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Biomedical subjects

Nicholas J Zyromski

Publications and source records attributed to Nicholas J Zyromski.

15 recordsLinked to original sources

Current management of biliary leaks.

Biliary leak is a troubling complication that arises after a broad range of interventions on the gallbladder, bile ducts, and liver as well as after liver trauma. Fortunately, most biliary leaks are minor. Advances in imaging and minimally invasive interventional techniques have facilitated nonoperative treatment in most cases. The specific clinical scenario dictates diagnosis and treatment of a biliary leak. Prompt diagnosis and treatment lead to optimal clinical outcomes.

Anastomosis, Surgical↗

Inhibition by nitric oxide and nonadrenergic, noncholinergic (NANC) nerves is preserved in a canine model of extrinsic denervation: implications for small bowel transplantation.

BACKGROUND: Small bowel transplantation (SBT) is complicated by changes in graft motility, especially in the early postoperative period. This dysmotility may be related in part to the extrinsic denervation necessitated by the procedure, but specific neurotransmitter response to SBT is incompletely understood. The aim of this study was to evaluate the role of nitric oxide and nonadrenergic, noncholinergic (NANC) enteric neural input in the nonimmunologic etiology of the dysmotility seen after SBT. METHODS: A technique of jejunoileal extrinsic denervation (without disruption of mesenteric vascular supply) was used as a model of canine jejunoileal autotransplantation to avoid potential confounding factors such as ischemia-reperfusion and postallotransplant immunologic effects. Longitudinal smooth muscle strips from ileum and jejunum were studied with in vitro tissue chamber methodology at 0, 2, and 8 weeks after this experimental model to explore early and late effects of denervation. Effects of exogenous nitric oxide (NO) and electric field stimulation (EFS), which releases native, endogenous enteric neurotransmitters) were evaluated in neurally intact control dogs and those undergoing extrinsic denervation. RESULTS: Exogenous NO caused a dose-dependent inhibition of spontaneous contractile activity and in some muscle strips a decrease in basal tone in both groups of dogs. These effects were unchanged by neural blockade with tetrodotoxin and preserved after extrinsic denervation. EFS produced inhibition of spontaneous contractile activity in ileum and a complex, inconsistent response in jejunum. The response to EFS in both ileum and jejunum was unchanged after extrinsic denervation. CONCLUSIONS: Nitric oxide inhibits contractile activity in canine longitudinal muscle of small bowel. Motility changes seen after this large animal model of extrinsic denervation are not caused by changes in NO or NANC neural function. The variability observed between different segments of intestine is important to consider in the context of SBT.

Adrenergic Antagonists↗

Limitations of implantable, miniature ultrasonic transducers to measure wall movement in the canine jejunum.

BACKGROUND: We used implantable miniature ultrasonic transducers to measure longitudinal distance, circumference, and wall thickness dynamically in vivo in canine jejunum. We hoped to differentiate circular from longitudinal smooth muscle contractions and to correlate physical measurements of change in distance within the jejunal wall with intraluminal manometry. MATERIALS AND METHODS: In acute experiments at the time of celiotomy, longitudinal distances, circumferences, and wall thickness were measured directly and by ultrasonic transducers sewn to serosa and mucosa. Measurements were obtained with the intestine empty and after distention with air, water, or semisolid slurry. In chronic in vivo experiments in conscious dogs with indwelling ultrasonic transducers and intraluminal manometers, sonometric dimensions were correlated with manometric recordings. In acute experiments, sonometric measurements were similar to direct measurements. In chronic experiments in vivo, smallest ultrasonometric measurements of circumferences of the jejunum correlated in a phase-locked temporal manner with both highest intraluminal pressures and greatest wall thickness. RESULTS: Longitudinal distances increased during decreases in circumference. Distances orad to the site maximal intraluminal pressure peaked at 0.58 +/- 0.04 s ( x +/- SEM) before, and those aborad to this point 0.42 +/- 0.04 s after attaining minimum circumferences. CONCLUSIONS: Ultrasonic crystals can monitor geometric changes in the bowel wall with certain limitations, especially when obtained in vivo. Contraction of circular and longitudinal muscles, although phase-locked, do not appear to occur exactly synchronously in canine jejunum.

