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Biomedical subjects

E Alexander

Publications and source records attributed to E Alexander.

At least 73 records · Page 4Linked to original sources

The influence of Harvey Cushing on neuroradiologic therapy.

Harvey Cushing was largely responsible for the establishment of neurosurgery as a separate discipline. He demonstrated how careful attention to technique could make surgery acceptably safe, established classifications and clinical-pathologic correlations of a wide variety of tumors, and trained dozens of future neurosurgical department heads. Less well known, however, is Cushing's contribution to the early clinical use of radiation therapy for a variety of intracranial disorders. With the aid of his meticulous clinical follow-up, large case volume, and willingness to try new treatment methods, he demonstrated the utility of therapeutic radiation in patients with pituitary tumor, medulloblastoma, and arteriovenous malformation. His less impressive results with the irradiation of patients with glioma are also worthy of note and include trials of brachytherapy. Neurosurgeons and radiation oncologists exploring new methods of delivering therapeutic radiation to the central nervous system should be aware of the lessons learned from Cushing's experience.

Adenoma↗

Seasonality of birth in sudden infant death syndrome.

The objective was to clarify the optimal birth month for avoidance of SIDS and the seasonal characteristic of each birth-month cohort. The statistical method was cosinor analysis, and this established seasonality of SIDS death and births, the extent of this seasonality (amplitude) and the position of the peak (acrophase). There is a lowering of risk, by one third, amongst babies born in February-May compared to those born in August-November. The seasonal variation of death was twice as great for birth in September as compared with those in April. Those born in May-June lived on average six weeks longer than those born in November-April. Advice on subsequent pregnancy delivery date should be given to families who have already experienced SIDS. For those born in autumn there may be two components-the first a genetic or intrauterine component independent of month of birth, and the second an independent effect of interaction with winter environment.

Cohort Studies↗

Clinical strategies to reduce utilization of chest physiotherapy without compromising patient care.

BACKGROUND: There is widespread interest in the evaluation of clinical strategies that safely reduce health-care costs. Elimination of inappropriate chest physiotherapy may represent one of those strategies. SETTING: An academic community hospital. METHODS: One-hundred one patients receiving chest physiotherapy were prospectively randomized to continue their chest physiotherapy or to inform their physicians that the order for the chest physiotherapy may have been inappropriate. RESULTS: Patients who were randomized to have their chest physiotherapy discontinued received 45% fewer chest physiotherapy treatments than control patients (p < 0.01). There was no increase in the mortality rate or length of hospital stay associated with the reduction in chest physiotherapy in carefully selected patients. The estimated cost savings would be $319,000, which is 50 times greater than the cost associated with the intervention. CONCLUSION: Chest physiotherapy is frequently provided to patients for inappropriate indications. Reducing chest physiotherapy for these patients may significantly reduce respiratory therapy costs without increasing length of stay or mortality rates.

Aged↗

Historical vignette: The radium bomb: Harvey Cushing and the interstitial irradiation of gliomas.

Harvey Cushing performed over 2000 operations on patients with brain tumors, including 832 for gliomas. He implanted radioactive radium needles, known as a "radium bomb," in a small number of these patients. He was not impressed with the results and did not pursue this method of treatment in a serious way. The authors present here Cushing's little-known experience with brachytherapy and discuss the reasons for his lack of interest in this technique, despite his advocacy of radiotherapy for certain lesions. An interesting perspective is offered for contemporary neurosurgeons involved in the treatment of brain tumors with cranial irradiation.

Brachytherapy↗

Harvey Cushing.

Explore the source record for details and available documents.

Humans↗

Computer-assisted interactive three-dimensional planning for neurosurgical procedures.

