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Biomedical subjects

M J Mack

Publications and source records attributed to M J Mack.

88 records · Page 5Linked to original sources

Implantable cardioverter defibrillator: the role of thoracoscopy.

Video techniques have been used in many centers to assist with pericardial patch placement for implantable defibrillators. Although there are some specific instances where this technique would be helpful, the success of the transvenous systems will limit the application of this approach.

Defibrillators, Implantable↗

Role of mechanical stapling devices in thoracoscopic pulmonary resection.

For its first 80 years, thoracoscopy was primarily reserved for the evaluation and treatment of pleural disease. Extension of thoracoscopic techniques to management of parenchymal lung disease remained limited until the availability of endostaplers and adaption of video-assisted techniques through minimal access incisions. The widespread acceptance of mechanical staplers in open lung resections during the previous two decades has facilitated conversion to closed methods in the past 2 years. A variety of techniques for mechanical stapling in thoracoscopy are discussed. The impact of mechanical stapling in 300 consecutive thoracoscopic pulmonary resections is presented.

Humans↗

VATS wedge resection of the lung using the neodymium:yttrium-aluminum garnet laser.

Many thoracic surgical procedures previously performed using open thoracotomy techniques can now be accomplished using video-assisted thoracic surgical approaches. This has primarily resulted from improvements in both the video and surgical instrumentation and the development of an effective endoscopic surgical stapling device. Laser technology that has been adapted for use in endoscopic surgery has been extended to video-assisted thoracic surgical applications for the resection of pulmonary nodules difficult to manage with the endoscopic stapler alone. We present our experience with the neodymium:yttrium-aluminum garnet laser as either a primary resective tool or as an adjunct to the endoscopic stapler in 67 consecutive patients who underwent video-assisted thoracic surgical wedge resection of the lung.

Female↗

Thoracoscopic pericardiectomy for effusive pericardial disease.

Thoracoscopic techniques were used to perform a pericardiectomy in 35 patients with purely effusive pericardial disease after medical management and pericardiocentesis had failed to be effective. There were no intraoperative complications and postoperative complications were few. Two cases of dysrhythmia and 2 cases of pneumonia occurred postoperatively. Malignancy was identified as the cause in 18 patients and there were benign causes in the remaining 17. The hospital stay in the group with benign effusions was 4.6 days. There were no recurrences of pericardial effusions and no constrictive changes developed during a mean follow-up of 9 months. Fourteen (40%) patients had pleural or pulmonary abnormalities that were managed simultaneously thoracoscopically. These abnormalities included 2 pleural masses, 2 pulmonary nodules, and 12 pleural effusions. In 8 instances, the pericardiectomy was performed from the right pleural cavity in order to address the pleural or pulmonary problem. Thoracoscopic pericardial resection has proved safe and effective. It allows a wider pericardial resection than that usually permitted by the subxiphoid route, and should lessen the pain and the number of pulmonary complications, compared with open thoracotomy. An additional advantage is that it allows the visualization and management of simultaneous pleural and pulmonary abnormalities.

Follow-Up Studies↗

Video thoracoscopic management of benign and malignant pericardial effusions.

Surgical management of symptomatic benign and malignant effusive pericarditis is often required. Twenty-two patients with medically recalcitrant effusive, nonconstrictive pericarditis underwent pericardial resection by a video-assisted thoracoscopic surgical (VATS) technique (9 malignant, 13 benign). Pericardiectomy, resulting in complete drainage of the pericardial space and control of patient symptoms was accomplished routinely. Ipsilateral pleural effusions, originally present in 11 patients, were also managed. The VATS pericardiectomy was well tolerated even by gravely ill patients. This approach should be considered as an alternative to lateral thoracotomy or subxiphoid pericardial window for the surgical management of patients with symptomatic benign and malignant pericardial effusions.

Humans↗

Comparison of open versus thoracoscopic lung biopsy for diffuse infiltrative pulmonary disease.

BACKGROUND: Patients with diffuse pulmonary infiltrates often require biopsy for a diagnosis. Standard operative therapy, open wedge resection via thoracotomy, is associated with known morbidity. We hypothesized that closed thoracoscopic wedge resection may result in reduced morbidity and decreased duration of hospital stay. This retrospective study compares open resection with thoracoscopic wedge resection in patients with diffuse pulmonary infiltrates. METHODS: Seventy-five patients with diffuse pulmonary infiltrates underwent diagnostic lung biopsy. Patients requiring mechanical ventilation and high levels of pressure support before biopsy were excluded from the study. Between March 1987 and September 1991, a total of 28 patients underwent open wedge resection via lateral thoracotomy. Since April 1991, a total of 47 patients underwent thoracoscopic resection. RESULTS: There was no difference between the groups in age, sex, presence of immunosuppression, or final pathologic diagnosis. Adequate tissue was obtained for pathologic diagnosis in all patients of both groups. All surgeons believed that thoracoscopic biopsy provided better visualization of the entire lung than did a limited thoracotomy. Mean operative time was 69 minutes for open biopsies and 93 minutes for thoracoscopic biopsies [p = 0.038]. Mean duration of chest tube drainage was not significantly different between the two groups. Duration of hospital stay was significantly less for thoracoscopic biopsy (4.9 days) than for open biopsy (12.2 days) (p = 0.018). Fourteen of 28 open biopsies resulted in complications compared with 9 of 47 closed biopsies (p = 0.009). There were 6 deaths among patients having open biopsies and 3 deaths among those having closed biopsies (p = not significant). CONCLUSION: A significant decrease in hospital stay was noted with thoracoscopic biopsy when compared with lung biopsy via the standard open approaches. Thoracoscopy provided excellent visualization and allowed for wedge resection that provided adequate tissue for diagnosis in patients with diffuse pulmonary interstitial disease.

