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Biomedical subjects

R S Bagley

Publications and source records attributed to R S Bagley.

At least 19 recordsLinked to original sources

Effects of changes in power setting of an ultrasonic aspirator on amount of damage to the cerebral cortex of healthy dogs.

OBJECTIVE: To determine the minimal ultrasonic aspirator pressure necessary to damage the cerebral cortex of healthy dogs. ANIMALS: 9 mixed-breed dogs. PROCEDURE: The study comprised 2 parts. In part A, 6 dogs were euthanatized immediately prior to the experiment. In part B, 3 dogs were anesthetized for recording of physiologic variables. In both parts, craniectomy and durotomy were performed to bilaterally expose the lateral aspect of the cerebral cortex. An ultrasonic aspirator was placed in contact with various areas of the cerebral cortex, and aspirator power was altered (10, 20, 30, and 40%). Duration of contact at each power was 5 and 10 seconds. Subsequently, gross morphologic and histologic damage was assessed in the cortex. RESULTS: Gross observations for all dogs were similar. At 10% power, visible or histologic damage was not evident in the cortex. At 20% power, the cortex was slightly indented from contact with the hand piece; however, cortical disruption was not evident. Cortical disruption was initially detectable at 30% power in some dogs and was consistently evident at 40% power in both sets of dogs. CONCLUSIONS AND CLINICAL RELEVANCE: Ultrasonic aspirator power of < 20% created minimal acute morphologic damage to the cortex. Power settings between 20 and 30% may superficially damage the cerebral cortex in healthy dogs, whereas 40% power consistently damages the cerebral cortex. Knowledge of the degree of damage to cerebral cortex caused by various amounts of power for ultrasonic aspirators will allow surgeons to avoid damaging normal brain tissues during surgery.

Animals↗

Spinal fracture or luxation.

Spinal trauma is a common cause of spinal cord dysfunction in dogs and cats. When the spine is injured by exogenous injury, the impact often results in vertebral fracture or luxation. As each injury is unique, treatment guidelines have to be individualized to the animal. This article reviews the clinical management including surgical and nonsurgical treatments for animals with vertebral fracture/luxation.

Animals↗

Clinical signs associated with brain tumors in dogs: 97 cases (1992-1997).

OBJECTIVE: To determine the prevalence of various clinical signs in dogs with brain tumors. DESIGN: Retrospective study. ANIMALS: 97 dogs with brain tumors. PROCEDURE: Medical records were reviewed for signalment, tumor type and location, and clinical signs. RESULTS: 33 breeds were represented; Golden Retrievers were most commonly affected. Most dogs were older (median age, 9 years); 95% of dogs were > or = 5 years old. Seventy-six percent of dogs had tumors in the supratentorial region. Seizures were the most common clinical sign at initial examination, with lower prevalence for circling, ataxia, and head tilt. Meningioma was the most common tumor. CONCLUSIONS AND CLINICAL RELEVANCE: Brain tumors develop most often in dogs > or = 5 years old and are uncommon in dogs < 5 years old. Seizures are a common clinical sign, and a brain tumor should be considered in dogs that have their first seizure after they are 4 years old.

Age Factors↗

Seizures as a complication of brain tumors in dogs.

Seizures are a common reflection of a variety of intracranial physiologic abnormalities in dogs. In dogs with brain tumors, seizures often provide the clinical clue to the existence of an underlying structural brain disease. The majority of brain tumors that result in seizures affect the supratentorial nervous system, especially the olfactory and frontal lobes. Diagnosis requires advanced imaging such as computed tomography (CT) or magnetic resonance imaging (MRI) to establish the presence of a structural abnormality. Therapy is directed both at tumor and seizure control to afford the best chance of successful management of dogs with brain tumors.

Animals↗

Scoliosis and associated cystic spinal cord lesion in a dog.

A 7-month-old female Mastiff was admitted for weakness in the hind limbs and an abnormal gait. There was an obvious scoliosis in the midlumbar region. Using electromyography, fibrillation potentials and positive sharp waves were found in the epaxial musculature of the vertebral column lateral to the spinous processes of Tl3-L4 on the right (convex) side of the body. On myelographic evaluation, contrast medium irregularly filled the subdural and epidural space of Tl1-L3. On surgical examination, the dog had a cystic lesion of the spinal cord that correlated with myelographic findings. This lesion was incised and drained. The scoliotic defect was surgically straightened, and the affected vertebrae were fused. Six months after surgery, the vertebral column continued to be straight and the paraparesis had resolved.