We have used three-dimensional reconstruction magnetic resonance imaging techniques to understand the anatomic complexity of operative brain lesions and to improve preoperative surgical planning. We report our experience with 14 cases, including intra- and extra-axial tumors and a vascular malformation. In each case, preoperative planning was performed using magnetic resonance imaging-based three-dimensional renderings of surgically critical structures, such as eloquent cortices, gray matter nuclei, white matter tracts, and blood vessels. Simulations, using the interactive manipulation of three-dimensional data, provided an efficient and comprehensive way to appreciate the anatomic relationships. Interactive three-dimensional computer-assisted preoperative simulations provided otherwise inaccessible information that was useful for the surgical removal of brain lesions.

Adolescent↗

Magnetic resonance imaging therapy. Intraoperative MR imaging.

The field of image-guided neurosurgery has developed under the premise that integrating the enhanced discrimination powers of CT scan and MR imaging into the operating room improves the accuracy, safety and precision of neurosurgery, and expand the realm of surgically treatable lesions. Through cooperation between General Electric Corporation and the Brigham and Women's Hospital, and open-configuration MR suite was designed and implemented to attain these goals through real-time, intraoperative MR imaging in a true surgical suite. This system allows intraoperative acquisition of MR images without moving the patient, online image-guided stereotaxy without preoperative imaging, and "real-time" tracking of instruments in the operative field registered to the MR images. The design and implementation of neurosurgery in the open-configuration MR imaging suite are summarized in this article.

Biopsy↗

Recurrent brain metastases.

Metastases of the brain are the most frequent metastatic neurologic complication of systemic cancer and are second only to metabolic encephalopathies as a cause of central nervous system dysfunction in cancer patients. Despite recent significant advances in the diagnosis and treatment of metastases to the brain, many patients will suffer from recurrence. Future advances in the use of chemotherapy, radiosurgery, and newer cancer therapy techniques may lead to further increases in the efficacy of treatment for recurrent brain metastases.

Brain Neoplasms↗

Radiosurgery in the initial management of malignant gliomas: survival comparison with the RTOG recursive partitioning analysis. Radiation Therapy Oncology Group.

PURPOSE: To evaluate the impact of stereotactic radiosurgery on the survival of patients treated with malignant gliomas. METHODS AND MATERIALS: A total of 115 patients from three institutions (75 from the Joint Center for Radiation Therapy, 30 from the University of Wisconsin, and 10 from the University of Florida) were treated with a combination of surgery, external beam radiation therapy, and linac-based radiosurgery as part of similar institutional protocols from March 1988 through July 1993. Patients were stratified into six prognostic classes (classes 1-6) based on the recursive partitioning analysis of multiple prognostic factors previously reported by the Radiation Therapy Oncology Group. RESULTS: The actuarial 2-year and median survival for all patients analyzed was 45% and 96 weeks, respectively. In comparison to the results from a previously published analysis of 1578 patients entered on three Radiation Therapy Oncology Group external beam radiotherapy protocols from 1974 to 1989, those patients treated with radiosurgery had a significantly improved 2-year and median survival (p = 0.01) corresponding with a standardized mortality risk ratio of 0.51 [95% confidence interval (CI): 0.31, 0.85]. This improvement in survival was seen predominantly for the worse prognostic classes (classes 3-6). The 2-year survival for the radiosurgical patients compared with the previously reported patients was 81% vs. 76% for classes 1/2, 75% vs. 35% for class 3, 34% vs. 15% for class 4, and 21% vs. 6% for classes 5/6, respectively. Although Karnofsky performance status and prognostic class were significant on univariate analysis, only the Karnofsky score was a significant predictor of outcome on multivariate analysis. Median and 2-year survival for patients with a Karnofsky score > or = 70 was 106 weeks and 51%, respectively, as compared to 38 weeks and 0% for patients with a Karnofsky score < 70% (p = 0.001). CONCLUSIONS: The addition of radiosurgery to conventional treatment (surgery and external beam radiotherapy) of malignant gliomas appears to improve survival when compared to historical reports. These results should be interpreted with caution because the recursive partitioning model does not completely predict the prognosis of the patients treated in the present study. Although this study suggests that radiosurgery may prolong survival in patients with malignant gliomas, the role of radiosurgery in the management of these patients remains to be defined by a prospective randomized trial.

