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Circulatory collapse and sudden death in respirator-dependent amyotrophic lateral sclerosis.

Circulatory collapse and sudden death was defined retrospectively as one of the major critical problems among 23 respirator-dependent patients with amyotrophic lateral sclerosis (ALS). Six cases died from sudden cardiac arrest or anoxic encephalopathy following the circulatory collapse. In five among the six cases, sudden death or cardiac arrest occurred during sleep at night. Eight cases had had episodes of marked fluctuation of blood pressure before death, including paroxysmal elevation of blood pressure and heart rate, and successive sudden pressure fall without compensatory tachycardia. The spells of hypotension often occurred during sleep. In addition, the prospective study of diurnal variation of blood pressure, heart rate, plasma norepinephrine and plasma renin activity in nine respirator-dependent ALS patients showed continuous tachycardia and more remarkable nocturnal decrease of blood pressure compared with the control subjects. Plasma norepinephrine levels were constantly higher in the ALS patients particularly in a daytime. These indicate the continuous sympathetic hyperactivity in ALS. We discuss the cause of the circulatory collapse and sudden death in the respirator-dependent ALS patients in terms of the autonomic dysregulatory mechanism or the sympathetic hyperactivity.

Adult↗

Central neural stimulation of respiration by sodium salicylate.

Phrenic nerve responses to intravenous administration of sodium salicylate were measured in anesthetized, paralyzed cats whose vagi and carotid sinus nerves had been cut. Three groups of animals were studied. One consisted of animals with intact central nervous systems. The other two were identical except that the spinal cords had been transected at either T4-T5 or C7-T1. Salicylate led to a significant increase in respiration and whole body metabolism in all three groups. Transection of the spinal cord had no effect on the magnitude of the respiratory response to salicylate. We also studied another group of animals in which salicylate was injected directly into the third cerebral ventricle. This led to a significant increase in respiration without an increase in whole body metabolism. We conclude that salicylate stimulates respiration by a mechanism other than one related to its ability to increase whole body metabolism and that this mechanism is located within the central nervous system.

Animals↗

Control of respiration by the hypothalamus and by feedback from contracting muscles in cats.

Central command and feedback from contracting muscles are two mechanisms which are thought to control the respiratory and cardiovascular systems during exercise. In this study, we compared the individual and combined responses to activation of central command and to muscular contraction in anesthetized cats. Continuous electrical stimulation of the subthalamic locomotor region (STLR) was used to simulate central command (Eldridge et al., 1985). Static (tetanic) contraction of hindlimb muscles was produced by stimulating the cut peripheral ends of the L7-S1 ventral roots. Despite similar increases in arterial pressure, STLR stimulation caused larger increases in cardiac frequency and respiration than that evoked by muscular contraction. When performed during muscular contraction, STLR still caused large increases in respiration, arterial pressure and cardiac frequency. In contrast, muscular contraction when induced during STLR stimulation caused only small increases in respiration and modest changes in arterial pressure and cardiac frequency. These results suggest that central command and feedback from contracting muscles exert different respiratory and cardiovascular effects when activated simultaneously than when activated individually. In addition, central command, as activated by STLR stimulation, predominates over the responses caused by muscular contraction.

Animals↗

Development of short-term potentiation of respiration.

Development of short-term potentiation (STP) of respiration, which leads to the respiratory 'afterdischarge', was studied in anesthetized, paralyzed, vagotomized and glomectomized cats. Phrenic nerve activity was used as an index of respiratory output. Respiratory output was increased and the potentiating mechanism activated by electrical stimulation of a carotid sinus nerve (CSN). Development of STP was determined from the magnitude of potentiation after various durations (0 to 60 sec) of stimulation. The average time constant (TC) for the development of the potentiation was 9 sec, whereas the TC for its decay (afterdischarge) was 46.1 +/- 3.9 sec. The magnitude of potentiation is dependent upon the number of pulses in the stimulus train. We conclude that the development of short-term potentiation of respiration is relatively slow but much faster than the decay, or afterdischarge. We suggest that the slow increase of respiration during a stimulation and the decay afterwards are due to a common mechanism, short-term potentiation of neural activity in respiratory control pathways.

Action Potentials↗

Morphine hyperalgesic effects on developmental changes in thermal nociception and respiration in domestic fowl (Gallus gallus).

