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Biomedical subjects

W Seeger

Publications and source records attributed to W Seeger.

At least 235 records · Page 13Linked to original sources

Aerosolised prostacyclin in adult respiratory distress syndrome.

We studied the effects of aerosolised prostacyclin (PGI2) in three patients with acute severe adult respiratory distress syndrome. 17-50 ng/kg per min, nebulised into the afferent limb of the ventilator circuit, decreased mean pulmonary artery pressure (SEM) from 40.3 (13.5) to 32.0 (3.8) mm Hg (pulmonary vascular resistance fell by 30%); systemic arterial pressure decreased slightly from 76.8 (2.2) to 74.5 (6.1) mm Hg. Concomitantly, the ratio of arterial oxygen partial pressure to the fraction of inspired oxygen increased from 120 (19) to 173 (18), mainly due to redistribution of blood flow from shunt areas to regions of normal ventilation-perfusion. All effects were reversed on drug withdrawal.

Adult↗

Alveolar surfactant and adult respiratory distress syndrome. Pathogenetic role and therapeutic prospects.

The adult respiratory distress syndrome (ARDS) is characterized by extended inflammatory processes in the lung microvascular, interstitial, and alveolar compartments, resulting in vasomotor disturbances, plasma leakage, cell injury, and complex gas exchange disturbances. Abnormalities in the alveolar surfactant system have long been implicated in the pathogenetic sequelae of this life-threatening syndrome. This hypothesis is supported by similarities in pulmonary failure between patients with ARDS and preterm babies with infant respiratory distress syndrome, known to be triggered primarily by lack of surfactant material. Mechanisms of surfactant alterations in ARDS include: (a) lack of surface-active compounds (phospholipids, apoproteins) due to reduced generation/release by diseased pneumocytes or to increased loss of material (this feature includes changes in the relative composition of the surfactant phospholipid and/or apoprotein profiles); (b) inhibition of surfactant function by plasma protein leakage (inhibitory potencies of different plasma proteins have been defined); (c) "incorporation" of surfactant phospholipids and apoproteins into polymerizing fibrin upon hyaline membrane formation; and (d) damage/inhibition of surfactant compounds by inflammatory mediators (proteases, oxidants, nonsurfactant lipids). Alterations in alveolar surfactant function may well contribute to a variety of pathophysiological key events encountered in ARDS. These include decrease in compliance, ventilation-perfusion mismatch including shunt flow due to altered gas flow distribution (atelectasis, partial alveolar collapse, small airway collapse), and lung edema formation. Moreover, more speculative at the present time, surfactant abnormalities may add to a reduction in alveolar host defense competence and an upregulation of inflammatory events under conditions of ARDS. Persistent atelectasis of surfactant-deficient and in particular fibrin-loaded alveoli may represent a key event to trigger fibroblast proliferation and fibrosis in late ARDS ("collapse induration"). Overall, the presently available data on surfactant abnormalities in ARDS lend credit to therapeutic trials with transbronchial surfactant administration. In addition to the classical goals of replacement therapy defined for preterm infants (rapid improvement in lung compliance and gas exchange), this approach will have to consider its impact on host defense competence and inflammatory and proliferative processes when applied in adults with respiratory failure.

Apoproteins↗

Computer-assisted morphometry of the intracapillary leukocyte pool in the rabbit lung.

Computer-assisted morphometry was performed to evaluate the number and cell characteristics of capillary and alveolar leukocytes in rabbit lungs. An image-processing system and a programmable spread-sheet program were used, which allowed morphometric analysis of a large reference area. Neutrophils represented the largest intracapillary leukocyte population (2.2 x 10(7)/ml parenchyma, which corresponds to an approximately 104-fold microvascular enrichment of this cell type related to cell counts calculated for the capillary blood volume). In addition, large numbers of intracapillary lymphocytes (1.7 x 10(7)/ml parenchyma; 47-fold enrichment) and monocytes (0.3 x 10(7)/ml parenchyma; 86-fold enrichment) were detected. The total count of pulmonary leukocytes thus approximated the total number of pulmonary endothelial cells; and the total circulating pools of the different leukocytes were surpassed by the corresponding lung capillary pools, 3.2-fold for neutrophils, 1.2-fold for lymphocytes and 4.8-fold for monocytes. In contrast, alveolar cell numbers ranged from 1-2% of the capillary counts for all types of leukocytes. We conclude that the rabbit lung microvasculature harbours large pools of immunocompetent cells, which may contribute to host-defense mechanisms at the gas-exchange area.

