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Spezielle echographische Untersuchungstechniken für Bulbus und Orbita

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Zusammenfassung

Aus den Kapiteln dieses Buches ist ersichtlich, daß die Autoren ein anderes Vorgehen bevorzugen. In Anbetracht der relativen Verbreitung der Methode halten wir es daher für angebracht, in zwei unabhängig voneinander erarbeiteten Stellungnahmen unsere Auffassungen hierüber zusammenzufassen.

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Literatur

  • Coleman DJ, Lizzi FL, Silverman RH, Rondeau M, Smith ME, Torpey J, Greenall P (1987) Acoustic tissue typing with computerized methods. Review. In: Ossoinig KC (ed) Ophthalmic echography. SIDUO X, Junk, The Hague Boston Lancaster

    Google Scholar 

  • Haigis W, Reuter R, Lepper R-D (1981) Comparative measurements on different pulse-echo systems using test reflectors. In: Thijssen JM, Verbeek AM (eds) Ultrasonography in ophthalmology. SIDUO VIII, Doc Ophthalmol Proc Ser 29. Junk, The Hague Boston London, pp 445–456

    Chapter  Google Scholar 

  • Ossoinig KC (1971) Grundlagen der echographischen Gewebsdifferenzierung, I. Teil: Experimentelle und klinische Untersuchungen über den Einfluß technischer Faktoren auf den diagnostischen Wert der Echogramme. In: Böck J, Ossoinig KC (Hrsg) Ultrasonographia Medica, Bd 1. Verlag der Wieder Medizinischen Akademie, Wien, S 155–168

    Google Scholar 

  • Ossoinig KC (1977) Echography of the eye, orbit and periorbital region. In: Arger PH (ed) Orbit roentgenology. Wiley, New York, pp 223–269

    Google Scholar 

  • Ossoinig KC (1979) Standardized echography. Basic principles, clinical applications and results. Int Ophthalmol Clin 19:127–210

    Article  PubMed  CAS  Google Scholar 

  • Ossoinig KC, Harrie RP (1983 a) Diagnosis of intraocular tumors with standardized echography. In: Lommatzsch PK, Biodi FC (eds) Intraocular tumors, Proc Sympos Schwerin 1981. Springer, Berlin

    Google Scholar 

  • Ossoinig KC, Hermsen VM (1983 b) Myositis of extraocular muscles diagnosed with standardized echography. In: Hillman JS, LeMay MM (eds) Ophthalmic ultrasonography, SIDUO IX, Doc Ophthalmol Proc Ser 38. Junk, The Hague Boston Lancaster, pp 381–392

    Chapter  Google Scholar 

  • Ossoinig KC, Steiner H (1965) Zum Problem der Normung in der Ultraschalldiagnostik — ein Testkörper für die Diagnostik intraokularer Tumoren. Wiss Z. Humbold-Univ Berlin, Math-Naturwiss Reihe 14/1:129–133

    Google Scholar 

  • Reuter R, Lepper R-D, Haigis W (1981) Comparative measurements on ultrasonic pulse-echo equipment with the Echosimulator. In: Thijssen JM, Verbeek AM (eds) Ultrasonography in ophthalmology. SIDUO VIII, Doc Ophthalmol Proc Ser 29. Junk, The Hague Boston London, pp 463–471

    Chapter  Google Scholar 

  • Smith ME, Coleman DJ, Lizzi FL, Silverman RH, Rondeau M, Ellsworth RM, Haik BG (1987) Computerized ultrasonic analysis of uveal malignent melanomas and response to cobalt-60 plaque. In: Ossoinig KC (ed) Ophthalmic echography. SIDUO X, Doc Ophthalmol Proc Ser 38. Junk, The Hague Boston Lancaster

    Google Scholar 

  • Buschmann W, Haigis W, Thijssen J (November 1985) Nomenclature proposal for SIDUO Standardization Committee

    Google Scholar 

  • International Electrotechnical Vocabulary, Chap 80 (1982) Acoust Electr-Acoust Adv Edn, Publication 50 (801)

    Google Scholar 

  • Ossoinig KC (1979) Standardized echography: Basic principles, clinical applications, and results. Int Ophthalmol Clin 19/4:127–210