Domestic fowl tested at 3, 5, and 7 days posthatch jumped from a heated grid more rapidly than animals tested at 14 days posthatch. Morphine (2.5 mg/kg) decreased jump latency in 14-day-old chicks but did not significantly affect jump latency in younger chicks. Respiration was lower in 3-day-old chicks than in the older groups but morphine depressed respiration at each age. In a second experiment morphine significantly decreased jump response latency in 5-day-old chicks when thermal stimulus intensity was lowered and morphine dose increased (5 mg/kg). Posttest respiration rate was depressed by morphine. Morphine hyperalgesia and respiratory depression were reversed by naloxone (5 mg/kg). However, naloxone alone increased jump response latency. Young domestic fowl are more sensitive and/or reactive to a noxious thermal stimulus and are less sensitive to morphine than 14-day-old chicks but morphine hyperalgesia was evident in both 5- and 14-day-old chicks. These hyperalgesic chicks may be tolerant at birth to morphine hypoalgesic effects on nociception.

Aging↗

The influence of respiration induced motion of the kidneys on the accuracy of radiotherapy treatment planning, a magnetic resonance imaging study.

An MRI study has been performed to determine the respiration induced motion of the kidneys. Under normal respiration conditions displacements of the left and right kidney varied from 2 to 24 mm and 4 to 35 mm, respectively. Under forced respiration conditions displacements were larger and ranged from 10 to 66 mm for the left kidney and 10 to 86 mm for the right kidney. The influence of kidney motion on the radiation dose was determined for patients irradiated on the total abdomen for ovarian cancer with shielding of the kidneys during part of the treatment. The kidney motion resulted in a larger fraction of the kidney volume receiving a dose between 20 and 22 Gy.

Adult↗

Toxicity of aerosol propellants in the respiratory and circulatory systems. VIII. Respiration and circulation in primates.

The low-pressure propellants influence predominantly the circulation, whereas the high pressure propellants affect the respiration in anesthetized monkeys. There are four groups according to the level of toxicity: Class 1, low-pressure propellants of high toxicity that cause tachycardia and hypotension; Class 2, low-pressure propellants of intermediate toxicity that influence either circulation or respiration or both; Class 3, high-pressure propellants of intermediate toxicity that cause bronchoconstriction; and Class 4, high-pressure propellants of low toxicity that do not influence respiration or circulation even when inhaled at levels of up to 20 percent concentration.

Aerosol Propellants↗

Instrumental conditioning of human heart rate during free and controlled respiration.

The effect of respiratory constraint on heart rate control was assessed in a biofeedback situation with feedback consisting of changes in both illumination level and intensity of pre-recorded baby's cry. Subjects were reinforced for alternately increasing and decreasing heart rate on each of seven days during which respiration was unconstrained (Phase 1). This phase was followed by eight days when respiration was constrained during training sessions with a control respirator (Phase 2). Seven additional days of training followed in the unconstrained situation (Phase 3). Results indicate that the control of heart rate in biofeedback situations is very closely related to respiratory and other somatic activity. The implication of these findings for the field of visceral control is discussed.

Adolescent↗

Hesitation vowels: a motor speech respiration hypothesis.

In spontaneous speech the relation of hesitation vowels 'ah' and 'mh' (filled pauses) and respiration was studied in 16 healthy native speakers of German. Hesitation vowels did not occur randomly in expiration during speech. When expiratory duration was divided into four segments of equal length, the highest incidence of hesitation vowels was to be found at early loci during expiration. As speech respiration is reset to vegetative breathing as soon as speech production stops, hesitation vowels act as phonomotoric subroutines during halting speech production to prevent the respiratory system from uneconomic air loss and to keep it in the speech respiration mode.

Adult↗

Factors associated with delayed onset of regular respiration.

In a population of 16333 singleton births born in one week of April, 1970, 4.4% failed to establish regular respiration within 3 min of birth. A follow-up at 5 years of age collected medical, educational and sociological information on 79.6% of the survivors of the cohort identified by the birth survey. Data have been analysed to investigate the relationships between the delay in the onset of regular respiration and possible risk factors identifiable prior to or at the time of birth. Complex statistical analysis employing linear modelling techniques showed that the delay in the onset of respiration was primarily related to: null and high parity; antepartum haemorrhage (especially placenta praevia); pre-eclampsia; breech delivery; Caesarian section and low birthweight. There was no association with maternal smoking during pregnancy or with social class. These conclusions are reasonably consistent with those drawn from other studies using alternative measures of asphyxia.

Child, Preschool↗

Use of the SCSB method for monitoring of respiration, body movements and ballistocardiogram in infants.

