Hypolocomotion, asymmetrically directed behaviors (licking, lifting, flinching, and shaking) and dynamic weight bearing (gait) changes are not measures of neuropathic pain in mice
暂无分享,去创建一个
G. Bennett | J. Mogil | Dale J. Langford | J. Ritchie | J. Austin | Allyson C Graham | Sara F Hughes | A. Schorscher-Petcu | Allyson C. Graham | Sara F Hughes | Dale J Langford | Gary J Bennett
[1] L. Leventhal,et al. Abnormal gait, due to inflammation but not nerve injury, reflects enhanced nociception in preclinical pain models , 2009, Brain Research.
[2] H. Schaible,et al. Gait abnormalities differentially indicate pain or structural joint damage in monoarticular antigen-induced arthritis , 2009, PAIN®.
[3] Bhupendra Rawal,et al. A Novel Tool for the Assessment of Pain: Validation in Low Back Pain , 2009, PLoS medicine.
[4] J. Mogil. Animal models of pain: progress and challenges , 2009, Nature Reviews Neuroscience.
[5] J. Mogil,et al. Progress in genetic studies of pain and analgesia. , 2009, Annual review of pharmacology and toxicology.
[6] G. Walenkamp,et al. The CatWalk method: Assessment of mechanical allodynia in experimental chronic pain , 2009, Behavioural Brain Research.
[7] V. Zambelli,et al. Crotalphine induces potent antinociception in neuropathic pain by acting at peripheral opioid receptors. , 2008, European journal of pharmacology.
[8] L. Juliano,et al. Antinociceptive effect of the C-terminus of murine S100A9 protein on experimental neuropathic pain , 2008, Peptides.
[9] F.P.T. Hamers,et al. Using the CatWalk method to assess weight-bearing and pain behaviour in walking rats with ankle joint monoarthritis induced by carrageenan: Effects of morphine and rofecoxib , 2008, Journal of Neuroscience Methods.
[10] M. Barrot,et al. Sciatic nerve cuffing in mice: A model of sustained neuropathic pain , 2008, European journal of pain.
[11] J. Sato,et al. Changes in cardiovascular parameters and plasma norepinephrine level in rats after chronic constriction injury on the sciatic nerve , 2008, PAIN.
[12] Ping-Heng Tan,et al. Distinct roles of matrix metalloproteases in the early- and late-phase development of neuropathic pain , 2008, Nature Medicine.
[13] C. Vierck,et al. Clinical and pre-clinical pain assessment: Are we measuring the same thing? , 2008, PAIN®.
[14] J. Mogil,et al. Modulation of mechanical and thermal nociceptive sensitivity in the laboratory mouse by behavioral state. , 2008, The journal of pain : official journal of the American Pain Society.
[15] S. Hsieh,et al. Reversal of ERK activation in the dorsal horn after decompression in chronic constriction injury , 2007, Experimental Neurology.
[16] G. Walenkamp,et al. The CatWalk method: A detailed analysis of behavioral changes after acute inflammatory pain in the rat , 2007, Journal of Neuroscience Methods.
[17] T. Meert,et al. Pharmacological evaluation of opioid and non-opioid analgesics in a murine bone cancer model of pain , 2007, Pharmacology Biochemistry and Behavior.
[18] D. Levitin,et al. Screening for pain phenotypes: Analysis of three congenic mouse strains on a battery of nine nociceptive assays , 2006, Pain.
[19] Daniel J. Levitin,et al. Social Modulation of Pain as Evidence for Empathy in Mice , 2006, Science.
[20] P. Beaulieu,et al. Comparison of three models of neuropathic pain in mice using a new method to assess cold allodynia: The double plate technique , 2006, Neuroscience Letters.
[21] L. Djouhri,et al. Spontaneous Pain, Both Neuropathic and Inflammatory, Is Related to Frequency of Spontaneous Firing in Intact C-Fiber Nociceptors , 2006, The Journal of Neuroscience.
[22] J. Mogil,et al. The case for the inclusion of female subjects in basic science studies of pain , 2005, Pain.