Animals↗

Splenic injury: a rare complication of endoscopic retrograde cholangiopancreatography.

Splenic injury is an extremely rare complication after endoscopic retrograde cholangiopancreatography (ERCP); to our knowledge, only seven such cases have previously been reported in the literature. Though the mechanism of splenic injury after ERCP is unclear, "bowing" of the endoscope in the "long position" with torsion on the greater curvature of the stomach may lead to splenic vascular or capsular avulsion. Other contributing factors potentially include excessive manipulation of the duodenoscope (particularly with difficulty cannulating the ampulla of Vater or common bile duct), excessive manipulation of the patient during the procedure, or the presence of intra-abdominal adhesions. As ERCP is being employed more frequently for the diagnosis and treatment of pancreatico-biliary disease, clinicians must be aware of this rare but potentially lethal complication to allow for early accurate diagnosis and therapy.

Adult↗

Canine ileal motor activity after a model of jejunoileal autotransplantation.

OBJECTIVE: To determine mechanisms by which extrinsic innervation to the jejunoileum controls ileal motility. SUMMARY BACKGROUND DATA: Small bowel transplantation is complicated by diarrhea and delayed gastric emptying, possibly secondary to altered motility. Ileal motility after small bowel transplantation is poorly characterized. METHODS: Motor activity was recorded from four dogs during fasting and after feeding small (64 Kcal) or large (256 Kcal) meals. Short-chain fatty acids known to induce unique ileal motor patterns were administered into the distal ileum during fasting. Dogs were studied before and after jejunoileal denervation simulating autotransplantation. RESULTS: After jejunoileal denervation, the ileal migrating motor complex (MMC) persisted but was no longer temporally coordinated with duodenal MMCs. Spontaneous giant migrating contractions occurred more frequently after denervation and more commonly originated proximally in the jejunum, but the velocity of migration did not differ. In contrast, the incidence and characteristics of spontaneous discrete clustered contractions (DCCs) did not differ. Short-chain fatty acids reproducibly initiated giant migrating contractions and discrete clustered contractions in the distal ileum without differences before and after denervation. Large but not small meals inhibited the ileal MMC after denervation. CONCLUSIONS: Extrinsic innervation and/or intrinsic neural continuity with the duodenum and/or colon control temporal coordination of ileal motility with the duodenum and modulate postprandial inhibition of fasting motility and presence of giant migrating contractions. These changes in motility patterns may prove important in mediating enteric dysfunction after small bowel transplantation.

Animals↗

Extrinsic denervation causes a transient proabsorptive adrenergic hypersensitivity in the canine proximal colon.

Our aim was to determine if extrinsic denervation alters the absorptive response of the colon to proabsorptive and prosecretory stimuli. Ten dogs underwent enteric isolation of a 50-cm proximal colonic segment; five were also randomized to undergo extrinsic denervation (DEN). At 2 and 13 wk postoperatively, net absorptive fluxes (mean +/- SEM) of water and electrolytes were determined during basal conditions and during proabsorptive low-dose (0.3 microg/kg/min) or high-dose (3 microg/kg/min) norepinephrine or prosecretory VIP (500 pg/kg/min). The net absorptive flux of water under basal conditions was decreased in DEN versus neurally intact controls at two weeks (4.0 +/- 0.6 vs 6.6 +/- 0.7 microl/min/cm, P = 0.03) but did not differ at 13 weeks (5.0 +/- 1.0 vs 5.7 +/- 0.9, P > 0.05). Low- and high-dose norepinephrine increased water absorption in both groups at two weeks; the change in flux for high-dose norepinephrine was greater in DEN versus controls (4.1 +/- 1 vs 2.1 +/- 0.6 microl/min/cm, P = 0.04). Net absorptive fluxes of Na+ and Cl- followed these trends. VIP did not alter absorption of water or electrolytes. Extrinsic denervation of the proximal colon causes a decrease in net colonic absorption and a transient, proabsorptive adrenergic hypersensitivity in colonic absorption of water and electrolytes. VIP does not have a net secretory effect in the proximal canine colon.

Adrenergic alpha-Agonists↗

Surgery residents' perception of the Objective Structured Clinical Examination (OSCE).

