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[Investigation on computative spectrophotometry employed in the assay of peaonol in cortex moutan].

OBJECTIVE: To investigate the easibility of employed computative spectrophotometry in the assay of traditional Chinese medicines. METHOD: Make contents of peaonol in 10 samples of Cortex Moutan were determined by three-wavelength spectrophotometry and dual wavelength K-ratio spectrophotometry, and then compared with the method in Chinese Pharmacopeia. RESULT: The differences of the UV spectrum of different lots of samples bring about relative error. sometimes up to 10%-30% for computative spectrophotometry. CONCLUSION: Computative spectrophotometry should be used carefully in assaying traditional Chinese medicines.

Acetophenones↗

[Determination of lignin content in tiny Panax ginseng by UV spectrophotometry].

OBJECTIVE: To establish the UV spectrophotometry for determining lignin content in tiny Panax ginseng powder. METHODS: Classical Klason method and UV spectrophotometry were used. RESULTS: The lignin contents measured by UV spectrophotometry were higher, more repeatable and accurate as comparison with the Klason method. The specific absorptance peak of ginseng lignin appeared at 260 nm. The acetyl bromide treatment of the UV spectrophotometry was processed for ginseng powder at 70 degrees C for 30 minutes. It is also concluded that the lignin contents were obvious different among various ginsengs. CONCLUSION: UV spectrophotometry is simple, accurate and just need a little materials. It is especially suitable to determine the lignin content for ginseng and other precious Chinese traditional medicines.

Lignin↗

Clinical evaluation of reflectance spectrophotometry for the measurement of gastric microvascular oxygen saturation in patients undergoing cardiopulmonary bypass.

OBJECTIVE: To evaluate the impact of cardiopulmonary bypass (CPB) on gastric mucosal oxygen saturation assessed by reflectance spectrophotometry in patients undergoing coronary artery bypass graft surgery. DESIGN: Prospective, observational study. SETTING: A division of cardiothoracic anesthesia in a university hospital. PARTICIPANTS: Twelve consecutive patients undergoing CPB. INTERVENTIONS: Monitoring, anesthesia, surgical procedure, and CPB for the patients followed routine clinical protocol as established in the departments. Microvascular oxygen saturation in gastric mucosa was assessed by reflectance spectrophotometry before, during, and after CPB. MEASUREMENTS AND MAIN RESULTS: Gastric mucosal oxygen saturation averaged 65 +/- 7% (mean +/- SD) before CPB, decreased significantly to 57 +/- 9% during CPB (p < 0.01), and was 59 +/- 8% after CPB. These changes in regional oxygen saturation were not mirrored in variables of systemic oxygenation. Gastric mucosal oxygen saturation always showed instantaneous reactions to various surgical and pharmacologic interventions. CONCLUSION: Reflectance spectrophotometry allowed the authors to assess gastric mucosal oxygen saturation with a high repetition rate, regardless of spontaneous circulation with pulsatile flow or nonpulsatile flow during CPB. This technique provided the means to monitor on-line the course of tissue oxygen saturation throughout the operative procedure. Reflectance spectrophotometry is an appropriate and sensitive assessment tool to monitor gastric mucosal oxygen saturation in patients undergoing CPB.

Aged↗

Measurement of blood volume using indocyanine green measured with pulse-spectrophotometry: its reproducibility and reliability.

OBJECTIVE: To systematically investigate the reproducibility and reliability of a newly developed, less invasive approach of estimating blood volume (BV), using indocyanine green (ICG) measured with pulse-spectrophotometry. DESIGN: Prospective, clinical study. SETTING: Surgical unit at a university hospital. PATIENTS: Twenty-two patients undergoing general anesthesia for elective surgery and seven healthy volunteers. INTERVENTIONS: Catheters were inserted into the forearm veins of healthy volunteers for the administration of ICG and blood sampling for the measurement of hemoglobin concentration. MEASUREMENTS AND MAIN RESULTS: The distribution volumes of ICG in seven healthy volunteers were estimated repetitively following three or four consecutive intravenous administrations at 30-min intervals. A low intrasubject coefficient of variation of 3.94 +/- 2.03 (SEM) % and a reasonable intersubject coefficient of variation of 13.3 +/- 5.52% (in mL/kg) for the BV measurements were obtained. In addition, ICG was administered to 22 patients, first under general anesthesia by a bolus, and then by a bolus with a constant-rate infusion. The ICG blood concentration was noninvasively measured with pulse-spectrophotometry. The blood concentration time courses following both bolus and constant-rate infusion were well fitted by the one-compartment model, indicating that the distribution equilibrium of ICG is instantaneous. The distribution volumes estimated following bolus injection correlate closely with the distribution volume estimated based on constant-rate infusion administration (r2 = .90). CONCLUSIONS: The BV estimation with a bolus injection of ICG and pulse-spectrophotometry is reliable, as reflected by the reproducible BVs estimated in the same subject. The integrated pulse-spectrophotometry monitoring system offers a less invasive and useful tool for bedside estimation of BV.

