Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “STERNUM”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

[Newly designed approach to an aneurysm eroding the sternum and protruding over the sternum].

A 54-year old man was admitted with a complaint of a pulsating tumor (7 x 6 x 2 cm) above the sternum accompanied by dysphagia. DSA showed the pulsating tumor was an aneurysm arising from the ascending aorta. CT gram of the sternum showed that the sternum was destroyed partially at the level of the 1st rib. We did the Y shaped skin incision. The clavicles, 1st and 2nd ribs were dissected out periosteally and perichondrially. We cut the clavicles and ribs, and dissected the mediastinum median to the internal mammary artery. Under the perfusion, F-F bypass and brain perfusion, the upper half of the sternum was dissected safely from the aneurysm. The aneurysm was false aneurysm and the perforating ostium was 3.5 cm in diameter. The margin of the perforating ostium had a deposit of calcium. Using an occlusion balloon catheter from the ostium, patch closure was done. The postoperative course was uneventful. We believe that this new approach is preferable to the severe erosion of the sternum by the aneurysm.

Aortic Aneurysm↗

Thyroid carcinoma metastasized to the sternum: resection of the sternum and reconstruction with acrylic resin.

Recently we resected and reconstructed the sternum in two female patients with thyroid carcinoma metastatic to the sternum. Histological diagnosis of the metastatic lesion was follicular carcinoma in the first case and papillary carcinoma in the second case. Reconstruction of the sternum was accomplished by using an acrylic resin plate alone in the first case and an acrylic resin plate sandwiched between layers of Marlex mesh (Marlex sandwich procedure) in the second case. In the first case the acrylic resin plate was directly fixed to the ribs with metallic wires, most of which snapped off later, and a small amount of exudate accumulated around the plate for a short period of time. In contrast, the postoperative course in the second case was uneventful and the Marlex sandwich procedure seemed superior in the chest wall reconstruction following resection of the sternum.

Acrylic Resins↗

Thoracoplasty with marlex mesh following total resection of sternum: a case of chondrosarcoma of sternum.

Removal of the whole sternum for malignant tumor results in a large defect, causing a severe deformity and possible paradoxial movement of the chest wall. Many of thoracoplasty cases after total sternectomy require considerably complicated invasion. Recently, we performed on a patient with chondrosarcoma of the sternum total resection of the sternum including bilateral costal cartilage followed by thoracic reconstruction with polyethylene hard mesh (heavy Marlex mesh). In the present paper, we make a report of the case of thoracoplasty reliable to perform which has produced immediate chest wall stability without postoperative thoracic deformation. Postoperative CT confirmed that the mesh is well infiltrated with fibrous granulation tissue which connected chest muscle. Impairment of respiratory function after the operation is not observed.

Bone Neoplasms↗

Thoracoplasty with acrylic plate-marlex mesh combination following near total resection of sternum: a case of chondrosarcoma of sternum.

Removal of the whole sternum for malignant tumours results in a large defect, causing severe deformity and possible paradoxical movements of the chest wall. The reconstruction of the resultant large defect of the chest wall is often complex and difficult. Commonly used materials include rib autograft, steel strus acrylic plate and various synthetic meshes such as Goretex or Marlex mesh, with a myocutaneous flap for coverage. A case of a 48-year-old man with sternal chondrosarcoma successfully treated with thoracoplasty using acrylic plate-marlex mesh combination following near total resection of sternum is reported.

Bone Cements↗

Management of a floating sternum after repair of pectus excavatum.

