The complete removal of a lesion which resembles, or is covered by adjacent tissue may be difficult. Therefore, the capacity of certain lesions to specifically concentrate a radiopharmaceutical has been used to orient progress during surgery. Usually, the measurements of radioactivity in the operative field are carried out by means of small, handy radiation-detecting probes which can be sterilized. "Intra-operative nuclear medicine" or "radionuclide-guided surgery" has steadily gained in importance. However, this technique is not being taught. Our study, based on radionuclide-guided surgery of 175 orthopaedic patients suspected of having osteoid osteoma, is well suited to teach the particularities of intra-operative radiation detection, as well as the collaboration between the nuclear physician and the surgeon in the operating theatre.
Thyroid scintigraphy holds a key place in the etiologic workup of neonatal hypothyroidism. Routine screening for this disorder in maternity hospitals in industrialized countries, for nearly 40 years, has permitted early treatment and thereby helped to prevent its physical and mental complications. Neonatal hypothyroidism affects approximately 1 in 3000 births. The most common causes are abnormal thyroid gland development and defective hormone synthesis by an eutopic thyroid gland. The incidence of the latter has risen in recent years, for reasons that remain unclear. A thorough etiologic workup helps to determine the disease type. Current guidelines recommend thyroid imaging by means of ultrasound and scintigraphy. Ultrasound should be done by a practitioner trained to examine the cervical region of newborns, as the thyroid is very small and must be distinguished from the particular aspect of the "thyroid empty lodge." Ultrasound lacks sensitivity for detecting small ectopic glands but is the gold standard for measuring thyroid dimensions. Scintigraphy provides an etiologic diagnosis in most cases. The two isotopes used in this setting are technetium-99m and iodine-123. The latter isotope gives more contrast and allows the perchlorate discharge test to be performed to detect abnormal iodide organification in the neonate with an eutopic thyroid. If scintigraphy cannot be performed during the neonatal period, a postponed procedure can be achieved after 3 years of age. Close cooperation between the nuclear medicine physician and the pediatric endocrinologist is crucial for timely and optimized scintigraphy.
Shock wave lithotripsy is an effective treatment for renal calculi in children. Renal parenchymal trauma associated with extracorporeal shock wave lithotripsy does not seem to cause long-term alterations in renal function or development of permanent renal scars in children.
Urinary tract infection (UTI) is one of the most common bacterial infections in children, and its role in the pathogenesis of scarred kidney is debated. We report on a 7-year-old child who presented with severe UTI. The early (day 4) renal computed tomography (CT) scan showed normal-sized kidneys (110 mm on the left, 105 mm on the right), whereas the control CT scan and dimercaptosuccinic acid (DMSA) scan, performed 1 and 2 months later, respectively, showed a small scarred right kidney (60 mm) with a 12% residual function. An intermittent right vesicoureteral reflux (VUR) was diagnosed by direct isotopic cystography and then treated by Cohen vesicoureteral reimplantation. The patient remained free of infectious recurrence, hypertension, or renal function decrease. This report demonstrates that one episode of acute pyelonephritis can lead to severe renal scarring. Whereas antenatal lesions are thought to have a stronger role in the causal pathway for reflux nephropathy than is UTI in addition to VUR, this observation reminds us that UTI can truly play an important role in damaging kidneys.
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