Animals↗

[Image quality evaluation and dosage requirements of digital image intensifier radiography].

In the course of a study of the advantages and disadvantages of digital image intensifier radiography, image quality and dose requirements were measured, using a phantom. Spatial resolution was related to exposure parameters, the differentiation of structural details at varying contrast concentrations and the phantom entry doses. Spatial resolution was approximately 1.8-2.0 line pairs/mm (lp/mm) and there was no recognisable effect from increasing the dose or the thickness of the phantom. Additional subsequent edge enhancement led to increased detail recognition up to 2.0 lp/mm. Also, phase inversion of the image (negative image) can improve detail recognition. Radiation dose can be reduced to 15% compared with conventional imaging methods. Digital radiography with image intensifier techniques can therefore be recommended. Optimal spatial and contrast resolution is obtained at 80-90 keV. However, some reduction in perception of the finest structural details must be accepted.

Humans↗

Ventral brain stem schwannoma at the entry zone of the hypoglossal nerve.

The unusual case of a ventral brain stem schwannoma located at the entry zone of the hypoglossal nerve in a 49-year-old woman is reported. The diagnosis of a schwannoma was confirmed histologically after partial tumor resection via the dorsolateral, suboccipital, transcondylar approach. Hypotheses for the pathogenesis of intramedullary schwannomas are discussed.

Brain Stem↗

Regional exposure of cerebral convexity lesions.

The utility and reliability of a simple technique for the localization of cerebral convexity lesions are retrospectively analyzed in 83 intracranial procedures. The technique is based on data obtained from preoperative computed tomography (CT) scans, and on a few anthropological landmarks which usually can be identified on both the patient's head and skull radiograms. This method allowed precise placement of small craniotomy flaps (3 to 7 cm in diameter) in 94% of the patients studied. In the remaining, localization errors were corrected either by enlarging the craniotomy opening (3 cases), or by rescanning during the operative procedure (2 cases). Due to its technical simplicity and reliability in the vast majority of cases, the bony landmark method constitutes a recommendable alternative for the localization of convexity lesions, being particularly useful when highly sophisticated equipment is not available.

Adult↗

Apoprotein-based synthetic surfactants inhibit plasmic cleavage of fibrinogen in vitro.

Fibrinogen (Fbg) leakage and intra-alveolar fibrin accumulation are commonly noticed in adult respiratory distress syndrome and interstitial lung diseases. Activation of the extrinsic coagulation pathway and elevation of antiplasmin- and plasminogen-activator inhibitor levels are assumed to favor alveolar clot formation and to inhibit fibrinolysis under these conditions. We investigated the influence of synthetic surfactants on the plasmic cleavage of fibrinogen in vitro. Fibrinogenolysis was quantified by sodium dodecyl sulfate-polyacrylamide gel electrophoresis with densitometric evaluation and fragment E enzyme-linked immunosorbent assay. A synthetic phospholipid mixture (PLM) (dipalmitoyl-DL-alpha-phosphatidylcholine:L-alpha-phosphatidyl-DL-gly cer ol: palmitic acid 68.5:22.5:9) caused a dose-dependent inhibition of fibrinogenolysis in a concentration range between 0.1 and 2 mg/ml. This inhibitory capacity was markedly amplified upon reconstitution of PLM with natural and recombinant surfactant protein (SP)-C as well as natural SP-B. Natural SP-A and recombinant SP-A were far less effective in this respect. In the absence of phospholipids, the hydrophobic apoproteins revealed only moderate plasmin inhibitory capacity (recombinant SP-C > natural SP-C and SP-B). Natural calf lung surfactant extract displayed comparable inhibitory capacity on plasmic Fbg cleavage as PLM. We conclude that hydrophobic surfactant material may suppress plasmin activity and thus may contribute to the finding of delayed alveolar fibrin clearance in inflammatory lung diseases with Fbg leakage.

Animals↗

Staphylococcal alpha-toxin induced ventilation-perfusion mismatch in isolated blood-free perfused rabbit lungs.