A new method for long-term monitoring of respiration, the ballistocardiogram (BCG), heart rate and body movements in newborn infants and children is presented. The design of the static charge-sensitive bed (SCSB) method for the monitoring of newborn infants and children is described. The method is simple and inexpensive. No electrodes or cables need to be connected to the subject. The SCSB method allows continuous long-term monitoring of body movements, respiratory movement, the BCG and heart rate. The results of about 40 neonatal recordings made in our clinic with the SCSB method demonstrate that recording body movements and respiration is possible in ordinary hospital wards. The infra-acoustic noise due to air-conditioning which is usually present in ordinary wards disturbs the BCG recordings in neonates. To obtain adequate BCG recordings this noise must be eliminated from recording rooms. Low-frequency noise is low enough to allow good BCG recordings in private dwellings. The SCSB method opens up new approaches to long-term studies of the regulation of respiration, body movements and the ballistocardiogram in newborn infants and children. Possible clinical applications of the SCSB method are discussed.

Ballistocardiography↗

Mitochondria respiration and susceptibility to ischemia-reperfusion injury in diabetic hearts.

Cardiovascular complications are the primary cause of death for diabetic patients. Clinical and experimental observation has showed the development of dysfunctional cardiomyopathy as one of the main complications of diabetes. Whether the cardiomyopathy results from an increased susceptibility of cardiac tissue to ischemic insult or from a specific functional defect of cardiac mitochondria is a controversial issue. The investigation of possible functional defect in cardiac mitochondria from diabetic rats indicates a decline in state 3 respiration only in animals presenting a marked decrease in body weight. Mitochondria from rats presenting a level of hyperglycemia similar to diabetic animals but not the marked weight loss typical of the latter group show no decline in state 3 respiration, the values being indistinguishable from those of control mitochondria. Mitochondria from hyperglycemic rats, however, show a 15-20% increase in state 4 oxygen consumption but only when glutamate is used as energetic substrate, as compared to a 40-50% increase in state 4 respiration in mitochondria from diabetic rats under similar experimental conditions. This phenomenon is unrelated to diabetes duration, as it is observed at 2 as well as 8 weeks after diabetes onset. Taken together, these data argue against hyperglycemia per se being a direct cause of the decline in state 3 oxygen consumption observed in cardiac mitochondria of type-I diabetic rats and indicate that differences exist in cardiac mitochondrial function in rats generically labeled as diabetic. These differences can contribute to explain discrepancies in experimental results reported by various groups in the field and provide an additional parameter to be taken into consideration in evaluating the varying sensitivity of diabetic hearts to ischemia-reperfusion injury.

Animals↗

The role of high-frequency jet ventilation in the treatment of Cheyne-Stokes respiration in patients with chronic heart failure.

BACKGROUND: Cheyne-Stokes respiration with central sleep apnea (CSR-CSA) is common in patients with severe cardiac failure. Various modes of positive airway pressure have been suggested as treatments. The authors hypothesized that high frequency jet ventilation (HFJV) can improve central sleep apnea in patients with chronic heart failure. METHODS: Eleven subjects with stable, optimally treated chronic heart failure and Cheyne-Stokes respiration were tested untreated and on four treatment nights in random order: nasal oxygen (4 L/min), continuous positive airway pressure (CPAP) (mean 9.3 cm H(2)O), bilevel positive airway pressure (BiPAP)(mean 12.0/5.3 cm H(2)O), or HFJV(60 approximately 80 breaths per minute) during polysomnography (EMBLA, Flaga, Reykjavik, Iceland). RESULTS: The apnea-hypopnea index (AHI) declined from 30.9 +/- 8.3/h in untreated night to 23.6 +/- 6.6/h oxygen night and 18.5 +/- 5.0/h CPAP, 14.3 +/- 3.9/h BiPAP, and 20.1 +/- 4.1/h HFJV (all P < 0.001 versus control). There was no significant difference between the AHI of HFJV and that of CPAP (P = 0.541). Arousal index decreased from 31.4+/-13.2/h untreated to 25.0 +/- 7.1/h oxygen and 13.6 +/- 4.7/h CPAP, to 13.7 +/- 4.9/h BiPAP and 14.4 +/- 4.7/h HFJV. HFJV had the similar effect to the other therapeutic groups in arousal index (P > 0.05). There were large increases in slow-wave and rapid eye movement (REM) sleep with HFJV. All subjects preferred HFJV to CPAP. CONCLUSIONS: One night of therapy with HFJV improved nocturnal breathing pattern and sleep quality in patients with Cheyne-Stokes respiration in chronic heart failure. HFJV therapy for sleep and breathing were the same as those during a nasal CPAP night. A long-term study of the effect of HFJV on cardiovascular function is needed.