Adolescent↗

Visual inspection versus spectrophotometry in detecting bilirubin in cerebrospinal fluid.

OBJECTIVES: To compare the diagnostic accuracy of visual inspection and spectrophotometry for identifying the presence of bilirubin in the cerebrospinal fluid (CSF). METHODS: Clinicians and students assessed CSF specimens with seven degrees of extinction between 0.00 and 0.09 at 450-460 nm as "yellow," "doubtful," or "colourless" after random presentation under standard conditions. The assessments were compared with spectrophotometry, with 0.05 being taken as the cut off level for the presence of bilirubin. Results were compared between the two groups and explored by means of receiver operating characteristic (ROC) curves. RESULTS: All 51 clinicians and 50 of 51 students scored the tubes with extinction of 0.06 or higher as "yellow" or "doubtful." Tubes without any bilirubin were scored as "yellow" by three of the students only. The ROC curves confirmed that the diagnostic properties of the visual inspection versus spectrophotometry were slightly better for the clinicians than for the students. CONCLUSIONS: If CSF is considered colourless, the extinction of bilirubin is too low to be compatible with a diagnosis of recent subarachnoid haemorrhage. If CSF is not considered colourless, spectrophotometry should be carried out to determine the level of extinction of bilirubin.

Bilirubin↗

Should spectrophotometry be used to identify xanthochromia in the cerebrospinal fluid of alert patients suspected of having subarachnoid hemorrhage?

BACKGROUND AND PURPOSE: The absence of xanthochromia in the cerebrospinal fluid (CSF) is often used to exclude subarachnoid hemorrhage (SAH). Authorities advocate spectrophotometry to measure xanthochromia, but most North American hospitals use visual inspection. We studied the diagnostic accuracy of spectrophotometry for SAH, and its potential impact on current practice. METHODS: This was a prospective cohort study comparing the diagnostic accuracy of tests. The study was set in 3 university-affiliated tertiary care emergency departments. We enrolled consecutive neurologically intact adults with nontraumatic headache undergoing lumbar puncture (LP) to rule out SAH. CSF was centrifuged, frozen and analyzed later in batch. SAH was defined by (1) subarachnoid blood on CT, (2) >5x10(6) red blood cells/L in the final CSF tube and positive angiography, or (3) visible xanthochromia in CSF and positive angiography. All subjects lacking a normal CT and LP were telephoned at 30 days. RESULTS: We enrolled 220 patients (mean age 42+/-16 years; CT rate 87.7%; angiography rate 5.9%). Two SAHs were identified: 1 with red blood cells without xanthochromia in the CSF and 1 with visibly xanthochromic CSF. The specificity of xanthochromia was 97% (95% CI: 92% to 99%) for visual inspection, but as low as 29% (95% CI: 23% to 35%) for 2 of the spectrophotometric definitions. Introducing spectrophotometry could lead to angiography in as many as 11% to 71% of patients undergoing LP. CONCLUSIONS: Spectrophotometric definitions of xanthochromia have only moderate to low specificity for SAH. Using spectrophotometry could increase angiography rates, thereby identifying more incidental aneurysms, increasing patient anxiety and exposing patients to unnecessary surgical or investigational complications without benefit.

Adult↗

[Quantitative determination of total flavonoids in sea-buckthorn fruit juice by three wavelength spectrophotometry].