Animals↗

Common neurologic diseases of older animals.

Of the various neurologic diseases that affect dogs and cats, some are more often encountered in older animals. Physical diagnosis may be challenging, as multiple disease processes that may minic neurologic disease can be present in the same animal. A diligent, complete neurologic examination should lend for an accurate neuroanatomical diagnosis. Once a level of involvement is determined, knowledge of diseases affecting the particular area of the nervous system will provide for appropriate diagnosis, treatment, and prognosis. Although neurologic diseases are still often devastating, successful management of many of these diseases will afford better quality of life during the geriatric years.

Aging↗

Suspected herbicide toxicosis in a dog.

An 8-year-old 38-kg spayed female Golden Retriever was admitted for vomiting, signs of abdominal pain on palpation, ataxia, anorexia, and generalized weakness of 2 days' duration. Ten hours prior to onset of clinical signs, the dog was found standing in and drinking from large pools of an accidentally spilled herbicide that contained an octanoic acid ester of bromoxynil (3,5-dibromo-4-hydroxybenzonitrile) and an isooctyl ester of (2-methyl-4-chloro) phenoxyacetic acid (MCPA). Appendicular muscles were firm on palpation and persistent muscle contraction (myotonia > 1 minute duration) was found on muscle percussion, using a reflex hammer. Electrical activity indicative of myotonia was identified on electromyographic evaluation. With supportive treatment, the dog eventually recovered from suspected MCPA toxicosis. Although rare, MCPA toxicosis should be considered as a cause of acquired myotonia in dogs.

2-Methyl-4-chlorophenoxyacetic Acid↗

Hypoglycemia associated with intra-abdominal leiomyoma and leiomyosarcoma in six dogs.

Intra-abdominal leiomyoma or leiomyosarcoma was diagnosed in 6 dogs that had hypoglycemia (resting blood glucose concentration < 50 mg/dl). Tumors were large (12 to 24 cm) and arose from intra-abdominal structures including the jejunum, pylorus, duodenum, stomach, and liver. Four dogs had a leiomyoma, and 2 dogs had a leiomyosarcoma. In those dogs in which the tumor was successfully removed at surgery, blood glucose concentration returned to the reference range after tumor resection. Four dogs lived for at least 12 months after tumor resection, without redeveloping hypoglycemia.

Abdominal Neoplasms↗

Intracranial tumors.

Intracranial tumors in dogs are relatively common but are less common in cats. Features of various tumors are described. The antemortem diagnosis is based on demonstrating the mass with advanced imaging. Tumor type, however, can only be diagnosed by histological confirmation. Diagnosis and treatment options are discussed.

Animals↗

Surgical treatments for seizure. Adaptability for dogs.

Surgical treatments are often used for human epileptics who are refractory to more conventional anticonvulsant therapies. The goals of surgery are to decrease seizure morbidity or, ideally, bring about a cure to the seizure disorder. As a sizable subpopulation of dogs with seizures are also refractory to currently available anticonvulsant therapies, consideration has been given to evaluating alternative treatments for seizures in dogs. This article discusses the adaptability of surgical treatments used in humans for use in seizure control in affected dogs.

Animals↗

Hydrocephalus.

Hydrocephalus may be an acquired or congenital condition. Clinical signs often reflect the level of brain involvement. In young dogs, the presence of a dome-shaped head and/or persistent fontanel are suggestive of hydrocephalus. Ventriculoperitoneal shunting is often used for definitive treatment of hydrocephalus.

Animals↗

Effect of craniectomy/durotomy alone and in combination with hyperventilation, diuretics, and corticosteroids on intracranial pressure in clinically normal dogs.