Brain Neoplasms↗

Cardioactive effects of Eremophila alternifolia extracts.

An aqueous extract obtained from the leaves of the traditional Aboriginal medicinal plant Eremophila alternifolia R.Br. (Myoporaceae) was tested on isolated hearts of normotensive rats using the Langendorff heart preparation. A single injection of the extract into the retrograge perfusion solution induced cardioactivity, consisting of a short initial increase in force of contraction (positive inotropism), followed by a decrease in the force (negative inotropism) with simultaneous increase in heart rate (positive chronotropism) and in coronary perfusion rate. These effects were not mediated by alpha- or beta-adrenergic receptors.

Animals↗

Stereotactic radiosurgery for the definitive, noninvasive treatment of brain metastases.

BACKGROUND: The spread of systemic cancer to the brain is a common complication for cancer patients. Conventional radiotherapy offers modest palliation, and surgery is helpful only for the patient with a single metastasis in an accessible location. Stereotactic radiosurgery, a technique that permits the precise delivery of a high dose of radiation to a small intracranial target while sparing the surrounding normal brain, has been used as an alternative treatment for brain metastases. PURPOSE: Our medical center's 7-year experience with radiosurgery for metastases was reviewed to establish the effectiveness of the treatment and to understand the prognoses in patients so treated. METHODS: Retrospective analysis of hospital records, from 248 consecutive patients (421 lesions) that were treated with radiosurgery between May 1986 and May 1993, was performed. Patients were only excluded for a Karnofsky performance score of less than 70, evidence of acute neurologic deterioration, or tumor diameter more than 4 cm. Median follow-up was 26.2 months. Seventy-six percent of patients had recurrent disease, 69% had evidence of systemic disease, 69% had a single metastasis. Treatment was performed using a 6-MeV linear accelerator. The median tumor volume was 3 cm3. The median treatment dose was 1500 cGy. Whole brain radiotherapy was given to all newly diagnosed patients. Patients were followed by neurological examination and neuroimaging at regular intervals. Local control of disease was defined as a lack of progression of solid-contrast enhancement on computed tomography scan or magnetic resonance imaging. RESULTS: Median overall survival from radiosurgery was 9.4 months. The absence of active systemic disease, younger than 60 years of age, two or fewer lesions, and female sex were significantly associated with increased survival (two-sided P < .05). Actuarial local control rates were approximately 85% at 1 year and 65% at 2 years. Factors associated with a significantly decreased local control rate were location below the tentorium, recurrent tumor, and larger tumor volume (two-sided P < .05). Radioresponsive and radioresistant tumor types had similar control rates. The median drop in Karnofsky performance score at 1 year was 10%. CONCLUSIONS: The results of this retrospective analysis show that radiosurgery is an effective, minimally invasive outpatient treatment option for small intracranial metastases. Results of this study also indicate that radiosurgery not only provides local control rates equivalent to those from surgical series but is also effective in treating patients with surgically inaccessible lesions, with multiple lesions, or with tumor types that are resistant to conventional treatment.

Adolescent↗

Radiosurgery for Intracranial Malignancies.

Radiosurgery was historically designed as a technology to be used for the treatment of functional disorders, benign tumors, and vascular malformations. In the last 5 years, malignant lesions have become an increasingly common target for the radiosurgeon. In fact, by 1994 the most common disease treated with radiosurgery in the United States was metastatic disease. Published data suggest that radiosurgery offers excellent local control for intracranial metastatic lesions regardless of location or histology with the majority of patients demonstrating an improved quality of life. Recent information from the Joint Center for Radiation Therapy suggests that radiosurgery compares favorably with interstitial brachytherapy for both recurrent as well as in newly diagnosed patients with malignant gliomas in terms of improved survival and the need of surgery and steroid support for symptomatic radiation changes. Prospective studies (Phase I through III) are ongoing to determine the ultimate role of radiosurgery in the management of patients with newly diagnosed and recurrent malignant gliomas, recurrent pediatric brain tumors disease, and patients with single or multiple intracranial metastases.