Aged↗

Benefit of respiration-gated stereotactic radiotherapy for stage I lung cancer: an analysis of 4DCT datasets.

PURPOSE: High local control rates have been reported with stereotactic radiotherapy (SRT) for Stage I non-small-cell lung cancer. Because high-dose fractions are used, reduction in treatment portals will reduce the risk of toxicity to adjacent structures. Respiratory gating can allow reduced field sizes and planning four-dimensional computed tomography scans were retrospectively analyzed to study the benefits for gated SRT and identify patients who derive significant benefit from this approach. METHODS AND MATERIALS: A total of 31 consecutive patients underwent a four-dimensional computed tomography scan, in which three-dimensional computed tomography datasets for 10 phase bins of the respiratory cycle were acquired during free breathing. For a total of 34 tumors, the three planning target volumes (PTVs) were analyzed, namely (1) PTV(10bins), derived from an internal target volume (ITV) that incorporated all observed mobility (ITV(10bins)), with the addition of a 3-mm isotropic setup margin; (2) PTV(gating), derived from an ITV generated from mobility observed in three consecutive phases ("bins") during tidal-expiration, plus addition of a 3-mm isotropic margin; and (3) PTV(10 mm), derived from the addition of a 10-mm isotropic margin to the most central gross tumor volumes in the three bins selected for gating. RESULTS: The PTV(10bins) and PTV(gating) were, on average, 48.2% and 33.3% of the PTV(10 mm), and respective mean volumes of normal tissue (outside the PTV) receiving the prescribed doses were 57.1% and 39.1%, respectively, of that of PTV(10 mm). A significant correlation was seen between the extent of tumor mobility (i.e., a three-dimensional mobility vector of at least 1 cm) and reduction in normal tissue irradiation achieved with gating. The ratio of the intersecting and the encompassing volumes of GTVs at extreme phases of tidal respiration predicted for the benefits of gated respiration. CONCLUSION: The use of "standard population-based" margins for SRT leads to unnecessary normal tissue irradiation. The risk of toxicity is further reduced if respiration-gated radiotherapy is used to treat mobile tumors. These findings suggest that gated SRT will be of clinical relevance in selected patients with mobile tumors.

Carcinoma, Non-Small-Cell Lung↗

Renal mobility during uncoached quiet respiration: an analysis of 4DCT scans.

PURPOSE: Data on organ mobility is required for optimizing radiotherapy. Renal mobility was studied in four-dimensional computed tomography (4DCT) scans acquired during uncoached respiration. METHODS AND MATERIALS: The 4DCT scans of 54 patients, in whom at least the upper pole of both kidneys were visualized in all 10 respiratory phases, were analyzed. Scans were performed on a 16-slice CT scanner (slice index and reconstruction, 2.5 mm) during quiet, uncoached respiration. Mobility of the renal apex was evaluated in all patients by use of the z-position on CT slices. Reproducibility of mobility was studied in 8 patients who underwent 1 or 2 repeat 4DCT scans. RESULTS: Mobility was predominantly craniocaudal, with a mean of 9.8 mm for the left kidney and 9.0 mm for the right kidney. Large interpatient variations were observed that ranged from 2.5 to 30 mm (left) and 2.5 to 20 mm (right), and mobility of 1 kidney did not predict for mobility of the contralateral organ. Reproducibility of renal mobility and position at end-expiration was poor, with positional variations in repeat scans appearing to correlate with changes in the amplitude of respiratory waveform and total lung volume. CONCLUSIONS: Large interpatient variations in renal movement occur during uncoached respiration, which indicates that respiratory coaching is useful for 4DCT imaging and treatment delivery.

Abdominal Neoplasms↗

Mid-ventilation CT scan construction from four-dimensional respiration-correlated CT scans for radiotherapy planning of lung cancer patients.

