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The role of migrating myoelectric complexes in the regulation of digesta transport in the preruminant calf.

Four calves were equipped with an electromagnetic flow probe inside the transverse duodenum and with electrodes at intervals of 2 cm on either side of the probe. Amounts of 0.5, 2.0, 3.5, and 5.0 kg of whole milk were given according to a latin square design. Recordings of digesta flow and myoelectric activity were made during a 5.6-h period after feeding to quantify the influence of migrating myoelectric complexes on digesta flow through the transverse duodenum of preruminant calf under different levels of milk intake. Immediately after feeding, a phase of irregular spiking activity appeared; its length increasing linearly (p = 0.002) with the amount of milk fed. Increasing milk intake led to linear increases in duration (p = 0.001) and total electrical activity (p = 0.002) of the irregular activity phases, quadratic shortening of the quiescent phases (p = 0.021), and linear decrease (p = 0.006) in the numbers of migrating myoelectric complexes. Intermittent flows of digesta, each of them corresponding to a strong spike burst, appeared during irregular spiking activity phases. Augmentation of the milk ingested did not affect the volume of each gush of digesta but caused a cubic increase in the number of gushes (p = 0.023) and in the total volume of digesta (p = 0.009). These cubic effects implied that with increased intake of milk, the duodenum endeavoured to accelerate the flow of digesta in an attempt to return to an "empty state" in about the same time for all levels of milk consumed. This was achieved mainly through adjustments in the duration and activity of the irregular spiking activity phase.

Animals↗

Does irradiation produce irreversible changes in canine jejunal myoelectric activity?

We sought to determine whether acute irradiation-induced changes in jejunal myoelectric activity are reversible or chronic and progressive with repeated exposures. Five dogs underwent abdominal irradiation absorbing 938 cGy on four separate occasions, two weeks apart. Recordings of jejunal myoelectric activity were made before and 10-11 days after each irradiation exposure. Ten to 11 days after the first exposure, the animals recovered completely from the acute radiation syndrome, and the myoelectric activity returned to normal. After subsequent exposures, they developed chronic diarrhea, profound weight loss, and progressive changes in myoelectric activity. Slow waves exhibited highly variable configuration, had an irregular rhythm, and were frequently uncoupled. Spike burst activity, duration, and length of migration were reduced in association with abnormal motility patterns even though histologic abnormalities were mild. Such changes are likely to interfere with normal propulsion and contribute to impaired nutrition. The abnormalities suggest that irradiation causes dysfunction of one or more of the cellular elements involved in small bowel motility (muscle, nerve, and interstitial cells) prior to the development of severe histologic abnormalities or mechanical obstruction.

Action Potentials↗

Endovascular stent graft treatment of a traumatic aortocaval fistula.

Aortocaval fistula (ACF) is an infrequently reported sequela of trauma. Most ACF have been repaired via an open approach. During the past 10 years, there has been one reported case of spontaneous ACF and two cases of traumatic ACF repaired using an endovascular technique. We present a third case of traumatic ACF repaired with an endovascular stent graft. A 40-year-old male sustained two gunshot wounds to the right chest and one to the right upper abdomen. He was taken from the emergency department directly to the operating room, where an exploratory laparotomy was performed. Through-and-through injuries to the stomach and transverse colon were repaired primarily. Subsequently, the patient developed abdominal compartment syndrome. An urgent exploratory laparotomy was performed, revealing a nonbleeding hematoma on the posterior lateral surface of the right lobe of the liver, which was left undisturbed. Open abdominal management was instituted with vacuum pack closure. On the nineteenth hospital day, the patient again had a significant decrease in hematocrit. An aortogram was performed in order to evaluate the patient for intrahepatic arterial bleeding amenable to transcatheter embolization. There was no evidence of hepatic arterial bleeding. However, a supraceliac ACF was identified. The patient was taken to the operating room, and an AneuRx aortic extension cuff was advanced under fluoroscopy and deployed to cover the fistula. Completion angiography revealed total obliteration of the ACF and appropriate placement of the stent graft. Postoperatively, the patient was returned to the intensive care unit, where his hospital course was complicated by ventilator-associated pneumonia and sepsis. Repeat computed tomographic scanning 6 months and 1 year following this repair demonstrated patency of the graft without evidence of graft migration or aortocaval communication. Further research and experience are necessary with this technique regarding long-term outcome and technical aspects. In particular, the sizing problems associated with repair of acute traumatic ACF in emergency situations should be addressed. The endovascular approach provides an attractive and exciting alternative to traditional methods for repair of ACF.