PURPOSE: The aim of this study was to examine the authors' experience with patients who have floating sternum after correction of pectus excavatum via the classical Ravitch procedure. A floating sternum is defined as a sternum in which the only attachment to the chest wall is its superior (cranial) border, and in which the body is secured only by the manubrium and whatever lateral and inferior fibrous bands are present. Typically, a floating sternum is caused by either extensive resection of the costal cartilages and perichondrium during correction of pectus excavatum or failure of proper regrowth of these cartilages. METHODS: The authors retrospectively assessed the charts of all patients diagnosed with a floating sternum noting age at original correction of pectus excavatum, time from original correction of pectus excavatum to diagnosis of floating sternum, age at correction of floating sternum, complaints before stabilization of the sternum, methods of repair, and postoperative complications. RESULTS: Between July 1993 and June 1999, floating sternum was diagnosed in 7 patients. The mean age of patients who underwent operative correction of a floating sternum was 28.9 years (range, 16 to 42 years). The mean time interval between original correction of pectus excavatum, or "redo," and diagnosis of a floating sternum was 9.9 years (range, 2 to 20 years). Complaints before correction of the floating sternum included sternal pain and instability, exercise intolerance, and difficulty breathing. Operative repair consisted of mobilizing the lateral and inferior edges of the sternum, detaching the fibrous perichondrium, performing anterior sternal osteotomies, and finally supporting the sternum with substernal Adkins struts. All 7 patients had successful stabilization of the sternum. Two of 7 patients underwent 2 procedures to successfully stabilize the sternum. One patient has Adkins struts still in place because of hematopoetic malignancy. Six of 7 patients are now without symptoms. CONCLUSIONS: A floating sternum is a morbid phenomenon that may manifest many years after the original procedure. It can cause significant sternal pain, chest wall instability, and respiratory dysfunction, which are the hallmark indications for correction. Repair of a floating sternum can be accomplished successfully.

Adolescent↗

Sternum dependence of rib displacement during breathing.

The parasternal intercostals are the primary determinant of the inspiratory cranial displacement of the ribs in the dog. When they contract, however, these muscles also cause a caudal displacement of the sternum, presumably an expiratory motion. The present studies were designed to assess the effects of this sternal displacement on the cranial displacement of the ribs and on lung volume. Twelve supine anesthetized animals were studied. We first measured, in four paralyzed animals, the displacement of the ribs and sternum produced by known external forces applied to the ribs, the sternum, or both simultaneously. From these measurements, the elastic coupling between the ribs and sternum was determined. We then studied, in eight animals, the effect of sternal motion on rib motion and tidal volume during spontaneous breathing. Rib and sternal displacements and tidal volume were measured first with the sternum free to move caudally during inspiration and then with the sternum constrained to prevent caudal motion. Preventing the sternum from moving caudally caused a 24% increase in the inspiratory cranial displacement of the ribs; this increased displacement of the ribs agreed well with the elastic coupling between the sternum and the ribs as determined from the force-displacement observations. Tidal volume, however, remained unchanged. These observations indicate that the caudal displacement of the sternum produced by the parasternal intercostals reduces the cranial displacement of the ribs but probably increases the lateral expansion of the rib cage.

Animals↗

[Significance of full-thickness chest wall resection as a local treatment for sternum metastasis of breast cancer].

Bone metastasis of breast cancer generally tends to be multiple. However, breast cancer frequently metastasizes to the sternum as solitary metastasis. Resection of the sternum was reported to be an effective surgical technique for sternum metastasis which could not be remarkably improved by chemo-endocrine therapy and locoregional recurrent breast cancer invading the skin. A first patient was diagnosed with sternum metastasis invading the skin 44 months after radical mastectomy for breast cancer of stage II. A second patient had breast cancer of stage IV simultaneously with metastases to the sternum and the lung. Only the lung metastasis was successfully controlled by chemo-endocrine therapy, but the sternum metastasis was progressive, following radical mastectomy. Both patients manifested solitary bone metastases and underwent full-thickness chest wall resection. The defect of the chest wall was reconstructed with the mucocutaneous flap using the dorsal latissimus muscle in case 1 and with the abdominal rectus muscle in case 2. Twenty months after the resection of the sternum, the first patient suffered from supraclavicular lymph node metastasis, and the multidisciplinary treatment including radiation therapy was indicated. This therapeutic procedure was effective, and the patient survived for 63 months after resection of the sternum. The second patient has made good progress for six months in maintaining complete remission with chemo-endocrine therapy. These findings suggested that surgical resection was a useful local treatment for solitary sternum metastasis.

Antineoplastic Combined Chemotherapy Protocols↗

Variations in collateral contributions to the blood supply to the sternum.

