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Evaluation of echoencephalography.

Clinical use of A- and B-mode echoencephalography in neurology, neurosurgery, and pediatrics is discussed, and some results are presented. Descriptions are given of several techniques to obtain two-dimensional echoencephalographic pictures. Two-dimensional echoencephalography can be particularly helpful with hydrocephalic babies. Recording techniques for pulsatile echoencephalography and the factors influencing the shape of cerebral echo pulsations are considered. Also, the diagnostic value of pulsatile echoencephalography in several brain diseases is discussed.

Brain Concussion↗

The early development of neurosonology: I. Echoencephalography in adults.

The discovery of Midline Echoencephalography is usually attributed to Leksell in 1956. While this was the first time that the examination had been used clinically, it had been preceded by work in England where the echo from the midline of the head appears first to have been demonstrated but its clinical usefulness not recognised. The clinical need for such an examination was so great that, until 1968, more papers were published about echoencephalography than any other medical ultrasonic technique. It only slowly became appreciated how subjective was the technique which, for highest accuracy, had to be performed by a skilled neurologist or neurosurgeon with an intimate knowledge of the patient's cerebral status. The development of more objective automatic techniques, which did not involve the expenditure of a skilled clinician's time, was vociferously opposed by established echoencephalographers who appeared to believe that the demonstration that the examination depended, for accuracy, upon clinical bias by both operator and interpreter, reflected upon their honesty. It was demonstrated that it was the gross attenuation of the acoustic beam by scattering while propagating through the diploic layer of the skull that was responsible for the very variable displays made by echoencephalography. It was for the same reason that two-dimensional B-mode examinations were equally unsatisfactory and none of the ingenious attempts to overcome the obscuring effect of the skull have, after 35 years, been successful. It is only when the skull is removed that the techniques of transdural and intracerebral ultrasonic encephalography can provide useful images from the brain within the skull. It was fortuitous that the realization that ultrasonic encephalography in adults was largely useless coincided with the development of more sophisticated radiological and magnetic techniques which were much more successful in imaging the brain.

Echoencephalography↗

Transorbital echoencephalography in cattle.

The purpose of this study was establishment of the criteria of transorbital echoencephalography in cattle and experimental applications to bovine practice. Quantitative investigations using magnetic resonance (MR) imaging revealed that this examination could be applied to cattle under 3 months of age. The method of transducer positioning was established in Japanese Black (J.B.) and filial (F1) cattle (turning caudally at an angle of about 16 degrees and dorsally at an angle of about 23 degrees) or in Holstein cattle (turning caudally at an angle of about 20 degrees and dorsally at an angle of about 21 degrees). Examinations in clinical calves revealed that the cerebral parenchyma and the lateral ventricle could be detected antemortem or postmortem. In this study, the diagnoses of hydrocephalus or hydranencephaly was possible using antemortem transorbital echoencephalography. Transorbital echoencephalography was especially useful as the imaging method for bovine hydranencephaly.

Animals↗

[Value of echoencephalography in the diagnosis of periventricular leukomalacia in children and the prognosis of their development].

The investigation was conducted to reveal reliable echographic features of early (necrotic) stages of periventricular leukomalacia (PVL) on the basis of retrospective analysis of echograms of decreased children (with postmortem diagnosis of PVL) and survived newborns with pronounced cystic changes in the periventricular areas (advanced PVL stage), which were revealed during dynamic echoencephalography. Altogether 268 echograms of 78 children with a birth-weight from 700 to 2400 g were analysed. All children but one were born preterm. Ultrasound device "Aloka-SSD 118" (Japan), with a transducer frequency of 5mHz, was used during frontal fontanel echoencephalography. Three patterns of echographic image of periventricular areas compromised with the aforementioned disease were identified. In the detection of early PVL stages, the specificity of the technique was 94% and sensitivity, 86%. The followup that lasted from 9 months to 2.5 years revealed varying pronounced neurologic disorders in all the survived children with PVL.

Brain↗

CT-scan or two-dimensional echoencephalography in neonatal intracranial pathology?

The authors compare advantages and disadvantages of CT-scan and two-dimensional echoencephalography in examination of intracranial space of small babies. CT is more precise and complex, but it requires anesthesia and transport (CT-scanners are only in regional centers), moreover the child is endangered by irradiation. Echoencephalography is not so descriptive, but is noninvasive, simple, mobile, cheaper, enables to follow the dynamics of the process, examination in three planes and can be very useful during the operation.

Brain Diseases↗

[2-dimensional echoencephalography in childhood: method, indications and personal results].