Adult↗

Alteration of cytoskeletal structure, integrin distribution, and migratory activity by phagocytic challenge in cells from an ocular tissue--the trabecular meshwork.

The trabecular meshwork is a specialized tissue in the anterior chamber of the eye that regulates the aqueous humor outflow and controls the intraocular pressure. Cells in the trabecular meshwork are believed to be essential for maintenance of the outflow system, and their malfunctioning may lead to elevation of intraocular pressure and development of glaucoma. These cells are avid phagocytes. Using an in vitro tissue culture system, we have previously shown that bovine trabecular meshwork cells exhibited a short-term loss of cell-matrix adhesiveness after exposure to latex microspheres. The current study showed that 4 h after phagocytosis, the cytoskeletal structure in trabecular meshwork cells was disrupted, the formation of focal contact formation was limited, and the cellular migratory activity was increased. These in vitro responses paralleled those that occur in vivo. By 24 h, all the changes demonstrated returned to normal. Our data suggest that the short-term loss in cell-matrix cohesiveness observed after phagocytic challenge may be related to the reorganization of cytoskeletal structures and the decline of focal contact formation. The altered cell migration may also be interlinked.

Animals↗

Effect of difluoromethylornithine on atrial natriuretic peptide in rat atria.

Polyamines are aliphatic cations known to have a role in cellular growth and differentiation. In this study, difluoromethylornithine (DFMO), an inhibitor of polyamine synthesis, was used to investigate its effect on atrial natriuretic peptide (ANP) in atria of rat. The rats were given DFMO (2%) in drinking water for 10 days and three intraperitoneal administrations (200 mg/kg), 24, 18 and 1 h prior to experiment. Radioimmunoassay of ANP in atrial extracts indicated that DFMO treatment increased ANP contents of atria. ANP from atrial extracts was immunoprecipitated using ANP antibody and the immunoprecipitate was resolved and detected by SDS-PAGE and Western blotting. The predominant ANP peptide in both control and DFMO group migrated at 17 kDa. The synthesis of ANP was studied following the intravenous administration of [35S]methionine. ANP in atrial extracts was immunoprecipitated by ANP antibody. The incorporation of ANP into control and DFMO group peaked at 30 min and returned to a basal level by 60 min. DFMO decreased the incorporation of [35S]methionine into ANP. At 30 min following the administration of [35S]methionine, putrescine restored the synthesis of tricholoroprecipitable atrial proteins, but had no effect on the synthesis of ANP. At 60 min following, the amount of labeled ANP in DFMO + putrescine-treated group was significantly lower than that in DFMO group. These results indicate that polyamines influence both the synthesis and secretion of ANP.

Animals↗

Hindlimb unloading depresses corneal epithelial wound healing in mice.

C57BL/6 mice were subjected to hindlimb unloading (HU) for a period of 3 wk to determine the possible effects on epithelial wound healing. A standardized corneal epithelial wound was performed, and parameters of the inflammatory response and reepithelialization were analyzed over an observation period of 96 h. Wound closure was significantly retarded in mice during HU with reepithelialization being delayed by approximately 12 h. Both epithelial migration and cell division were significantly depressed and delayed. The inflammatory response to epithelial wounding was also significantly altered during HU. Neutrophils, as detected by the Gr-1 marker, were initially elevated above normal levels before wounding and during the first few hours afterward, but there was a significant reduction in neutrophil response to wounding at times where neutrophil influx and migration in controls were vigorous. A similar pattern was seen with CD11b+CD11c+ cells (monocyte lineage). Langerhans cells are normally resident within the peripheral corneal epithelium. They respond to injury by initially leaving the epithelial site within 6 h and returning to normal levels by 96 h, 2 days after reepithelialization is complete. During HU, this pattern is distinctly different, with Langerhans cell numbers slowly diminishing, reaching a nadir at 96 h, which is significantly below normal. Evidence for systemic effects of HU is provided by findings that collagen deposition within subcutaneous sponges was significantly reduced during HU. In conclusion, HU, a ground-based model simulating some physiological aspects of spaceflight, impairs wound repair of corneas. Multiple factors, both local and systemic, likely contribute to this delayed wound healing.

