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Biomedical subjects

J K Burt

Publications and source records attributed to J K Burt.

At least 19 recordsLinked to original sources

Combined treatment of ocular squamous cell carcinoma in a horse, using radiofrequency hyperthermia and interstitial 198Au implants.

Unilateral ocular squamous cell carcinoma in a horse was treated effectively with a combination of repeated radiofrequency hyperthermia and interstitial radiotherapy. These 2 modalities of treatment are synergistic. Interstitial irradiation was achieved, using 198Au implants to deliver a total dose of approximately 5,000 rads/implant over an area of 1 cm2. Radio frequency hyperthermia was repeated 3 times, and radiotherapy was used twice. Treatment resulted in complete regression of the tumor, and ocular complications have not been seen.

Animals↗

Neuroradiographic diagnosis and surgical repair of tethered cord syndrome in an English bulldog with spina bifida and myeloschisis.

A 3-month-old English Bulldog had excretory incontinence and sensory deficits in the distribution of pudendal nerves. Noncontrast radiography, myelography, and computed tomography revealed spina bifida beginning at L7, an expanded subarachnoid space caudal to L7, and a taut, thick filum terminale. Microsurgical exploration of the lumbosacral spine confirmed the presence of a tethered cord, and the filum terminale was transected. The spinal cord immediately migrated cranially about 1 cm. Although some sensory improvement was evident during a 2-week postoperative period, the dog was euthanatized. Postmortem examination confirmed spina bifida and atrophy of sacral nerve roots and perineal muscles, thoracic hemivertebrae, and hydrocephalus.

Animals↗

Radiographic and gross anatomy of the nasolacrimal duct of the horse.

The anatomy of the nasolacrimal duct of the horse was studied grossly and radiographically, using barium contrast dacryocystorhinography and methyl methacrylate casts. Radiographic contrast studies were performed on 4 specimens and gross dissections were performed on 6 specimens. Dacryocystorhinography accurately delineated the course of the nasolacrimal duct, as was subsequently demonstrated by gross dissection. A 60% barium sulfate suspension produced good radiographic contrast, allowing critical assessment of the anatomic features of the nasolacrimal duct.

Animals↗

Appearance of procaine in spinal fluid during segmental epidural analgesia in cows.

The concentration of procaine in the CSF of 10 adult nonpregnant cows was determined after epidural injection of 5% procaine hydrochloride solution. Samples of CSF were removed through a catheter introduced into the subarachnoid space at the lumbosacral intervertebral space and advanced craniad to the same level as the epidural injection site. The position and the location of the catheter and spinal needle were confirmed radiographically. Segmental analgesia was achieved 8 to 20 minutes after completing the procaine hydrochloride injection and extended between spinal cord segments T12 and L3 on one or both sides of the animal. The average duration of analgesia, as determined by response to superficial and deep muscular pinpricks at the L1 dermatome, was 81.3 +/- 22.8 minutes (min-max, 45-127 minutes). The average subarachnoid concentration of procaine 10 minutes after epidural injection was 120.4 +/- 42.9 microgram/ml. The highest average procaine concentration recorded was 160.7 +/- 63.7 microgram/ml at 25.0 +/- 6.7 minutes after injection. Average procaine concentration was 47.8 +/- 13.5 microgram/ml at cessation of analgesia. A similar concentration of procaine was recovered from the subarachnoid space during either unilateral or bilateral analgesia. Procaine was not found in arterial plasma after the epidural administration of procaine hydrochloride. Subarachnoid threshold concentrations of local anesthetic necessary to produce spinal analgesia were reached after repeated epidural injections, but not after a single administration. It is concluded that segmental epidural analgesia is principally due to anesthesia of dura-covered nerve roots within and outside the epidural space and is minimally, if at all, dependent on the production of analgesia of nerves within the subarachnoid space.

Analgesia↗