Journal Article↗

Anesthesia for stereotactic radiosurgery in children.

The development of stereotactic radiosurgery has been a major advance in the treatment of intracranial lesions. By using a stereotactic head frame attached to the skull, large doses of radiation can be delivered precisely to the lesion while sparing surrounding tissues. Although adults can usually undergo this procedure with local anesthesia or conscious sedation alone, children frequently require general anesthesia. This report describes our experience with the anesthetic management of all children who have received this therapy at our institution since the inception of our stereotactic radiosurgery program in 1986 through June 1993. Sixty-eight radiosurgery procedures were performed in 65 patients. Anesthesia time averaged 9.2 h (range, 7-15). Twenty-two patients (ages 11-17; mean 14.3) received local anesthesia alone, two patients (ages 11 and 15) received local anesthesia plus i.v. sedation, and 44 patients (ages 2-14; mean, 7.3) received general anesthesia. Four potentially serious anesthesia-related events occurred; in one child (age 7) receiving general anesthesia, an endotracheal tube obstruction developed during radiosurgery requiring rapid reintubation while the child was still in the head frame; another (age 7) who was undergoing chemotherapy and had neutropenia and rhinitis had a lobar collapse while intubated, requiring mechanical ventilation and endotracheal tube suctioning for lung expansion. Another (age 5) with a recent upper respiratory tract infection had copious endotracheal secretions and sinusitis (ethmoid and maxillary) noted on initial computed tomography scanning and was given antibiotics and decongestants (following nasotracheal extubation), and another (age 15) receiving sedation without endotracheal intubation vomited an undigested meal midway through the procedure while her head was partially immobilized in the head frame.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Comparison of stereotactic radiosurgery and brachytherapy in the treatment of recurrent glioblastoma multiforme.

The purpose of this study was to compare the efficacy of stereotactic radiosurgery (SRS) and brachytherapy in the treatment of recurrent glioblastoma multiforme (GBM). The patients had either progressive GBM or pathologically proven GBM at recurrence after previous treatment for a lower grade astrocytoma. Thirty-two patients were treated with interstitial brachytherapy, and 86 received treatment with stereotactic radiosurgery (SRS). The patient characteristics were similar in the two groups. Those patients treated with SRS had a median tumor volume of 10.1 cm3 and received a median peripheral tumor dose of 13 Gy. Patients treated with brachytherapy had a median tumor volume of 29 cm3. Median dose to the periphery of the tumor volume was 50 Gy delivered at a median dose rate of 43 cGy/hour. Twenty-one patients (24%) treated with SRS were alive, with a median follow-up of 17.5 months. Median actuarial survival, measured from the time of treatment for recurrence, for all patients treated with SRS was 10.2 months, with survivals of 12 and 24 months being 45 and 19%, respectively. A younger age and a smaller tumor volume were predictive of better outcome. The tumor dose, the interval from initial diagnosis, and the need for reoperation were not predictive of outcome after SRS. Five patients (16%) treated with brachytherapy were alive, with a median follow-up of 43.3 months. The median actuarial survival for all patients treated with brachytherapy was 11.5 months. Survivals of 12 and 24 months were 44 and 17%, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Magnetic resonance image-directed stereotactic neurosurgery: use of image fusion with computerized tomography to enhance spatial accuracy.