Animals↗

[History of the onset and spread of sleeping sickness in Bipindi (southern Cameroon), from 1896 to today].

The aim of this article is to provide historical background on the onset and spread of sleeping sickness in the Bipindi area of southern Cameroon, from the first suspected cases in 1896 until today. Two recent events have created the need for historical perspective on this topic. In December 1994, an OCEAC mission led by Francis Louis discovered 7 cases in the area between the Lolodorf and Bipindi districts. The epicentre was the village of Bidjouka. Five years later, mass screening of all residents in the Bipindi district revealed a total of 44 cases. Although no previous medical studies are available, historical research indicates that the disease has always present in Bipindi area in a less prevalent and virulent form than in neighboring regions along the Nyong River. Bipindi is located about 140 kilometers northeast of Campo, an area on the border between Cameroon and Equatorial Guinea where sleeping sickness has been a low-grade health problem since the 1880s. Many Cameroonian refugees forced to live in Campo during a war that ended in February 1916 returned with the trypanosome and subsequently contaminated people who stayed in Bipindi. Transmission of sleeping sickness in Bipindi can also be attributed to economic development since the end of the nineteenth century. Numerous plantations have been installed in the area. Migration and trade with the Gulf of Guinea have expanded greatly, especially involving areas on the border between Cameroon and Equatorial Guinea. This study is based on written documentations obtained from the National Archives in Yaoundé (Cameroon) and the "Colegio Claret" Library, in Luba (Republic of Equatorial Guinea) and on firsthand reports from reliable sources in the Bipindi area.

Agriculture↗

Neuromodulatory inputs maintain expression of a lobster motor pattern-generating network in a modulation-dependent state: evidence from long-term decentralization in vitro.

Neuromodulatory inputs play a critical role in governing the expression of rhythmic motor output by the pyloric network in the crustacean stomatogastric ganglion (STG). When these inputs are removed by cutting the primarily afferent stomatogastric nerve (stn) to the STG, pyloric neurons rapidly lose their ability to burst spontaneously, and the network falls silent. By using extracellular motor nerve recordings from long-term organotypic preparations of the stomatogastric nervous system of the lobster Jasus lalandii, we are investigating whether modulatory inputs exert long-term regulatory influences on the pyloric network operation in addition to relatively short-term neuromodulation. When decentralized (stn cut), quiescent STGs are maintained in organ culture, pyloric rhythmicity gradually returns within 3-5 d and is similar to, albeit slower than, the triphasic motor pattern expressed when the stn is intact. This recovery of network activity still occurred after photoinactivation of axotomized input terminals in the isolated STG after migration of Lucifer yellow. The recovery does not depend on action potential generation, because it also occurred in STGs maintained in TTX-containing saline after decentralization. Resumption of rhythmicity was also not activity-dependent, because recovery still occurred in STGs that were chronically depolarized with elevated K+ saline or were maintained continuously active with the muscarinic agonist oxotremorine after decentralization. We conclude that the prolonged absence of extraganglionic modulatory inputs to the pyloric network allows expression of an inherent rhythmogenic capability that is normally maintained in a strictly conditional state when these extrinsic influences are present.

Afferent Pathways↗

Time-course of medial and intimal thickening in pig venous arterial grafts: relationship to endothelial injury and cholesterol accumulation.

With use of an established model of pig saphenous vein grafts in the carotid artery, the time-course of the following changes was related: (1) medial and intimal size by morphometry of transverse sections, (2) cell number by deoxyribonucleic acid concentration, (3) cell density by deoxyribonucleic acid concentration per milligram wet weight and by counting nuclei in transverse sections, (4) endothelial morphology by scanning electron microscopy, and (5) cholesterol concentration. In the first week after grafting, medial and intimal thickening occurred associated with an increase in cell number. Between 1 and 4 weeks after grafting, further rapid medial and intimal thickening occurred with no further increase in cell number but with a reduction in cell density, which suggested that cell migration, hypertrophy, and the laying down of extracellular matrix were responsible. Between 4 and 39 weeks after grafting, a slower increase in medial and intimal size occurred, associated with a parallel increase in cell number and no further change in cell density. The endothelium of grafts showed only localized abnormalities, including loss of cells and leukocyte adhesion, either 1 or 4 weeks after grafting. Cholesterol concentration was slightly elevated 1 week after grafting but returned to values similar to those in vein by 4 weeks after grafting. Distention to 600 mm Hg during surgical preparation of vein for grafting resulted in lower graft patency after either 1 or 4 weeks and caused significant medial and endothelial injury. Distention did not, however, affect changes in medial or intimal size, deoxyribonucleic acid, or cholesterol concentration caused by grafting. We conclude that three processes contribute to medial and intimal thickening, namely: (1) an initial phase of rapid smooth muscle cell proliferation, (2) smooth muscle cell migration, hypertrophy, and synthesis of extracellular matrix, and (3) a late phase of slower smooth muscle cell proliferation. The incomplete late suppression of smooth muscle cell proliferation occurs despite regeneration of a morphologically intact endothelium and in the absence of progressive cholesterol accumulation.

