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Takashi Kosuge

Publications and source records attributed to Takashi Kosuge.

2 recordsLinked to original sources

Treatment of benign prostatic hyperplasia using transurethral microwave thermotherapy and dilatation with double-balloon catheter.

PURPOSE: To improve the outcome of transurethral microwave thermotherapy (TUMT) for the treatment of benign prostatic hyperplasia, we combined TUMT and balloon dilatation (BD) with a double-balloon catheter and investigated its effects. PATIENTS AND METHODS: For a short-term trial, 40 patients were divided randomly into two groups: 20 patients received TUMT alone, and the other 20 received TUMT followed by BD. The degrees of symptoms were graded according to the International Prostate Symptom Score and Quality of Life score, and the peak urinary flow rate was measured before and 10 weeks after treatment. A historic control study of 527 patients was also performed to evaluate the long-term re-treatment rate: 98 of the patients received TUMT alone, and the other 429 patients received TUMT followed by BD. RESULTS: The symptom scores improved significantly in both groups. The peak uroflow rate was significantly increased in the group who received TUMT followed by BD (P < 0.01), whereas the change was not significant in the TUMT-alone group. Significant sustainability of long-term effects was more evident in patients receiving TUMT plus BD than in the TUMT-alone group, as judged by the higher proportion of BD-treated patients who required no further treatment during the 5-year study period in comparison with patients who received TUMT alone (66.3% v 28.6%, respectively; P < 0.001). CONCLUSIONS: Combined TUMT and BD achieves sufficient subjective and objective improvement and a sustainable long-term effect. We consider this combination technique to be useful for the treatment of prostatic hyperplasia.

Aged↗

Secure UNIX socket-based controlling system for high-throughput protein crystallography experiments.

A control system for high-throughput protein crystallography experiments has been developed based on a multilevel secure (SSL v2/v3) UNIX socket under the Linux operating system. Main features of protein crystallography experiments (purification, crystallization, loop preparation, data collecting, data processing) are dealt with by the software. All information necessary to perform protein crystallography experiments is stored (except raw X-ray data, that are stored in Network File Server) in a relational database (MySQL). The system consists of several servers and clients. TCP/IP secure UNIX sockets with four predefined behaviors [(a) listening to a request followed by a reply, (b) sending a request and waiting for a reply, (c) listening to a broadcast message, and (d) sending a broadcast message] support communications between all servers and clients allowing one to control experiments, view data, edit experimental conditions and perform data processing remotely. The usage of the interface software is well suited for developing well organized control software with a hierarchical structure of different software units (Gaponov et al., 1998), which will pass and receive different types of information. All communication is divided into two parts: low and top levels. Large and complicated control tasks are split into several smaller ones, which can be processed by control clients independently. For communicating with experimental equipment (beamline optical elements, robots, and specialized experimental equipment etc.), the STARS server, developed at the Photon Factory, is used (Kosuge et al., 2002). The STARS server allows any application with an open socket to be connected with any other clients that control experimental equipment. Majority of the source code is written in C/C++. GUI modules of the system were built mainly using Glade user interface builder for GTK+ and Gnome under Red Hat Linux 7.1 operating system.

Crystallography↗