Gas exchange conditions in blood-free perfused isolated rabbit lungs were assessed by the use of the multiple inert gas elimination technique. Under baseline conditions, unimodal narrow distribution of perfusion and ventilation to midrange-ventilation-perfusion (VA/Q) areas was noted. Intravascular challenge with staphylococcal alpha-toxin caused a rapid increase in pulmonary arterial pressure (to > 40 mmHg within approximately 15 min) and delayed-onset (> 10-15 min) lung edema formation, with unaltered ventilation pressures. The vasoconstrictor response was paralleled by a progressive, severe leftward shift of perfusion to areas with low-VA/Q ratios, accompanied by a minor fraction of shunt flow. At pulmonary arterial pressures > 40 mmHg, extreme VA/Q mismatch with near absence of perfusate flow to midrange-VA/Q areas was registered. Vasoconstrictor response and VA/Q mismatch, but not the progressive edema formation, were virtually completely suppressed in lungs pretreated with acetylsalicylic acid or the thromboxane receptor antagonist BM 13505. Moreover, "rescue" application of BM 13505 after onset of alpha-toxin-induced pressor response and gas exchange abnormalities completely reversed pressure elevation and loss of VA/Q matching. We conclude that the marked vasoconstrictor response to staphylococcal alpha-toxin is paralleled by severe VA/Q mismatch with predominant perfusion of low-VA/Q areas independent of lung edema formation. Pressor response and VA/Q mismatch, but not vascular leakage, are suppressed by thromboxane inhibition.

Animals↗

Endotoxin primes perfused rabbit lungs for enhanced vasoconstrictor response to staphylococcal alpha-toxin.

The major pore-forming exotoxin of Staphylococcus aureus, staphylococcal alpha-toxin, causes thromboxane-mediated pulmonary hypertension and prostanoid-independent protracted vascular leakage in perfused rabbit lungs. We asked whether lung responsiveness to the staphylococcal agent would be altered by a preceding period of endotoxin priming. Isolated rabbit lungs were perfused with Krebs-Henseleit buffer in the presence or absence of 100 ng/ml Salmonella abortus equii endotoxin for up to 5 h. The lipopolysaccharide exposure evoked the release of large quantities of tumor necrosis factor into the vascular and alveolar spaces but did not significantly alter pulmonary artery pressure, organ weight, or the repeatedly assessed capillary filtration coefficient (Kfc). Two and 4 h after endotoxin administration, alpha-toxin (10 to 30 ng/ml) was bolus-injected into the pulmonary artery. Toxin-evoked prostanoid generation (TxB2, 6-keto-PGF1 alpha) and pressor responses were markedly accelerated and enhanced in endotoxin-primed lungs, both for the 2 h and the 4 h priming period. No significant influence of endotoxin was noted when applied simultaneously with alpha-toxin. Cyclooxygenase inhibition suppressed the alpha-toxin-evoked pressure rise in both endotoxin-primed and nonprimed lungs. Endotoxin priming did not influence the alpha-toxin-induced protracted increase in Kfc values, assessed in the presence of cyclooxygenase inhibition. We conclude that endotoxin primes rabbit lungs for enhanced prostanoid generation and pulmonary hypertension in response to S. aureus alpha-toxin. Such cooperativity of endotoxin priming and exotoxin triggering may be relevant in critically ill patients suffering from both endotoxemia and gram-positive sepsis.

6-Ketoprostaglandin F1 alpha↗

Lung surfactant phospholipids associate with polymerizing fibrin: loss of surface activity.