[23] A. Rice,et al. Ultrasound vocalisation by rodents does not correlate with behavioural measures of persistent pain , 2005, European journal of pain.
[24] V. Neugebauer,et al. Computerized analysis of audible and ultrasonic vocalizations of rats as a standardized measure of pain-related behavior , 2005, Journal of Neuroscience Methods.
[25] T. Meert,et al. Comparison of five different rat models of peripheral nerve injury , 2005, Pharmacology Biochemistry and Behavior.
[26] T. Meert,et al. Stability of neuropathic pain symptoms in partial sciatic nerve ligation in rats is affected by suture material , 2005, Neuroscience Letters.
[27] B. Stacey,et al. Neuropathic pain symptoms relative to overall pain rating. , 2004, The journal of pain : official journal of the American Pain Society.
[28] J. Mogil,et al. What should we be measuring in behavioral studies of chronic pain in animals? , 2004, Pain.
[29] P. Coulthard,et al. Modulation of the gait deficit in arthritic rats by infusions of muscimol and bicuculline , 2004, Pain.
[30] H. Adriaensen,et al. Nonevoked facial pain in rats following infraorbital nerve injury: a parametric analysis , 2004, Physiology & Behavior.
[31] G. Blackburn-Munro,et al. Pain-like behaviours in animals - how human are they? , 2004, Trends in pharmacological sciences.
[32] A. Basbaum,et al. Spared nerve injury model of neuropathic pain in the mouse: a behavioral and anatomic analysis. , 2003, The journal of pain : official journal of the American Pain Society.
[33] P. Coulthard,et al. Gait analysis as a correlate of pain induced by carrageenan intraplantar injection , 2003, Journal of Neuroscience Methods.
[34] J. Eisenach,et al. Intrathecal, but not intravenous adenosine reduces allodynia in patients with neuropathic pain , 2003, Pain.
[35] D. Vrinten,et al. ‘CatWalk’ automated quantitative gait analysis as a novel method to assess mechanical allodynia in the rat; a comparison with von Frey testing , 2003, Pain.
[36] Koichii Tanaka,et al. A mouse model of neuropathic cancer pain , 2002, PAIN.
[37] Kevin L. Wilson,et al. Gait analysis as an objective measure in a chronic pain model , 2002, Journal of Neuroscience Methods.
[38] D. Jourdan,et al. Analysis of ultrasonic vocalisation does not allow chronic pain to be evaluated in rats , 2001, Pain.
[39] J. Sato,et al. Effects of lowering barometric pressure on guarding behavior, heart rate and blood pressure in a rat model of neuropathic pain , 2001, Neuroscience Letters.
[40] W B Veldhuis,et al. Automated quantitative gait analysis during overground locomotion in the rat: its application to spinal cord contusion and transection injuries. , 2001, Journal of neurotrauma.
[41] C. Woolf,et al. Spared nerve injury: an animal model of persistent peripheral neuropathic pain , 2000, Pain.
[42] P. Mantyh,et al. Osteoprotegerin blocks bone cancer-induced skeletal destruction, skeletal pain and pain-related neurochemical reorganization of the spinal cord , 2000, Nature Medicine.
[43] J. A. d'Almeida,et al. Behavioral changes of Wistar rats with experimentally-induced painful diabetic neuropathy. , 1999, Arquivos de neuro-psiquiatria.
[44] K. A. Clarke,et al. Gait Analysis in the Mouse , 1999, Physiology & Behavior.
[45] P. Wall,et al. Myelinated afferent fiber types that become spontaneously active and mechanosensitive following nerve transection in the rat , 1999, Brain Research.
[46] Antti Pertovaara,et al. Behavioural measures of depression and anxiety in rats with spinal nerve ligation-induced neuropathy , 1999, Pain.
[47] P. Wall,et al. Does the right side know what the left is doing? , 1999, Trends in Neurosciences.
[48] D. Slaaf,et al. Motor denervation induces altered muscle fibre type densities and atrophy in a rat model of neuropathic pain , 1998, Neuroscience Letters.