PURPOSE: Beginning in July 2003, residency programs will be required to incorporate new educational assessment methods as defined by the Accreditation Council for Graduate Medical Education (ACGME) outcome initiative. The Objective Structured Clinical Examination (OSCE) is an assessment tool that is favorably viewed by the ACGME. Our institution has utilized the OSCE for evaluation of surgery trainees since 1996. Despite the positive acceptance of the OSCE by students, residents expressed dissatisfaction with the examination. This study was therefore undertaken to specifically evaluate resident perception of the OSCE. METHODS: Two sequential surveys were administered to surgery residents at the Medical College of Ohio. Response of medical students to a standard survey following completion of the OSCE was tabulated. RESULTS: On the first, general survey, residents felt that the OSCE was not an adequate measure of either clinical (15 of 17 residents) or technical (15 of 18 residents) skills; 14 of 16 residents felt that the OSCE should not be used when considering promotion. When specifically queried in a follow-up survey, residents indicated that the OSCE was an adequate measure of clinical knowledge (2.2 +/- 0.3); however, most still felt that the OSCE should not be used when considering promotion (4.3 +/- 0.3). (Scores = mean +/- SEM on a Likert scale where 1 = strongly agree and 5 = strongly disagree). By contrast, 97.6% of 663 medical students surveyed (September 1996 through February 2002) felt the OSCE was useful. CONCLUSIONS: The OSCE has been shown to be a reliable and valid measure of basic clinical and technical competence. Despite our residents' current perception, we believe that the OSCE is an important method for resident evaluation, particularly within the context of the current ACGME outcome initiative.

Attitude of Health Personnel↗

Postprandial absorptive augmentation of water and electrolytes in the colon requires intraluminal glucose.

Postprandial absorptive augmentation of water and electrolytes occurs in the small intestine and colon. The role of intraluminal nutrients in this response is poorly understood. Our aim was to determine whether postprandial absorptive augmentation of water and electrolytes in the colon requires the presence of intraluminal glucose. Four adult dogs underwent enteric isolation of a 50 cm segment of proximal colon. An ileal-like electrolyte solution (Na(+), 130 mEq/L; K(+), 10 mEq/L; Cl(-), 115 mEq/L; and HCO(3)(-), 25 mEq/L), alone or containing glucose (10 mmol/L), was infused at 4 ml/min into the colonic segment. Experiments were performed during fasting and postprandially after a 400 Kcal mixed-nutrient meal. Effluent was collected in 60-minute intervals after steady state was achieved. Net absorptive flux of water was increased in the presence of intraluminal glucose during the fasted state (11 +/- 0.8 vs 7.4 +/- 0.9 microl/min/cm, P < 0.01). The net absorptive flux of water and electrolytes increased postprandially only in the presence of intraluminal glucose (P < 0.05). Our finding that glucose augments both baseline and postprandial absorption of water and electrolytes in the proximal colon suggests that luminal factors have a role in postprandial absorptive augmentation. Whether this is specific to glucose or occurs with other nutrients remains to be determined.

Animals↗

Role of extrinsic innervation in jejunal absorptive adaptation to subtotal small bowel resection: a model of segmental small bowel transplantation.

Segmental small bowel transplantation offers theoretic advantages over total jejunoileal transplantation, but the regional ability of the transplanted segment to adapt is unknown. Absorption was measured in an 80 cm jejunal segment via a triple-lumen perfusion technique. Separate experiments measuring absorption of four nutrients (glucose, glutamine, oleic acid, and taurocholic acid) were performed before and 2 and 12 weeks after operative intervention. Control dogs (CON, n = 6) underwent distal 50% enterectomy. Experimental dogs (EXT DEN, n = 6), in addition to resection, underwent complete extrinsic denervation of the remaining jejunum. All dogs developed diarrhea, which resolved in all CON dogs but persisted in all EXT DEN dogs. Maximal weight loss was greater in the EXT DEN group. Glucose and oleate absorption was decreased 2 weeks after ileal resection in both the CON and EXT DEN dogs; glutamine absorption was decreased at 2 weeks in EXT DEN dogs only. Taurocholate and water absorption remained unchanged in both groups. Absorption of all solutes returned to baseline at 12 weeks in both groups. Despite greater weight loss and persistent diarrhea in EXT DEN dogs, at 12 weeks there were no differences in net absorptive fluxes between the EXT DEN and the CON group after extrinsic denervation. The extrinsic denervation necessitated by small bowel transplantation does not appear to blunt the net jejunal adaptive response to total ileal resection, but may temporarily alter glutamine absorption.

