Biomedical subjects
A G Schuring
Publications and source records attributed to A G Schuring.
Cholesteatoma and imaging.
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Otologist versus otologist.
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Staging for cholesteatoma in the child, adolescent, and adult.
A closed tympanomastoidectomy with subsequent staged surgical procedures leading to the excision of cholesteatoma was validated as described. All elements of staging with a 10-year experience of 354 patients are covered according to categories of child (0 to 9 years), adolescent (10 to 15 years), and adult. The child differed from the adolescent and adult in the following manner: more recurring cholesteatomas, greater ossicular necrosis, poorer hearing results, less aggressive residual cholesteatoma, and significantly poorer results with pars flaccida cholesteatoma than pars tensa cholesteatoma. After the end stage, 90% of the cases remained closed, with acceptable hearing in 60% of the patients.
Contracting for otologic surgery.
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Claims and suits against otology.
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Validating the excision of cholesteatoma.
Use of a closed tympanomastoidectomy with subsequent staged surgical procedures until the excision of cholesteatoma is validated is described. All elements of staging in the author's 10-year experience with 354 patients is covered. After the final stage of the procedure, 90 per cent of the cases remained closed; 60 per cent of the patients had acceptable hearing.
A postoperative audiometric evaluation of cochlear implant patients.
As the benefits of the cochlear implantation become more defined, many investigators hope that these devices can be offered to patients with a lesser degree of hearing loss. Accordingly, it is necessary to investigate the audiometric thresholds in the implanted ear after surgery. Preservation of the residual hearing after implantation would support the claims that surgery and the presence of a cochlear implant do not adversely affect the implanted ear.
An otologic informed consent.
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Iatrogenic facial nerve injury.
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Reconstructing the absent lenticular process.
When a surgeon encounters an absent lenticular process of the incus, he must either reposition the incus or attempt to bridge the small gap between the remaining incus long process and the stapes capitulum. Our solution to this problem is to place a Lippy modified Robinson stapes prosthesis on the stapes footplate and attach it to the remaining long process, thus bypassing the stapes superstructure. This modified Robinson prosthesis has a portion of the well removed allowing the eroded long process to enter from the side. The hearing results of 63 cases at 6 months (two-thirds of which had a concurrent tympanoplasty) are 67% within 10 dB and 91% within 20 dB of the preoperative bone hearing level. The use of an existing and proven prosthesis provides both stability and, to date, the most successful hearing results for reconstructing the absent lenticular process.
The ossicle-cup prosthesis: five years later.
The ossicle-cup prosthesis is a semibiologic prosthesis that incorporates a synthetic portion into the remaining (or transplant) ossicle. This assembly is positioned on the stapes capitulum, with the synthetic cup forming a dynamic joint. During 1978, 114 patients underwent surgical procedures in which an ossicle cup prosthesis was used. After 1 year 84% of these patients were within 20 dB of their preoperative bone hearing levels. Patients with a concurrent mastoidectomy did worse than those who underwent only a tympanoossiculoplasty. Five years later, 74% of the successful cases were still within 20 dB of the preoperative hearing levels. Eighteen patients underwent a revision surgical procedure to regain hearing. The postoperative hearing results at 1 year were 50% within 20 dB. The causes of failure included further ossicle necrosis (28%), a laterally healed tympanic membrane (39%), and fixation of the prosthesis (33%). Extrusion of the prosthesis during the 5-year period was between 1% and 2%. Overall, the ossicle cup prosthesis has proved to be a stable assembly, easy to revise, and longlasting. Once successful, three of four cases will retain successful hearing for more than 5 years.
Validating the excision of cholesteatoma.
In lieu of a radical mastoidectomy, 138 patients underwent a closed tympanomastoidectomy with subsequent staged surgical procedures until the excision of cholesteatoma could be validated. All the patients underwent two surgical procedures, 29% underwent three procedures, and 4% underwent four procedures. The surgical findings at the second procedure were: negative, 41.5%; retraction pockets, 7%; squamous pearls, 14%; recurrent cholesteatoma, 12%; and residual cholesteatoma, 25.5%. At each stage the likelihood of finding any form of cholesteatoma lessens. A conversion from a closed to an open mastoidectomy was necessary for 9% of the patients, and 4% were lost to follow-up. The opportunity to adjust the reconstructed ossicular assembly exists at each stage. With the use of semibiologic prostheses (ossicle cup and columella), the hearing results were: first stage, 67% within 20 dB, 84% within 30 dB; second stage, 77% and 90%; third stage, 77% and 96%.
Stapedectomy revision following sensorineural hearing loss.
This study analyzes 71 stapedectomies that resulted in a sensorineural hearing loss, followed by a revision stapedectomy on the suspicion of an oval window fistula. The cases were divided between two primary stapedectomy techniques: a stainless steel Robinson prosthesis on a vein graft and a wire prosthesis with Gelfoam. The major differences between the surgical findings of the two groups were the fistula rate with the wire prosthesis was 10 times that with the Robinson prosthesis; the wire prosthesis was longer than necessary in 21% of the cases in which it was used; there was no finding of excess length with the Robinson prosthesis; and after revision stapedectomy, dizziness was lessened in 20% of the patients in the Robinson prosthesis group, in 60% of those in the wire prosthesis group, and in 75% of those with fistula. Surgical directions are given for revision stapedectomy following a sensorineural hearing loss.