Distortions of the magnetic field, such as those caused by susceptibility artifacts and peripheral magnetic field warping, can limit geometric precision in the use of magnetic resonance (MR) imaging in stereotactic procedures. The authors have routinely found systematic error in MR stereotactic coordinates with a median of 4 mm compared to computerized tomography (CT) coordinates. This error may place critical neural structures in jeopardy in sme procedures. A description is given of an image fusion technique that uses a chamfer matching algorithm; the advantages of MR imaging in anatomical definition are combined with the geometric precision of CT, while eliminating most of the anatomical spatial distortion of stereotactic MR imaging. A stereotactic radiosurgical case is presented in which the use of MR localization alone would have led to both irradiation of vital neural structures outside the desired target volume and underdose of the intended target volume. The image fusion approach allows for the use of MR imaging, combined with stereotactic CT, as a reliable localizing technique for stereotactic neurosurgery and radiosurgery.

Algorithms↗

High-grade astrocytomas.

Despite intense research, progress in the treatment of patients with HGA has remained slow. New therapeutic strategies are emerging, however, based on technologic advances in surgery and radiotherapy, improved understanding of the molecular, cellular, and immunobiology of astrocytomas, and advances in gene therapy, It is likely that these new strategies will result in significant progress in the treatment of HGA in the next decade.

Adult↗

Stereotactic radiotherapy for pediatric and adult brain tumors: preliminary report.

PURPOSE: Stereotactic radiotherapy is a new modality that combines the accurate focal dose delivery of stereotactic radiosurgery with the biological advantages of conventional radiotherapy (1.8-2.0 Gy/day using 25-30 fractions). The modality requires sophisticated treatment planning, dedicated high-energy linear accelerator, and relocatable immobilization devices. We report here our early experience using stereotactic radiotherapy for intracranial neoplasms. METHODS AND MATERIALS: Between June 1992 and September 1993, we treated 82 patients with central nervous system lesions using stereotactic radiotherapy, delivered from a dedicated 6 MV stereotactic linear accelerator. A head fixation frame provided daily relocatable setup using a dental plate for all patients over 8 years of age. A modified head frame, which does not require a mouthpiece, was used for children requiring anesthesia. The patients ranged in age from 9 months to 76 years. Thirty-three patients were children less than 21 years of age. Selection criteria for the protocol included: (a) focal, small (< 5 cm) radiographically distinct lesions known to be radiocurable (pituitary adenoma, craniopharyngioma, meningioma, acoustic neuroma, pilocytic astrocytoma, retinoblastoma), and (b) lesions located in regions not amenable to surgery or radiosurgery such as the brain stem or chiasm. Standard fractionation and conventional doses were delivered. Patients with low-grade astrocytoma, oligodendroglioma, or ependymoma were treated using a dose escalation regime consisting of conventional doses plus a 10% increase. RESULTS: Although follow-up is 16 months (range 3-16 months), posttreatment radiographic studies in 77 patients have been consistent with changes similar to those found after conventional radiation therapy. To date, reduction of up to 50% of the original volume has been noted in 19 out of 77 patients, and 4 patients had a complete response, 2 with dysgerminoma, and 1 each with astrocytoma and retinoblastoma. In 56 patients disease was either stable or the follow-up was too short for evaluation. While the follow-up is relatively short, there have been no in-field or marginal recurrences. The only unexpected radiographic findings were in three patients with pilocytic astrocytomas, who developed asymptomatic edema in the treatment volume. Accuracy in daily fractionation was excellent. In over 2000 patient setups with 41,000 scalp measurements, reproducibility was found to be within 0.41 mm (median) of baseline readings, allowing for precise immobilization throughout the treatment course. The treatment in all cases was well tolerated with minimal acute effects. Our stereotactic radiotherapy facility can provide fractionated therapy for 10-12 patients a day efficiently and accurately. CONCLUSIONS: The treatment and relocatable stereotactic head frames were well tolerated with minimal acute effects. No long-term sequelae have been noted, although the observation period is short. To fully define the role of stereotactic radiotherapy, we are conducting prospective studies to evaluate neurocognitive and neuroendocrine effects. We expect that this innovative approach will make a significant impact on the treatment of intracranial neoplasms, particularly in children.

Adolescent↗