Adult↗

Techniques for localization of pulmonary nodules for thoracoscopic resection.

Significant advances in surgical equipment, video monitoring, and endoscopic surgical techniques have expanded the role of thoracoscopy to include pulmonary resection. One limitation of the thoracoscopic technique is the loss of manual palpation to identify the nodule that is either too small or too deep beneath the pleural surface. We describe the techniques used in 300 thoracoscopic pulmonary resections that have aided in identification of pulmonary nodules. These techniques include careful preoperative assessment of the computed tomogram, preoperative injection of methylene blue, or a needle localizing system to identify the nodule. Intraoperative techniques include instrument palpation, digital palpation, and intraoperative ultrasonography. It should be possible to identify the majority of pulmonary nodules at the time of thoracoscopy with these localizing techniques. All nodules were successfully identified in our last 200 thoracoscopic resections.

Humans↗

Thoracoscopic mediastinal lymph node sampling: useful for mediastinal lymph node stations inaccessible by cervical mediastinoscopy.

Cervical mediastinoscopy is useful for the diagnosis of paratracheal lymph node metastasis from bronchogenic carcinoma. Access to adenopathy in the aorticopulmonary window, anterior mediastinal, periazygos, and subcarinal lymph nodes is difficult with this technique. Operative visibility in these locations through anterior mediastinotomy, the Chamberlain procedure, is limited. We have used thoracoscopic mediastinal exploration in 40 patients with computed tomographic scan evidence of enlarged aorticopulmonary window (n = 30) or enlarged right periazygos or subcarinal lymph nodes (n = 10). This procedure was used primarily as an adjunct to cervical mediastinoscopy in the staging of bronchogenic carcinoma. Adjunctive thoracoscopic nodal sampling was 100% sensitive and 100% specific in diagnosing the mediastinal adenopathy. It did not significantly delay thoracotomy in cases of benign adenopathy. Visibility of the ipsilateral pleural space and mediastinum was excellent. Thoracoscopic exploration with mediastinal nodal sampling is a valuable diagnostic adjunct for assessment of adenopathy inaccessible to cervical mediastinoscopy and can overcome many of the limitations of anterior mediastinotomy.

Adult↗

Percutaneous localization of pulmonary nodules for thoracoscopic lung resection.

A limiting factor in removing pulmonary nodules by videothoracoscopic techniques is the inability to locate lesions deep within the substance of the lung. We describe a technique in which a hook wire commonly used to localize nonpalpable breast lesions is placed percutaneously into the lung nodule preoperatively. Using the wire anchored into the lung as a guide, the target lesion can be successfully identified and removed thoracoscopically.

Humans↗

Present role of thoracoscopy in the diagnosis and treatment of diseases of the chest.

Since thoracoscopy was originally described in 1910, the application has been limited mainly to the diagnosis and treatment of pleural disease. Recent advancements in endoscopic equipment and refinement of surgical techniques have expanded the application of this procedure. Using video thoracoscopic techniques in 70 patients over the past 9 months, we have been able to perform a variety of procedures previously accomplished by "open" techniques. These procedures include (1) wedge resections of pulmonary nodules in 21 patients, using endoscopic mechanical stapling devices; (2) excision of the pericardium and drainage of the pericardial space in 6 patients; (3) dorsal thoracic sympathectomy in 6 patients; (4) apical blebectomy and pleurodesis in 6 patients; (5) lung biopsies for diagnosis of diffuse lung disease in 5 patients. Additional procedures performed include biopsy of hilar masses (3), biopsy of esophageal mass, excision of a mediastinal cyst, and the drainage of a spinal abscess. The remaining 20 procedures were performed for the diagnosis and treatment of pleural disease. There was no mortality associated with the procedure and morbidity was lessened, compared with standard thoracotomy procedures. The postoperative hospital stay after elective procedures performed in well patients averaged 3 days and was often as short as 1 day. Our experience indicates a markedly expanded role for thoracoscopy in the diagnosis and treatment of thoracic diseases with less postoperative morbidity.

Adult↗

Video-assisted thoracic surgery: basic technical concepts and intercostal approach strategies.

Video-assisted thoracic surgery is emerging as a viable approach to a number of intrathoracic disorders. Technical difficulties related to improper instrument selection and suboptimal intercostal operative access can reduce the utility of, and the enthusiasm for, the video-assisted thoracic surgical approach. This report describes the intercostal access strategy and the instrument positioning that we now prescribe for many video-assisted thoracic surgical procedures. These approaches have become refined during the course of our experience with 467 patients undergoing video-assisted thoracic operations over the last 18 months.

Endoscopes↗

Cardiac applications of video assisted thoracic surgery.

As experience with video assisted thoracic surgery (VATS) has grown, cardiac applications of VATS are being explored. Simple cardiac procedures including pericardiectomy and epicardial pacemaker lead placement are readily accomplished by VATS. More complex cardiac procedures are being investigated both in the laboratory and in the clinical arena. Totally endoscopic coronary artery bypass grafting has been successfully performed in the animal model. Modification of existing instrumentation and techniques has had an enabling benefit. The human experience consists of predominantly a video assisted minithoracotomy approach with some successful promise. More advanced procedures including minimally invasive valve replacement are also being explored.

Animals↗