Intraalveolar fibrin formation is a hallmark of many acute and chronic lung inflammatory processes. We investigated the influence of fibrin polymerization on biochemical and biophysical properties of a calf lung surfactant extract (CLSE) used for therapy of neonatal distress syndrome. Thrombin-induced coagulation of human fibrinogen (range, 0.04 to 4 mg/ml) in the presence of CLSE (2 mg/ml phospholipids) resulted in progressive loss of surface tension-lowering properties and adsorption facilities of this surfactant preparation; the CLSE-inhibitory capacity of desAABB-fibrin surpassed that of fibrinogen by more than two orders of magnitude. In parallel with the loss of surface activity, association of the predominant surfactant phospholipid dipalmitoylphosphatidylcholine (DPPC) (14C-labeled, admixed to 2 mg/ml CLSE) with polymerizing desAABB-fibrin occurred. A volume of 0.3 mg/ml insoluble fibrin effected a approximately 50% loss, and 0.6 mg/ml a > 90% loss, of DPPC from the aqueous phase. Dioleoylphosphatidylcholine, dipalmitoylphosphatidic acid, stearic acid, palmitic acid, and arachidonic acid, admixed to CLSE as labeled compounds, as well as total CLSE phospholipids were retained in polymerizing desAABB-fibrin with dose-effect curves superimposable to that of DPPC; no fibrin association was noted for 14C-glycerol-3-phosphate. Polymerizing desAA-fibrin, generated by incubation of CLSE-fibrinogen mixtures with arvin, captured DPPC and resulted in loss of surface properties at even lower concentrations, compared with desAABB-fibrin. In contrast, CLSE incubation with preformed desAABB- and desAA-fibrin polymers did not cause substantial phospholipid coupling with the clot material or loss of surface properties. Microtiter plate-immobilized fibrinogen and desAABB- and desAA-fibrinomonomers did not bind CLSE phospholipids enriched with 14C-DPPC.(ABSTRACT TRUNCATED AT 250 WORDS)

1,2-Dipalmitoylphosphatidylcholine↗

Proteolytic cleavage of fibrinogen: amplification of its surfactant inhibitory capacity.

Severe deterioration of surfactant function is noted under conditions of plasma protein leakage into the alveolar space; moreover, fibrinogen has previously been reported to possess strong surfactant inhibitory capacity. Dissolution of alveolar deposits of fibrinogen and fibrin (e.g., hyaline membranes) requires enzymatic degradation by the plasminogen/plasmin system or by leukocyte-derived proteases. We investigated the surfactant inhibitory properties of differently prepared sets of fibrinogen cleavage products. Proteolysis was performed with plasmin, with predominant split products D (mol wt 85,000) and E (mol wt 50,000). In addition, fibrinogen was cleaved by leukocyte elastase and trypsin, with fragments ranging mainly between mol wt of 30,000 and 50,000. To provide split products of even lower molecular weight, fibrinogen was incubated sequentially with trypsin and endoproteinase (split products < mol wt 25,000). Natural surfactant extracts used in clinical replacement studies (CLSE, Alveofact, Curosurf, Survanta) as well as an apoprotein-based phospholipid mixture (PLM-C/B; DPPC:PG:PA = 68.5:22.5:9 with 2% [wt/wt] nonpalmitoylated recombinant human SP-C and 1% [wt/wt] natural bovine SP-B) were employed. Experiments were performed in a pulsating bubble surfactometer (standard phospholipid concentration 2 mg/ml) with assessment of surfactant activity measuring adsorption and dynamic surface tension. Fibrinogen caused dose-dependent, severe deterioration of the surface activities of Curosurf and Survanta, whereas CLSE, Alveofact, and PLM-C/B were only moderately affected up to protein-surfactant ratios of 4:1.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Facial myokymia and spastic paretic facial contracture as the result of anaplastic pontocerebellar glioma.

The case of a 36-year-old man who sought treatment of right facial myokymia and spastic paretic facial contracture is reported. Computed tomography and magnetic resonance imaging revealed a tumor located in the right cerebellar peduncle and the right dorsal pons bulging into the fourth ventricle. After microsurgical partial resection of the mass, which was verified histologically as an anaplastic glioma, facial myokymia initially ceased. The vermicular rippling movements were less intense upon recurrence and could be controlled by low-dose dexamethasone in the further course, when magnetic resonance imaging showed an interstitial pontine edema after percutaneous radiation therapy. It is assumed that facial myokymia and spastic paretic facial contracture were generated by ectopic activity due to alterations in the microenvironment at the intrapontine portion of the axons of the seventh nerve caused by the compressive effect of the tumor and later by edema.

Adult↗

Differential vasoconstrictor potencies of free fatty acids in the lung vasculature: 2-versus 3-series prostanoid generation.

