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Use of tuning fork in diagnostic auscultation of fractures.

This study was conducted on 50 patients in the Central Institute of Orthopaedics, Safdarjung Hospital, New Delhi, from June to October 1985. With the help of a child's stethoscope and a tuning fork of 128 Hz, the sound conducted by an injured limb was compared with that by the uninjured limb. The presence of a fracture reduced or abolished the conduction of sound by a bone. This method allows a quick examination without causing any pain, which is an advantage in an uncooperative patient. It is also reliable in the unconscious. The test is so simple that paramedical staff can use it. The results were correct in 94 per cent of patients and were confirmed by radiological examination whereas clinical diagnosis was correct in only 88 per cent of cases.

Auscultation↗

Difficulties in Doppler auscultation of cavernous arteries of penis.

Thirteen patients with normal nocturnal erections and penile pressures were studied in the flaccid penis by Doppler technique. In eleven, compression of a dorsal penile artery caused occlusion of the pulse wave distally over this vessel and also the disappearance of the presumed pulse of the deep cavernosal artery. It is postulated that in the nonerect penis, blood flow within the corpora may be inadequate to be detected by conventional office Doppler equipment.

Adult↗

Differentiation of cardiac murmurs by dynamic auscultation.

The techniques described in this monograph will aid in the accurate identification of the origin of a cardiac murmur or abnormal heart sound. They do not necessarily reveal the presence or severity of cardiac disease. No maneuver is 100% accurate in elucidation of cardiac abnormalities, and a given maneuver's effectiveness varies in its application. The systematic application of a combination of maneuvers improves the accuracy of diagnosis. Auscultatory findings must be interpreted with consideration of the total clinical examination including history, other physical findings, ECG, chest x-ray, and possibly an echocardiogram. Thus, the careful physiological approach to the physical examination represents a powerful noninvasive tool that can be used in combination with other information to accurately diagnose cardiac disease in many patients and efficiently direct further evaluation when necessary.

Cardiac Output↗

A classifier based on the artificial neural network approach for cardiologic auscultation in pediatrics.

OBJECTIVE: This research work was aimed at developing a reliable screening device for diagnosis of heart murmurs in pediatrics. This is a significant problem in pediatric cardiology because of the high rate of incidence of heart murmurs in this population (reportedly 77-95%), of which only a small fraction arises from congenital heart disease. The screening devices currently available (e.g. chest X-ray, electrocardiogram, etc.) suffer from poor sensitivity and specificity in detecting congenital heart disease. Thus, patients with heart murmurs today are frequently assessed by consultation as well with advanced imaging techniques. The most prominent among these is echocardiography. However, echocardiography is expensive and is usually only available in healthcare centers in major cities. Thus, for patients being evaluated with a heart murmur, developing a more accurate screening device is vital to efforts in reducing health care costs. METHODS AND MATERIAL: The data set was collected from incoming pediatrics at the cardiology clinic of The Children's Hospital (Denver, Colorado), on whom echocardiography had been performed to identify congenital heart disease. Recordings of approximately 10-15s duration were made at 44,100Hz and the average record length was approximately 60,000 points. The best three cycles with respect to signal quality sounds were extracted from the original recording. The resulting data comprised 241 examples, of which 88 were examples of innocent murmurs and 153 were examples of pathological murmurs. The selected phonocardiograms were subject to the digital signal processing (DSP) technique of fast Fourier transform (FFT) to extract the energy spectrum in frequency domain. The spectral range was 0-300Hz at a resolution of 1Hz. The processed signals were used to develop statistical classifiers and a classifier based on our in-house artificial neural network (ANN) software. For the latter, we also tried enhancements to the basic ANN scheme. These included a method for setting the decision-threshold and a scheme for consensus-based decision by a committee of experts. RESULTS: Of the different classifiers tested, the ANN-based classifier performed the best. With this classifier, we were able to achieve classification accuracy of 83% sensitivity and 90% specificity in discriminating between innocent and pathological heart murmurs. For the problem of discrimination between innocent murmurs and murmurs of the ventricular septal defect (VSD), the accuracy was higher, with sensitivity of 90% and specificity of 93%. CONCLUSIONS: An ANN-based approach for detection and identification of congenital heart disease in pediatrics from heart murmurs can result in an accurate screening device. Considering that only a simple feature set was used for classification, the results are very encouraging and point out the need for further development using improved feature set with more potent diagnostic variables.

Child↗

Admission cardiotocography versus intermittent auscultation of fetal heart rate: effects on neonatal Apgar score, on the rate of caesarean sections and on the rate of instrumental delivery--a systematic review.

OBJECTIVE: The aim of this review was to determine whether intrapartum admission cardiotocography (CTG) in women at low obstetric risk can improve neonatal outcome (in terms of Apgar score) and whether it is associated with an increase in the incidence of instrumental delivery and caesarean section. REVIEW METHODS: The Cochrane Library, Medline (1966-November 2005), Embase (1980-November 2005) and the PubMed were searched for randomized control trials and systematic reviews of randomized control trials. Studies were assessed for quality. Outcomes considered the neonatal Apgar score at 5 min after delivery, caesarean section and instrumental delivery. A meta-analysis of the results of the randomized controlled trials was performed. RESULTS: The pooled relative risk for having an Apgar score less than 7 points at 5 min after delivery was higher in the admission CTG group (RR 1.35, 95% CI 0.85-2.13) but it was not statistically significant. The pooled relative risks for having a caesarean section-delivery (RR 1.2 95% CI 1.00-1.41) and an instrumental delivery (RR 1.1 95% CI 1.00-1.18) were both higher in the admission CTG group. Both these were statistically significant. CONCLUSION: Intrapartum admission cardiotocography in women at low obstetric risk increases the risk of caesarean section and instrumental delivery. In addition, there is no evidence for neonatal benefit in terms of Apgar score at 5 min after delivery. A larger sample size would be needed in order to answer this important question.

Apgar Score↗

Assessment of the fetus: intermittent auscultation, electronic fetal heart rate tracing, and fetal pulse oximetry.

Intrapartum assessment of fetal well-being has evolved over the last 40 years, with the primary focus being fetal heart rate assessments. Despite widespread use and initial enthusiasm for the potential for heart rate monitoring to reduce fetal and neonatal mortality and morbidity, conclusive evidence of improvement in long-term outcomes is lacking. Its use is associated with an increase in operative obstetric interventions and may increase morbidity associated with such interventions. Current investigation includes fetal pulse oximetry and further analysis of specific fetal electrocardiographic changes associated with hypoxic stress. Currently it is likely that fetal heart rate monitoring will maintain its role as a common intervention in obstetric units.

Auscultation↗