OBJECTIVE: To determine the effect of craniectomy and durotomy on intracranial pressure (ICP) in clinically normal dogs. DESIGN: Two-part study (experiments A and B) involving craniectomy and durotomy, with and without treatments to lower ICP. ANIMALS: Six (experiment A) and 7 (experiment B) healthy dogs. PROCEDURE: In experiment A, craniectomy was performed in combination with durotomy, diuretic administration, methylprednisolone sodium succinate administration, and hyperventilation, and effect of these manipulations on ICP was determined. In experiment B, dogs had only craniectomy and durotomy without associated ICP-lowering treatments. During both experiments, ICP was monitored throughout the surgical procedure with a fiber optic ICP monitoring device. RESULTS: Intracranial pressure decreased after the combination of craniectomy, durotomy, and other ICP-lowering treatments in dogs of experiment A. Similar magnitude of decrease in ICP was observed in dogs of experiment B after craniectomy and durotomy. CONCLUSIONS: Comparison of these experiments indicate that surgical removal of overlying skull and incision of the dura mater can significantly decrease ICP in clinically normal dogs. CLINICAL RELEVANCE: Craniectomy and durotomy may be useful as an adjunct treatment for increased ICP.

Adrenal Cortex Hormones↗

Recognition and localization of intracranial disease.

Clinical recognition and localization of disease within the nervous system is paramount to effective diagnosis and treatment of animals with neurologic disease. Thorough examination of the nervous system is based upon an understanding of normal neuroanatomy and physiology. Once a disease process is established to involve the nervous system, localization of the abnormalities within the nervous system is imperative for formulation of a differential diagnosis and diagnostic plan. This article reviews important aspects of the neurologic examination that lead to neuroanatomical localization.

Animals↗

Pathophysiologic sequelae of intracranial disease.

A variety of intracranial diseases affect dogs and cats. Clinical signs often result not only from mechanical destruction of normal brain but also from associated pathophysiologic alterations induced secondary to the primary disease process. Effective management of intracranial disease requires recognition and treatment of the primary as well as of many of these secondary pathophysiologic sequelae. This article discusses the evolution, ramifications, diagnosis, and treatment of these pathophysiologic sequelae.

Animals↗

Effect of craniectomy, durotomy, and wound closure on intracranial pressure in healthy cats.

OBJECTIVES: To establish intracranial pressure (ICP) measurements in healthy cats under isoflurane anesthesia, using a fiberoptic monitoring system; to assess brain lesions associated with such monitoring; and to determine whether decompressive intracranial surgery decreases ICP in healthy cats. ANIMALS: 6 healthy cats. PROCEDURE: Craniectomy and durotomy were performed, and the effect of these procedures on ICP was determined. ICP was monitored by use of a fiberoptic monitoring system. Gross and microscopic evaluations of brain tissues were performed after data collection. RESULTS: ICP decreased significantly after craniotomy and durotomy. After wound closure, ICP remained significantly reduced relative to initial pressures. However, postsurgical pressures were significantly increased, compared with those associated with ICP after durotomy. Gross and histologic abnormalities associated with placement of the ICP monitoring cable included mild focal acute hemorrhage and mechanical cortical disruption. CONCLUSIONS: Craniectomy and durotomy significantly decreased ICP in healthy cats. ICP increased after wound closure, but remained significantly lower than initial pressures. CLINICAL RELEVANCE: Craniectomy and durotomy may be used to decrease ICP in cats.

Animals↗

Intraoperative monitoring of intracranial pressure in five dogs with space-occupying intracranial lesions.

Five dogs with space-occupying intracranial lesions underwent lateral craniectomy. Brain tissue pressures, reflective of intracranial pressure, were monitored during the surgical procedure, using a fiberoptic intracranial pressure monitoring system. The intracranial pressure monitoring cable was placed superficially in brain parenchyma on the side contralateral to the primary lesion. Recordings were made continually throughout the surgical procedure. Each dog was treated preoperatively with mannitol, which caused a decrease in intracranial pressure prior to craniectomy in only those dogs that initially had high intracranial pressure. Complications associated with use of the fiberoptic intracranial monitoring system were not evident. Although absolute values for pressure varied, pressure trends were helpful in determining effects of surgical manipulations on intracranial pressure in these dogs.

Animals↗

Glioma in a goat.

An adult goat was examined because of behavioral changes and circling. Results of neurologic examination, CSF analysis, hematologic evaluation, and computed tomography of the brain were suggestive of an intra-axial mass. The goat was euthanatized because of worsening neurologic condition and poor prognosis. Necropsy revealed a large mass in the right cerebral hemisphere and caudal brain herniation through the foramen magnum. The mass was diagnosed as a glioma, with oligodendrocyte differentiation. Results of immunohistochemical evaluation were compatible with a malignant, poorly differentiated tumor.

Animals↗