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Biomedical subjects

W J Hogan

Publications and source records attributed to W J Hogan.

At least 19 recordsLinked to original sources

Esophagoglottal closure reflex: a mechanism of airway protection.

Abrupt esophageal distention occurs commonly during gastroesophageal reflux, thereby generating a circumstance favorable to esophagopharyngeal regurgitation and laryngeal aspiration of gastric refluxate. The aims of the present study were to examine the glottal response to esophageal distention by air and regional esophageal distention by a balloon. Fifteen healthy volunteers (age, 25 +/- 5 years) were studied while they were in an upright position. Using concurrent videoendoscopy and manometry, glottal and upper esophageal sphincter (UES) responses to abrupt esophageal distention by air injection (10-60 mL) and balloon distention (1.5, 2.0, and 2.5 cm) were recorded simultaneously. In addition, 6 subjects were studied with concurrent synchronized videofluoroscopy. Results showed that esophageal distention by air at a threshold volume of 10-60 mL caused vocal cord closure. The UES response to this threshold volume was variable. Volumes larger than the threshold value caused complete UES relaxation and belching. In addition to vocal cord closure, belching was accompanied by anterior movement of the glottis. On videofluoroscopy, the hyoid bone moved anteriorly in association with belching, but not with vocal cord closure without belching. Proximal esophageal distention by the balloon also provoked vocal cord closure. This response was less consistent for balloon distention in the middle and distal esophagus. It is concluded that (a) esophageal distention by either air or a balloon evokes a glottal closure mechanism, thereby suggesting the existence of an esophagoglottal reflex; (b) this reflex is elicited most easily by distention of the proximal esophagus; (c) glottal and UES responses to esophageal distention are independent from each other; and (d) the esophagoglottal closure reflex may play an important role in preventing laryngeal aspiration of acid due to gastroesophageal reflux accompanied by acid regurgitation into the pharynx.

Adult

Alteration of the upper esophageal sphincter belch reflex in patients with achalasia.

Some patients with achalasia have been reported to develop airway obstruction from a massively air-distended esophagus, which may represent an abnormality in the upper esophageal sphincter belch reflex. When questioned carefully, 95% of our achalasia patients reported difficulty with belching. The upper esophageal belch reflex in 23 consecutive achalasia patients and 12 healthy controls was studied using an upper esophageal sphincter sleeve manometry catheter and rapid injection of 20-50 mL of air into the midesophagus. Compared with normal subjects, achalasia patients were significantly less likely to have an esophageal belch for all volumes tested and were more likely to have an increase rather than a decrease in upper esophageal sphincter pressure in response to air injection. This study systematically documents that many achalasia patients have an alteration in the upper esophageal sphincter belch reflex that may be a contributory mechanism for some of the chest and upper airway symptoms reported by some patients during acute esophageal distension.

Adolescent

Oesophageal clearance of small amounts of equal or less than one millilitre of acid.

The oesophageal acid clearance time was evaluated in 10 healthy volunteers of 'small' boluses of 0.5 and 1 ml and 'minute' boluses of 0.05 and 0.1 ml 0.1 N HCl, as well as 0.1 and 1 ml 0.01 and 0.001 N HCl. Swallow rate was normalised at q 60 seconds. For 0.1 ml 0.1 N HCl, acid clearance time was also measured for swallow intervals of q 30 and 120 seconds. Acid clearance time to restore pH to 4.0 was significantly longer (p less than 0.01) for the 0.5 and 1 ml 0.1 N HCl (210 and 273 seconds, respectively) than for the 0.05 and 0.01 ml acid boluses (83 and 94 seconds, respectively). The minimum acid clearance time was 18 seconds (0.05 ml 0.1 N HCl). Acid clearance time for 0.1 N HCl was less than one minute on only two occasions. The acid clearance times were comparable when the subjects sat upright. A longer interswallow interval--that is, 120 seconds, resulted in a significantly longer acid clearance time than shorter swallow intervals (p less than 0.05). Oesophageal acid clearance time for small acid volumes averaged more than three minutes and for minute acid volumes was generally more than one minute; and acid clearance times were comparable for the supine and upright postures, while gastrooesophageal reflux episodes causing pH drops to 3-4 may last for less than 15 seconds, substantial oesophageal pH drops to less than or equal to 1.5 that persists less than 15 seconds are difficult to be attributed to true gastrooesophageal reflux.