Numerous studies dealing with the quantitative determination of total flavonoids in sea-buckthorn fruit juice by spectrophotometry are presented. The flavonoids in sea-buckthorn fruit juice and aluminate produce stable complex whose absorption occurred at longer wavelength. To determine the total flavonoids in sea-buckthorn fruit juice by traditional spectrophotometry method, baseline shift and asymmetric absorption peak occurred on the absorption curve. Quantitative determination of flavonoids in sea-buckthorn fruit juice by three wavelength spectrophotometry method can eliminate the absorbance error caused interfering components in turbid solution and the scattering effect. Background changing with the concentration change and asymmetric absorption peak problems can also be solved. The regression equation of concentration vs deltaA was obtained: deltaA = - 0.00703 + 0.00048c with a relation coefficient gamma = 0.9991. The experimental results demostrate the total flavonoids concentrations in 0-800 microg x mL(-1) with deltaA obeying linear relation when the absorbance was measured at wavelength lambda1 = 495 nm, lambda2 = 415 nm and lambda3 = 368 nm. The recovery is 97.0%-101.0% and the coefficient of variation is 0.058% (n = 9). The method is more advantageous than tranditional spectrophotometry method.

Algorithms↗

Continuous monitoring of gastroduodenal mucosal hemodynamics in rats by laser-Doppler flowmetry and reflectance spectrophotometry.

Gastroduodenal mucosal hemodynamics in rats was monitored continuously by laser-Doppler flowmetry (LDF) and reflectance spectrophotometry, and the validity of these techniques was determined. Corpus mucosal hemodynamics was recorded for 90 min, under stable conditions. In cases of graded hemorrhagic hypotension, corpus mucosal blood flow by LDF and hydrogen gas clearance, and potential differences showed a good correlation. Corpus, antral, and duodenal mucosal hemodynamics monitored by LDF, hydrogen gas clearance, and reflectance spectrophotometry reflected regional hemodynamic differences. In monitoring mucosal hemodynamics by LDF and reflectance spectrophotometry, regular oscillations (4-6 cycles/min) were observed in most animals. The characteristic change of oscillations during graded hemorrhagic hypotension was thus elucidated. In moderate hypotension (50-90 mmHg), high-amplitude and high-frequency (5-10 cycles/min) oscillations were observed, while in cases of severe hypotension (25-40 mmHg), the oscillations almost ceased. Observation of the oscillatory changes is thus a new application of LDF and reflectance spectrophotometry.

Animals↗

Comparison of UV and fluorescence spectrophotometry for the quantification of a potent myotonia inducer: anthracene-9-carboxylic acid, in plasma, urine, and saline perfusion fluids.

UV and fluorescence spectrophotometry were used to establish the analytical profile of a potent myotonia inducer, anthracene-9-carboxylic acid (I). UV spectrophotometry is useful for the determination of I when it is dissolved in physiological solutions (Ringer's, Tyrode's, etc). In these fluids there is a linear relationship between UV absorption and I concentration between 500 and 2000 ng/ml (2.25-9.0 X 10(-6)M). However, in biological fluids there are interferences in the UV absorption due to organic substances. On the other hand, fluorescence spectrophotometry is more sensitive than UV for determinations in plasma and urine. Within the range of 200-1000 ng/ml (0.9-4.5 X 10(-6) M) fluorescence intensity increases linearly with concentration. Furthermore, when both emission and excitation spectra are combined there are no interferences due to organic substances normally present in those fluids. An extraction procedure of I from plasma and urine is also described, and the importance of I determinations in relation to the problem of this myotonia-inducing aromatic monocarboxylic acid is discussed.

Animals↗

Mathematical analysis of hemoglobin spectrophotometry in microvessels.

Spectrophotometry of hemoglobin in microvessels is commonly performed by collecting light either from a small region around the vessel centerline or from the entire lumen of the vessel. In the latter instance, parallel rays of light may not encounter the same amount of absorbing species. Hence, a phenomenon similar to the sieve effect reported in the literature on hemoglobin spectrophotometry may be expected to occur. Although it has been observed that under such circumstances nonlinearities in calibration characteristics arise, the implications of this effect on the interpretation of the spectrophotometric mean concentration have never been addressed so far. Mathematical analysis of hemoglobin spectrophotometry in microvessels, performed in this study, reveals that for practical situations the calibration curve is indeed nonlinear. Moreover, the spectrophotometric mean oxygen saturation is an overestimate of the mean oxygen saturation during oxygenation and an underestimate of the mean oxygen saturation during deoxygenation. These deviations depend upon the manner in which the total heme concentration is distributed within the lumen. Application of the analysis to artificial microvessels showed that the observed superior oxygen transport characteristics of flowing erythrocyte suspensions and hemoglobin solution mixtures could in part be due to the assumptions underlying the procedure used to interpret the experimental results. The implications of this result on models for oxygen transport in microvessels are discussed along with possible resolutions.