Pulmonary vasoconstrictor potencies of the 2- and 3-series prostanoid precursors arachidonic acid (AA) and eicosapentaenoic acid (EPA) were compared with each other and three reference fatty acids [palmitic acid (PAL), oleic acid (OA) and eicosatrienoic acid (ETA)]. Dose-effect curves were established from transient pulmonary artery pressor responses (approximately 5-50 mm Hg) evoked by intravascular application of nonesterified fatty acids in buffer-perfused rabbit lungs. Release of di- and trienoic prostanoids into the recirculating perfusate was quantified by a post high-performance liquid chromatography enzyme-linked immunosorbent assay technique. EPA and the three reference fatty acids were used in concentrations up to 10 microM; the rank order of vasoconstrictor potencies was ETA < PAL < OA < EPA. In contrast, AA evoked even larger pressor responses at concentrations two orders of magnitude lower (up to 80 nM). All fatty acids induced both thromboxane A2 and prostaglandin I2 release, ranking with ETA approximately PAL approximately OA < EPA as established for 10 microM concentrations; the dienoic prostanoid release in response to 80 nM AA approximated that elicited by 10 microM EPA. The n-3 fatty acid, however, provoked the liberation of excessive quantities of thromboxane A3 and prostaglandin I3, which surpassed the respective 2-series prostanoids 15- to 20-fold; no 3-series cyclooxygenase products were detected in response to AA, ETA, PAL or OA stimulation. Cyclooxygenase (acetylsalicylic acid) and thromboxane synthetase (OKY 046, Ozagrel, (E)-p-(imidazol-1-ylmethyl)cinnamic acid, C13H12N2O2, MW 228.2) inhibition largely suppressed the EPA-evoked pressor responses.(ABSTRACT TRUNCATED AT 250 WORDS)

8,11,14-Eicosatrienoic Acid↗

[Three cases of a fulminant course of idiopathic pulmonary fibrosis (Hamman-Rich syndrome)].

The Hamman-Rich syndrome is defined as an acute pulmonary disease of unclear aetiology that takes a rapid and prognostically unfavourable, usually fatal course. We report on three patients admitted to the intensive-care ward during a period of 6 months in a state of mandatory artificial respiration, each patient dying within 3 weeks after admission. Basing on clinical and histological criteria these patients were diagnosed as suffering from Hamman-Rich syndrome. At the time of the clinically identifiable onset of the disease all the patients had fever (> 39 X), leucocytosis (> 20 x 10(3)/microliters) and dyspnoea. These signs and symptoms were at first, in conjunction with the radiological identification of diffuse pulmonary infiltrations, misdiagnosed as pneumonia. The patients had to be artificially respirated after a short time because of the foundroyant course of the disease. Despite optimised respiratory parameters it was already initially apparent that there was a severe disturbance of the gas exchange function (paO2/FiO2 < 150) and high respiratory pressures (> 40 mmHg). Polymorphonuclear neutrophilics dominated in the bronchoalveolar lavage. Lung biopsy showed marked fibrosing that was a decisive factor in diagnosing. An infectious agent as triggering cause of the disease could not be identified in any of the patients. Treatment was effected with antibiotics, steroids and cyclophosphamide. The patients died after 14, 17 and 21 days, respectively, from intractable respiratory insufficiency with increasing loss of compliance of the lungs (compliance of lungs and thorax < 20 ml/mmHg).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Surfactant inhibition by plasma proteins: differential sensitivity of various surfactant preparations.

Leakage of plasma proteins into the alveolar space may inhibit surfactant function. We compared the surface properties and the sensitivity to inhibitory proteins of different organic solvent surfactant extracts and a synthetic surfactant. Experiments were performed in the pulsating bubble surfactometer, with surfactant concentrations ranging between 0.1 and 2 mg.ml-1. Inhibition profiles towards fibrinogen, albumin and haemoglobin were obtained from calf lung surfactant extracts (CLSE), Alveofact, Curosurf and Survanta (all used in clinical, replacement studies in respiratory distress syndrome (RDS) and of an apoprotein-based synthetic phospholipid mixture (PLM-C/B; DPPC:PG:PA = 68.5:22.5:9, supplemented with 2% wt/wt non-palmitoylated human recombinant SP-C and 1% t/wt natural bovine SP-B). In the absence of inhibitory proteins, all surfactants exhibited dose-dependent rapid adsorption (rank order of relative efficacy PLM-C/B = CLSE > Alveofact > Curosurf > Survanta). Minimal surface tension was reduced to near zero values under dynamic compression (rank order PLM-C/B > CLSE > Alveofact = Curosurf) and to approximately 4 mN.m-1 (Survanta). Curosurf and Survanta were dose-dependently inhibited by fibrinogen > haemoglobin > albumin, with far-reaching loss of surface activity at protein-surfactant ratios above 1:1. In contrast, CLSE and Alveofact were only moderately inhibited by fibrinogen, and were not affected by haemoglobin and albumin, up to protein-surfactant ratios of 2:1. PLM-C/B exhibited resistance to fibrinogen, intermediate sensitivity to albumin, and was severely inhibited by haemoglobin. We conclude that various natural surfactant extracts and an apoprotein-based synthetic surfactant mixture markedly differ in their sensitivity to inhibitory plasma proteins.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Increased LTB4 metabolites and PGD2 in BAL fluid after methacholine challenge in asthmatic subjects.

