 10.1016/j.jpain.2012.02.009

Source DB:  PubMed          Journal:  J Pain        ISSN: 1526-5900            Impact factor:   5.820


  43 in total

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Authors:  E A Mazzochette; A L Nekimken; F Loizeau; J Whitworth; B Huynh; M B Goodman; B L Pruitt
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3.  Increased severity of closed head injury or repetitive subconcussive head impacts enhances post-traumatic headache-like behaviors in a rat model.

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4.  Chemogenetic Inhibition of Pain Neurons in a Mouse Model of Osteoarthritis.

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5.  Osmotically balanced, large unilamellar liposomes that enable sustained bupivacaine release for prolonged pain relief in in vivo rat models.

Authors:  Hyebin Yoo; Jun Seok Park; Seung Soo Oh; Hyun Kang
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6.  MEMS-based force-clamp analysis of the role of body stiffness in C. elegans touch sensation.

Authors:  Bryan C Petzold; Sung-Jin Park; Eileen A Mazzochette; Miriam B Goodman; Beth L Pruitt
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7.  Recovery sleep does not mitigate the effects of prior sleep loss on paclitaxel-induced mechanical hypersensitivity in Sprague-Dawley rats.

Authors:  Sharon L Kozachik; Mark R Opp; Gayle G Page
Journal:  Biol Res Nurs       Date:  2014-07-18       Impact factor: 2.522

8.  Effectiveness of dorsal root ganglion stimulation and dorsal column spinal cord stimulation in a model of experimental painful diabetic polyneuropathy.

Authors:  Eva Koetsier; Glenn Franken; Jacques Debets; Sander M J van Kuijk; Roberto S G M Perez; Bengt Linderoth; Elbert A J Joosten; Paolo Maino
Journal:  CNS Neurosci Ther       Date:  2018-09-23       Impact factor: 5.243

9.  The stress regulator FKBP51 drives chronic pain by modulating spinal glucocorticoid signaling.

Authors:  Maria Maiarù; Keri K Tochiki; Marc B Cox; Leonette V Annan; Christopher G Bell; Xixi Feng; Felix Hausch; Sandrine M Géranton
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10.  Key role of CCR2-expressing macrophages in a mouse model of low back pain and radiculopathy.

Authors:  Li Zhang; Wenrui Xie; Jingdong Zhang; Hailey Shanahan; Raquel Tonello; Sang Hoon Lee; Judith A Strong; Temugin Berta; Jun-Ming Zhang
Journal:  Brain Behav Immun       Date:  2020-11-14       Impact factor: 7.217

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