[49] Xiao-Jun Xu,et al. Photochemically-induced ischemia of the rat sciatic nerve produces a dose-dependent and highly reproducible mechanical, heat and cold allodynia, and signs of spontaneous pain , 1998, Pain.
[50] E. Buchser,et al. Intrathecal implants of bovine chromaffin cells alleviate mechanical allodynia in a rat model of neuropathic pain , 1998, Pain.
[51] A. Pertovaara,et al. Weight bearing of the limb as a confounding factor in assessment of mechanical allodynia in the rat , 1998, Pain.
[52] Lars Olson,et al. Gait Analysis of Adult Paraplegic Rats after Spinal Cord Repair , 1997, Experimental Neurology.
[53] K. A. Clarke,et al. Gait Analysis in a Rat Model of Osteoarthrosis , 1997, Physiology & Behavior.
[54] G. D. French,et al. Wallerian degeneration is required for both neuropathic pain and sympathetic sprouting into the DRG , 1997, PAIN.
[55] S. Thompson,et al. Validation of the dual channel weight averager as an instrument of the measurement of clinically relevant pain , 1997 .
[56] Kwang Jin Kim,et al. Comparison of three rodent neuropathic pain models , 1997, Experimental Brain Research.
[57] H. Na,et al. Both motor and sensory abnormalities contribute to changes in foot posture in an experimental rat neuropathic model , 1996, PAIN.
[58] J. Besson,et al. Ultrasonic vocalization (22–28 kHz) in a model of chronic pain, the arthritic rat: effects of analgesic drugs , 1996, Neuroreport.
[59] Choi Yoon,et al. Behavioral signs of ongoing pain and cold allodynia in a rat model of neuropathic pain , 1994, Pain.
[60] N. Attal,et al. Behavioural pain-related disorders and contribution of the saphenous nerve in crush and chronic constriction injury of the rat sciatic nerve , 1994, Pain.
[61] T. Yaksh,et al. Quantitative assessment of tactile allodynia in the rat paw , 1994, Journal of Neuroscience Methods.
[62] B. Vos,et al. Behavioral evidence of trigeminal neuropathic pain following chronic constriction injury to the rat's infraorbital nerve , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[63] E. Brodin,et al. Weight bearing as an objective measure of arthritic pain in the rat. , 1994, Journal of pharmacological and toxicological methods.
[64] J. Deleo,et al. Characterization of a neuropathic pain model: sciatic cryoneurolysis in the rat , 1994, Pain.
[65] D. Price,et al. Intrathecal treatment with dextrorphan or ketamine potently reduces pain-related behaviors in a rat model of peripheral mononeuropathy , 1993, Brain Research.
[66] J. Gybels,et al. A time course analysis of the changes in spontaneous and evoked behaviour in a rat model of neuropathic pain , 1992, Pain.
[67] J. Crabbe,et al. Estimation of genetic correlation: interpretation of experiments using selectively bred and inbred animals. , 1990, Alcoholism, clinical and experimental research.
[68] Gary J. Bennett,et al. A peripheral mononeuropathy in rat that produces disorders of pain sensation like those seen in man , 1988, Pain.
[69] J. Gybels,et al. Stimulation of the nucleus paraventricularis thalami suppresses scratching and biting behaviour of arthritic rats and exerts a powerful effect on tests for acute pain , 1988, Pain.
[70] J. Gybels,et al. Scratching behaviour in arthritic rats: a sign of chronic pain or itch? , 1987, PAIN®.
[71] H. Nakahama,et al. Evaluation of the analgesic effects of capsaicin using a new rat model for tonic pain , 1986, Brain Research.
[72] P. D. Wall,et al. Autotomy following peripheral nerve lesions: experimental anesthesia dolorosa , 1979, Pain.
[73] R C BOLLES,et al. Grooming behavior in the rat. , 1960, Journal of comparative and physiological psychology.
[74] H. Rijswijk,et al. Comment on stEP (Scholz J, Mannion RJ, Hord DE, Griffin RS, Rawal B et al(2009)) A Novel Tool for the Assessment of Pain: Validation in Low Back Pain , 2009 .