Adult

Mechanisms of airway protection and upper esophageal sphincter opening during belching.

The mechanisms of airway protection, upper esophageal sphincter (UES) opening, and their coordination during belching were studied with a concurrent videoendoscopic, videofluoroscopic, and manometric technique. Analysis of videoendoscopic recordings revealed that glottal function during gastric and esophageal belching was similar and consisted of vocal cord adduction resulting in closure of intoitus to trachea, followed by anterior-caudad movement of the glottis, followed by slitlike or triangular UES opening. When a belch episode was associated with an intragastric pressure increase, in addition to the above features, there was approximation of arytenoids to the base of the epiglottis before the UES opened. Duration of vocal cord closure during belches induced by 40 ml intraesophageal air injection was significantly longer than belches induced by 20 ml (P less than 0.01). Vocal cord closure preceded the UES opening invariably. Analysis of videofluoroscopic recordings showed that hyoid bone movement during belching had a distinctive pattern different from its movement during swallowing. UES opening started generally when the hyoid bone was pulled anteriorly. Anterior hyoid excursion of 0.78 +/- 0.1 cm during belching was significantly shorter than its excursion of 1.8 +/- 0.09 cm during swallowing (P less than 0.01). We conclude that glottal closure is an integral component of both esophageal and gastric belch reflexes that prevents aspiration of regurgitated material into the airway. Glottal closure mechanism during belching has two tiers of closure: 1) vocal cord closure and 2) aryepiglottic approximation. Glottal and UES functions are closely coordinated during belching, and finally, during belching, UES is pulled open after its relaxation.

Adult

Pressure measurements from biliary and pancreatic segments of sphincter of Oddi. Comparison between patients with functional abdominal pain, biliary, or pancreatic disease.

Using a minimally compliant infusion system and a triple-lumen pressure recording catheter, we obtained endoscopic manometric measurements from both the common bile duct and pancreatic duct segments of the sphincter of Oddi (SO) in 58 patients. Fifteen patients (ages 27-69) had the diagnosis of functional abdominal pain, 19 patients (ages 30-76) had partial biliary obstruction, and 24 patients (ages 15-80) had idiopathic acute recurrent pancreatitis. Resting ductal pressure was similar in the common bile duct and pancreatic duct in all patient groups. In the group with functional pain, basal SO pressure was similar, whether obtained from the common bile duct or pancreatic duct sphincteric segment. Eight of 19 patients with partial biliary obstruction had elevated basal SO pressure. Five of these eight patients had elevated basal SO pressure confined exclusively to the common bile duct segment of the sphincter, while three patients had elevated basal SO in both segments. Conversely seven of 24 patients with acute recurrent pancreatitis had an elevated basal SO pressure, with five patients having pressure elevation only in the pancreatic duct segment while two patients had abnormal basal SO pressure in both segments. We conclude that selective cannulation of the common bile duct and/or the pancreatic duct during manometric study of the SO is necessary in order to diagnose segmental SO dysfunction responsible for partial biliary obstruction or episodes of acute recurrent pancreatitis.

Abdominal Pain

Ampullary tumor caused by metastatic renal cell carcinoma.

In this paper we report the case of a renal cell carcinoma (RCC) metastatic to the ampullary region. The patient presented with severe anemia due to blood loss from the ampullary tumor 11 years after nephrectomy for the primary renal cancer. The diagnosis was established by means of endoscopy and biopsy.