Two-dimensional echoencephalography has become an important diagnostic tool in paediatric neurology. The clinical value of two-dimensional echoencephalography in children is discussed on the basis of the results of 669 own ultrasonic examinations. Improvements in equipment and handling, as well as increasing experience enabled a firm diagnosis in most cases. However knowledge of ultrasound morphology and correlation of these pictures with clinical findings and prognosis are necessary for the successful application of this new method.

Anencephaly↗

A standardized procedure for echoencephalography and for analyzing echoencephalograms.

Although echoencephalography is a simple, convenient and atraumatic diagnostic technique, the accuracy and reliability of this test and whether it is reproducible can be greatly influenced by the way in which the examination is performed and subsequently analyzed. Echoencephalography in 850 patients has led to the development of a standardized technique which takes into account the positioning of the patient, the application of the transducer, the identification of the midline-echo-complex, and the elimination of observer bias. Once performed the test must meet rigid standards of acceptability. If acceptable the test is analyzed according to an established format.

Echoencephalography↗

[Cross sectional echoencephalography in infants].

Importance of echoencephalography increased during development of neonatal intensive care. In addition to investigations in neonates 2-D-echoencephalography even during pregnancy and infancy can be used for detection of intracranial pathology. A standardized method of investigation and the knowledge of the pathology of the expected lesions are of fundamental importance. During neonatal period and infancy intraventricular and subdural hemorrhage, brain tumors, postinfection sequelae, hypoxic brain damage, alteration of intracranial perfusion and cerebral malformations can be detected.

Age Factors↗

A-scan echoencephalography.

The technique of A-scan echoencephalography is criticized in so far as it lacks objectivity and reproducibility. In the author's laboratory, the M-echo, being of higher amplitude than other intracranial echoes, is distinguished from other echoes by an averaging technique-a time exposure. Double transmission pulses indicate the theoretical position of echoes from the true mid-line and superimposition of far-side echoes ensures that the transducers are correctly aligned.The very considerable difficulties in identifying the anatomical structures giving rise to other echoes seen within the skull are outlined. They are largely due to variations in the reflected energy, depending upon the shape and orientation and position of the various interfaces with respect to the ultrasonic beam.Despite these difficulties and limitations, A-scan echoencephalography appears to have an important part to play as a simple, safe and quick form of neurological examination, if the technique can be made truly objective.

Brain Diseases↗

Neonatal echoencephalography.

The recent development of high-resolution real-time ultrasound scanners has coincided with the awareness of the high incidence of intracranial haemorrage in low birthweight babies, resulting in a considerable expansion in the use of echoencephalography in newborns in recent years. The uses are now further expanded and an overview of the subject is presented.

Brain Neoplasms↗

The early development of neurosonology: III. Pulsatile echoencephalography and Doppler techniques.

From the earliest days of echoencephalography, it was noted that echoes from intracerebral interfaces showed systolic pulsations both in amplitude and range. Recordings of larger pulsations in range could also be obtained from the walls of intracranial arteries. It was hoped that clinical information might be obtained from recording and measuring these pulsations. Since it was easier to build equipment that recorded pulsations in amplitude, most work was confined to the recording of amplitude pulsations. However, such recordings of both amplitude and range pulsations usually used range gates in order to isolate the echo of interest and movement of the echoes within the gates introduced artefact in the recordings. Such artefact was more easily identified in recordings of range rather than amplitude. None of these types of recordings resulted in the development of a clinically useful examination in either the living or dying patient. However, the recordings of range fluctuations were able to demonstrate the presence of Traube-Hering waves in the blood vessels of the brain, thus suggesting that these vessels received an autonomic innervation in addition to their chemical sensitivity. Such range recordings also showed that, as a result of the increase in cerebral volume with the arrival of each systolic pulse wave, the brain moved centripetally to compress the cerebral ventricles and downwards to compress the basal cisterns and venous sinuses. The volume increase in the brain was accomodated by displacing cerebrospinal fluid and venous blood outside the rigid skull. When such a venting mechanism was over-taxed, as may result from increased intracranial pressure, it was postulated that the systolic pulse pressure wave, which could no longer be adequately attenuated by the compensatory venting of blood and cerebrospinal fluid outside the rigid skull, gave rise to shock waves which damaged the periventricular ependymal interface and the underlying brain with the production of progressive hydrocephalus. The development of ultrasonic Doppler techniques was quite a different matter and led to a number of clinically useful examinations as the technology became increasingly developed. The Doppler frequency shifts were displayed in various forms culminating in the display of their whole spectrum. Directional displays added further information and the ability to use short pulses enabled the Doppler shift and velocity of blood flowing in small regions of blood vessels to be recorded. Two-dimensional displays of the Doppler frequencies present in blood flowing in vessels were developed concurrently with duplex techniques which made B-mode displays of the blood vessel of interest in a tomogram of the surrounding tissues.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Clinical experience with automatic midline echoencephalography: cooperative study of three neurosurgical clinics.

