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Volume growth rate of acoustic neurinomas

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Summary

Of 79 acoustic neurinomas seen between June 1980 and June 1984, at least two CT scans were available for each of 23 tumours (21 patients); the scans were performed at intervals of at least 6 months. The volume growth rate of the tumours was either moderate, with a volume doubling time ranging from 205 to 545 days, or slow, with a doubling time ranging from 1090 days to no observable growth. No single clinical, radiological or histological feature correlated with any type of growth rate. however, some conclusions were drawn. If a primary CT scan is negative, at least 1 year should elapse before it is worthwhile taking another scan, even though audiological findings suggest growth; after an an apparently radical removal, at least 3 years should elapse before a check CT scan is worthwhile; and if a small acoustic neurinoma is diagnosed, but for some reason not operated upon, a second CT scan should be carried out 1 year later in order to reassess the case.

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References

  1. Möller A, Hatam A, Olivercrona H (1978) Diagnosis of acoustic neuroma with computed tomography. Neuroradiology 17: 25–30

    Google Scholar 

  2. Palva T, Jauhiainen T, Sjöblom C-J, Ylikoski J (1978) Diagnosis and surgery of acoustic tumours. Acta Otolaryngol 86: 233–240

    Google Scholar 

  3. Servo A, Porras M, Jääskinen J (1981) Metrizamide cisternography in the diagnosis of acoustic neurinomas. Neuroradiology 21:37–41

    Google Scholar 

  4. Sortland O (1979) Computed tomography combined with gas cisternography for the diagnosis of expanding lesions in the cerebellopontine angle. Neuroradiology 18:19–22

    Google Scholar 

  5. Wende S (1980) Die kombinierte Anwendung von Computertomographie und Luftzisternographie bei Kleinhirnbruckenwinkeltumoren. Fortschr Röntgenstr 132:666–667

    Google Scholar 

  6. Mödder U, Neumann G, Prömper C (1982) Wandel der Röntgendiagnostik bei Neurinomen des VIII. Hirnnerven. Fortschr Röntgenstr 136:432–434

    Google Scholar 

  7. Young IR, Bydder GM, Hall AS, Steiner RE, Worthington BS, Hawkes RC, Holland GN, Moore WS (1983) The role of NMR imaging in the diagnosis and management of acoustic neuroma. Am J Neuroradiol 4:223–224

    Google Scholar 

  8. Valavanis A, Dabir K, Hamdi R, Oguz M, Wellauer J (1982) The current state of the radiological diagnosis of acoustic neuroma. Neuroradiology 23:7–13

    Google Scholar 

  9. Pinto RS, Kricheff II, Bergeron RT, Cohen N (1982) Small acoustic neuromas: detection by high resolution gas CT cisternography. Am J Neuroradiol 3:283–286

    Google Scholar 

  10. Johnson DW (1984) Air cisternography of the cerebellopontine angle using high-resolution computed tomography. Radiology 151:401–403

    Google Scholar 

  11. Palva T, Troupp H, Jauhiainen T (1985) Hearing preservation in acoustic neurinoma surgery (in press)

  12. Buchheit WA, Gastaldo JA (1977) The posterior fossa approach to acoustic tumors preservation of hearing. In: Silverstein H, Norrell H (eds) Neurological surgery of the ear, vol 1. Acsculapius, Birmingham, Ala, pp 263–266

    Google Scholar 

  13. Kaseff LG, Perkins R, Hambley WH (1981) Radiological techniques for small acoustic tumors — a re-evaluation. Laryngoscope 91:63–70

    Google Scholar 

  14. Palva T, Troupp H, Jauhiainen T (1981) Team surgery for acoustic neurinomas and the preservation of hearing. Acta Otolaryngol 91:37–45

    Google Scholar 

  15. Smyth GDL, Gordon DS, Campbell R, Kerr AG (1982) The facial nerve in acoustic neuroma surgery. J Laryngol Otol 96: 335–346

    Google Scholar 

  16. Mathew GD, Facer GW, Suh KW, Houser OW, O'Brien PC (1978) Symptoms, findings and methods of diagnosis in patients with acoustic neuroma. Laryngoscope 68:1893–1903

