PubMed Health⌕ Search

Biomedical subjects

Eric T Ricchetti

Publications and source records attributed to Eric T Ricchetti.

5 recordsLinked to original sources

Pediatric phalanx fractures: unique challenges and pitfalls.

UNLABELLED: The hand is the most frequently injured part of the body in children. Most pediatric hand fractures can be treated by nonoperative means with good results. However, a subset of fractures requires prompt recognition and surgical intervention. We will review several pediatric phalangeal fracture types that must be recognized and treated appropriately to minimize complications and disability. These injuries defy the general conception that pediatric fractures universally do well with minimal intervention. This paper highlights two important concepts: (1) phalangeal fractures in children can differ considerably from other pediatric fractures, and (2) phalangeal fractures in children can be very different from those in adults. Tolerance of displacement may be small in juxtaarticular or intraarticular fractures and healing is rapid in phalangeal fractures, allowing displaced fractures to develop into malunions in a short period of time, with resultant deformity and dysfunction. Careful clinical examination of any suspected phalanx fracture in children is essential to appropriate treatment of these potentially problematic injuries, including adequate radiographic evaluation with multiple views of the suspected fracture site and thorough examination of possible open injuries. LEVEL OF EVIDENCE: Therapeutic study, level V (expert opinion).

Bone Wires↗

Radiographic study of the upper cervical spine in the 22q11.2 deletion syndrome.

BACKGROUND: The chromosome abnormality, deletion of 22q11.2, is one of the most common genetic syndromes. The 22q11.2 deletion syndrome encompasses a wide spectrum of abnormalities including cardiac, palate, and immunological anomalies. The purposes of the current study were (1) to define and determine the frequency of variations of the occiput and cervical spine on plain radiographs in patients with the 22q11.2 deletion syndrome and (2) to postulate the potential clinical importance of these variations. METHODS: Seventy-nine consecutive patients with the 22q11.2 deletion underwent clinical and radiographic evaluation of the occiput and cervical spine. Radiographic studies included lateral plain radiographs of the cervical spine in neutral, flexion, and extension; anteroposterior radiographs; and open-mouth odontoid radiographs. RESULTS: At least one developmental variation of the occiput or cervical spine was observed in every patient. The occipital variations were platybasia in fifty-two (91%) of the fifty-seven patients for whom data were available and basilar impression in two (3%) of the seventy-nine patients. The atlas variations were dysmorphic shape in fifty-nine (75%) of the seventy-nine patients, open posterior arch in forty-seven (59%) of the seventy-nine patients, and occipitalization in two (3%) of the seventy-one patients with adequate radiographs. The axis variations were dysmorphic dens in forty-six (58%) and upswept lamina and posterior elements or "C2 swoosh" in forty-seven (59%) of the seventy-nine patients. Of the seventy-one patients with adequate radiographs, twenty-four (34%) had fusion of C2-C3, fifteen (21%) had fusion of the posterior elements only, and nine (13%) had a complete block fusion. Increased segmental motion was observed in forty (56%) of the seventy-one patients. Thirteen (33%) of the forty patients had increased segmental motion at more than one level. Thirty-one patients (44%) had increased occipitoatlantal motion, seven (10%) had increased atlantoaxial motion, and four had increased C2-C3 motion. Eleven (15%) of the seventy-one patients had increased C3-C4 mobility, always adjacent to a fusion of C2-C3. CONCLUSIONS: Variations of the upper cervical spine, including increased segmental motion, are common in the 22q11.2 deletion syndrome. It is premature to predict the clinical implications of these radiographic findings, but advanced imaging and further observation may be needed to clarify their clinical course.

Adolescent↗

Donor T cell-derived TNF is required for graft-versus-host disease and graft-versus-tumor activity after bone marrow transplantation.

Previous studies in murine bone marrow transplantation (BMT) models using neutralizing anti-tumor necrosis factor (TNF) antibodies or TNF receptor (TNFR)-deficient recipients have demonstrated that TNF can be involved in both graft-versus-host disease (GVHD) and graft-versus-leukemia (GVL). TNF in these GVHD and GVL models was thought to be primarily produced by activated monocytes and macrophages, and the role of T cell-derived TNF was not determined. We used TNF(-/-) mice to study the specific role of TNF produced by donor T cells in a well-established parent-into-F1 hybrid model (C57BL/6J-->C3FeB6F1/J). Recipients of TNF(-/-) T cells developed significantly less morbidity and mortality from GVHD than recipients of wild-type (wt) T cells. Histology of GVHD target organs revealed significantly less damage in thymus, small bowel, and large bowel, but not in liver or skin tissues from recipients of TNF(-/-) T cells. Recipients of TNF(-/-) T cells which were also inoculated with leukemia cells at the time of BMT showed increased mortality from leukemia when compared with recipients of wt cells. We found that TNF(-/-) T cells do not have intrinsic defects in vitro or in vivo in proliferation, IFN-gamma production, or alloactivation. We could not detect TNF in the serum of our transplant recipients, suggesting that T cells contribute to GVHD and GVL via membrane-bound or locally released TNF.

Animals↗