Computerized midline echoencephalography was developed in order to make the determination of the midline more objective. In a group study involving the neurosurgical clinics in Berlin, Erlangen, and Munich, a total of 1,889 patients with various intracranial diseases was examined by this method. An exact analysis of the results obtained is presented: 18 percent were unsatisfactory.

Adolescent↗

[Two-dimensional echoencephalography in focal brain pathology].

Two-dimentional echoencephalographic examinations were conducted in 35 patients with focal lesions of the brain of different etiology. Normal tomoechoencephalogramme and ultrasonic semiotics of transverse sections of the brain in different pathology is described with reference to its nature and interrelationships with the meninges and brain matter (tumours, abscesses, emningeal and intracerebral haematomas, hydroma, brain confusion, intracranial foreign bodies). The authors believe that two-dimentional echoencephalography is a promising method of diagnosis, free of contraindications, combinding safety and promptness of the examination. direct visualization of focal pathology of the brain through an intact skull.

Brain↗

[The place of echoencephalography in neurosurgery].

The different results of A- and B-mode echoencephalography, as well as the problems arising in the use of these techniques are discussed in the light of experience gained over many years in the investigation of numerous cases at a large neurosurgical department. The different indications for each method must be borne in mind, both techniques being useful in neurosurgical in mind, both techniques being useful in neurosurgical practice. The zscan technique is almost entirely confined to the domain of infant and childhood neurosurgery. Moreover, new aspects and future applications of echography in neurosurgical diagnosis are briefly discussed.

Age Factors↗

[The prognosis of convulsions in the newborn--the place of EEG in comparison with echoencephalography].

The routine-EEG in premature and term infants with cerebral seizures and its additional information are discussed in comparison to clinical and morphological findings. The clinical, electroencephalographic and echoencephalographic data to all 29 neonates that were treated during a four years period are presented. Three of those infants died, eight of them showed pathological results during developmental and neurological follow-up. EEG's were performed during or short by after seizures. A correlation could be shown between poor prognosis and suppression of background activity consisting in inactivity, burst-suppression pattern or moderate suppression. By contrast a normal or mildly suppressed EEG correlated with good longterm prognosis. Paroxysmal discharges in the EEG were helpful in diagnosing seizures and also for prognosis of cerebral convulsions later on. The echoencephalographic findings especially mild intracranial hemorrhages and increased periventricular echogenicity had less prognostic value. The echoencephalographic follow-up showed ventricular dilatation (e vacuo) in children who later on had developmental and neurological impairment. For assessment of prognosis in premature and term babies with cerebral seizures imaging procedures (echoencephalography and CT-scan) as well as electroencephalography are of mutual importance.

Echoencephalography↗

Two-dimensional echoencephalography in paediatric neurology.

Two-dimensional echoencephalography is a useful procedure in screening young infants for hydrocephalus and cerebral malformation. The procedure is noninvasive and easily repeated. The procedure is less reliable in detecting mass lesions except insofar as they disturb the anatomy of the ventricular system. The procedure can be considered as complementary to computerised axial tomography in the investigation of cerebral anatomy in paediatric neurology.

Brain↗

[Multi-axial echoencephalography in the diagnostic system for brain tumors].

The authors examined 204 patients with tumors of the brain of supra- and subtentorial location. It is shown that multiaxial echoencephalography is simple and informative. The echographic criteria studied, whose changes are determined by the location and character of the tumor, are very important. On the basis of the changes of these parameters, the possibilities of earlier and diagnosis of brain tumors were established.

Brain Neoplasms↗

[2-dimensional echoencephalography or cranial CT in premature or newborn infants with suspected intracranial hemorrhages].

65 newborns or low-birthweight infants with suspicion of intracranial hemorrhage were examined with B-mode small part scanners. In 12 cases the diagnosis made by ultrasound could be compared with CT. There was a similar accuracy of both methods in case of intraventricular (IVH) and subependymal (SEH) hemorrhage. SEH seems to be easier detected by US. On the other hand there are problems in diagnosing subdural (SDH) and intracerebral (IHC) hemorrhages by US. These problems are caused by the adjacent skull, but does not exist for CT. B-mode-Echoencephalography is the method of choice for examination of high risk infants and for the follow up, because US is a cribside method and of high diagnostic accuracy. CT-studies should be done in case of hemorrhage adjacent to the skull and if the US-diagnosis seems not to be reliable.

Cerebral Hemorrhage↗