    Google Scholar 

  17. Kasantikul V, Netsky MG, Glasscock ME, Hays JW (1980) Acoustic neurilemmoma. Clinicoanatomical study of 103 patients. J Neurosurg 52:28–35

    Google Scholar 

  18. Hatam A, Bergström M, Möller A, Olivecrona H (1978) Early contrast enhancement of acoustic neuroma. Neuroradiology 17:31–33

    Google Scholar 

  19. Lange S, Steinhoff H, Aviles C, Kazner E, Grumme T (1979) Kontrastmittelkinetik in zerebralen Tumoren. Fortschr Röntgenstr 130:666–669

    Google Scholar 

  20. Breiman RS, Beck JW, Korobkin M, Glenny R, Akwari OE, Heaston DK, Moore AV, Ram PC (1982) Volume determinations using computed tomography. Am J Roentgenol 138: 329–333

    Google Scholar 

  21. Ericson K, Håkansson S (1981) Computed tomography of epidural hematomas. Association with intracranial lesions and clinical correlation. Acta Radiol Diagn 22:513–519

    Google Scholar 

  22. McCullough DC, Huang HK, DeMichelle D, Manz HJ, Sinks LF (1979) Correlation between volumetric CT imaging and autopsy measurements of glioblastoma size. Comput Tomogr 3:133–141

    Google Scholar 

  23. Kretschmar K, Schicketanz KH (1982) Measurements of the volume and density of intracerebral tumors by CT following therapy. Neuroradiology 23:175–184

    Google Scholar 

  24. Petersen OF, Espersen JO (1984) Extradural hematomas: Measurement of size by volume summation on CT scanning. Neuroradiology 26:363–367

    Google Scholar 

  25. Pearlman AW (1976) Breast cancer — influence of growth rate on prognosis and treatment evaluation. A study based on mastectomy scar recurrences. Cancer 38:1826–1833

    Google Scholar 

  26. Goodenough D, Weaver K, Davis D, LaFalce S (1981) Volume averaging limitations of computed tomography. Am J Neuroradiol 2:585–588

    Google Scholar 

  27. Hoshino T, Wilson CB (1975) Review of basic concepts of cell kinetics as applied to brain tumors. J Neurosurg 42:123–131

    Google Scholar 

  28. v Fournier D, Weber E, Hoeffken W, Bauer M, Kubli F, Barth V (1980) Growth rate of 147 mammary carcinomas. Cancer 45: 2198–2207

    Google Scholar 

  29. Eldridge R (1981) Central neurofibromatosis with bilateral acoustic neuroma. In: Riccardi VM, Mulvihill JJ, Wade WM (eds) Advances in neurology, vol 29: Neurofibromatosis (von Recklinghausen Disease). Genetics, cell biology and biochemistry. Raven Press, New York, pp 57–65

    Google Scholar 

  30. Riccardi VM (1981) Von Recklinghausen neurofibromatosis. N Engl J Med 305:1617–1627

    Google Scholar 

  31. Zanella FE, Mödder U, Benz-Bohm G, Thun F (1984) Die Neurofibromatose im Kindesalter. Computertomographische Befunde im Schädel- und Halsbereich. Fortschr Röntgenstr 141:498–504

    Google Scholar 

  32. Gardeur D, Palmieri A, Mashaly R (1983) Cranial computed tomography in the phakomatoses. Neuroradiology 25: 293–304

    Google Scholar 

  33. Yamashita T, Kuwabara T (1983) Estimation of rate of growth of malignant brain tumors by computed tomography scanning. Surg Neurol 20:464–470

    Google Scholar 

  34. Jääskeläinen J, Haltia M, Laasonen E, Wahlström T, Valtonen S (1985) The growth rate of intracranial meningioma and its relation to histology: an analysis of 43 patients. Surg Neurol 24:165–172

    Google Scholar 

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Laasonen, E.M., Troupp, H. Volume growth rate of acoustic neurinomas. Neuroradiology 28, 203–207 (1986). https://doi.org/10.1007/BF00548193

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