The blood supply of the sternum plays a major role in healing of the sternum after sternotomy. The sternal blood supply is derived mainly from the medial horizontal branches of the internal thoracic artery (ITA). The ITA is usually described as giving off sternal, anterior intercostal and perforating branches supplying their respective areas. The aim of the present study was to describe variations in the arterial branching pattern of collateral contributions to the sternum. The study was conducted on 30 fresh specimens of anterior thoracic wall in which cellulose acetate butyrate was injected into the ITA. The branches of the ITA in the first to sixth intercostal spaces were dissected and any additional artery supplying the sternum in each intercostal space was observed. In the present study, the ITA gave off non-collateral branches - sternal, anterior intercostal and perforating. The ITA was also found to have branches which divided into two to supply two destinations which could establish collateral flow to the sternum: (1). A sterno-intercostal branch (1-12 mm in length) divided and diverged in a Y or T shape. The medial limb supplied the sternum and the lateral limb supplied the adjoining thoracic wall, anastomosing with the terminal part of the posterior intercostal artery. (2). A sterno-perforating branch supplied the sternum either anteriorly or posteriorly before perforating and supplying the pectoral region and anastomosing with the thoracoacromial artery. This study reinforces the practice of ligating branches of the ITA close to its trunk as they have the potential to develop collateral blood supply. In the present study the posterior intercostal artery was at times found to supply the sternum directly or via its collateral branch and was named the persistent posterior intercostal artery.

Adult↗

[Fractures of the sternum].

PURPOSE OF THE STUDY: Assessment of the authors' group of patients with a fracture of sternum and comparison with available literary findings. MATERIAL AND METHODS: In a group of 188 patients with a blunt injury of chest who were hospitalised in the Faculty Hospital in Olomouc in the period of 1996-1999 there were 7 cases with the diagnosis of the fracture of sternum. In this group of patients we observed the cause of injury, occurrence of associated injuries, the potential of diagnostic methods, method of treatment and duration of hospitalization. RESULTS: Mostly they were patients with an isolated fracture of the sternum or with an associated injury requiring only a short-term hospitalization. One patient with a rupture of v. azygos died from the sequelae of other multiple injuries. Another patient sustained a fracture of sternum together with a massive hemothorax and hemomediastinum. On the basis of circulation stability this patient was treated conservatively. For details see the case report. Six patients were subsequently transferred to out-patient department and are now without complaints. DISCUSSION: The most beneficial examination for the diagnosis of the fracture of sternum remains lateral radiograph of the chest. With regard to potential injuries of mediastinal organs it is necessary to perform ap radiograph of the chest and ECG, in indicated cases also CT of the chest, angiography and echocardiography, if need be. In patients treated for a fracture of sternum the duration of hospitalization and mortality is determined by the severity of the associated injuries. Surgical treatment is considered rarely in fractures with a greater dislocation or in injuries or mediastinal organs. CONCLUSION: The incidence of the fracture of sternum has recently increased. Isolated injuries of the chest do not pose any diagnostic or therapeutic problem. Of much greater severity are associated injuries of lungs and mediastinal organs which require a precise diagnosis and careful observation of the patient.

Adult↗

Sternum screw: analysis of a novel approach to the closure of the chest after surgery.

BACKGROUND: To show the benefits of using a novel approach to closure of the median sternotomy through a mechanical model and mechanical testing. Simple cannulated screws are placed on either side of the sternotomy. Conventional stainless steel wire is passed through the cannula of each screw and the sternotomy is closed in the usual manner. METHODS: Hertzian contact analysis was used to estimate the stress between the wire and the sternum. Mechanical testing was used to compare using wire on its own with a sternum screw plus wire. Ten samples of balsa wood (sternum substitute) had wire placed through a hole in them, while a further ten samples were fitted with a cannulated screw and had wire passed through the screw cannula. The wire was connected to a materials testing machine, which applied tension to the wire until the wire or screw cut through the wood. RESULTS: The analysis showed that the mean stress between the wire and the sternum decreases with increasing wire diameter. At low diameters of wire the stress in the sternum can be comparable to the failure stress of bone. Using a cannulated screw reduces the stresses in the sternum. The mechanical testing showed that the wire cut through the wood at a mean load of 104 N, whereas the sternum screw cut through the wood at a mean load of 209 N (p = 0.007, Mann-Whitney Test). CONCLUSIONS: Closing a median sternotomy with cannulated screws plus wire should reduce the occurrence of sternal dehiscence.

Biomechanical Phenomena↗