    Article  PubMed  CAS  Google Scholar 

  • Ossoinig KC, Patel JH (1977) A-scan instrumentation for acoustic tissue differentiation: III. Testing and calibration of the 7200 MA unit of Kretztechnik. In: White D, Brown RE (eds) Ultrasound in medicine, vol 3B. Plenum New York, pp 1955–1964

    Google Scholar 

  • Till P (1976) Solid tissue model for the standardization of the Echoophthalmograph 7200 MA (Kretztechnik). Doc Ophthalmol 41:205

    Article  PubMed  CAS  Google Scholar 

  • Trier HG (April 1986) Schreiben an die Mitglieder des SIDUO Standardization Committee

    Google Scholar 

  • Bonavolontà A, Cennamo G (1984) M-Mode echography pattern study in retinal detachment. In: Hillman JS, Le-May MM (eds) Ophthalmic ultrasonography, SIDUO IX, Doc Ophthalmol Proc Ser 38. Junk, The Hague Boston Lancaster, pp 133–139

    Chapter  Google Scholar 

  • Bronson NR (1969) Foreign body management. In: Int. Ophthalmol. Clinics 9, No. 3, Wainstock (ed), Ultrasonography in Ophthalmology, Little, Brown & Co, Boston

    Google Scholar 

  • Buschmann W (1964) Zur Diagnostik der Carotisthrombose. Albrecht v Graefes Arch Ophthalmol 166:519–529

    Article  PubMed  CAS  Google Scholar 

  • Buschmann W (1966) Einführung in die ophthalmologische Ultraschalldiagnostik. Thieme, Leipzig

    Google Scholar 

  • Coleman DJ (1970) Unified model for accommodative mechanism. Am J Ophthalmol 69:1063–1079

    PubMed  CAS  Google Scholar 

  • Coleman DJ (1971) Measurement of choroidal pulsation with M-scan ultrasound. Am J Ophthalmol 71:363–365

    PubMed  CAS  Google Scholar 

  • Coleman DJ (1972 a) Reliability of ocular and orbital diagnosis with B-scan ultrasound. 1. Ocular diagnosis. Am J Ophthalmol 73:501–516

    PubMed  CAS  Google Scholar 

  • Coleman DJ (1972 b) Reliability of ocular and orbital diagnosis with B-scan ultrasound. 2. Orbital diagnosis. Am J Ophthalmol 74:704–718

    PubMed  CAS  Google Scholar 

  • Coleman DJ, Carlin B (1967) A new system for visual axis measurements in the human eye using ultrasound. Arch Ophthalmol 77:124–127

    Article  PubMed  CAS  Google Scholar 

  • Coleman DJ, Weininger R (1969) Ultrasonic M-Mode technique in ophthalmology. Arch Ophthalmol 82: 475–479

    Article  PubMed  CAS  Google Scholar 

  • Coleman DJ, Wuchinich D, Carlin B (1969) Accommodative changes in the axial dimension of the human eye. In: Gitter KA, Keeney AH, Sarin LK, Meyer D (ed) Ophthalmic ultrasound. Mosby, St. Louis, pp 134–141

    Google Scholar 

  • Coleman DJ, Jack RL, Franzen LA (1973) Ultrasonography in ocular trauma. Am J Ophthalmol 75:279–288

    PubMed  CAS  Google Scholar 

  • Coleman DJ, Lizzi FL, Jack RL (ed) (1977) Ultrasonography of the eye and orbit. Lea & Febiger, Philadelphia

    Google Scholar 

  • Friedman FE, Kodsow MB (1973) Lokalisation von Fremdkörpern im Augeninnern und Bestimmung ihrer magnetischen Eigenschaften durch Ultraschall. Klin Monatsbl Augenheilkd 162:579–584

    PubMed  CAS  Google Scholar 

  • Giglio EJ, Ludlam WM (1967) High resolution ultrasonic equipment to measure intra-ocular distances. J Am Optom Assoc 38:367–371

    PubMed  CAS  Google Scholar 

  • Hammerla O (1970) Ultraschallzielgerät für intraokulare Distanzmessungen. Diplomarbeit, Universität München

    Google Scholar 

  • Hunold W (1983) Die morphologische und funktionelle Gliederung der menschlichen Choriocapillaris. Habilitationsschrift, Medizinische Fakultät, RWTH Aachen

    Google Scholar 

  • Irion KM, Faust U, Trier HG, Lepper RD (1984) Digitale Analyse von Ultraschall-M-Bildern zur Ermittlung des dynamischen Verhaltens der Augenrückwand. Ultraschall 5:126–130