The bronchoconstrictor potency of inhaled methacholine is widely used to assess airway responsiveness. However, evidence has accumulated that methacholine inhalation challenge may lead to an inflammatory response in the lower respiratory tract. We therefore compared cellular, leukotriene and prostanoid profiles in bronchoalveolar lavages (BAL) obtained five hours after methacholine challenge to control lavages without prior challenge. Eight subjects with asymptomatic to mild bronchial asthma and nine nonatopic healthy controls were enrolled in the study. Without prior challenge, the percentage of BAL eosinophils was higher in the asthmatic subjects ((mean +/- SD), 1.1 +/- 0.9%) than in the control subjects (0.1 +/- 0.1%. Leukotriene B4 (LTB4), and its omega-oxidation products (20-OH-LTB4 and 20-COOH-LTB4) were the only leukotrienes detectable in the baseline BAL fluids in five of the eight asthmatic patients. After methacholine challenge, no change in BAL cell profile occurred, but in the asthmatic patients, the total amounts of LTB4 and its omega-oxidation products rose from 0.52 +/- 0.50 ng.ml-1 (pre-challenge) to 1.55 +/- 1.32 ng.ml-1 (post-challenge), and prostaglandin D2 (PGD2) rose from 49.1 +/- 15.7 (pre-challenge) to 94.4 +/- 25.4 pg.ml-1 (post-challenge), with no change in 6-keto-PGF1 alpha, thromboxane B2 (TXB2), and prostaglandins F2 alpha and E2 (PGF2 alpha and PGE2). In the healthy controls, no consistent change in BAL cell profile and mediators occurred after methacholine provocation. We conclude that inhaled methacholine stimulates LTB4 and PGD2 release in asthmatics, but not in healthy controls, without affecting the number of inflammatory cells in BAL fluid.

Adult↗

Delayed pattern discrimination in patients with unilateral temporal lobe damage.

Behavioral and neurophysiological studies in macaque monkeys suggest a role of the inferior temporal cortex in pattern discrimination and visual memory. To determine whether this cortical area is also involved in human short-term visual memory, we measured spatial frequency discrimination thresholds for sequentially presented stimuli in 17 patients with unilateral, postoperative focal damage to the temporal cortex (11 left, 6 right hemisphere). These results are compared to those of 17 age-matched control subjects. Contrast detection thresholds and difference thresholds for spatial frequency were determined for spatially truncated sine wave gratings presented in the left and right visual fields. Detection thresholds were measured for sine wave gratings in a spatial two-alternative forced-choice procedure for three spatial frequencies [2.5, 5, and 10 cycles (c)/degree] for each hemifield. Discrimination thresholds were determined for two gratings sequentially presented either 4 degrees to the left or right of fixation. Grating contrast was five times the value of detection threshold and reference frequency was 5 c/degree. Within each trial, the gratings were separated in time by 1, 3, and 10 sec interstimulus intervals (ISIs), and subjects signaled which grating had the higher spatial frequency. The results indicate that (1) contrast detection thresholds overall did not differ between patient and control groups; (2) spatial frequency discrimination thresholds were, however, significantly elevated in patients and this elevation was significantly more pronounced in the visual field contralateral to the damaged hemisphere; and (3) patients with inferotemporal damage exhibited higher discrimination thresholds for the longest ISI, whereas patients with medial/superior temporal lobe damage did not show this effect. The results suggest that visual areas in human temporal cortex are involved in the higher visual processes underlying delayed pattern discrimination.

Adult↗