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Testicular blood flow and a study of the testicular venous to arterial transfer of radioactive krypton and testosterone in the rhesus monkey

机译:恒河猴的睾丸血流和睾丸静脉向放射性k和睾酮的动脉转移的研究

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摘要

1. Testicular blood flow (ml. 100 g-1.min-1; mean ± S.E. of the mean) measured in monkeys by 133Xe clearance was 15·9 ± 1·2 (twenty-six estimations on three monkeys; six testes) within 15 min of anaesthesia and 7·5 ± 0·8 (twelve estimates; four monkeys, eight testes), after 1-2 hr of anaesthesia; and, when measured by 85Kr clearance in the second hour of anaesthesia was 9·1 ± 3·7 (seven estimates; four monkeys, four testes). Testicular temperature was 32·9 ± 0·2° C (mean ± S.E. of mean) when deep body temperature was 37·2 ± 0·2° C.2. Blood flow in the caput epididymidis was 27·4 ± 2·1 ml. 100 g-1.min-1 (mean ± S.E. of mean; four estimates).3. Radioactivity accumulated in the ipsilateral testis and epididymis but not in the contralateral tissues, during the infusion of 85Kr saline into the testicular veins.4. During [3H]testosterone infusions into the testicular veins, radioactivity was consistently higher in ipsilateral testicular arterial plasma than in plasma withdrawn simultaneously from the aorta in four of five experiments with no difference in one. After two such infusions, the radioactivity was up to 5 times greater in the ipsilateral testis and epididymis than in the contralateral tissues.5. During one infusion of [125I]bovine serum albumin into the testicular veins, there was no accumulation of radioactivity in the ipsilateral tissues.6. Testosterone concentrations (ng.ml-1; mean ± S.E. of mean) in plasma from seven anaesthetized monkeys which were sexually experienced were: testicular vein 53·22 ± 8·03 (eight estimates); testicular artery, 4·58 ± 0·94 (14); saphenous vein, 3·81 ± 0·68 (14). The corresponding values from four sexually inexperienced monkeys were 25·27 ± 2·11 (12); 2·89 ± 1·99 (12); aorta 2·76 ± 0·57 (12).7. The results are discussed as evidence for vascular exchange of molecules between the testicular veins and artery in the spermatic cord.
机译:1.在猴子中通过 133 测量的睾丸血流量(ml。100 g -1 .min -1 ;平均值±标准误差的SE)麻醉后15分钟内,Xe清除率为15·9±1·2(三只猴子;六只睾丸,二十六个估计值); 1-2次后,Xe清除率为7·5±0·8(十二只猴子;四只猴子,八只睾丸)。麻醉时间通过麻醉后第二小时的 85 Kr清除率测量为9·1±3·7(七个估计值;四只猴子,四只睾丸)。当深体温度为37·2±0·2°C时,睾丸温度为32·9±0·2°C(平均值的平均值±标准误差)。附睾附睾的血流量为27·4±2·1 ml。 100 g -1 .min -1 (平均值±标准误差;四个估计值); 3。 85 Kr盐水注入睾丸静脉的过程中,放射性积累在同侧睾丸和附睾中,而没有积累在对侧组织中。4。在5个实验中的4个实验中,在[ 3 H]睾丸激素输注到睾丸静脉期间,同侧睾丸动脉血浆中的放射活性始终高于同时从主动脉中抽出的血浆中的放射性,而一项没有差异。两次输注后,同侧睾丸和附睾的放射性比对侧组织高5倍。5。在睾丸静脉中一次注入[ 125 I]牛血清白蛋白时,同侧组织中没有放射性积累。6。七只有性经历的麻醉猴子血浆中睾丸激素的浓度(ng.ml -1 ;平均值±平均值的标准偏差)为:睾丸静脉53·22±8·03(8个估计值);睾丸动脉,4·58±0·94(14);隐静脉,3·81±0·68(14)。来自四只没有性经验的猴子的对应值为25·27±2·11(12); 2·89±1·99(12);主动脉2·76±0·57(12).7。讨论结果作为精索中睾丸静脉和动脉之间分子交换的证据。

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