    Article  CAS  Google Scholar 

  • Irion KM, Trier HG, Lepper RD (1987) In vivo study of the human retinochoroidal layers by RF-signal analysis. II Automated digital image analysis of the M-scan. In: Ossoinig KC (ed) Ophthalmic echography. SIDUO X. Junk, The Hague Boston Lancaster, p 145

    Chapter  Google Scholar 

  • Lepper R-D (1978) Ultraschallmessungen an der Rückwand des lebenden menschlichen Auges. Dissertation Universität Bonn

    Google Scholar 

  • Lepper R-D, Trier HG (1981) A new device for ocular biometry. In: Thijssen JM, Verbeek AM (eds) Ultrasonography in ophthalmology. SIDUO VIII, Doc Ophthalmol Proc Ser 29. Junk, The Hague Boston London, pp 473–477

    Chapter  Google Scholar 

  • Lepper R-D, Trier HG (1987) Measurements of accommodative changes in human eyes by means of a high-resolution ultrasonic system. In: Ossoinig KC (ed) Ophthalmic echography. SIDUO X. Junk, The Hague Boston Lancaster

    Google Scholar 

  • Lepper R-D, Trier HG, Reuter R (1980) Neuartige Ultraschallbiometrie. Klin Monatsbl Augenheilkd 177:101–106

    Article  PubMed  CAS  Google Scholar 

  • Lepper R-D, Trier HG, Reuter R (1981) Ultrasonic measurements at the posterior wall ofliving human eyes. Ophthalmol Res 13:1–11

    Article  Google Scholar 

  • Lepper R-D, Trier HG, Reinert S, Reuter R (1987) In vivo study of the human retino-choroidal layers by RF-signal analysis. I. Visual echogram interpretation. Part 1: Techniques. In: Ossoinig KC (ed) Ophthalmic echography. SIDUO X. Junk, The Hague Boston Lancaster, pp 139–143

    Chapter  Google Scholar 

  • Malessa P (1972) Spektralphotometrische Bestimmung der Aderhautdurchblutung beim Albinokaninchen. Klin Monatsbl Augenheilkd 161:115–116

    Google Scholar 

  • Penner R, Passmore JW (1966) Magnetic vs. nonmagnetic intraocular foreign bodies. An ultrasonic determination. Arch Ophthalmol 76:676–677

    Article  PubMed  CAS  Google Scholar 

  • Püttmann W, Reuter R, Trier HG (1977) Change of orientation and intensity of a magnetic field as an aid for ultrasonic foreign body localization. In: White D, Brown RE (eds) Ultrasound in medicine, vol 3A, Clinical aspects. Plenum Press, New York London, pp 1011–1018

    Google Scholar 

  • Purneil EW (1966) Ultrasound in ophthalmological diagnosis. In: Grossman C et al. (eds) Diagnostic ultrasound. Plenum Press, New York, pp 95–109

    Google Scholar 

  • Reinert S (1983) Ultraschall-Untersuchungen an der menschlichen Netzhaut/Aderhautschicht in vivo mittels Hochfrequenz-Signal-Analyse. Dissertation Universität Bonn

    Google Scholar 

  • Schneider H, Reuter R, Trier HG (1987) in Vorbereitung

    Google Scholar 

  • Schum U (1970) Ein kombinierter Magnet-Schallkopf zur Lokalisation und Extraktion intraokularer Fremdkörper. Klin Monatsbl Augenheilkd 157:256–258

    PubMed  CAS  Google Scholar 

  • Schum U, Schwab B (1971) Verbesserte kombinierte Ultraschall- und Magnetverfahren zur intraokularen Fremdkörperdiagnostik. Albrecht v Graefes Arch Ophthalmol 182:313–320

    Article  CAS  Google Scholar 

  • Storey JK, Rabie EP (1984) Biometry of the eye during accommodation. In: Hillman JS, LeMay MM (eds) Ophthalmic ultrasonography, SIDUO IX, Doc Ophthalmol Proc Ser 38. Junk, The Hague Boston Lancaster, pp 295–301

    Chapter  Google Scholar 

  • Susai AL, Walker JT (1984) In-vivo measurements of vitreous and retinal acceleration. In: Hillman JS, LeMay MM (eds) Ophthalmic ultrasonography, SIDUO IX, Doc Ophthalmol Proc Ser 38. Junk, The Hague Boston Lancaster, pp 163–168

