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Articles

The Rise Slope of the Compound Sensory Nerve Action Potential in Normal and Pathological Human Nerves

, M.D., Ph.D.ORCID Icon, , M.D., Ph.D., , M.D., , M.D., , M.D., Ph.D., , M.D., Ph.D. & , M.D., Ph.D. show all
Pages 190-204 | Received 09 Apr 2023, Accepted 10 Jul 2023, Published online: 07 Aug 2023

References

  • [AAEM] American Association of Electrodiagnostic Medicine; American Academy of Neurology; and American Academy of Physical Medicine and Rehabilitation. 1993. Practice parameter for electrodiagnostic studies in carpal tunnel syndrome: summary statement. Muscle Nerve. 16(12):1390–1391.
  • Behse F, Buchthal F. 1978. Sensory action potentials and biopsy of the sural nerve in neuropathy. Brain. 101(3):473–483.
  • Buschbacher RM. 1999. Mixed nerve conduction studies of the median and ulnar nerves. Am J Phys Med Rehabil. 78(6 Suppl):S69–74.
  • Dorfman LJ. 1984. The distribution of conduction velocities (DCV) in peripheral nerves: a review. Muscle Nerve. 7(1):2–11.
  • Dorfman LJ, Cummins KL, Abraham GS. 1982. Conduction velocity distributions of the human median nerve: comparison of methods. Muscle Nerve. 5(9S):S148–153.
  • Dumitru D, DeLisa JA. 1991. AAEM Minimonograph #10: volume conduction. Muscle Nerve. 14(7):605–624.
  • Eduardo E, Burke D. 1988. The optimal recording electrode configuration for compound sensory action potentials. J Neurol Neurosurg Psychiatry. 51(5):684–687.
  • Gilliatt RW, Melville ID, Velate AS, Eillison RG. 1965. A study of normal nerve action potentials using an averaging technique (barrier grid storage tube). J Neurol Neurosurg Psychiatry. 28(3):191–200.
  • Horowitz SH, Krarup C. 1992. Conduction studies of the normal sural nerve. Muscle Nerve. 15(3):374–383.
  • Isak B, Uluc K, Sun A, Sunter G, Tanridag T. 2011. The utility of a novel composite parameter in sensory nerve conduction studies: amplitude/rise time of sensory nerve action potential. J Neurol Sci [Turkish]. 26:14–27.
  • Kimura J. 2001. Electrodiagnosis in diseases of nerve and muscle: principles and praxis. 3rd ed. Oxford (UK) and New York (NY): Oxford University Press.
  • Kimura J, Sakimura Y, Machida M, Fuchigami Y, Ishida T, Claus D, Kameyama S, Nakazumi Y, Wang J, Yamada T. 1988. Effect of desynchronized inputs on compound sensory and muscle action potentials. Muscle Nerve. 11(7):694–702.
  • Kokotis P, Mandellos D, Papagianni A, Karandreas N. 2010. Nomogram for determining lower limit of the sural response. Clin Neurophysiol. 121(4):561–563.
  • Krarup C. 2004. Compound sensory action potential in normal and pathological human nerves. Muscle Nerve. 29(4):465–483.
  • Krarup C, Trojaborg W. 1996. Sensory pathophysiology in chronic acquired demyelinating neuropathy. Brain. 119(1):257–270.
  • Lang AH, Forsström J. 1977. Transient changes of sensory nerve functions in uraemia. Acta Med Scand. 202(1–6):495–500.
  • Lang AH, Puusa A. 1981. Dual influence of temperature on compound nerve action potential. J Neurol Sci. 51(1):81–88.
  • McLeod JG, Walsh JC, Pineas JW, Pollard JW. 1976. Acute idiopathic polyneuritis. A clinical and electrophysiological follow-up study. J Neurol Sci. 27(2):145–162.
  • Paintal AS. 1966. The influence of diameter of medullated nerve fibers of cats on the rising and falling phases of the spike and its recovery. J Physiol. 184(4):791–811.
  • Preston DC, Shapiro BE. 2013. Electromyography and neuromuscular disorders: clinical-electrophysiologic correlations. 3rd ed. Elsevier-Saunders. doi:10.1016/B978-1-4557-2672-1.00016-7.
  • Pugdahl K, Tankisi H, Fuglsang-Frederiksen A. 2020. Electrodiagnostic testing of entrapment neuropathies: A review of existing guidelines. J Clin Neurophysiol. 37(4):299–305.
  • Schoonhoven R, Stegeman DF. 1991. Models and analysis of compound nerve action potentials. Crit Rev Biomed Eng. 19(1):47–111.
  • Stålberg E, van Dijk H, Falck B, Kimura J, Neuwirth C, Pitt M, Podnar S, Rubin DI, Rutkove S, Sanders DB, et al. 2019. Standards for quantification of EMG and neurography. Clin Neurophysiol. 130(9):1688–1729.
  • Stegeman DF, de Weerd JPC. 1982. Modelling compound action potentials of peripheral nerves in situ I: Model description: evidence for nonlinear relation between fibre diameter and velocity. Electroencephalogr Clin Neurophysiol. 54(4):436–448.
  • Sucher BM, Schreiber AL. 2014. Carpal tunnel syndrome diagnosis. Phys Med Rehabil Clin N Am. 25(2):229–247.
  • Thomas PK, Fullerton PM. 1963. Nerve fibre size in the carpal tunnel syndrome. J Neurol Neurosurg Psychiatry. 26(6):520–527.
  • Uncini A, Kuwabara S. 2012. Electrodiagnostic criteria for Guillain–Barrè syndrome: A critical revision and the need for an update. Clin Neurophysiol. 123(8):1487–1495.
  • Waxman SG. 1980. Determinants of conduction velocity in myelinated nerve fibers. Muscle Nerve. 3(2):141–150.
  • Werner RA, Andary M. 2002. Carpal tunnel syndrome: pathophysiology and clinical neurophysiology. Clin Neurophysiol. 113(9):1373–1381.
  • Wilder-Smith EP, Seet RC, Lim EC. 2006. Diagnosing carpal tunnel syndrome—clinical criteria and ancillary tests. Nat Clin Pract Neurol. 2(7):366–374.
  • Witt JC, Hentz JG, Stevens JC. 2004. Carpal tunnel syndrome with normal nerve conduction studies. Muscle Nerve. 29(4):515–522.

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