Hearing-aid usage and its effect upon residual hearing. A review of the literature and an investigation.
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Biomedical subjects
Publications and source records attributed to J Lerman.
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Patients with severe congestive heart failure (SCHF) complain of increasing dyspnea when adopting left lateral decubitus (LLD) position that improves when turning over to the right lateral decubitus (RLD) position (trepopnea). We hypothesize that this clinical sign is due to changes in left ventricular (LV) preload and such changes would modify mitral flow. This study analyzes the effect of RLD and LLD positions on LV filling pattern assessed by Doppler echocardiography in patients with SCHF. Seventeen men and seven women (aged 56.22 +/- 18.52 years) with SCHF in New York Heart Association functional class III-IV and nine normal control subjects (eight men and one woman aged 56.96 +/- 18.14 years) were studied. We analyzed early (E) and late (A) LV filling velocities, E/A ratios, deceleration time, mitral time-velocity integral in each decubitus position, and the differences between them. Patients with SCHF have smaller mitral time-velocity integral, shorter deceleration time, greater E velocity and E/A ratio, and lower A velocity in LLD position than do normal control subjects. On assuming RLD position, patients with SCHF show decreases in E velocity and E/A ratio and lengthening of the deceleration time, suggesting a decrease in LV preload on changing position. This pathophysiologic mechanism may explain why patients with SCHF willingly adopt RLD position.
PURPOSE: The purpose of this work was to describe the MR appearance of tears of the subscapularis tendon and compare the usefulness of different imaging planes as well as note the association of subscapularis tears with other rotator cuff tears and biceps tendon dislocations. METHOD: MR studies at 1.5 T over an 8 year interval were retrospectively assessed for the presence of a rotator cuff tear and/or tear of the subscapularis tendon. Images that showed a subscapularis tear were reviewed for the presence of a visible tear separately on the axial, coronal, and sagittal images. The MR studies were also evaluated for associated tears of the supraspinatus, infraspinatus, and teres minor muscles as well as biceps tendon dislocation and the "naked humerus sign" on coronal images. Last, clinical records and surgical reports were reviewed. RESULTS: Forty-five (2%) of 2,167 rotator cuff tears involved the subscapularis; 27% were partial and 73% were complete tears. Tears were best seen in the sagittal oblique plane. Almost all subscapularis tears were an extension of typical rotator cuff tears: supraspinatus in 35 patients (79%), extending into infraspinatus tears in 25 (56%) and into teres minor tears in 2 patients (4%). Bicipital dislocations were seen in 22 patients (49%), and three complete tears of the biceps (7%) were noted as well. The naked humerus sign was demonstrated in 31 patients (69%). Surgical reports that confirmed the MR findings were available for 15 patients. CONCLUSION: About 2% of rotator cuff tears involve the subscapularis tendon. Most subscapularis tears are extensions of supraspinatus tears and frequently involve the biceps tendon.
This article reviews the current literature on the uses of capnometry and capnography as applied to neonates. The first part addresses the technical aspects and principles of the measurements, including definitions. The features of available carbon dioxide analysers are discussed and factors known to influence their accuracy are highlighted. In the second part of this paper, in vivo studies in neonates are reviewed, with particular emphasis on understanding why the accuracy of end-tidal CO2 measurements differs among studies. This is attributable to various factors: aspiration flow rate, the sampling site (whether distal or proximal) and the type of capnometer. The critical limitation of their overall accuracy in the presence of lung disease is discussed. Potential applications are considered, as are the current limitations of transcutaneous monitoring. We conclude that capnometry with capnography is a potentially useful tool to arterial CO2 tension (PaCO2) monitor infants with normal lungs.
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