Anastomosis, Surgical↗

[An unusual case of gunshot wound to the head].

We are going to present a special case of head injury caused by a gunshot. In this case it resulted in a fracture of the skull, but the bullet did not penetrate the skull. It was deflected by the bone, leaving the body at an angle. But bone fragments, acting as secondary bullets, penetrated the brain. In spite of a massive cerebral trauma and brain injury, no retrograde amnesia could be diagnosed. The patient recovered to such an extent, that he could return to his former job. Special characteristics of head injuries caused by bullets will be referred to.

Adult↗

Activation of the MAP kinase pathway by FGF-1 correlates with cell proliferation induction while activation of the Src pathway correlates with migration.

FGF regulates both cell migration and proliferation by receptor-dependent induction of immediate-early gene expression and tyrosine phosphorylation of intracellular polypeptides. Because little is known about the disparate nature of intracellular signaling pathways, which are able to discriminate between cell migration and proliferation, we used a washout strategy to examine the relationship between immediate-early gene expression and tyrosine phosphorylation with respect to the potential of cells either to migrate or to initiate DNA synthesis in response to FGF-1. We demonstrate that transient exposure to FGF-1 results in a significant decrease in Fos transcript expression and a decrease in tyrosine phosphorylation of the FGFR-1, p42(mapk), and p44(mapk). Consistent with these biochemical effects, we demonstrate that attenuation in the level of DNA synthesis such that a 1.5-h withdrawal is sufficient to return the population to a state similar to quiescence. In contrast, the level of Myc mRNA, the activity of Src, the tyrosine phosphorylation of cortactin, and the FGF-1-induced redistribution of cortactin and F-actin were unaffected by transient FGF-1 stimulation. These biochemical responses are consistent with an implied uncompromised migratory potential of the cells in response to growth factor withdrawal. These results suggest a correlation between Fos expression and the mitogen-activated protein kinase pathway with initiation of DNA synthesis and a correlation between high levels of Myc mRNA and Src kinase activity with the regulation of cell migration.

3T3 Cells↗

Cellular and cytokine responses of the human central nervous system to intracranial administration of tumor necrosis factor alpha for the treatment of malignant gliomas.

To elucidate the role of tumor necrosis factor alpha (TNF alpha) as a biological response modifier, we studied cellular and cytokine responses of the central nervous system to TNF alpha administered intracranially in a phase I clinical trial for patients with malignant gliomas. Six patients received injections of TNF alpha (1.25 x 10(3)-10 x 10(3) U/injection) into the tumor cavities, and regional fluids (RF) and lumbar cerebrospinal fluids (CF) were serially sampled before and after the injections. Recruitment of neutrophils occurred, mostly peaking 8 h after TNF alpha injection, and fewer numbers of CD4+ T cells and monocytes/macrophages migrated, subsequently peaking at 24 h. The CF leukocytosis persisted for 48 h and was associated with an increased level of neutrophil chemotactic activity in the CF. This neutrophil chemotactic activity was attributed to interleukin-8 (IL-8) by HPLC. The level of IL-6 activity in the CF and RF consistently increased; beginning 2 h after TNF alpha injection and reaching the maximum between 8 h and 12 h. It returned to the basal level within 48 h. IL-1 beta was detected in the CF of three patients, its level peaking at 8 h. Prostaglandin E2 also increased after injection of TNF alpha, peaking between 4 h and 12 h and then gradually decreasing. Transforming growth factor beta was found in all cases tested and one patient showed a significant change after TNF alpha injection. IL-2 activity, interferon alpha (INF alpha) activity, IFN beta, and granulocyte/macrophage-colony-stimulating factor were not detected in the CF or RF. In conclusion, TNF alpha is biologically effective in inducing migration of immune cells and generating multiple cytokine responses in the human central nervous system.