PURPOSE: Four-dimensional (4D) respiration-correlated imaging techniques can be used to obtain (respiration) artifact-free computed tomography (CT) images of the thorax. Current radiotherapy planning systems, however, do not accommodate 4D-CT data. The purpose of this study was to develop a simple, new concept to incorporate patient-specific motion information, using 4D-CT scans, in the radiotherapy planning process of lung cancer patients to enable smaller error margins. METHODS AND MATERIALS: A single CT scan was selected from the 4D-CT data set. This scan represented the tumor in its time-averaged position over the respiratory cycle (the mid-ventilation CT scan). To select the appropriate CT scan, two methods were used. First, the three-dimensional tumor motion was analyzed semiautomatically to calculate the mean tumor position and the corresponding respiration phase. An alternative automated method was developed to select the correct CT scan using the diaphragm motion. RESULTS: Owing to hysteresis, mid-ventilation selection using the three-dimensional tumor motion had a tumor position accuracy (with respect to the mean tumor position) better than 1.1 +/- 1.1 mm for all three directions (inhalation and exhalation). The accuracy in the diaphragm motion method was better than 1.1 +/- 1.1 mm. Conventional free-breathing CT scanning had an accuracy better than 0 +/- 3.9 mm. The mid-ventilation concept can result in an average irradiated volume reduction of 20% for tumors with a diameter of 40 mm. CONCLUSION: Tumor motion and the diaphragm motion method can be used to select the (artifact-free) mid-ventilation CT scan, enabling a significant reduction of the irradiated volume.

Algorithms↗

Tumor and normal tissue motion in the thorax during respiration: Analysis of volumetric and positional variations using 4D CT.

PURPOSE: To investigate temporospatial variations of tumor and normal tissue during respiration in lung cancer patients. METHODS AND MATERIALS: In 14 patients, gross tumor volume (GTV) and normal tissue structures were manually contoured on four-dimensional computed tomography (4D-CT) scans. Structures were evaluated for volume changes, centroid (center of mass) motion, and phase dependence of variations relative to inspiration. Only volumetrically complete structures were used for analysis (lung in 2, heart in 8, all other structures in >10 patients). RESULTS: During respiration, the magnitude of contoured volumes varied up to 62.5% for GTVs, 25.5% for lungs, and 12.6% for hearts. The range of maximum three-dimensional centroid movement for individual patients was 1.3-24.0 mm for GTV, 2.4-7.9 mm for heart, 5.2-12.0 mm for lungs, 0.3-5.5 mm for skin markers, 2.9-10.0 mm for trachea, and 6.6-21.7 mm for diaphragm. During respiration, the centroid positions of normal structures varied relative to the centroid position of the respective GTV by 1.5-8.1 mm for heart, 2.9-9.3 mm for lungs, 1.2-9.2 mm for skin markers, 0.9-7.1 mm for trachea, and 2.7-16.4 mm for diaphragm. CONCLUSION: Using 4D-CT, volumetric changes, positional alterations as well as changes in the position of contoured structures relative to the GTV were observed with large variations between individual patients. Although the interpretation of 4D-CT data has considerable uncertainty because of 4D-CT artifacts, observer variations, and the limited acquisition time, the findings might have a significant impact on treatment planning.

Diaphragm↗

Measurement of mitochondrial respiration in permeabilized murine neuroblastoma (N-2alpha) cells, a simple and rapid in situ assay to investigate mitochondrial toxins.

Most mitochondria-based methods used to investigate toxins require the use of relatively large amounts of material and hence compromised sensitivity in assay. We adopted procedures from methods initially developed to diagnose mitochondrial encephalomyopathies and unified these into a single assay. Eukaryotic cell membranes are selectively permeabilized with digitonin to render a system in which mitochondrial respiration can be measured rapidly and with considerable sensitivity. Mitochondria remain intact, uninjured, and in their natural environment where mitochondrial respiration can be measured in situ under physiologically relevant conditions. This approach furthermore allows measurement of toxin effects on individual mitochondrial complexes. Numerous compounds at varying concentrations can be screened for mitochondrial toxicity, while the site of mitochondrial inhibition can be determined simultaneously. We used this assay to investigate, in murine neuroblastoma (N-2alpha) cells, the mitochondrial inhibitory properties of the parkinsonian-inducing proneurotoxin, 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP), and its neurotoxic monoamine oxidase-B (MAO-B)-generated metabolite, the 1-methyl-4-phenylpyridinium species (MPP(+)). Within the time frame of each measurement (15 min), MPTP (< or = 1 mM) did not interfere with in situ mitochondrial respiration. As expected, MPP(+) was found to be a potent Complex I inhibitor but surprisingly also found to inhibit Complex IV. Optimized conditions for performing this assay are provided.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