    Google Scholar 

  • Trier HG (Hrsg) (1982) Objektive Verfahren zur Gewebsdif-ferenzierung mit Ultraschall: Klinische Erprobung in der Augenheilkunde an der Universität Bonn. Schlußbericht BMFT-DFVLR, 01 VI 047 und 057/ZA/NT/ MT224a; Inst, exper. Ophthal. Univ. Bonn u. Inst. Bio-med. Tech. Univ. Stuttgart

    Google Scholar 

  • Trier HG, Reinert S (1987) In vivo study of the human retinochoroidal layers by RF-signal analysis. I. Visual echogram interpretation. Part 2: Results on choroidal thickness and pulsation under physiological conditions and under tonometry. In: Ossoining KC (ed) Ophthalmic echography. SIDUO X. Junk, The Hague Boston Lancaster, pp 144

    Chapter  Google Scholar 

  • Trier HG, Hammerla O, Reuter R (1973) Ein hochauflösendes Tau-System für die Biometrie des Auges. In: Massin M, Poujol J (Hrsg) Diagnostica Ultrasonica in Ophthalmologia, SIDUO IV. Centre National d’Ophtalmologie des Quinze-Vingts, Paris, pp 51–58

    Google Scholar 

  • Trier HG, Reuter R, Püttmann W, Best W (1977) Echographie in Kombination mit anderen Techniken zur Fremdkörper-Lokalisation. In: Intraokularer Fremdkörper und Metallose. Proc. Int. Symp. Dtsch. Ophthalmol. Ges., Köln 1976. Bergmann, München, S 258–262

    Google Scholar 

  • Yamamoto Y, Namiki R, Baba M, Kato M (1961) A study on the measurement of ocular axial length by ultrasound echography. Jap J Ophthalmol 5:134–139

    Google Scholar 

  • McLeod D, Restori M (1979) Ultrasound examination in severe diabetic eye disease. Brit J Ophthalmol 63/8:533–538

    Article  CAS  Google Scholar 

  • Susal AL (1981) Vascular studies of the orbital cavity. Ophthalmology 88:548–552

    PubMed  CAS  Google Scholar 

  • Susal AL (1984) Real-time imaging of blood vessels within ocular tumor and the orbit. In: Hillman JS, Le May MM (eds) Ophthalmic ultrasonography, SIDUO IX, Doc Ophthalmol Proc Ser 38. Junk, The Hague Boston Lancaster, pp 331–337

    Chapter  Google Scholar 

  • Susal AL, Walker JT (1984) In-vivo measurement of vitreous and retinal accelerations. In: Hillman JS, Le May MM (eds) Ophthalmic ultrasonography. SIDUO IX, Doc Ophthalmol Proc Ser 38. Junk, The Hague Boston Lancaster, pp 163–168

    Chapter  Google Scholar 

  • Susal AL, Walker JT, Meindl JD (1980) Small organ dynamic imaging system. J Clin Ultrasound 8:421–426

    Article  PubMed  CAS  Google Scholar 

  • Susal AL, Gaynon MW, Walker JT (1983) Linear array multiple transducer ultrasonic examination of the eye. Ophthalmology 90:266–271

    PubMed  CAS  Google Scholar 

  • Naeser P, Enokkson P, Westman-Naeser S (1986) Diagnostic accuracy of fine needle aspiration biopsy in orbital tumours. Orbit 5:249–254

    Article  Google Scholar 

  • Tarkkanen A, Koivuniemi A, Liesmaa M, Merenmies L (1982) Fine-needle aspiration biopsy in the diagnosis of orbital tumours. Arch Clin Exp Ophthalmol 219:165–170

    Article  CAS  Google Scholar 

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© 1989 Springer-Verlag Berlin Heidelberg

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Buschmann, W., Trier, H.G., Restori, M., Lenz, V., Susal, A. (1989). Spezielle echographische Untersuchungstechniken für Bulbus und Orbita. In: Buschmann, W., et al. Ophthalmologische Ultraschalldiagnostik. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-73226-3_4

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  • DOI: https://doi.org/10.1007/978-3-642-73226-3_4

  • Publisher Name: Springer, Berlin, Heidelberg

  • Print ISBN: 978-3-642-73227-0

  • Online ISBN: 978-3-642-73226-3

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