Ampulla of Vater

Ampullary hamartoma: endoscopic diagnosis and treatment.

This study shows a patient who presented with intermittent biliary tract obstruction caused by ampullary hamartoma. Endoscopic retrograde cholangiopancreatography showed a large ulcerated papilla and dilated biliary ducts. Tissue diagnosis was established by a large particle biopsy obtained with a snare. The patient underwent a successful endoscopic sphincterotomy and has remained symptom free for 4 years.

Aged

Regional esophageal distribution and clearance of refluxed gastric acid.

Regional differences in the esophageal distribution and clearance of refluxed gastric acid was studied in seven asymptomatic volunteers and seven patients with reflux esophagitis. Intraluminal pH was recorded for 3 postprandial hours from the distal, middle, and proximal esophagus on two separate occasions (with subjects in upright and supine positions). With the subjects in a supine position, about half of the acid reflux episodes reached the proximal esophagus in patients as well as in controls. This percentage decreased to 25% in patients and 29% in controls when they were upright. In both groups, the pH drops in the distal esophagus were significantly greater than in the proximal esophagus for both the supine and upright positions. In both patients and controls, a 4-5-fold greater acid exposure occurred in the distal esophagus, than in the proximal esophagus. In both patient and control groups, acid exposure time, as well as the number of reflux episodes in the distal esophagus, were significantly greater than that of the proximal esophagus (P less than 0.05). Spontaneous acid clearance time in the distal esophagus was significantly longer than that of the proximal esophagus in both positions (P less than 0.05) for both subject groups. In conclusion, regional differences exist in the exposure of the esophageal mucosa to refluxed gastric acid. These regional differences are more pronounced when subjects are upright than supine. Regional differences also exist in esophageal acid clearance, with clearance taking longer in the distal esophagus than in the proximal esophagus. The net effect of these phenomena is that acid exposure time in the distal esophagus is greater than that in the remainder of the esophagus.

Adult

Effect of two new cholecystokinin antagonists on gallbladder emptying in opossums.

In this investigation we evaluated the effect of two new cholecystokinin (CCK) antagonists, CR 1409 and L364,718, on gallbladder emptying in the opossum. Gallbladder emptying was elicited by both exogenous and endogenous CCK. The three test challenges were 1) intravenous infusion of CCK octapeptide (OP) (10 ng.kg-1.min-1), 2) feeding, and 3) intraduodenal infusion of Isocal (0.4 ml/min), a fat-containing nutrient. During control conditions each test challenge elicited approximately 60% gallbladder emptying within 30 min and 70% emptying by 60 min. At given doses both CR 1409 and L364,718 substantially antagonized or abolished the gallbladder emptying elicited by each of the test challenges. The antagonism for postprandial gallbladder emptying was diminished between 30 and 50 min compared with that for CCK-OP infusion and intraduodenal infusion of Isocal. Unexpectedly, the gallbladder emptying induced by infusion of motilin (5 micrograms.kg-1.h-1) was antagonized by either CR 1409 or L364,718. In anesthetized animals, gallbladder contraction was induced by a variety of agonists, such as bethanechol, histamine phosphate, 5-hydroxytryptamine, and phenylephrine. In this later model CR 1409 and L364,718 functioned solely as selective antagonists. We conclude that for the opossum gallbladder 1) the CCK antagonists CR 1409 and L364,718 antagonize or abolish gallbladder emptying induced by exogenous or endogenous CCK; 2) the pattern of CCK antagonism after feeding suggests that the early phase of postprandial gallbladder emptying is mediated by a mechanism other than endogenous CCK, whereas late postprandial emptying is mediated by release of endogenous CCK; and 3) CR 1409 and L364,718 are not totally specific antagonists for gallbladder CCK receptors alone but also antagonize gallbladder contraction induced by motilin.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Relationship of intraluminal pH and pressure within the lower esophageal sphincter.