Adult↗

Changes in keratoconic corneas after intracorneal ring segment explantation and reimplantation.

PURPOSE: To evaluate the outcome and potential reversibility of the changes induced in keratoconic eyes after intracorneal ring segment explantation. DESIGN: Retrospective, interventional case series. PARTICIPANTS: Five eyes of 4 patients who underwent uneventful implantation of one or two intracorneal ring segment segments for the correction of clear corneal keratoconus and who required explantation of one segment due to complications. MAIN OUTCOME MEASURES: Visual acuity, refraction, keratometric readings, and corneal topography. The follow-up was up to 1 year from the primary implantation procedure in all cases. RESULTS: Explantation was performed easily in all cases without intraoperative or postoperative complications. The segments were extracted due to migration and local melting. The visual, refractive, and topographic map findings regressed to approximate the original clinical situation before segment implantation. CONCLUSIONS: Intracorneal ring segments are safely and easily explanted from keratoconic eyes. Most of the visual, refractive, and topographic findings return to near the preimplantation levels.

Adult↗

Effect of cisapride on gastric sensitivity to distension, gastric compliance and duodeno-gastric reflexes in healthy humans.

BACKGROUND AND AIMS: Visceral hypersensitivity and impaired gastric relaxation after the ingestion of a meal are frequent features in patients with functional dyspepsia. Cisapride improves dyspeptic symptoms. The study aims to evaluate whether cisapride influences gastric sensitivity to distension as well as gastric compliance and duodenogastric reflexes. PATIENTS AND METHODS: Eight healthy males were studied on two different days, each after 7 days' treatment either with placebo or cisapride 10 mg qid in randomized order. A spherical bag connected to a barostat was placed in the gastric fundus and an 8-lumen manometric catheter was positioned with 4 side holes in antrum and 4 in duodenum. During a phase II of the migrating motor complex, the intragastric bag was inflated at a constant pressure 1 mm Hg above the intra-abdominal pressure and the gastric volume was measured during intraduodenal infusion of lipids and citric acid at different rates. Once the stomach returned to the basal volume, the bag was distended according to two different protocols until subjects reported discomfort. Antroduodenal motility was measured throughout the study. RESULTS: Intraduodenal infusion of lipids and citric acid caused relaxation of gastric fundus. Relaxation was similar for lipids and acid (203 +/- 30 vs 199 +/- 43 ml), and was not influenced by cisapride and infusion rate. Cisapride did not influence gastric sensitivity to distension (10 +/- 1.5 vs 9.7 +/- 1.3 mm Hg) and gastric compliance (52.7 +/- 1.2 vs 49.8 +/- 1.8 ml/mm Hg). The antral motor index significantly decreased following infusion of acid and lipids with placebo but not with cisapride. CONCLUSIONS: Cisapride inhibits the physiological duodenoantral reflexes but does not influence either the mechanical properties of the gastric fundus nor the gastric sensitivity to distension.

Adult↗

Effects of neurotensin and neurotensin analogues on the migrating myoelectrical complexes in the small intestine of rats.

The purpose of the present experiments was to study the effect of neurotensin and neurotensin analogues on the migrating myoelectrical complexes in the small intestine of rats. Four bipolar electrodes were implanted into the muscular wall of the small intestine. The electrodes were placed 5, 15, 25 and 35 cm distal to the pylorus. 7-10 days after the operation the animals were fasted for 48 h with free access to water. Some experiments were performed on conscious rats and in others the rats were anesthetized with pentobarbital, 30 mg/kg. I.v. infusion of either neurotensin (NT) or (Gln4)-neurotensin at doses of 1.8, 3.6 and 7.1 pmol X kg-1 X min-1 abolished the migrating myoelectric complexes, which were replaced by increased spiking activity along the whole length of the small intestine from which activity was recorded. The changes in myoelectrical activity were observed within 2-4 min after commencement of the infusion. The activity returned to control levels within 5-15 min after the end of the infusion period. The neurotensin sequences NT 9-13, NT 8-13, NT 4 -13, NT 1-9 and (Gln4)-NT 1-11 did not induce any changes in the electrical activity in the small intestine. The effects of NT and (Gln4)-neurotensin on the myoelectrical activity in the small intestine were indistinguishable. The changes induced by NT or (Gln4)-NT resemble those found after the ingestion of food. The present data indicate that the intact NT sequence, rather than smaller NT fragments, is necessary to induce changes in myoelectrical activity in the small intestine.

