The effect of beta adrenergic antagonists on cardiac contractions, myofibrillar ATPase activity, high-energy phosphate stores and lipid-facilitated transfort of calciumiones.
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Biomedical subjects
Publications and source records attributed to J Stone.
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Three new types of receptive field have been found in the cat's retina. The responses of these fields to flashing lights and moving objects suggest that the manner in which they code visual information may be quite different from that of the center-surround fields described in previous studies. These "specialized" fields were all found in the area centralis. A definite functional difference, corresponding to the known anatomical difference, between this region and the rest of the retina, is suggested.
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Fifty-five patients, initially diagnosed as having advanced high grade non-Hodgkin's lymphoma (NHL) or Hodgkin's disease (HD) refractory to first-line treatment or in relapse, were treated with ifosfamide 6 g/m2, infused over 48 h, followed by mitoxantrone 12 mg/m2. The regimen repeated at three-weekly intervals. Of 32 patients with NHL evaluable for response, 10 (31 per cent) achieved complete remission and five partial remission, giving an overall response rate of 47 per cent. Two patients subsequently went on to bone marrow transplant (BMT)--one allogeneic and the other autologous. Of 17 patients with HD evaluable for response, six (35 per cent) achieved complete remission and six partial remission, giving an overall response rate of 71 per cent. Two of this group also went on to BMT (both autografts). The principal toxicity was neutropenia, though central nervous system changes were observed in 10 patients. Given the need to offer alternative treatment of patients in these categories, this combination (I-M) is clearly of value in relapsed patients especially where therapeutic options are limited because of previous multi-drug treatment.
Fifty-seven patients, initially diagnosed as having advanced high grade non-Hodgkin's lymphoma (NHL) or Hodgkin's disease (HD) refractory to first-line treatment or in relapse, were treated with ifosfamide 6 g/m2, infused over 48 h, followed by mitoxantrone 12 mg/m2. The regimen repeated at three-weekly intervals. Of 33 patients with NHL evaluable for response, 10 (30 per cent) achieved complete remission and six partial remission, giving an overall response rate of 48 per cent. Two patients subsequently went on to bone marrow transplant (BMT)--one allogeneic and the other autologous. Of 18 patients with HD evaluable for response, seven (39 per cent) achieved complete remission and six partial remission, giving an overall response rate of 72 per cent. Two of this group also went on to BMT (both autografts). The principal toxicity was neutropenia, though central nervous system changes were observed in 10 patients. The possibility of increasing the safety of the regimen by increasing the time of infusion to 72 h is discussed. Given the need to offer alternative treatment to patients in these categories, this combination (I-M) is of value in relapsed patients, especially where options are limited because of previous multi-drug treatment. Remissions may not be prolonged but allow the effective application of additional intensive treatment including bone marrow transplantation.
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We have studied the glial investment of ganglion cells of the cat's retina, orienting the sections taken for electron microscopy so that the investment could be traced from the soma along the axon. The soma of each ganglion cell is covered by a close-fitting, continuous sheath formed by Müller cells. The axon hillock and the first part of the initial segment are invested by an extension of the somal sheath, and are thus enclosed in the same glial compartment as the soma. The initial segment extends a few microns past the Müller cell sheath; this last length of the initial segment is contacted by numerous processes of astrocytes, which converge on it in a pattern found also on nodes of the same axons, in the optic nerve. Beyond the initial segment, the intraretinal lengths of the axons are invested by both Müller cells and astrocytes, but the investment is strikingly incomplete. Large areas of axonal membrane have no glial cover, and lie close to other axonal membranes. The sequential arrangement of these distinct forms of glial wrapping of the soma, initial segment, and axon is described here for the first time. It is suggested that this pattern of glial investment controls the flow of current between dendrite and initial segment of the ganglion cell, defines the site of initiation of action spikes, and controls the formation of synapses on the soma and initial segment.
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