To determine the relationship between lower esophageal sphincter (LES) intraluminal pressure and its intraluminal pH, we studied six healthy volunteers. We recorded intraluminal pressure and pH concurrently using rapid pull-through, slow pull-through, and station pull-through, as well as, rapid push-through and slow push-through techniques. The results showed that LES length was 35 +/- 4 (SE) mm by RPT and 30 +/- 3 mm by SPT. The pressure was maximal in the proximal half of the LES. On rapid pull-throughs, the intraluminal pH rose from about 1.5 to reach a value of about 2.5 at the peak of the high pressure zone. With continued withdrawal into the esophageal body, the recorded pH rose minimally to about 3-4. On push-throughs, the pH recorded along the LES was the same as that of the esophageal body. After the electrode cleared the LES, the pH abruptly fell to gastric pH. During station pull-through with the electrode 0.5-1.5 cm proximal to the distal LES margin, transient pH drops were observed with swallows. With rapid swallows, however, the pH drop did not occur until after the last swallow. This finding suggests that the pH drops with swallows were due to axial LES movement rather than gastroesophageal acid reflux. We conclude that 1) the relationship of the gastroesophageal pH transition zone and LES high pressure zone is better defined by a sphincter push-through than a pull-through; 2) the transition between gastric and esophageal pH occurs either at or slightly distal to the distal LES margin; and 3) swallow-induced axial LES movement may cause spurious recording of acid reflux when the pH probe is positioned within the distal half of the LES.

Adolescent

Abnormal esophageal motility. An analysis of concurrent radiographic and manometric findings.

The findings of concurrent esophageal videofluoroscopy and manometry in 15 patients with major disturbances of esophageal motor function were evaluated and the data were analyzed from a fluid mechanical perspective. Each of 153 fluoroscopic barium swallow sequences was analyzed on a swallow-by-swallow basis. Two distinct pressure domains were identified: intrabolus pressure and pressure within a bolus-free contracting esophageal segment. Analyses in terms of these pressure domains showed specific and consistent correlations between the radiographic and manometric findings. Radiography was insensitive to contractions occurring in esophageal segments devoid of bolus fluid, whereas manometry was insensitive to contractions that did not occlude the lumen. It is concluded that using fluid mechanical principles of bolus transport allows meaningful comparison of esophageal motility as recorded by radiography and intraluminal manometry. However, the inherent limitations in the range of physical phenomena recorded by each modality make these techniques complementary for evaluating esophageal motor function.

Adult

Cholecystokinin-induced contraction of opossum sphincter of Oddi. Mechanism of action.

In this study, we evaluated the mechanism of action whereby cholecystokinin increases spike-burst rate of the opossum sphincter of Oddi (SO). Each spike burst corresponds to a peristaltic SO contraction. Two types of animal preparations were evaluated: (1) awake chronic animal preparations and (2) anesthetized animals. A total of 19 chronic animals were prepared by implantation of electrodes on the SO, gastric antrum, duodenum, and jejunum. SO spike-burst rate was stimulated by intravenous infusion of CCK-OP (10 ng/kg/min), feeding, or intraduodenal infusion of fat-containing nutrient. Each stimulus was begun 20 min after cessation of phase III duodenal MMC activity and caused an increase in SO spike-burst rate from about 2 to 6/min that lasted for less than or equal to 1 hr. Such increases were antagonized substantially by hexamethonium, atropine, or methysergide. The CCK antagonist, L364718, antagonized the excitatory SO response to CCK-OP infusion or intraduodenal infusion of fat-containing nutrient (Isocal) but did not antagonize the response to feeding; CR1409 had no antagonistic effect on SO response to any of the three types of stimuli. In the acute studies in anesthetized animals, an intravenous bolus dose of CCK-OP (800 ng/kg) caused a substantial increase in SO spike-burst rate that was antagonized by CR1409 but not by atropine, hexamethonium, methysergide, L364718, or TTX.(ABSTRACT TRUNCATED AT 250 WORDS)

Ampulla of Vater

Mechanism of cholecystokinin-induced contraction of the opossum gallbladder.

