Cochlear implantation can be successfully performed in children with inner ear malformations. These children and their parents can expect significant auditory benefits from this intervention. The various types of inner ear malformations may have quite different prognoses for good auditory performance.
Cochlear implants have dramatically changed the treatment and prognosis for patients with profound sensorineural hearing loss. Deaf adults and children can be successfully (re)integrated into the hearing world through a multidisciplinary approach involving otolaryngologists, audiologists, and speech/language pathologists. As the technology of the cochlear prosthesis advances, the candidacy for these devices continues to broaden. This review addresses the basic technology, candidacy criteria, and important issues in the fields of adult and pediatric cochlear implantation. Cost utility and future directions in the treatment of the profoundly hearing impaired are discussed.
In this cohort, intraoperative plain radiographs were not useful for uncomplicated implant operations; however, they may be useful for complicated operations. These results may have implications for surgical cost and patient radiation exposure.
In mice administered chronic stress--repeated overnight restraint stress for 7 days--there was a prolonged enhancement of dopamine (DA) uptake into synaptosomes. The mRNA for the DA transporter (DAT) was found to be concomitantly increased in the midbrain, as was the binding of the transporter ligand mazindol to DAT in the nucleus accumbens and caudate-putamen. Kinetic analysis showed an increase in Vmax for DA, with little change in Km. No changes in tyrosine hydroxylase activity and tissue DA or 3,4-dihydroxyphenylacetic acid (DOPAC) content were observed. However, homovanillic acid (HVA) was found to be increased in the striatum of the stressed animals. Enhanced DAT activity attributable to chronic stress was still observed in animals treated with the DA D2 receptor antagonist haloperidol or the glucocorticoid receptor antagonist mifepristone. Modulation of DAT activity may be a physiological mechanism for regulating the concentration of DA that reaches receptors, following periods of stress.
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