Calibration↗

Quantitative analysis and evaluation of the solubility of hydrophobic proteins recovered from brain, heart and urine using UV-visible spectrophotometry.

There is a need for a simple method that can directly quantify hydrophobic proteins. UV-visible spectrophotometry was applied in the present study for this purpose. Absorbance at lambda = 280 nm (A280) was detected for both Escherichia coli membrane proteins and bovine serum albumin, whereas absorbance at lambda = 620 nm (A620) was only detected for E. coli membrane proteins. The A620 values of the brain samples were greater than those of heart samples when equal concentrations were used, regardless of the type of solubilizing agent employed. Because hydrophobic proteins tend to form colloidal microparticles in solution, we also applied UV-visible spectrophotometry to evaluate the efficacies of different extraction protocols for solubilizing hydrophobic proteins. For brain protein extraction, the highest A620 was observed in samples recovered using Tris, whereas the lowest was from samples recovered using SDS. Solubilizing brain tissue with 0.25% SDS (above the CMC) gave a lower A620 than extraction with 0.025% SDS (below the CMC). Addition of 0.25% SDS to samples recovered with Triton caused A620 to drop. A620 could also be used to distinguish between the hydrophobic fractions (pellets) of brain and urine proteins and their hydrophilic fractions (supernatants) prefractionated using high-speed centrifugation. Additionally, an A620/A280 ratio exceeding 0.12 appears to denote highly hydrophobic samples. Our data suggest that direct UV-visible spectrophotometry can be used as a simple method to quantify and evaluate the solubilities of hydrophobic proteins.

Animals↗

The effect of white light exposure on the rabbit eye lens as measured by fluorophotometry and spectrophotometry.

Fluorophotometry and spectrophotometry of the rabbit lens were performed after white light exposure to detect possible changes in the lens before damage could be seen by biomicroscopic slit lamp examination. In nine rabbits the lens of one eye was exposed to white light and that of the fellow eye was used as a control. The incident light power was 240 mW for 90 min on a lenticular area of 3 mm2. Slit lamp examination of lens and cornea prior to, 1 hr after and 2 days after light exposure did not reveal any sign of damage. The mean in vivo autofluorescence ratio between exposed lens and non-exposed fellow lens was found to increase significantly from 1.0 +/- 0.08 S.D. (n = 9) before exposure to 3.3 +/- 0.8 S.D. (n = 9; P less than 0.004) 1 hr after exposure and hereafter to decay exponentially with a half time of 0.8 days to the ratio before exposure (correlation coefficient: -0.97, P = 0.0013). Three additional rabbits were exposed as described above with subsequent in vitro spectrophotometry of the lenses between 400 and 800 nm revealing an absorbance peak at 468 nm with a half width of 10 nm. The ratio between the absorbance peak of exposed lens and non-exposed fellow lens was found to increase from 1.1 before exposure to 2.8 1 hr after exposure and then to decrease to 1.4 at 1 day after exposure. The corresponding autofluorescence ratios measured in vivo before spectrophotometry were 0.93, 2.6 and 1.5, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Spectrophotometric resolution of metronidazole and miconazole nitrate in ovules using ratio spectra derivative spectrophotometry and RP-LC.

Metronidazole and miconazole nitrate in ovules was determined by ratio spectra derivative spectrophotometry and by high-performance liquid chromatography (HPLC). The first method depends on ratio spectra first derivative spectrophotometry, by utilizing the linear relationship between substances concentration and ratio spectra first derivative peak amplitude. The ratio first derivative amplitudes at 242.6 [(1)DD(242.6)], 274.2 [(1)DD(274.2))] 261.8 [(1)DD(261.8))] 273.5 [(1)DD(273.5))]and 281.5 [(1)DD(281.5)] nm were selected for the assay of metronidazole and miconazole nitrate, respectively. The second method is based on high-performance liquid chromatography on a reversed-phase column using a mobile phase of methanol-water-phosphoric acid (30:70:0.20 v/v) (pH 2.8) with programmable detection at 220.0 nm. The minimum concentration detectable by HPLC was 0.9 microg ml(-1) for metronidazole and 0.3 microg ml(-1) for miconazole nitrate and by ratio derivative spectrophotometry 4.0 microg ml(-1) for metronidazole and 0.5 microg ml(-1) for miconazole nitrate. The proposed procedures were successfully applied to the simultaneous determination of metronidazole and miconazole nitrate in ovules with a high percentage of recovery, good accuracy and precision.