The present study evaluated the mechanism of cholecystokinin-induced gallbladder contraction in awake opossums. Each of 19 chronic animal preparations had an indwelling gallbladder cannula for monitoring changes in gallbladder volume and a jugular catheter for administration of cholecystokinin octapeptide and drugs. An intraduodenal catheter allowed intraduodenal infusion of Isocal (Mead Johnson Laboratories, Evansville, Ind.). Bipolar electrodes in the stomach, duodenum, and jejunum enabled monitoring of the duodenal migratory myoelectric complex cycle. One-hour infusions of cholecystokinin octapeptide (10 ng/kg/min), intraduodenal Isocal (0.4 ml/min), or feeding were started 20 min after cessation of phase 3 duodenal migratory myoelectric complex activity. Bolus intravenous doses of potential pharmacological antagonists were given 10 min before and 20 min after the onset of cholecystokinin octapeptide infusion, Isocal infusion, or feeding. Each test challenge induced about 60% gallbladder emptying at 30 min and 70% at 60 min. Cholecystokinin octapeptide-induced gallbladder emptying was converted to filling by hexamethonium and nearly abolished by atropine. Similar results were obtained for gallbladder emptying induced by feeding or duodenal infusion of Isocal. Phentolamine caused a modest decrease of cholecystokinin octapeptide-induced gallbladder contraction at 30 min, whereas postprandial or Isocal-induced gallbladder contraction was unaffected. Cholecystokinin octapeptide-induced gallbladder contraction was not affected by pirenzepine, 4-diphenylacetoxy-N-methylpiperidine methiodide, prazosin, pyrilamine, cimetidine, methysergide, naloxone, or propranolol. In acute studies of anesthetized animals, gallbladder contraction induced by a D100 intravenous bolus of cholecystokinin octapeptide (800 ng/kg) was not antagonized by hexamethonium, atropine, or tetrodotoxin. It is concluded (a) that cholecystokinin-induced physiologic contraction of the opossum gallbladder occurs through neural mechanisms rather than by a direct action of cholecystokinin on gallbladder smooth muscle, and (b) that studies using pharmacologic bolus doses of cholecystokinin octapeptide and tetrodotoxin indicate that cholecystokinin receptors exist on the gallbladder smooth muscle which do not seem to have any physiological role in gallbladder emptying.

Animals

Coordination of deglutitive glottic closure with oropharyngeal swallowing.

The goals of this study were to quantify the temporal relationship between swallow-induced glottic closure and (a) signals of swallow initiation, such as hyoid bone movement, tongue base movement, and mylohyoid electrical activity; (b) pharyngeal peristalsis; (c) laryngeal elevation; (d) vestibular closure; and (e) oropharyngeal barium bolus transit. Eight normal subjects (age 20-30 yr) were studied by concurrent transnasal video laryngoscopy, pharyngeal intraluminal manometry, and submental surface electromyography. The manometric, electromyographic, and both video recordings were synchronized with one another using a specially designed event marker. Dry, 5-ml water, and 5-ml barium swallows were recorded. Frame-by-frame analysis of the video endoscopic recordings showed that deglutitive laryngeal kinetics consisted of vocal cord adduction associated with transverse approximation of the arytenoids followed by vertical approximation of arytenoids to the base of the epiglottis followed by laryngeal ascent and epiglottic descent. Onset of swallow-induced vocal cord adduction preceded the onset of hyoid bone movement, base of the tongue movement, and submental surface myoelectric activity by 0.33 +/- 0.04 (SE) s, 0.31 +/- 0.04 s, and 0.38 +/- 0.04 s, respectively. Onset of vocal cord adduction also preceded the initiation of peristalsis in the nasopharynx and its propagation to oropharynx and upper esophageal sphincter by 0.64 +/- 0.05 s, 0.82 +/- 0.05 s, and 1.08 +/- 0.04 s, respectively. The time between the onset of vocal cord adduction and their return to full opening was 2.2 +/- 0.09 s. It was concluded that (a) among events evaluated, vocal cord adduction is the initial event during the swallowing sequence; (b) laryngeal kinetics during deglutition have distinctive features, and their close coordination with other swallowing events suggests that they are an essential feature of the swallowing program; and (c) abnormal laryngeal kinetics or lack of coordination between the glottic closure mechanism and oropharyngeal bolus transport may have an important role in swallow-induced aspiration.

