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Kevin Fox

Publications and source records attributed to Kevin Fox.

24 records · Page 2Linked to original sources

Ten-year outcome after combined modality therapy for inflammatory breast cancer.

PURPOSE: To evaluate the long-term outcome of combined modality therapy for inflammatory breast cancer. METHODS AND MATERIALS: The data from 54 women treated between 1983 and 1996 for inflammatory breast cancer were analyzed. Patients with metastatic disease or disease progression on induction chemotherapy were excluded. Induction chemotherapy was given to 52 patients. Mastectomy was performed in 52 patients. Radiotherapy was delivered to the breast or chest wall and regional lymph nodes in all patients. The median follow-up for all patients was 5.1 years. RESULTS: The 5- and 10-year overall survival rate was 56% and 35%, respectively; the corresponding relapse-free survival rates were 49% and 34%. Patients with a pathologic complete response after chemotherapy with or without preoperative radiotherapy had better 5- and 10-year overall survival rates (65% and 46%, respectively) and 5- and 10-year relapse-free survival rates (59% and 50%, respectively) compared with patients without a pathologic complete response. Those patients had a 5- and 10-year relapse-free survival rate of 45% and 27%, respectively. Locoregional failure at 5 and 10 years was 8% and 19%, respectively. CONCLUSION: The outcomes for patients completing multimodality therapy compare favorably with published data; however, the exclusion of patients with progression during induction chemotherapy may account in part for these results. The pathologic complete response rate was found to be an important prognostic factor. Selected patients with inflammatory breast cancer have the potential for long-term survival.

Adenocarcinoma↗

Synaptic plasticity: the subcellular location of CaMKII controls plasticity.

In a neuron's dendritic spine, the location of CaMKII is controlled by a number of interacting factors, including its ability to bind calcium/calmodulin, its phosphorylation state and the synthesis of new subunits in the dendrites. New studies have shown that the exact location of CaMKII is crucial for the form and endurance of synaptic plasticity.

Animals↗

Glutamate receptor blockade alters the development of intracortical connections in rat barrel cortex.

We tested the hypothesis that glutamate receptor mediated activity is required for the postnatal development of intracortical connections in layers II/III of rodent barrel cortex. To block glutamate receptors, a slow release polymer (elvax) loaded with a glutamate receptor antagonist (D-AP5) was targeted subdurally over the future rat barrel cortex on P0 (day of birth). On P14-16 biotinylated dextran amine (BDA) was injected under the elvax into all layers to label neurons retrogradely. A BDA injection was made stereotactically at the mirror site of the untreated hemisphere of each animal. The animals survived to P22-24. Injection sites and retrogradely labeled cell bodies were identified in tangential sections in relation to the barrel map. D-AP5 treated and untreated hemispheres were matched according to the location of the injection site in the barrel map. Glutamate receptor blockade did not prevent the growth of intrinsic projections, but altered their organization. The normal row-like asymmetry of connections in untreated hemispheres was lacking in the D-AP5 treated cortex (ANOVA, p=0.02). Cortical activity mediated through glutamate receptors contributes to the correct development of connections between barrel columns in layers II/III.

2-Amino-5-phosphonovalerate↗

Is there a thalamic component to experience-dependent cortical plasticity?

Sensory deprivation and injury to the peripheral nervous system both induce plasticity in the somatosensory system of adult animals, but in different places. While injury induces plasticity at several locations within the ascending somatosensory pathways, sensory deprivation appears only to affect the somatosensory cortex. Experiments have been performed to detect experience-dependent plasticity in thalamic receptive fields, thalamic domain sizes and convergence of thalamic receptive fields onto cortical cells. So far, plasticity has not been detected with sensory deprivation paradigms that cause substantial cortical plasticity. Part of the reason for the lack of thalamic plasticity may lie in the synaptic properties of afferent systems to the thalamus. A second factor may lie in the differences in the organization of cortical and thalamic circuits. Many deprivation paradigms induce plasticity by decreasing phasic lateral inhibition. Since lateral inhibition appears to be far weaker in the thalamus than the cortex, sensory deprivation may not cause large enough imbalances in thalamic activity to induce plasticity in the thalamus.

Animals↗

Posttraumatic growth after breast cancer: patient, partner, and couple perspectives.

OBJECTIVE: The purpose of this study was to evaluate posttraumatic growth among breast cancer patients and their significant others over a 1(1/2)-year time span after diagnosis and to examine cognitive and emotional processes in posttraumatic growth. METHODS: One hundred sixty-two women with breast cancer and their partners completed surveys assessing posttraumatic growth, cognitive and emotional processing, and marital satisfaction at 3 time points spaced 9 months apart. RESULTS: Posttraumatic growth increased for both partners during this period. Patient posttraumatic growth was predicted by younger age, contemplating reasons for cancer, and more emotional expression at time 1. Partner posttraumatic growth was predicted by younger age, more intrusive thoughts, and greater use of positive reappraisal and emotional processing at time 1. CONCLUSION: Posttraumatic growth is reported by patients and by significant others. Cognitive and emotional processes predict growth. Patient growth is associated with the significant other's cognitive and emotional processing of breast cancer.

Adaptation, Psychological↗