Anti-Infective Agents↗

Heavy metal-nucleoside interactions. Binding of methylmercury(II) to inosine and catalysis of the isotopic exchange of the C-8 hydrogen studied by 1-H nuclear magnetic resonance and raman difference spectrophotometry.

Raman difference spectrophotometry reveals that CH3HgII binds quantitatively to N(1) of inosine at pH 8, substituting for the proton. When N(1) is saturated, binding occurs at a second site. Measurements of the 1-H nuclear magnetic resonance spectra of both inosine and of CH3Hg-II are in agreement with the N(1) binding and indicate that the second site for mercuriation is N(7). This second binding reaction is observed to increase the rate of exchange of the C(8) hydrogen with solvent, consistent with results observed for alkylation at N(7). Coordination of the electrophilic CH3Hg-II to N(7) increases the acidity of H(8), facilitating OHminus--catalyzed proton abstraction and reprotonation by themedium. For comparison, the reaction of CH3Hg-II with [8-2-H]inosine has been studied. Displacement of the N(1) hydrogen upon mercuriation of inosine causes a significant electron delocalization into the ring, increasing the basicity of N(7), and accounting for the synergic effect in metal binding observed originally by Simpson. In contrast, 1-methylinosine interacts only slightly with CH3Hg-II at pH 8. Coordination appears to be at N(7), since H(8) again is observed to exchange rapidly with solvent protons. In acidic solution, pH less than 2, binding to inosine is almost quantitative and exclusively to N(7). The behavior of CH3Hg-II is compared with that of Pt(II) and with Ni(II), Co(II), AND Zn(II). A brief comparison is made among ultraviolet absorption spectrophotometry, nuclear magnetic resonance (NMR), and Raman difference spectrophotometry for studying reactions of nucleosides and nucleotides.

Binding Sites↗

Pore selectivity analysis of an aquaglyceroporin by stopped-flow spectrophotometry on bacterial cell suspensions.

Background information. Transport of water and small neutral solutes across plasma membranes is facilitated by AQP (aquaporin) and aquaglyceroporin channels, which belong to the MIP (major intrinsic protein) family. So far, more than 800 MIP proteins have been identified on the basis of sequence homology, but only less than 10% of them have been functionally characterized. In most studies, the channel properties of MIP proteins have been determined by using Xenopus oocyte swelling assays or stopped-flow spectrophotometry on proteoliposomes. As both methods sometimes present disadvantages, we developed an alternative method for analysing MIP function.Results. The kinetics of plasmolysis or deplasmolysis of Escherichia coli cells in suspension, in response to osmotic challenges, was analysed by stopped-flow spectrophotometry. Cytoplasmic volume variations were monitored either by GFP (green fluorescent protein) fluorescence quenching or by 90 degrees scattered light. The single exponential response to up-shocks in the impermeant solute mannitol was strongly accelerated when the cells expressed the native E. coli AQP AqpZ (rate constant 37.24 versus 3.05 s(-1) for control cells). The responses to hyperosmotic shocks realized with glycerol were biphasic. First, a light-scattering increase corresponded to cell plasmolysis. Secondly, deplasmolysis occurred when glycerol entered into the cell. Both phases were accelerated when the aquaglyceroporin GlpF was present in cell membranes. We concluded that the behaviour of MIP-expressing bacteria in the stopped-flow system was qualitatively identical with that reported for MIP-expressing oocytes or MIP-containing proteoliposomes. We then used this system to analyse the effects of mutations in the pore constriction of Gla(Llac), the aquaglyceroporin from Lactococcus lactis. In the present study, we show that Gla(Llac) loses its ability to transport glycerol but retains its ability to transport water when Val(223) was replaced by a histidine, the residue at the equivalent position in strict AQPs.Conclusions. These results show that stopped-flow spectrophotometry performed on E. coli cell suspensions is a useful experimental system to analyse the selectivity of wild-type or mutant MIP proteins and that a bifunctional aquaglyceroporin switches to an AQP by a single amino acid mutation in the pore constriction.