Adult

Endoscopic retrograde brush cytology. A new technique.

Endoscopic retrograde cholangiopancreatography has been shown to be a very valuable adjunct in the diagnosis of malignancy involving the biliary and/or pancreatic ductal system. However, characteristic endoscopic retrograde cholangiopancreatography radiographic findings associated with malignant strictures are frequently not specific and cytological confirmation becomes essential for the diagnosis. Unfortunately, the current overall diagnostic yield of positive cytology in such circumstances ranges from 18%-56% depending on the technique. A new brush device has been designed which is uniquely adapted to pancreaticobiliary strictures of varying anatomical configurations. This study shows results using this new cytology brush in a series of 53 patients with pancreaticobiliary malignancy. A significant improvement in the cytological yield of tumor confirmation was obtained with a diagnostic sensitivity of 70% and specificity of 100% using the new brush technique.

Aged

Oesophageal acidification does not increase lower oesophageal sphincter pressure.

We studied the effect of distal oesophageal acidification on lower oesophageal sphincter (LOS) pressure in normal human volunteers and in cats. The distal oesophagus was acidified by intraluminal injection of 0.1N HCl (pH 1.2). The LOS pressure was recorded by a sleeve device while pharyngeal and oesophageal pressures were monitored by nonperfused, water filled catheters. In normal human subjects, distal oesophageal acidification did not elicit a change in LOS pressure. In anaesthetised cats, injection of acid into the distal oesophagus elicited immediate LOS relaxation followed by a secondary peristaltic sequence. With propagation of the peristaltic sequence into the LOS, the LOS pressure abruptly increased 20-100 mmHg and gradually returned to the preinjection value over 15-180 s. In the one instance in which we were able to acidify the distal oesophagus without evoking secondary peristalsis, the LOS pressure did not change. Injection of saline into the distal oesophagus evoked a response in the LOS and oesophageal body that was indistinguishable from that seen with acid. We conclude that contrary to common belief, distal oesophageal acidification itself does not affect LOS pressure in man or the cat.

Adult

Fasting and postprandial hepatic bile flow in unanesthetized opossums.

In conscious opossums, we evaluated the relationship between hepatic bile flow and the intestinal motor function during fasting as well as after feeding. In six opossums, bipolar electrodes were implanted from the gastric antrum to the terminal ileum. After cholecystectomy, the common duct was ligated, and a catheter was tied into the proximal common duct for collecting hepatic bile. During subsequent studies, hepatic bile flow was measured, and bile was returned to the duodenum through an externalized duodenal catheter. Cyclic increases in bile flow during fasting did not show a close correlate with the duodenal migratory motor complex (MMC) cycle. Rather, bile flow showed peak values [0.11 +/- 0.02 (SE) ml/min] when phase III MMC activity reached the midileum. Hepatic bile flow correlated closely with the amount of bile acid secreted by the liver. When the bile acid pool was depleted by diverting bile from the intestine, hepatic secretion of bile fell to uniformly low values of approximately 0.04 ml/min that did not show cyclic variation. Hepatic bile flow after feeding increased to a maximal value of 0.12 +/- 0.01 ml/min at 90 min. We conclude that increases in hepatic bile flow during fasting and after meals are determined mainly by variations in intestinal motor activity that alter small bowel transit and thereby affect the enterohepatic circulation of bile acids.

Animals