Action Potentials↗

Postischemic reperfusion: ultrastructural blood-brain barrier and hemodynamic correlative changes in an awake model of transient forebrain ischemia.

OBJECTIVE: In nonrecovery models of cerebral ischemia, blood-brain barrier (BBB) and cerebral blood flow (CBF) changes are known to occur during reperfusion. It is unknown, however, whether those CBF and BBB alterations occur after brief, transient ischemia with neurological recovery. The purpose of this study was to characterize the time course of CBF and BBB ultrastructural changes during reperfusion in an awake, recovery model of transient global forebrain ischemia (GFI). METHODS: Forty-five adult Sprague-Dawley rats were subjected, while awake, to 10 minutes of GFI by the nine-vessel occlusion method. Thirty-five age-matched animals composed a sham-operated group. Normal control (n = 5), sham-operated (n = 5), and nine-vessel occlusion/reperfusion (n = 15) rats were selected for ultrastructural analysis. Electroencephalography was performed, and CBF, mean arterial blood pressure, and intracranial pressure were measured during ischemia and reperfusion up to 24 hours. Quantitative morphological analysis of cortical BBB capillaries was performed by transmission electron microscopy at the same time points at which specific CBF changes occurred during reperfusion. RESULTS: CBF decreased to 6% of preocclusion values during GFI. This correlated with coma and decerebrate rigidity. During reperfusion, short-lived hyperemia (225 +/- 18%, P < 0.001) was characterized by increased intracranial pressure (28.3 +/- 2.6 mm Hg, P < 0.001) and isoelectric electroencephalogram. This was followed by hypoperfusion, which reached a nadir of 59.7% (59.7 +/- 8.8%, P < 0.01) from baseline by 90 minutes. At this time point, the electroencephalogram recovered, and intracranial pressure and mean arterial blood pressure showed no abnormalities. By 8.5 hours, CBF returned to normal, and this coincided with complete recovery of the animal. Ultrastructural BBB analysis revealed astrocyte end-foot process edema and patent capillaries during hyperemia. Severe interstitial BBB edema and capillary lumen collapse was observed during hypoperfusion. Detachment and migration of pericytes was observed during hypoperfusion and beyond. CONCLUSION: A biphasic CBF response is elicited during reperfusion after brief nonlethal GFI under awake conditions.

Animals↗

Non-random migration of CD4+, CD8+ and gamma delta+T19+ lymphocytes through peripheral lymph nodes.

The experiments described in this paper have examined the migration of three fluorochrome-labelled T-lymphocyte subsets (CD4+, CD8+ and gamma delta+T19+) on a single passage from blood to lymph, through prescapular lymph nodes. Lymphocytes obtained from prescapular efferent lymph were labelled in vitro with fluorochrome and returned to the blood of the same animal. Over the next 2 days, lymph was continuously monitored and the cells in all collections, including the one used for intravenous infusion, were phenotyped and analysed by flow cytometry. Significant differences in the subset ratios between the infused, starting population and the recirculated population indicated that CD4+ and gamma delta+T19+ lymphocytes are extracted by a resting lymph node at the same rate and that both are extracted at a faster rate than CD8+ lymphocytes. The results presented here also suggest that a unique subset of gamma delta+T19+ lymphocytes may be present in blood that does not recirculate through peripheral lymph nodes.

Animals↗

[Age of migrant workers: ethnic resources and double disadvantage].

As a result of migrant-movement in Western Europe increasing numbers of aged people of foreign origin are being registered. In the FRG a large number of these are migrant workers. Initial reports confirm the same observations made in the USA that in old age an increased withdrawal into ethnic enclaves takes place. An additional phenomenon observed in the Europe study population is the desire to return to their native country among the aged immigrants. A return however, is usually not realized. This creates a dilemma which often characterizes the situation of older migrant workers. The specifics of the ageing process and the age situation of ethnic old people can only be researched in a synthesis of migration and gerontological research. Findings from both fields must be analyzed in order to develop adequate provisions in help-for-the-aged program dedicated to this specific aged population.

Adaptation, Psychological↗