Animals↗

Combined microlightguide spectrophotometry and microendoscopy for measurement of oxygen saturation in peripheral nerves.

Microlightguide measurements of the spectral composition of backscattered light may be used to determine local tissue oxygen saturation and monitor tissue perfusion using intravenous injection of fluorescein dye as a contrast agent. We have used a combination of microlightguide spectrophotometry and microendoscopy to measure intravascular oxygen saturation (HbSaO2%) and monitor blood flow in the sciatic nerve of 12 healthy male Sprague-Dawley rats. The microlightguide and endoscope combination is a relatively new measurement technique. The aims of this study were to determine whether microlightguide spectrophotometry and microendoscopy could be used to measure HbO2 and blood flow in peripheral nerves and to compare the measurements made using the flexible lightguide with the endoscope-lightguide combination. We found no significant difference between the two types of measurement over similar regions of the nerve. mean SaO2% values 77.1% (95% CI = 75.4-78.8) and 78.8% (95% CI = 77.5-80.1) respectively. During a period of hypoxia there was a similar fall in both arterial and nerve oxygen saturation. Following injection of fluorescein, the rate of increase in nerve fluorescence was used as a measure of perfusion. The combination of microlightguide spectrophotometry and microendoscopy allows the exact site of measurement to be directly visualized. The minimally invasive nature of this technique may allow its application to the study of peripheral nerves in human subjects in conditions such as diabetic neuropathy where vascular factors are thought to have an important role in aetiology.

Animals↗

Effect of acid on duodenal blood flow and mucus secretion measured by reflectance spectrophotometry: a prospective, randomized-controlled study.

BACKGROUND: In animals, hydrochloric acid increases blood flow and mucus secretion in the duodenal mucosa. A significant correlation between index of haemoglobin oxygen saturation and mucosal blood flow, and between change in index of haemoglobin concentration and mucus thickness, respectively, has been demonstrated by reflectance spectrophotometry. AIM: To examine the effect of topical hydrochloric acid upon mucosal blood flow and mucus secretion in the human duodenum. METHODS: This prospective study of 120 patients undergoing routine upper endoscopy, examined the effect of topical 0.1 n hydrochloric acid or 0.9% saline on the duodenal bulb in a randomized, double-blind fashion. Duodenal mucosal index of haemoglobin oxygen saturation and index of haemoglobin concentration were measured by endoscopic reflectance spectrophotometry before and after hydrochloric acid or saline. RESULTS: Baseline index of haemoglobin oxygen saturation, calculated blood flow and index of haemoglobin concentration measurements were comparable between hydrochloric acid (n = 60) and saline (n = 60) treated groups. A history of current use of non-steroidal anti-inflammatory drug was associated with a significantly lower baseline index of haemoglobin oxygen saturation and calculated blood flow. Hydrochloric acid resulted in a significant increase in index of haemoglobin oxygen saturation and calculated blood flow, but a decrease in index of haemoglobin concentration, reflecting an increase in mucus thickness compared with saline. CONCLUSIONS: Our observations in humans confirm data in animal studies that topical exposure to hydrochloric acid induces an increase in duodenal mucosal blood flow and mucus secretion. Post hoc analysis of the data also revealed that attenuation of basal duodenal mucosal blood flow is associated with a history of current non-steroidal anti-inflammatory drug use. Endoscopic reflectance spectrophotometry appears to be adequate to assess factors that influence duodenal defence mechanisms of blood flow and mucus secretion in humans.

Duodenum↗

Computer tomography compared with spectrophotometry of cerebrospinal fluid in cerebrovascular diseases.

Eighty patients with cerebrovascular diseases were examined by computer tomography and spectrophotometry of CSF, most cases being followed by repeat examinations. Specific diagnoses were obtained in 76 per cent of the cases at tomography and in 95 per cent at spectrophotometry, generally at one examination. In cases examined angiographically or by isotope encephalography, the corresponding figures were 60 and 58 per cent. Twenty patients with confirmed haemorrhage or infarction examined only at tomography further indicated the high diagnostic significance of this method. The combination of tomography and spectrophotometry, being complementary to each other, obviously means a break-through in the diagnosis of cerebrovascular diseases, which is a prerequisite for a more rational therapy of these common and frequently disabling disorders.

Brain↗