Adaptation, Physiological↗

Differential adrenergic response to extrinsic denervation in canine longitudinal jejunal and ileal smooth muscle.

Early postoperative complications after small bowel transplantation (SBT) are likely mediated, at least in part, by dysmotility caused by the obligate disruption of extrinsic and enteric nerves in the graft. Adrenergic hypersensitivity of gut smooth muscle has been observed in some (but not all) segments of intestine in various experimental models of SBT, highlighting regional and species variability in response to denervation. Little is known about changes in canine longitudinal muscle after extrinsic denervation. Six dogs each underwent either complete extrinsic denervation of the jejunoileum or a control operation (transection and reanastomosis of the proximal jejunum and distal ileum). In vitro contractile response of longitudinal muscle strips to norepinephrine was evaluated at the time of the operation, and 2 weeks and 8 weeks later. After extrinsic denervation, the jejunal response to norepinephrine was preserved at all time points; however, the ileum displayed a decreased sensitivity to norepinephrine, an effect unmasked after intramural neural blockade with tetrodotoxin. These data support a potential for neurally mediated dysmotility after SBT and reinforce the differences in responses to extrinsic denervation between species, as well as differences within different regions and between anatomic segments of small intestine in the same species.

Adrenergic Fibers↗

Neuronal adrenergic and muscular cholinergic contractile hypersensitivity in canine jejunum after extrinsic denervation.

Extrinsic denervation may be responsible for motor dysfunction after small bowel transplantation. The aim of this study was to examine the role of extrinsic innervation of canine jejunum on contractile activity. An in vitro dose response of cholinergic and adrenergic agonists was evaluated in canine jejunal strips of circular muscle at 0, 2, and 8 weeks in a control group and after jejunoileal extrinsic denervation (EX DEN). Neurons in circular muscle were quantitated by means of immunohistochemical techniques. Adrenergic and cholinergic responses did not differ at any time in the control group. However, at 2 and 8 weeks, extrinsic denervation caused an increased sensitivity to the procontractile effects of the cholinergic agonist bethanechol at the level of the smooth muscle cells, and increased sensitivity to the inhibitory effects of the adrenergic agent norepinephrine mediated at the level of the enteric nervous system. Immunohistochemical analysis showed a reduction in all neurons and a complete lack of adrenergic fibers in the EX DEN group after 2 and 8 weeks. Extrinsic denervation induces enteric neuronal cholinergic and adrenergic smooth muscle hypersensitivity in canine jejunal circular muscle.

Acetylcholine↗

Small bowel extrinsic denervation does not alter water and electrolyte absorption from the colon in the fasting or early postprandial state.

Small bowel transplantation (SBT) causes watery diarrhea. The decreases shown previously in absorption of water, electrolytes, and bile salts in the jejunum and ileum, although present, are not dramatic and seem not to be great enough to explain the diarrhea. Our aim was to determine changes in water and electrolyte absorption in the colon during fasting and postprandially in a canine preparation of jejunoileal extrinsic denervation, which serves as a model of jejunoileal autotransplantation. We hypothesized that colonic absorption of water and electrolytes decreases transiently in the colon after SBT. Six dogs had cannulas implanted in the colon to study absorption of an ileal-like basal electrolyte solution with or without 10 mmol/L glucose. Absorption during fasting and postprandially was measured before and 2 and 12 weeks after a validated preparation of jejunoileal extrinsic denervation. All dogs developed diarrhea after SBT. Net colonic absorptive fluxes of water and electrolytes in the colon did not change from baseline values at 2 or 12 weeks after extrinsic denervation, either during fasting or postprandially; glucose in the infusate did not alter absorptive fluxes during fasting or postprandially. Extrinsic denervation of the small intestine does not appear to alter colonic absorption of water or electrolytes during fasting or postprandially. These observations suggest that the neurally intact colon has a minimal role in the diarrhea after SBT.

Animals↗